thermal centers
Showing all 181 results
- Дымовые трубы
- Track oil heating complex
- Steam block-modular boiler houses
- Thermal oil block-modular boiler houses
- Internal gas connections
- Дополнительные опции для тепловых центров
- Outdoor boilers
- Расширительные баки для КТМ
- Gas fittings
- Water-heating block-modular boiler houses
- burners
- tanks
- Heat generators for heating
- Steam generators
- Medium pressure steam generators
- Heat generators
- Industrial hot water boilers
- Boiler houses
- Thermal oil boilers
- Water heating tanks
- Bituminous economy
97 110 534 ₸
- Bitumen melting capacity, t/h 6
- Daily bitumen melting capacity, m3/day up to 120
- Bitumen shipment capacity, m3/h 25-30
- Installed power consumption no more than, kW 40
- Installed thermal power, kW 500
- Natural gas consumption, nm.cub/h 69
- Natural gas connection pressure, kPa 4-36
4 663 316 ₸
- Thermal power, kW 100
- Outlet air flow up to, m3/hour 5000-7000
- Air pressure at the outlet of the DVT, no more than, Pa 900-1100
- Air heating delta, °C 40
- Maximum outlet air temperature, °C 80
- Time to reach operating mode, no more, min 7
- Gas pressure for heat generator, mbar individually
5 932 472 ₸
- Thermal power, kW 150
- Outlet air flow up to, m3/hour 5000-7000
- Air pressure at the outlet of the DVT, no more than, Pa 900-1100
- Air heating delta, °C 60
- Maximum outlet air temperature, °C 100
- Time to reach operating mode, no more, min 7
- Gas pressure for heat generator, mbar individually
10 991 231 ₸
- Thermal power, kW 250
- Outlet air flow up to, m3//час 7000-14000
- Air pressure at the outlet of the DVT, no more than, Pa 500-1500
- Air heating delta, °C 50
- Maximum outlet air temperature, °C 90
- Time to reach operating mode, no more, min 7
- Gas pressure for heat generator, mbar individually
11 807 291 ₸
- Thermal power, kW 250
- Outlet air flow up to, m3/hour (taking into account air expansion at maximum heating delta) 5,300
- Fan air flow, m3/hour 2800
- Air heating delta, °C 210
- Air pressure at the outlet of the DVT, no more than, Pa 11500
- Maximum outlet air temperature, °C 170
- Time to reach operating mode, no more, min 7
9 508 519 ₸
- Thermal power, kW 250
- Outlet air flow up to, m3/hour 8500-18000
- Air pressure at the outlet of the DVT, no more than, Pa 500-1000
- Air heating delta, °C 40
- Maximum outlet air temperature, °C 80
- Time to reach operating mode, no more, min 10
- Gas pressure for heat generator, mbar individually
13 750 407 ₸
- Thermal power, kW 250
- Outlet air flow up to, m3/hour 8500-18000
- Air pressure at the outlet of the DVT, no more than, Pa 500-1000
- Air heating delta, °C 40
- Maximum outlet air temperature, °C 80
- Time to reach operating mode, no more, min 10
- Gas pressure for heat generator, mbar individually
9 475 227 ₸
- Thermal power, kW 300
- Расход воздуха на выходе ТГВ, м3/hour 10000-20000
- Напор на выходе из установки, Па 50
- The pressure fan Pa 200
- Температура воздуха на выходе не более, °С 90
- Time to reach operating mode, no more, min 15
- Расход газа макс., нм3/hour 8..35
15 256 667 ₸
- Thermal power, kW 250
- Outlet air flow up to, m3/hour (taking into account air expansion at maximum heating delta) 5,300
- Fan air flow, m3/hour 2800
- Air heating delta, °C 210
- Air pressure at the outlet of the DVT, no more than, Pa 11500
- Maximum outlet air temperature, °C 170
- Time to reach operating mode, no more, min 7
20 352 778 ₸
- Thermal power, kW 450
- Outlet air flow up to, m3/hour 14400-41000
- Air pressure at the outlet of the DVT, no more than, Pa 750-1130
- Air heating delta, °C 40
- Maximum outlet air temperature, °C 70
- Time to reach operating mode, no more, min 7
- Gas pressure for heat generator, mbar individually
46 951 460 ₸
- Тепловая мощность, МВт (Гкал) 0,2 (0,17)
- DHW capacity (+5/+65), m3/hour 0,5
- Coolant temperature on the boiler circuit, °C +105/+90
- Coolant temperature on the external heating circuit, °C +95/+70
- Coolant volume, l (no more, taking into account expansion tanks) 1,000
- Fuel consumption for gas equipment, nm.cub./hour 24
- Fuel consumption for diesel equipment, kg/hour 19
190 560 412 ₸
- Installed thermal capacity, MW (Gcal) 3,1 (2,66)
- Nameplate efficiency, % 90
- Certified fuel consumption: min/max, nm.cub./hour 50/367
- Installed steam boilers KPSD-2000x2
- Installed gas burners Baltur TBG 210P
- Installed gas trains MM420
- Water treatment softening with pH adjustment DIASEL
190 560 412 ₸
- Installed thermal capacity, MW (Gcal) 3,1 (2,66)
- Nameplate efficiency, % 90
- Certified fuel consumption: min/max, nm.cub./hour 50/367
- Installed steam boilers KPSD-2000x2
- Installed gas burners Baltur TBG 210P
- Installed gas trains MM420
- Water treatment softening with pH adjustment DIASEL
27 566 732 ₸
- Тепловая мощность, МВт (Гкал) 0,174(0,15)
- Температурный график (подача/обратка), °С 300/250
- Установленный термомасляный котёл КТМ-0,15
- Установленная горелка Baltur BТG 20P
- Type of design fuel Природный газ ГОСТ 5542-2022
- Паспортный расход газа: min/max, нм.куб/ч 10/24
- Установленный фильтр топлива Тонкой очистки
63 302 450 ₸
- Тепловая мощность, МВт (Гкал) 0,3(0,26)
- Температурный график (подача/обратка), °С 300/250
- Установленный термомасляный котёл КТМ-0,15 (2шт.)
- Установленная горелка Baltur BТG 20P (2шт.)
- Type of design fuel Природный газ ГОСТ 5542-2022
- Гидравлические характеристики, МПа Термомасляная часть (подача/обратка) 0,3/0,05
- Вместимость котельной по теплоносителю, м.куб 0.4
66 557 372 ₸
- Тепловая мощность, МВт (Гкал) 0,65(0,56)
- Температурный график (подача/обратка), °С 300/250
- Установленный термомасляный котёл КТМ-0,65
- Установленная горелка Еcoflam BLU 700.1LN PRE TL
- Type of design fuel Природный газ ГОСТ 5542-2022
- Паспортный расход газа: min/max, нм.куб/час 16/80
- Установленный котёл КТМ-0,65
53 950 747 ₸
- Тепловая мощность, МВт (Гкал) 0,8(0,69)
- Температурный график (подача/обратка), °С 300/250
- Установленный термомасляный котёл КТМ-1,0
- Установленная горелка Baltur TBG 120 ME
- Type of design fuel Природный газ ГОСТ 5542-2022
- Гидравлические характеристики, МПа тепло масляная часть (подача/обратка) 0,25/0,05;
- Вместимость котельной по теплоносителю, м.куб 1
71 881 962 ₸
- Тепловая мощность, МВт (Гкал) 1,16(1,0)
- Температурный график (подача/обратка), °С 300/250
- Установленный термомасляный котёл КТМ-1,0
- Установленная горелка Baltur TBG 150P
- Type of design fuel Природный газ ГОСТ 5542-2022
- Электропитание 3ф, 230/400В, 50Гц
- Reject hopper capacity (at a density of 1.8 t/m³), m³ (t) Автоматическое
199 672 116 ₸
- Тепловая мощность, МВт (Гкал) 3(2,58)
- Температурный график (подача/обратка), °С 300/250
- Установленный термомасляный котёл КТМ-1,5(2шт.)
- Установленная горелка Baltur ТBML 200MC, Baltur ТBG 210P
- Type of design fuel Природный газ ГОСТ 5542-2022
- Паспортный расход газа по котельной: min/max, нм.куб/час 100/411
- Низшая теплота сгорания проектного топлива, Ккал/нм.куб. 8,000
13 330 603 ₸
- Thermal power, kW 450
- Outlet air flow up to, m3/hour 8700-18000
- Air pressure at the outlet of the DVT, no more than, Pa 500-1500
- Air heating delta, °C 70
- Maximum outlet air temperature, °C 110
- Time to reach operating mode, no more, min 7
- Gas pressure for heat generator, mbar individually
16 213 203 ₸
- Useful volume of container, m3 45
- Nominal capacity volume, m3 48
- Heating area, m2 30
- Oil registers, quantity, pcs 2
- Coolant volume in registers, l 350
- Ventilation system hatch ⌀600 mm and round deflector DN = 250 mm
- Thermal insulation URSA basalt, mm 100
9 491 467 ₸
- Useful volume of container, m3 30
- Nominal capacity volume, m3 31
- Oil registers, quantity, pcs 2
- Coolant volume in registers, l 250
- Ventilation system hatch ⌀600 mm and round deflector DN = 250 mm
- Thermal insulation URSA basalt, mm Reject hopper capacity (at a density of 1.8 t/m³), m³ (t)
- housing material steel St.09G2S sheet, s=4 mm of the shell, s=6 mm of the bottom
28 420 810 ₸
- Heat production of the boiler, Gcal/h; 00.3
- Bitumen pump performance, cube m; 15,7
- Maximum oil temperature, ° C +300/+250
- Operation temperature +5 ...+40 ° C
- Useful volume of bitumen storage, cube. m 28
- The volume of the coolant in the installation, cube. m 0,7
- Thermal insulation URSA basalt, mm 50
7 731 863 ₸
- Productivity, m 2
- Productivity, m 2
- Productivity, m Side, top
- Side, top
- Side, top2 44
- Side, top2 10
- Upper tier, m2 34
10 047 687 ₸
- Productivity, m 1
- Reject hopper capacity (at a density of 1.8 t/m³), m³ (t) 0,1
- Installed power, kW 120
- 23 866 $ Reject hopper capacity (at a density of 1.8 t/m³), m³ (t)
- Reject hopper capacity (at a density of 1.8 t/m³), m³ (t) Reject hopper capacity (at a density of 1.8 t/m³), m³ (t)
- Maximum oil heating temperature, °C 23 866 $
-
The volume of the coolant m3
0.8
15 850 239 ₸
- Thermal power, kW 450
- Outlet air flow up to, m3/hour (taking into account air expansion at maximum heating delta) 9,600
- Fan air flow, m3/hour 5,000
- Air heating delta, °C 210
- Air pressure at the outlet of the DVT, no more than, Pa 11500
- Maximum outlet air temperature, °C 170
- Time to reach operating mode, no more, min 7
20 530 606 ₸
- Thermal power, kW 450
- Outlet air flow up to, m3/hour (taking into account air expansion at maximum heating delta) 9,600
- Fan air flow, m3/hour 5,000
- Air heating delta, °C 210
- Air pressure at the outlet of the DVT, no more than, Pa 11500
- Maximum outlet air temperature, °C 170
- Time to reach operating mode, no more, min 7
17 841 263 ₸
- Thermal power, kW 450
- Outlet air flow up to, m3/hour 8700-18000
- Air pressure at the outlet of the DVT, no more than, Pa 500-1500
- Air heating delta, °C 70
- Maximum outlet air temperature, °C 110
- Time to reach operating mode, no more, min 7
- Gas pressure for heat generator, mbar индивидуально,
1 360 100 ₸
- Тепловая мощность, МВт 0,1
- Design pressure, MPa 0,6
- Test pressure, MPa 0,9
- Максимальная температура теплоносителя, °С 105
- Внутренняя площадь нагрева, м2 5
- Внутренний объём котла, м3 0,13
- Объём топки, м3 0,127
12 949 935 ₸
- Тепловая мощность, МВт 0,35
- Температура продукта:
- На входе – не менее °С +5
- На выходе – не более °С +70
- Тип промежуточного теплоносителя steam
- Температура нагрева промежуточного теплоносителя, °С +110
- Тепловая мощность горелки, не менее, МВт 0,39
12 878 186 ₸
- Тепловая мощность, МВт 0,25
- Температура продукта:
- На входе – не менее °С +5
- На выходе – не более °С +70
- Тип промежуточного теплоносителя вода, жидкости по ГОСТ 33591-2015
- Температура нагрева промежуточного теплоносителя, °С +95
- Тепловая мощность горелки, не менее, МВт 0,278
49 102 036 ₸
- Тепловая мощность, Гкал/ч (МВт) 1 Гкал/ч (1,16 МВт)
- Температура продукта:
- На входе – не менее °С +5
- На выходе – не более °С +70
- Тип промежуточного теплоносителя термальное масло
- Температура нагрева промежуточного теплоносителя, °С +100
- Тепловая мощность горелки, не менее, МВт 1,281
11 638 395 ₸
- Теплопроизводительность, МВт/ч (ГКал/ч) 0,2 (0,17)
- Температура теплоносителя, до, °С 105
- Максимальное давление теплоносителя, МПа 0,6
- Расход газа, нм куб/ч 24
- Climatic version У1
- Установленная мощность (3ф 220/380В, 50 Гц), кВт 5
- KPD% 90
2 389 716 ₸
- Тепловая мощность, МВт 0,25
- Design pressure, MPa 0,6
- Test pressure, MPa 0,9
- Максимальная температура теплоносителя, °С 105
- Внутренняя площадь нагрева, м2 10
- Внутренний объём котла, м3 0,32
- Объём топки, м3 0,183
4 004 784 ₸
- Тепловая мощность, МВт 0,5
- Design pressure, MPa 0,6
- Test pressure, MPa 0,9
- Максимальная температура теплоносителя, °С 105
- Внутренняя площадь нагрева, м2 16
- Внутренний объём котла, м3 0,55
- Объём топки, м3 0,471
5 615 792 ₸
- Тепловая мощность, МВт 0,7
- Design pressure, MPa 0,6
- Test pressure, MPa 0,9
- Максимальная температура теплоносителя, °С 105
- Внутренняя площадь нагрева, м2 21
- Внутренний объём котла, м3 1,2
- Объём топки, м3 0,557
6 956 403 ₸
- Тепловая мощность, МВт 1
- Design pressure, MPa 0,6
- Test pressure, MPa 0,9
- Максимальная температура теплоносителя, °С 105
- Внутренняя площадь нагрева, м2 27
- Внутренний объём котла, м3 1,4
- Объём топки, м3 0,964
8 638 055 ₸
- Тепловая мощность, МВт 1,5
- Design pressure, MPa 0,6
- Test pressure, MPa 0,9
- Максимальная температура теплоносителя, °С 105
- Внутренняя площадь нагрева, м2 35
- Внутренний объём котла, м3 1.8
- Объём топки, м3 1,449
10 795 539 ₸
- Тепловая мощность, МВт 2
- Design pressure, MPa 0,6
- Test pressure, MPa 0,9
- Максимальная температура теплоносителя, °С 105
- Внутренняя площадь нагрева, м2 46
- Внутренний объём котла, м3 2,7
- Объём топки, м3 2,375
15 046 359 ₸
- Тепловая мощность, МВт 3
- Design pressure, MPa 0,6
- Test pressure, MPa 0,9
- Максимальная температура теплоносителя, °С 105
- Внутренняя площадь нагрева, м2 85
- Внутренний объём котла, м3 2,7
- Объём топки, м3 1,828
6 090 812 ₸
- Steam generators PG-500 are not subject to registration with Rostekhnazor, because operating pressure of the steam generator is less than 0.07 MPa. 500
- DF consumption (no more), kg/h (l/h) 32 (39)
- Gas consumption (no more), nm3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 41
- Thermal power of the steam generator, MW (GCal) 0,35(0,3)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 0,39
- Operating pressure, MPa 0,05
9 105 767 ₸
- Steam generators PG-500 are not subject to registration with Rostekhnazor, because operating pressure of the steam generator is less than 0.07 MPa. 500
- DF consumption (no more), kg/h (l/h) 32 (39)
- Gas consumption (no more), nm3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 41
- Thermal power of the steam generator, MW (GCal) 0,35(0,3)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 0,39
- Operating pressure, MPa 0,05
17 051 999 ₸
- Thermal power, kW 600
- Outlet air flow up to, m3/hour 10000-28000
- Air pressure at the outlet of the DVT, no more than, Pa 900-1300
- Air heating delta, °C 70
- Maximum outlet air temperature, °C 110
- Time to reach operating mode, no more, min 7
- Gas pressure for heat generator, mbar индивидуально,
20 099 434 ₸
- Thermal power, kW 600
- Outlet air flow up to, m3/hour (taking into account air expansion at maximum heating delta) 12800
- Fan air flow, m3/hour 6800
- Air heating delta, °C 210
- Air pressure at the outlet of the DVT, no more than, Pa 11500
- Maximum outlet air temperature, °C 170
- Time to reach operating mode, no more, min 7
25 573 126 ₸
- Thermal power, kW 600
- Outlet air flow up to, m3/hour (taking into account air expansion at maximum heating delta) 12800
- Fan air flow, m3/hour 6800
- Air heating delta, °C 210
- Air pressure at the outlet of the DVT, no more than, Pa 11500
- Maximum outlet air temperature, °C 170
- Time to reach operating mode, no more, min 7
22 525 690 ₸
- Thermal power, kW 600
- Outlet air flow up to, m3/hour 10000-28000
- Air pressure at the outlet of the DVT, no more than, Pa 900-1300
- Air heating delta, °C 70
- Maximum outlet air temperature, °C 110
- Time to reach operating mode, no more, min 7
- Gas pressure for heat generator, mbar individually
25 293 132 ₸
- Thermal power, kW 800
- Outlet air flow up to, m3/hour (taking into account air expansion at maximum heating delta) 16500
- Fan air flow, m3/hour 9,000
- Air heating delta, °C 210
- Air pressure at the outlet of the DVT, no more than, Pa 11500
- Maximum outlet air temperature, °C 170
- Time to reach operating mode, no more, min 7
23 694 564 ₸
- Thermal power, kW 800
- Outlet air flow up to, m3//час 50000-76000
- Air pressure at the outlet of the DVT, no more than, Pa 2,000
- Air heating delta, °C 40
- Maximum outlet air temperature, °C 80
- Time to reach operating mode, no more, min 7
- Gas pressure for heat generator, mbar individually
26 389 998 ₸
- Thermal power, kW 1,000
- Outlet air flow up to, m3/hour 7500-24500
- Air pressure at the outlet of the DVT, no more than, Pa 1280-1800
- Air heating delta, °C 110
- Maximum outlet air temperature, °C 120
- Time to reach operating mode, no more, min 7
- Gas pressure for heat generator, mbar индивидуально,
29 950 817 ₸
- Thermal power, kW 2х600
- Температура воздуха на выходе из ТГВ, °C 120 (+/-10)
- Применяемое топливо (в зависимости от горелки) газ/дизель
- Расход дизеля, не более, кг/ч 60-120
- Расход газа, не более, нм3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 60-150
- Площадь выходного сечения, м2 2
- Time to reach operating mode, no more, min 7
8 678 655 ₸
- Steam generators PG-500 are not subject to registration with Rostekhnazor, because operating pressure of the steam generator is less than 0.07 MPa. 1,000
- DF consumption (no more), kg/h (l/h) 69 (83)
- Gas consumption (no more), nm3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 88
- Thermal power of the steam generator, MW (GCal) 0,74(0,64)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 0,83
- Operating pressure, MPa 0,05
13 105 679 ₸
- Steam production max, kg h 1,000
- DF consumption (no more), kg/h (l/h) 69 (83)
- Gas consumption (no more), nm3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 88
- Thermal power of the steam generator, MW (GCal) 0,74(0,64)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 0,83
- Operating pressure, MPa 0,05
11 326 587 ₸
- Steam generators PG-500 are not subject to registration with Rostekhnazor, because operating pressure of the steam generator is less than 0.07 MPa. 1,500
- DF consumption (no more), kg/h (l/h) 103 (125)
- Gas consumption (no more), nm3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 132
- Thermal power of the steam generator, MW (GCal) 1,12(0,96)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 1,24
- Operating pressure, MPa 0,05
16 597 279 ₸
- Steam production max, kg h 1,500
- DF consumption (no more), kg/h (l/h) 103 (125)
- Gas consumption (no more), nm3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 132
- Thermal power of the steam generator, MW (GCal) 1,12(0,96)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 1,24
- Operating pressure, MPa 0,05
12 478 815 ₸
- Steam production max, kg h 2,000
- DF consumption (no more), kg/h (l/h) 138 (166)
- Gas consumption (no more), nm3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 176
- Thermal power of the steam generator, MW (GCal) 1,49(1,28)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 1,66
- Operating pressure, MPa 0,05
32 479 998 ₸
- Thermal power, kW 1,000
- Outlet air flow up to, m3/hour (taking into account air expansion at maximum heating delta) 20,000
- Fan air flow, m3/hour 10,000
- Air heating delta, °C 210
- Air pressure at the outlet of the DVT, no more than, Pa 11500
- Maximum outlet air temperature, °C 170
- Time to reach operating mode, no more, min 7
8 681 903 ₸
- Nominal steam output, kg/h 100
- DF consumption (no more), kg/h 7
- Gas consumption (no more), nm.3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 9
- Thermal power of the steam generator, MW (GCal) 0,08 (0,07)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 0,08
- Operating pressure, MPa 0,9
12 860 455 ₸
- Nominal steam output, kg/h 150
- DF consumption (no more), kg/h 11
- Gas consumption (no more), nm.3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 9
- Thermal power of the steam generator, MW (GCal) 0,13 (0,11)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 0,13
- Operating pressure, MPa 0,9
16 369 107 ₸
- Nominal steam output, kg/h 150
- DF consumption (no more), kg/h 11
- Gas consumption (no more), nm.3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 9
- Thermal power of the steam generator, MW (GCal) 0,114 (0,1)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 0,13
- Operating pressure, MPa 0,9
15 257 479 ₸
- Steam production max, kg h 500
- DF consumption (no more), kg/h (l/h) 35 (43)
- Gas consumption (no more), nm.3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 45
- Thermal power of the steam generator, MW (GCal) 0,38(0,33)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 0,43
- Operating pressure, MPa 0,6
23 290 594 ₸
- Steam production max, kg h 500
- DF consumption (no more), kg/h (l/h) 35 (43)
- Gas consumption (no more), nm.3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 45
- Thermal power of the steam generator, MW (GCal) 0,38(0,33)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 0,43
- Operating pressure, MPa 0,6
20 590 694 ₸
- Steam production max, kg h 500
- DF consumption (no more), kg/h (l/h) 36 (43)
- Gas consumption (no more), nm.3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 45
- Thermal power of the steam generator, MW (GCal) 0,39 (0,33)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 0,43
- Operating pressure, MPa 1,3
30 362 302 ₸
- Steam production max, kg h 500
- DF consumption (no more), kg/h (l/h) 36 (43)
- Gas consumption (no more), nm.3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 45
- Thermal power of the steam generator, MW (GCal) 0,39 (0,33)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 0,43
- Operating pressure, MPa 1,3
17 051 999 ₸
- Steam production max, kg h 1,000
- DF consumption (no more), kg/h (l/h) 71 (85)
- Gas consumption (no more), nm.3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 90
- Thermal power of the steam generator, MW (GCal) 0,76(0,66)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 0,85
- Operating pressure, MPa 0,6
28 221 058 ₸
- Steam production max, kg h 1,000
- DF consumption (no more), kg/h (l/h) 71 (85)
- Gas consumption (no more), nm.3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 90
- Thermal power of the steam generator, MW (GCal) 0,76(0,66)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 0,85
- Operating pressure, MPa 0,6
24 712 406 ₸
- Steam production max, kg h 1,000
- DF consumption (no more), kg/h (l/h) 71 (86)
- Gas consumption (no more), nm.3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 91
- Thermal power of the steam generator, MW (GCal) 0,77(0,66)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 0,86
- Operating pressure, MPa 1,3
34 147 033 ₸
- Steam production max, kg h 1,000
- DF consumption (no more), kg/h (l/h) 71 (86)
- Gas consumption (no more), nm.3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 91
- Thermal power of the steam generator, MW (GCal) 0,77(0,66)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 0,86
- Operating pressure, MPa 1,3
23 493 594 ₸
- Steam production max, kg h 1,500
- DF consumption (no more), kg/h (l/h) 106 (128)
- Gas consumption (no more), nm.cub/h 135
- Thermal power of the steam generator, MW (GCal) 1,14(0,98)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 1,27
- Operating pressure, MPa 0,6
34 106 433 ₸
- Steam production max, kg h 1,500
- DF consumption (no more), kg/h (l/h) 106 (128)
- Gas consumption (no more), nm.3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 135
- Thermal power of the steam generator, MW (GCal) 1,14(0,98)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 1,27
- Operating pressure, MPa 0,6
28 456 538 ₸
- Steam production max, kg h 1,500
- DF consumption (no more), kg/h (l/h) 107 (129)
- Gas consumption (no more), nm.3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 136
- Thermal power of the steam generator, MW (GCal) 1,15(0,99)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 1,29
- Operating pressure, MPa 1,3
37 952 877 ₸
- Steam production max, kg h 1,500
- DF consumption (no more), kg/h (l/h) 107 (129)
- Gas consumption (no more), nm.3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 136
- Thermal power of the steam generator, MW (GCal) 1,15(0,99)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 1,29
- Operating pressure, MPa 1,3
25 987 246 ₸
- Steam production max, kg h 2,000
- DF consumption (no more), kg/h (l/h) 141 (170)
- Gas consumption (no more), nm.3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 180
- Thermal power of the steam generator, MW (GCal) 1,52(1,31)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 1,69
- Operating pressure, MPa 0,6
36 097 457 ₸
- Steam output, kg/h 2,000
- DF consumption (no more), kg/h (l/h) 141 (170)
- Gas consumption (no more), nm.3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 180
- Thermal power of the steam generator, MW (GCal) 1,52(1,31)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 1,69
- Operating pressure, MPa 0,6
29 870 230 ₸
- Steam production max, kg h 2,000
- DF consumption (no more), kg/h (l/h) 143 (172)
- Gas consumption (no more), nm.3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 182
- Thermal power of the steam generator, MW (GCal) 1,54(1,32)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 1,71
- Operating pressure, MPa 1,3
39 304 857 ₸
- Steam production max, kg h 2,000
- DF consumption (no more), kg/h (l/h) 143 (172)
- Gas consumption (no more), nm.3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 182
- Thermal power of the steam generator, MW (GCal) 1,54(1,32)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 1,71
- Operating pressure, MPa 1,3
17 501 035 ₸
- Steam production max, kg h 2,000
- DF consumption (no more), kg/h (l/h) 138 (166)
- Gas consumption (no more), nm3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 176
- Thermal power of the steam generator, MW (GCal) 1,49(1,28)
- Diesel burner Baltur 90
- Thermal power of the burner, MW 1,66
- Operating pressure, MPa 0,05
10 469 115 ₸
- Reject hopper capacity (at a density of 1.8 t/m³), m³ (t) 0,21
- Тепловая мощность, МВт 0,25
- Температура воды не выше, °С 95
- Тепловая мощность горелки, не менее, МВт 0,278
- Расход по дизельному топливу, кг/ч 23
- Расход по дизельному топливу, л/час 28
- Methane consumption, nm3/hour 30
14 294 447 ₸
- Reject hopper capacity (at a density of 1.8 t/m³), m³ (t) 0,21
- Тепловая мощность, МВт 0,25
- Температура воды не выше, °С 95
- Тепловая мощность горелки, не менее, МВт 0,278
- Расход по дизельному топливу, кг/час 23
- Расход по дизельному топливу, л/ч 28
- Methane consumption, nm3/hour 30
52 222 152 ₸
- Тепловая мощность, МВт (Гкал) 0,2 (0,17)
- Coolant temperature on the boiler circuit, °C +105/+90
- Coolant temperature on the external heating circuit, °C +95/+70
- Coolant volume, l (no more, taking into account expansion tanks) 1,000
- Производительность ГВС (+5/+65) 0,03 ГКал, м3/час 0,5
- Fuel consumption for gas equipment, nm.cub./hour 24
- Fuel consumption for diesel equipment, kg/hour 19
52 822 220 ₸
- Тепловая мощность, МВт (Гкал) 0,5 (0,43)
- Coolant temperature on the boiler circuit, °C +105/+90
- Coolant temperature on the external heating circuit, °C +95/+70
- Coolant volume, l (no more, taking into account expansion tanks) 1,000
- Fuel consumption for gas equipment, nm.cub./hour 59
- Fuel consumption for diesel equipment, kg/hour 56
- Reaching operating mode, min. 30
59 382 367 ₸
- Тепловая мощность, МВт (Гкал) 0,5 (0,43)
- DHW capacity (+5/+65), m3/hour 1,3
- Coolant temperature on the boiler circuit, °C +105/+90
- Coolant temperature on the external heating circuit, °C +95/+70
- Coolant volume, l (no more, taking into account expansion tanks) 1,000
- Fuel consumption for gas equipment, nm.cub./hour 59
- Fuel consumption for diesel equipment, kg/hour 56
68 207 995 ₸
- Тепловая мощность, МВт (Гкал 1 (0,86)
- Coolant temperature on the boiler circuit, °C +105/+90
- Coolant temperature on the external heating circuit, °C +95/+70
- Coolant volume, l (no more, taking into account expansion tanks) 2,000
- Fuel consumption for gas equipment, nm.cub./hour 118
- Fuel consumption for diesel equipment, kg/hour 93
- Reaching operating mode, min. 60
81 835 790 ₸
- Total thermal power, MW (Gcal) 1 (0,86)
- DHW capacity (+5/+65), m3/hour 2,6
- Coolant temperature on the boiler circuit, °C +105/+90
- Coolant temperature on the external heating circuit, °C +95/+70
- Coolant volume, l (no more, taking into account expansion tanks) 2,000
- Fuel consumption for gas equipment, nm.cub./hour 118
- Fuel consumption for diesel equipment, kg/hour 93
82 318 930 ₸
- Тепловая мощность, МВт (Гкал 1,4 (1,2)
- Coolant temperature on the boiler circuit, °C +105/+90
- Coolant temperature on the external heating circuit, °C +95/+70
- Coolant volume, l (no more, taking into account expansion tanks) 6,000
- Fuel consumption for gas equipment, nm.cub./hour 177
- Fuel consumption for diesel equipment, kg/hour 139
- Reaching operating mode, min. 60
97 554 485 ₸
- Total thermal power, MW (Gcal) 1,4 (1,2)
- DHW capacity (+5/+65), m3/hour 4,0
- Coolant temperature on the boiler circuit, °C +105/+90
- Coolant temperature on the external heating circuit, °C +95/+70
- Coolant volume, l (no more, taking into account expansion tanks) 6,000
- Fuel consumption for gas equipment, nm.cub./hour 177
- Fuel consumption for diesel equipment, kg/hour 139
101 744 404 ₸
- Тепловая мощность, МВт (Гкал 2 (1,72)
- Coolant temperature on the boiler circuit, °C +105/+90
- Coolant temperature on the external heating circuit, °C +95/+70
- Coolant volume, l (no more, taking into account expansion tanks) 6,000
- Fuel consumption for gas equipment, nm.cub./hour 236
- Fuel consumption for diesel equipment, kg/hour 185
- Reaching operating mode, min. 60
124 053 291 ₸
- Total thermal power, MW (Gcal) 2 (1,72)
- DHW capacity (+5/+65), m3/hour 5,3
- Coolant temperature on the boiler circuit, °C +105/+90
- Coolant temperature on the external heating circuit, °C +95/+70
- Coolant volume, l (no more, taking into account expansion tanks) 6,000
- Fuel consumption for gas equipment, nm.cub./hour 236
- Fuel consumption for diesel equipment, kg/hour 185
134 182 178 ₸
- Тепловая мощность, МВт (Гкал 3 (2,58)
- Coolant temperature on the boiler circuit, °C +105/+90
- Coolant temperature on the external heating circuit, °C +95/+70
- Coolant volume, l (no more, taking into account expansion tanks) 6,400
- Fuel consumption for gas equipment, nm.cub./hour 355
- Fuel consumption for diesel equipment, kg/hour 335
- Reaching operating mode, min. 60
172 061 975 ₸
- Total thermal power, MW (Gcal) 3 (2,58)
- DHW capacity (+5/+65), m3/hour 7,9
- Coolant temperature on the boiler circuit, °C +105/+90
- Coolant temperature on the external heating circuit, °C +95/+70
- Coolant volume, l (no more, taking into account expansion tanks) 6,400
- Fuel consumption for gas equipment, nm.cub./hour 355
- Fuel consumption for diesel equipment, kg/hour 335
163 696 752 ₸
- Тепловая мощность, МВт (Гкал 4 (3,44)
- Coolant temperature on the boiler circuit, °C +105/+90
- Coolant temperature on the external heating circuit, °C +95/+70
- Coolant volume, l (no more, taking into account expansion tanks) 12000
- Fuel consumption for gas equipment, nm.cub./hour 473
- Fuel consumption for diesel equipment, kg/hour 371
- Reaching operating mode, min. 60
212 022 116 ₸
- Total thermal power, MW (Gcal) 4 (3,44)
- DHW capacity (+5/+65), m3/hour 10,6
- Coolant temperature on the boiler circuit, °C +105/+90
- Coolant temperature on the external heating circuit, °C +95/+70
- Coolant volume, l (no more, taking into account expansion tanks) 12000
- Fuel consumption for gas equipment, nm.cub./hour 473
- Fuel consumption for diesel equipment, kg/hour 371
11 801 607 ₸
- Reject hopper capacity (at a density of 1.8 t/m³), m³ (t) 0Boiler water volume, m
- Тепловая мощность, МВт 0,5
- Температура воды не выше, °С 95
- Тепловая мощность горелки, не менее, МВт 0,556
- Расход по дизельному топливу, кг/час 46
- Расход по дизельному топливу, л/ч 56
- Methane consumption, nm3/hour 59
16 490 095 ₸
- Reject hopper capacity (at a density of 1.8 t/m³), m³ (t) 0Boiler water volume, m
- Тепловая мощность, МВт 0,5
- Температура воды не выше, °С 95
- Тепловая мощность горелки, не менее, МВт 0,556
- Расход по дизельному топливу, кг/час 46
- Расход по дизельному топливу, л/ч 56
- Methane consumption, nm3/hour 59
13 794 255 ₸
- Reject hopper capacity (at a density of 1.8 t/m³), m³ (t) 0,6
- Тепловая мощность, МВт 0,7
- Температура воды не выше, °С 95
- Тепловая мощность горелки, не менее, МВт 0,778
- Расход по дизельному топливу, кг/час 65
- Расход по дизельному топливу, л/ч 78
- Methane consumption, nm3/hour 83
18 216 407 ₸
- Reject hopper capacity (at a density of 1.8 t/m³), m³ (t) 0,6
- Тепловая мощность, МВт 0,7
- Температура воды не выше, °С 95
- Тепловая мощность горелки, не менее, МВт 0,778
- Расход по дизельному топливу, кг/час 65
- Расход по дизельному топливу, л/ч 78
- Methane consumption, nm3/hour 83
19 284 999 ₸
- Reject hopper capacity (at a density of 1.8 t/m³), m³ (t) 0,86
- Тепловая мощность, МВт 23 866 $
- Температура воды не выше, °С 95
- Тепловая мощность горелки, не менее, МВт 1,11
- Расход по дизельному топливу, кг/час 93
- Расход по дизельному топливу, л/ч 112
- Methane consumption, nm3/hour 118
26 389 998 ₸
- Reject hopper capacity (at a density of 1.8 t/m³), m³ (t) 0,86
- Тепловая мощность, МВт 23 866 $
- Температура воды не выше, °С 95
- Тепловая мощность горелки, не менее, МВт 1,11
- Расход по дизельному топливу, кг/час 93
- Расход по дизельному топливу, л/ч 112
- Methane consumption, nm3/hour 118
10 655 063 ₸
- Thermal system, Gcal/time, MW/time 0,15(0,174)
- Efficiency, % not less 90
- The area of the heat exchanger, m2 12
- The volume of the coolant, m3 0,2
- Installed power, kW 4
- Power Power 3F, V/Hz Reject hopper capacity (at a density of 1.8 t/m³), m³ (t)
- Oil heating mode, feed/return, ° C 300/250
12 275 815 ₸
- Thermal system, Gcal/time, MW/time 0,3(0,348)
- Efficiency, % not less 90
- The area of the heat exchanger, m2 16
- The volume of the coolant, m3 0,35
- Installed power, kW 8.5
- Power Power 3F, V/Hz Reject hopper capacity (at a density of 1.8 t/m³), m³ (t)
- Oil heating mode, feed/return, ° C 300/250
14 761 347 ₸
- Thermal system, Gcal/time, MW/time 0,46(0,54)
- Efficiency, % not less 90
- The area of the heat exchanger, m2 20
- The volume of the coolant, m3 0,4
- Installed power, kW 9
- Power Power 3F, V/Hz Reject hopper capacity (at a density of 1.8 t/m³), m³ (t)
- Oil heating mode, feed/return, ° C 300/250
16 236 751 ₸
- Thermal system, Gcal/time, MW/time 0,65(0,735)
- Efficiency, % not less 90
- The area of the heat exchanger, m2 20
- The volume of the coolant, m3 0,4
- Installed power, kW 9
- Power Power 3F, V/Hz Reject hopper capacity (at a density of 1.8 t/m³), m³ (t)
- Oil heating mode, feed/return, ° C 300/250
22 880 534 ₸
- Thermal system, Gcal/time, MW/time 1,0 (1,16)
- Efficiency, % not less 90
- The area of the heat exchanger, m2 42
- The volume of the coolant, m3 0,8
- Installed power, kW 15
- Power Power 3F, V/Hz Reject hopper capacity (at a density of 1.8 t/m³), m³ (t)
- Oil heating mode, feed/return, ° C 300/250
31 281 965 ₸
- Thermal system, Gcal/time, (MW/time) 1,5(1,74)
- Efficiency, % not less 90
- The area of the heat exchanger, m2 60
- The volume of the coolant, m3 1,5
- Installed power, kW 25
- Power Power 3F, V/Hz Reject hopper capacity (at a density of 1.8 t/m³), m³ (t)
- Oil heating mode, feed/return, ° C 300/250
41 262 589 ₸
- Thermal system, Gcal/time, MW/time 2,0(2,32)
- Efficiency, % not less 90
- The area of the heat exchanger, m2 110
- The volume of the coolant, m3 2,5
- Installed power, kW 36
- Power Power 3F, V/Hz Reject hopper capacity (at a density of 1.8 t/m³), m³ (t)
- Oil heating mode, feed/return, ° C 300/250
5 113 164 ₸
- Thermal system, Gcal/time, MW/time 0,03(0,035)
- Efficiency, % not less 99
- The volume of the coolant, m3 0,2
- Installed power, kW 44
- Power Power 3F, V/Hz Reject hopper capacity (at a density of 1.8 t/m³), m³ (t)
- Oil heating mode, feed/return, ° C 300/280
- Time to exit to mode, min 30
10 970 931 ₸
- Thermal system, Gcal/time, MW/time 0,1(0,116)
- Efficiency, % not less 99
- The volume of the coolant, m3 0,8
- Installed power, kW 120
- Power Power 3F, V/Hz Reject hopper capacity (at a density of 1.8 t/m³), m³ (t)
- Oil heating mode, feed/return, ° C 200/190
- Time to exit to mode, min 30
2 009 700 ₸
- A type stationary, horizontal
- Useful capacity, m3 4
- Pressure for filling
- Minimum wall temperature under design pressure, TheWith; minus 20
- Design wall temperature, TheWith; plus 150
- Insulation thickness, mm 50
- Climatic version U-4
3 248 812 ₸
- A type stationary, horizontal
- Useful capacity, m3 6
- Pressure for filling
- Material of manufacture Article 3
- Maximum temperature °C plus 65
- Insulation thickness, mm 80
- Climatic version U-1
6 098 120 ₸
- A type stationary, horizontal
- Useful capacity, m3 15
- Pressure for filling
- Minimum wall temperature under design pressure, TheWith; minus 20
- Design wall temperature, TheWith; plus 150
- Insulation thickness, mm 100
- Climatic version U-1
7 220 303 ₸
- A type stationary, horizontal
- Useful capacity, m3 25
- Pressure for filling
- Minimum wall temperature under design pressure, TheWith; minus 20
- Design wall temperature, TheWith; plus 150
- Insulation thickness, mm 100
- Climatic version U-1
331 296 ₸
- Useful capacity, m3 0,6
- Design pressure, MPa, no more for filling, 0.05
- Material of manufacture Art. 3 bedroom
- Tank weight, kg 190
- Length, mm 2126
- Width, mm 300
- Height, mm 1370
464 464 ₸
- Useful capacity, m3 1
- Design pressure, MPa, no more for filling, 0.05
- Material of manufacture Art. 3 bedroom
- Tank weight, kg 270
- Length, mm 2070
- Width, mm 400
- Height, mm High capacity silos
1 890 336 ₸
- Useful capacity, m3 5
- Design pressure, MPa, no more под налив, 0,02
- Material of manufacture Art. 3 bedroom
- Tank weight, kg 560
- Length, mm 2750
- Width, mm 1860
- Height, mm 2400
2 604 896 ₸
- Useful capacity, m3 7
- Design pressure, MPa, no more под налив, 0,02
- Material of manufacture Art. 3 bedroom
- Tank weight, kg 750
- Length, mm 3500
- Width, mm 1860
- Height, mm 2400
3 878 112 ₸
- Useful capacity, m3 10
- Расчетное давление for filling
- Climatic version U-1
- Tank weight, kg 1800
- Length, mm 3353
- Width, mm 2576
- Height, mm 3843
5 144 832 ₸
- Useful capacity, m3 25
- Расчетное давление for filling
- Climatic version U-1
- Tank weight, kg 2750
- Length, mm 7151
- Width, mm 2607
- Height, mm 3483
653 660 ₸
- Объём бака, м3 0,4
- Расчётное давление под налив (0,01МПа)
- Расчётная температура стенки, °С +300
- Tank weight, kg 180
- Length, mm 1525
- Width, mm 678
- Height, mm 1280
807 128 ₸
- Объём бака, м3 1
- Расчётное давление под налив (0,01МПа)
- Расчётная температура стенки, °С +300
- Tank weight, kg 260
- Length, mm 2010
- Width, mm 800
- Height, mm 1408
960 596 ₸
- Объём бака, м3 1,5
- Расчётное давление под налив (0,01МПа)
- Расчётная температура стенки, °С +300
- Tank weight, kg 316
- Length, mm 2708
- Width, mm 800
- Height, mm 1408
1 076 712 ₸
- Объём бака, м3 2
- Расчётное давление под налив (0,01МПа)
- Расчётная температура стенки, °С +300
- Tank weight, kg 375
- Length, mm 2215
- Width, mm 1018
- Height, mm 1796
1 267 532 ₸
- Объём бака, м3 3
- Расчётное давление под налив (0,01МПа)
- Расчётная температура стенки, °С +300
- Tank weight, kg 480
- Length, mm 2950
- Width, mm 1018
- Height, mm 1800
405 188 ₸
- Maximum operating pressure, mbar 360
- Outlet pressure range, mbar 4 – 20
- Operating ambient temperature, °C -15 ÷ +70
- Type of gas natural, liquefied
- Electrical equipment protection degree IP54
- Solenoid valve class class A, group 2
- Pressure stabilizer class class A, group 2
532 672 ₸
- Maximum operating pressure, mbar 360
- Outlet pressure range, mbar 4 – 20
- Operating ambient temperature, °C -15 ÷ +70
- Type of gas natural, liquefied
- Electrical equipment protection degree IP54
- Solenoid valve class class A, group 2
- Pressure stabilizer class class A, group 2
705 628 ₸
- Maximum operating pressure, mbar 360
- Outlet pressure range, mbar 4 – 20
- Operating ambient temperature, °C -15 ÷ +70
- Type of gas natural, liquefied
- Electrical equipment protection degree IP54
- Solenoid valve class class A, group 2
- Pressure stabilizer class class A, group 2
873 712 ₸
- Maximum operating pressure, mbar 360
- Outlet pressure range, mbar 4 – 20
- Operating ambient temperature, °C -15 ÷ +70
- Type of gas natural, liquefied
- Electrical equipment protection degree IP54
- Solenoid valve class class A, group 2
- Pressure stabilizer class class A, group 2
1 031 240 ₸
- Maximum operating pressure, mbar 360
- Outlet pressure range, mbar 4 – 20
- Operating ambient temperature, °C -15 ÷ +70
- Type of gas natural, liquefied
- Electrical equipment protection degree IP54
- Solenoid valve class class A, group 2
- Pressure stabilizer class class A, group 2
1 077 524 ₸
- Maximum operating pressure, mbar 360
- Outlet pressure range, mbar 4 – 20
- Operating ambient temperature, °C -15 ÷ +70
- Type of gas natural, liquefied
- Electrical equipment protection degree IP54
- Solenoid valve class class A, group 2
- Pressure stabilizer class class A, group 2
1 333 304 ₸
- Maximum operating pressure, mbar 500
- Outlet pressure range, mbar 15 – 120
- Operating ambient temperature, °C -10 ÷ +60
- Type of gas natural, liquefied
- Electrical equipment protection degree IP54
- Control valve type single stage
- Minimum gas pressure switch B (AC) 24 – 250
643 916 ₸
- power, kWt 60,2÷118,0
- Power regulation Two-stage
- mode Intermittent (stop once every 24 hours)
- Maximum fuel viscosity, cSt 6
- Diesel fuel atomization Mechanical
- Power supply, Hz ~1/220V/50
- Electrical protection degree IP40
687 764 ₸
- power, kWt 83÷166
- Power regulation Two-stage
- mode Intermittent (stop once every 24 hours)
- Maximum fuel viscosity, cSt 6
- Diesel fuel atomization Mechanical
- Power supply, Hz ~1/220V/50
- Electrical protection degree IP40
687 764 ₸
- power, kWt 50÷160
- Power regulation Two-stage
- mode Intermittent (stop once every 24 hours)
- Nitrogen oxide emissions 2nd grade
- Noise level, dB(A) 68
- Connecting gas fittings above
- Power supply, Hz ~1/220V/50
763 280 ₸
- power, kWt 118,6÷261,0
- Power regulation Two-stage
- mode Intermittent (stop once every 24 hours)
- Maximum fuel viscosity, cSt 6
- Diesel fuel atomization Mechanical
- Power supply, Hz ~1/220V/50
- Electrical protection degree IP40
722 680 ₸
- power, kWt 60÷205
- Power regulation Two-stage
- mode Intermittent (stop once every 24 hours)
- Nitrogen oxide emissions 3rd grade
- Noise level, dB(A) 68
- Connecting gas fittings above
- Power supply, Hz ~1/220V/50
864 780 ₸
- power, kWt 190÷310
- Power regulation Two-stage
- mode Intermittent (stop once every 24 hours)
- Maximum fuel viscosity, cSt 6
- Diesel fuel atomization Mechanical
- Power supply, Hz ~1/220V/50
- Electrical protection degree IP40
907 816 ₸
- power, kWt 100÷280
- Power regulation Two-stage
- mode Intermittent (stop once every 24 hours)
- Nitrogen oxide emissions 3rd grade
- Noise level, dB(A) 68
- Connecting gas fittings above
- Power supply, Hz ~1/220V/50
1 287 020 ₸
- power, kWt 80÷410
- Power regulation Smooth two-stage
- mode Intermittent (stop once every 24 hours)
- Nitrogen oxide emissions 3rd grade
- Noise level, dB(A) 77
- Connecting gas fittings from below
- Power supply, Hz ~1/220V/50
1 053 164 ₸
- power, kWt 160÷450
- Power regulation Two-stage
- mode Intermittent (stop once every 24 hours)
- Maximum fuel viscosity, cSt 6
- Diesel fuel atomization Mechanical
- Power supply, Hz ~1/220V/50
- Electrical protection degree IP40
1 428 308 ₸
- power, kWt 100÷450
- Power regulation Two-stage
- mode Intermittent (stop once every 24 hours)
- Nitrogen oxide emissions 3rd grade
- Noise level, dB(A) 76
- Connecting gas fittings bottom/top
- Power supply, Hz ~3/380V/50
1 267 532 ₸
- power, kWt 250÷600
- Power regulation Two-stage
- mode Intermittent (stop once every 24 hours)
- Maximum fuel viscosity, cSt 6
- Diesel fuel atomization Mechanical
- Power supply, Hz ~3/380V/50 Hz
- Electrical protection degree IP40
1 801 016 ₸
- power, kWt 120÷600
- Power regulation Two-stage
- mode Intermittent (stop once every 24 hours)
- Nitrogen oxide emissions 3rd grade
- Noise level, dB(A) 76
- Connecting gas fittings bottom/top
- Power supply, Hz ~3/380V/50
1 663 788 ₸
- power, kWt 200÷850
- Power regulation Two-stage
- mode Intermittent (stop once every 24 hours)
- Maximum fuel viscosity, cSt 6
- Diesel fuel atomization Mechanical
- Power supply, Hz ~3/380V/50 Hz
- Electrical protection degree IP40
1 953 672 ₸
- power, kWt 130÷850
- Power regulation Two-stage
- mode Intermittent (stop once every 24 hours)
- Nitrogen oxide emissions 2nd grade
- Noise level, dB(A) 73
- Connecting gas fittings bottom/top
- Power supply, Hz ~3/380V/50
2 305 268 ₸
- power, kWt 285÷1100
- Power regulation Two-stage
- mode Intermittent (stop once every 24 hours)
- Maximum fuel viscosity, cSt 6
- Diesel fuel atomization Mechanical
- Power supply, Hz ~3/380V/50 Hz
- Electrical protection degree IP40
3 069 360 ₸
- power, kWt 150÷1200
- Power regulation Smooth two-stage
- mode Intermittent (stop once every 24 hours)
- Nitrogen oxide emissions 2nd grade
- Noise level, dB(A) 75,5
- Connecting gas fittings from below
- Power supply, Hz ~3/380V/50
2 648 744 ₸
- power, kWt 400÷1300
- Power regulation Two-stage
- mode Intermittent (stop once every 24 hours)
- Maximum fuel viscosity, cSt 6
- Diesel fuel atomization Mechanical
- Power supply, Hz ~3/380V/50
- Electrical protection degree IP40
3 235 008 ₸
- power, kWt 170÷1500
- Power regulation Smooth two-stage
- mode Intermittent (stop once every 24 hours)
- Nitrogen oxide emissions 2nd grade
- Noise level, dB(A) 79
- Connecting gas fittings from below
- Power supply, Hz ~3/380V/50
3 442 880 ₸
- power, kWt 140÷1500
- Power regulation Modulation
- Regulation of the gas-air mixture Mechanical
- Modulation depth 1:4
- mode Intermittent (stop once every 24 hours)
- Nitrogen oxide emissions 2nd grade
- Noise level, dB(A) 79
2 670 668 ₸
- power, kWt 510÷1600
- Power regulation Two-stage
- mode Intermittent (stop once every 24 hours)
- Maximum fuel viscosity, cSt 6
- Diesel fuel atomization Mechanical
- Power supply, Hz ~3/380V/50
- Electrical protection degree IP40
3 638 572 ₸
- power, kWt 210÷2100
- Power regulation smooth two-stage
- mode Intermittent (stop once every 24 hours)
- Nitrogen oxide emissions 2nd grade
- Noise level, dB(A) 85
- Connecting gas fittings from below
- Power supply, Hz ~3/380V/50
3 385 228 ₸
- power, kWt 800÷2100
- Power regulation Two-stage
- mode Intermittent (stop once every 24 hours)
- Maximum fuel viscosity, cSt 6
- Diesel fuel atomization Mechanical
- Power supply, Hz ~3/380V/50
- Electrical protection degree IP40
1 674 344 ₸
- Inlet gas pressure, kPa 2,5...36
- Natural gas consumption, nm3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 53
1 840 804 ₸
- Inlet gas pressure, kPa 6...36
- Natural gas consumption, nm3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 88
1 814 008 ₸
- Inlet gas pressure, kPa 4...36
- Natural gas consumption, nm3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 88
1 928 500 ₸
- Inlet gas pressure, kPa 8...36
- Natural gas consumption, nm3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 176
1 835 932 ₸
- Inlet gas pressure, kPa 6...36
- Natural gas consumption, nm3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 83
1 809 948 ₸
- Inlet gas pressure, kPa 4...36
- Natural gas consumption, nm3Productivity (at a flow rate in the cylindrical part of 2.5 m/s), m 83
1 454 412 ₸
- Gas inlet pressure
- Outlet gas pressure
3 225 264 ₸
- Комплект автоматизации подачи пара в регистры обогрева бункеров
75 875 ₸
- Сталь 20 ГОСТ 1050
- Покрытие грунт-эмалью серого цвета
- Резьбовые поверхности консервационная смазка
- Комплект гаек М24
641 480 ₸
- Высота, м. 6
- Климатическое исполнение по ГОСТ 15150 Block-modular boiler house
- Допустимый сейсмический район не более 6 баллов (МСК-64)
- Допустимый ветровой район не более 4 (0,48кПа, СП 20.13330.2016)
- Способ крепления анкерные болты М24х700 (поставка опционально)
694 260 ₸
- Height, m 6
- Климатическое исполнение по ГОСТ 15150 Block-modular boiler house
- Допустимый сейсмический район не более 6 баллов (МСК-64)
- Допустимый ветровой район не более 4 (0,48кПа, СП 20.13330.2016)
- Способ крепления анкерные болты М24х700 (поставка опционально)
754 348 ₸
- Height, m 6
- Климатическое исполнение по ГОСТ 15150 Block-modular boiler house
- Допустимый сейсмический район не более 6 баллов (МСК-64)
- Допустимый ветровой район не более 4 (0,48кПа, СП 20.13330.2016)
- Способ крепления анкерные болты М24х700 (поставка опционально)
765 716 ₸
- Height, m 8
- Климатическое исполнение по ГОСТ 15150 Block-modular boiler house
- Допустимый сейсмический район не более 6 баллов (МСК-64)
- Допустимый ветровой район не более 4 (0,48кПа, СП 20.13330.2016)
- Способ крепления анкерные болты М24х700 (поставка опционально)
855 848 ₸
- Height, m 8
- Климатическое исполнение по ГОСТ 15150 Block-modular boiler house
- Допустимый сейсмический район не более 6 баллов (МСК-64)
- Допустимый ветровой район не более 4 (0,48кПа, СП 20.13330.2016)
- Способ крепления анкерные болты М24х700 (поставка опционально)
907 816 ₸
- Height, m 8
- Климатическое исполнение по ГОСТ 15150 Block-modular boiler house
- Допустимый сейсмический район не более 6 баллов (МСК-64)
- Допустимый ветровой район не более 4 (0,48кПа, СП 20.13330.2016)
- Способ крепления анкерные болты М24х700 (поставка опционально)
889 952 ₸
- Height, m 10
- Климатическое исполнение по ГОСТ 15150 Block-modular boiler house
- Допустимый сейсмический район не более 6 баллов (МСК-64)
- Допустимый ветровой район не более 4 (0,48кПа, СП 20.13330.2016)
- Способ крепления анкерные болты М24х700 (поставка опционально)
972 776 ₸
- Height, m 10
- Климатическое исполнение по ГОСТ 15150 Block-modular boiler house
- Допустимый сейсмический район не более 6 баллов (МСК-64)
- Допустимый ветровой район не более 4 (0,48кПа, СП 20.13330.2016)
- Способ крепления анкерные болты М24х700 (поставка опционально)
1 039 360 ₸
- Height, m 10
- Климатическое исполнение по ГОСТ 15150 Block-modular boiler house
- Допустимый сейсмический район не более 6 баллов (МСК-64)
- Допустимый ветровой район не более 4 (0,48кПа, СП 20.13330.2016)
- Способ крепления анкерные болты М24х700 (поставка опционально)
1 492 456 ₸
- Height, m 12
- Климатическое исполнение по ГОСТ 15150 Block-modular boiler house
- Допустимый сейсмический район не более 6 баллов (МСК-64)
- Допустимый ветровой район не более 4 (0,48кПа, СП 20.13330.2016)
- Способ крепления анкерные болты М24х700 (поставка опционально)
1 589 896 ₸
- Height, m 12
- Климатическое исполнение по ГОСТ 15150 Block-modular boiler house
- Допустимый сейсмический район не более 6 баллов (МСК-64)
- Допустимый ветровой район не более 4 (0,48кПа, СП 20.13330.2016)
- Способ крепления анкерные болты М24х700 (поставка опционально)
1 683 276 ₸
- Height, m 12
- Климатическое исполнение по ГОСТ 15150 Block-modular boiler house
- Допустимый сейсмический район не более 6 баллов (МСК-64)
- Допустимый ветровой район не более 4 (0,48кПа, СП 20.13330.2016)
- Способ крепления анкерные болты М24х700 (поставка опционально)
990 640 ₸
- Производительность, м.куб/ч 1
- Развиваемое давление, МПа 0,5
- Высота самовсасывания до, м. 3
- Дистанция самовсасывания по горизонтали до, м. 5
- Потребляемая мощность не более, кВт 1
- Подключаемый диаметр Ду25
- Length, mm 1008
2 915 892 ₸
- Габаритная высота, м 7,4
- Высота по площадке, м 6,16
- Weight, kg 1640
- Габариты площадки, м 3,3 х 2,3
1 063 720 ₸
1 360 912 ₸
1 475 404 ₸
1 699 516 ₸
2 120 944 ₸
2 121 756 ₸
2 121 756 ₸
3 860 248 ₸
Heat centers ZZBO
For uninterrupted year-round operation of concrete plants
Круглогодичная безостановочная работа бетонного завода возможна при обеспечении тепловой энергией технологических процессов производства бетона в холодное зимнее время и соблюдения требований по температурному режиму для управляющей автоматики, нормально функционирующей только при плюсовой температуре. Не следует забывать и о человеческом факторе – замерзающий персонал не работоспособен. При подготовке к зимнему сезону бетонный завод «закутывается» в металлоконструкцию, обшитую съемной теплоизоляцией из сэндвич-панелей, и оснащается специализированной обогревающей системой.
Heated RBU system performs the following functions:
- heating of aggregates in bins dosing complexes, including the unfreezing of frozen lumps, removing excess moisture and heated to a temperature under the Regulations;
- hot water before being fed into the mixer;
- heating production area.
The structure of the concrete plant with a heating system includes:
- thermal centers provided a steam generator or heat generators;
- heat coolant delivery to the place of consumption;
- heating medium - steam or hot air.
Depending on the type of coolant, thermal centers produced by ZZBO are produced in a wide range:
- steam generator PG-500 (1000, 2000) with a capacity of 500 (1000, 2000) kg of steam per hour with a steam temperature of not lower than 120 degrees C. Thermal agent is heated steam;
- heat generator TGV-250 (600) with a thermal power of 250 (600) kW and a capacity of 4500 cubic meters. m of air per hour with an air temperature of at least 150 degrees. The heating agent is hot air.
При использовании парогенератора монтируется сеть трубопроводов и регистров для циркуляции парового теплоносителя, в случае теплогенератора монтируются короба для воздушного теплоносителя. Оба типа агрегатов оснащены горелками, сжигающими дизельное топливо.
Работа теплового центра только на жидком топливе имеет свои негативные стороны, поскольку не в каждом регионе солярка доступна плюс в зимнее время возникают затруднения с ее доставкой на объект. Нередко рядом с бетонным заводом проходит магистраль природного газа, который является прекрасным топливом. С учетом данных обстоятельств на ZZBO разработали парогенераторы и теплогенераторы с котлами нового образца, адаптированными под использование газовых горелок Baltur (Italy).
















