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焦化發電機組的適用場景解析

返回 2025.07.28 來源:http://m.hdlelisa.com 0

  焦化發電機組以焦化過程中產生的煤氣為燃料進行發電,既實現了能源的循環利用,又降低了污染物排放,其適用場景與焦化產業布局、能源需求特點密切相關,尤其在工業集中區、能源消耗大戶及環保要求嚴格的區域發揮著重要作用,成為銜接焦化生產與能源供應的關鍵設備。

  Coking power generation units use coal gas generated during the coking process as fuel for power generation, which not only achieves energy recycling but also reduces pollutant emissions. Their applicability is closely related to the layout of the coking industry and the characteristics of energy demand, especially in industrial concentration areas, energy consuming households, and areas with strict environmental protection requirements, playing an important role and becoming a key equipment connecting coking production and energy supply.

  焦化廠區內部是焦化發電機組的核心應用場景,能實現能源的高效循環利用。焦化生產過程中會產生大量焦爐煤氣(主要成分為氫氣、甲烷、一氧化碳),過去部分企業將其直接燃燒排放,不僅浪費能源,還污染環境。在廠區內配套發電機組,可將焦爐煤氣凈化處理后作為燃料驅動機組發電,滿足廠區自身用電需求(如焦爐加熱、水泵運轉、車間照明),剩余電力還可并入廠區電網供其他生產環節使用。這種 “產氣 - 發電 - 自用” 的模式,使焦爐煤氣利用率提升至 95% 以上,減少能源浪費的同時,降低企業外購電成本,單座中型焦化廠配套發電機組后,每年可節省電費數千萬元,且發電過程中產生的余熱可回收用于廠區供暖或工藝加熱,進一步提高能源綜合利用率。

  The interior of the coking plant is the core application scenario of coking power generation units, which can achieve efficient recycling of energy. During the coking production process, a large amount of coke oven gas (mainly composed of hydrogen, methane, and carbon monoxide) is produced. In the past, some companies directly burned and emitted it, which not only wasted energy but also polluted the environment. Supporting generator sets within the factory area can purify and treat coke oven gas, which can be used as fuel to drive the unit for power generation, meeting the factory's own electricity needs (such as coke oven heating, water pump operation, workshop lighting). The remaining electricity can also be integrated into the factory's power grid for use in other production processes. This "gas production power generation self use" model increases the utilization rate of coke oven gas to over 95%, reduces energy waste, and lowers the cost of purchasing electricity for enterprises. After a single medium-sized coking plant is equipped with a generator set, it can save tens of millions of yuan in electricity bills every year, and the waste heat generated during the power generation process can be recovered for plant heating or process heating, further improving the comprehensive energy utilization rate.

  工業園區內的集中供電系統適合引入焦化發電機組,為區域工業生產提供穩定電源。許多焦化廠位于綜合性工業園區內,周邊聚集著鋼鐵、化工、建材等高耗能企業,這些企業對電力需求大且用電穩定性要求高。將焦化發電機組與園區配電網連接,可作為園區的分布式電源,在電網供電緊張時補充電力缺口,在電價高峰時段替代外購電,降低園區整體用電成本。同時,焦化發電機組運行穩定,發電負荷可根據園區用電需求靈活調整(負荷調節范圍通常為 50%-100%),能快速響應用電波動,保障園區內連續性生產設備(如煉鋼爐、反應釜)的正常運行。此外,發電機組排放的尾氣經處理后可作為部分化工企業的原料(如生產合成氨),形成 “發電 - 尾氣利用” 的產業鏈,提升園區資源循環水平。

  The centralized power supply system in the industrial park is suitable for introducing coking generator units to provide stable power for regional industrial production. Many coking plants are located in comprehensive industrial parks, surrounded by high energy consuming enterprises such as steel, chemical, and building materials. These enterprises have a large demand for electricity and high requirements for electricity stability. Connecting the coking power generation unit to the distribution network of the park can serve as a distributed power source for the park, supplementing the power gap when the power grid is tight, replacing purchased electricity during peak electricity prices, and reducing the overall electricity cost of the park. At the same time, the coking power generation unit operates stably, and the power generation load can be flexibly adjusted according to the power demand of the park (the load adjustment range is usually 50% -100%), which can quickly respond to power fluctuations and ensure the normal operation of continuous production equipment (such as steelmaking furnaces and reactors) in the park. In addition, the exhaust gas emitted by the generator set can be treated and used as raw materials for some chemical enterprises (such as producing synthetic ammonia), forming an industrial chain of "power generation exhaust gas utilization" and improving the resource recycling level of the park.

base64_image

  鋼鐵聯合企業是焦化發電機組的重要應用對象,能實現多產業協同增效。鋼鐵生產中,焦化環節為高爐煉鐵提供焦炭,而煉鐵、煉鋼過程需要大量電力。在鋼鐵聯合企業內,焦化發電機組產生的電力可直接供應給煉鐵廠、煉鋼廠,減少企業對外部電網的依賴,尤其在電網故障或限電時,可作為應急電源保障關鍵生產環節不中斷。同時,鋼鐵企業對焦爐煤氣的需求量大且穩定,能保證發電機組滿負荷運行,提高發電效率(滿負荷時發電效率可達 35% 以上)。此外,發電機組的余熱可用于鋼鐵廠的熱水供應、蒸汽生產,滿足軋鋼等工序的熱力需求,形成 “焦化 - 發電 - 鋼鐵” 的能源閉環,大幅降低企業綜合能耗。

  Steel joint ventures are important application objects of coking power generation units, which can achieve multi industry synergy and efficiency improvement. In steel production, the coking process provides coke for blast furnace ironmaking, while the ironmaking and steelmaking processes require a large amount of electricity. In steel joint ventures, the electricity generated by coking power generation units can be directly supplied to ironworks and steelmaking plants, reducing the company's dependence on external power grids. Especially in the event of power grid failures or restrictions, it can serve as an emergency power source to ensure that key production processes are not interrupted. At the same time, steel companies have a large and stable demand for coke oven gas, which can ensure the full load operation of generator sets and improve power generation efficiency (the power generation efficiency can reach over 35% at full load). In addition, the waste heat from the generator set can be used for hot water supply and steam production in the steel plant, meeting the thermal needs of processes such as steel rolling, forming an energy loop of "coking power generation steel", and significantly reducing the comprehensive energy consumption of the enterprise.

  高耗能工業園區的熱電聯產項目中,焦化發電機組能兼顧電力與熱力供應。在化工、建材等產業集中的高耗能園區,企業不僅需要電力,還需大量蒸汽用于生產(如化工反應加熱、建材烘干)。焦化發電機組可采用熱電聯產模式,在發電的同時,通過余熱鍋爐回收煙氣中的熱量產生蒸汽,蒸汽通過園區熱力管網輸送至各企業,滿足其熱力需求。這種模式下,能源利用率可達 70% 以上,遠高于單純發電的效率,且能減少園區內分散鍋爐的數量,降低污染物排放總量。對于北方地區的工業園區,冬季還可利用余熱為園區內企業及周邊生活區供暖,實現 “電、熱、暖” 三聯供,提升能源綜合利用價值。

  In the cogeneration project of high energy consuming industrial parks, coking generator units can balance the supply of electricity and heat. In high energy consuming industrial parks with concentrated chemical and building materials industries, enterprises not only require electricity, but also a large amount of steam for production (such as chemical reaction heating and building material drying). Coking power generation units can adopt a combined heat and power generation mode. While generating electricity, the heat in the flue gas is recovered through a waste heat boiler to produce steam. The steam is transported to various enterprises through the park's thermal pipeline network to meet their thermal needs. In this mode, the energy utilization rate can reach over 70%, which is much higher than the efficiency of simple power generation, and can reduce the number of scattered boilers in the park and lower the total amount of pollutant emissions. For industrial parks in northern regions, waste heat can also be used to provide heating for enterprises and surrounding living areas in the park during winter, realizing the "electricity, heat, and heating" triple supply and enhancing the comprehensive utilization value of energy.

  本文由焦化發電機組友情奉獻.更多有關的知識請點擊:http://m.hdlelisa.com我們將會對您提出的疑問進行詳細的解答,歡迎您登錄網站留言.

  This article is a friendly contribution from a gas generator set For more information, please click: http://m.hdlelisa.com We will provide detailed answers to your questions. You are welcome to log in to our website and leave a message

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焦化發電機組的適用場景解析

  焦化發電機組以焦化過程中產生的煤氣為燃料進行發電,既實現了能源的循環利用,又降低了污染物排放,其適用場景與焦化產業布局、能源需求特點密切相關,尤其在工業集中區、能源消耗大戶及環保要求嚴格的區域發揮著重要作用,成為銜接焦化生產與能源供應的關鍵設備。

  Coking power generation units use coal gas generated during the coking process as fuel for power generation, which not only achieves energy recycling but also reduces pollutant emissions. Their applicability is closely related to the layout of the coking industry and the characteristics of energy demand, especially in industrial concentration areas, energy consuming households, and areas with strict environmental protection requirements, playing an important role and becoming a key equipment connecting coking production and energy supply.

  焦化廠區內部是焦化發電機組的核心應用場景,能實現能源的高效循環利用。焦化生產過程中會產生大量焦爐煤氣(主要成分為氫氣、甲烷、一氧化碳),過去部分企業將其直接燃燒排放,不僅浪費能源,還污染環境。在廠區內配套發電機組,可將焦爐煤氣凈化處理后作為燃料驅動機組發電,滿足廠區自身用電需求(如焦爐加熱、水泵運轉、車間照明),剩余電力還可并入廠區電網供其他生產環節使用。這種 “產氣 - 發電 - 自用” 的模式,使焦爐煤氣利用率提升至 95% 以上,減少能源浪費的同時,降低企業外購電成本,單座中型焦化廠配套發電機組后,每年可節省電費數千萬元,且發電過程中產生的余熱可回收用于廠區供暖或工藝加熱,進一步提高能源綜合利用率。

  The interior of the coking plant is the core application scenario of coking power generation units, which can achieve efficient recycling of energy. During the coking production process, a large amount of coke oven gas (mainly composed of hydrogen, methane, and carbon monoxide) is produced. In the past, some companies directly burned and emitted it, which not only wasted energy but also polluted the environment. Supporting generator sets within the factory area can purify and treat coke oven gas, which can be used as fuel to drive the unit for power generation, meeting the factory's own electricity needs (such as coke oven heating, water pump operation, workshop lighting). The remaining electricity can also be integrated into the factory's power grid for use in other production processes. This "gas production power generation self use" model increases the utilization rate of coke oven gas to over 95%, reduces energy waste, and lowers the cost of purchasing electricity for enterprises. After a single medium-sized coking plant is equipped with a generator set, it can save tens of millions of yuan in electricity bills every year, and the waste heat generated during the power generation process can be recovered for plant heating or process heating, further improving the comprehensive energy utilization rate.

  工業園區內的集中供電系統適合引入焦化發電機組,為區域工業生產提供穩定電源。許多焦化廠位于綜合性工業園區內,周邊聚集著鋼鐵、化工、建材等高耗能企業,這些企業對電力需求大且用電穩定性要求高。將焦化發電機組與園區配電網連接,可作為園區的分布式電源,在電網供電緊張時補充電力缺口,在電價高峰時段替代外購電,降低園區整體用電成本。同時,焦化發電機組運行穩定,發電負荷可根據園區用電需求靈活調整(負荷調節范圍通常為 50%-100%),能快速響應用電波動,保障園區內連續性生產設備(如煉鋼爐、反應釜)的正常運行。此外,發電機組排放的尾氣經處理后可作為部分化工企業的原料(如生產合成氨),形成 “發電 - 尾氣利用” 的產業鏈,提升園區資源循環水平。

  The centralized power supply system in the industrial park is suitable for introducing coking generator units to provide stable power for regional industrial production. Many coking plants are located in comprehensive industrial parks, surrounded by high energy consuming enterprises such as steel, chemical, and building materials. These enterprises have a large demand for electricity and high requirements for electricity stability. Connecting the coking power generation unit to the distribution network of the park can serve as a distributed power source for the park, supplementing the power gap when the power grid is tight, replacing purchased electricity during peak electricity prices, and reducing the overall electricity cost of the park. At the same time, the coking power generation unit operates stably, and the power generation load can be flexibly adjusted according to the power demand of the park (the load adjustment range is usually 50% -100%), which can quickly respond to power fluctuations and ensure the normal operation of continuous production equipment (such as steelmaking furnaces and reactors) in the park. In addition, the exhaust gas emitted by the generator set can be treated and used as raw materials for some chemical enterprises (such as producing synthetic ammonia), forming an industrial chain of "power generation exhaust gas utilization" and improving the resource recycling level of the park.

base64_image

  鋼鐵聯合企業是焦化發電機組的重要應用對象,能實現多產業協同增效。鋼鐵生產中,焦化環節為高爐煉鐵提供焦炭,而煉鐵、煉鋼過程需要大量電力。在鋼鐵聯合企業內,焦化發電機組產生的電力可直接供應給煉鐵廠、煉鋼廠,減少企業對外部電網的依賴,尤其在電網故障或限電時,可作為應急電源保障關鍵生產環節不中斷。同時,鋼鐵企業對焦爐煤氣的需求量大且穩定,能保證發電機組滿負荷運行,提高發電效率(滿負荷時發電效率可達 35% 以上)。此外,發電機組的余熱可用于鋼鐵廠的熱水供應、蒸汽生產,滿足軋鋼等工序的熱力需求,形成 “焦化 - 發電 - 鋼鐵” 的能源閉環,大幅降低企業綜合能耗。

  Steel joint ventures are important application objects of coking power generation units, which can achieve multi industry synergy and efficiency improvement. In steel production, the coking process provides coke for blast furnace ironmaking, while the ironmaking and steelmaking processes require a large amount of electricity. In steel joint ventures, the electricity generated by coking power generation units can be directly supplied to ironworks and steelmaking plants, reducing the company's dependence on external power grids. Especially in the event of power grid failures or restrictions, it can serve as an emergency power source to ensure that key production processes are not interrupted. At the same time, steel companies have a large and stable demand for coke oven gas, which can ensure the full load operation of generator sets and improve power generation efficiency (the power generation efficiency can reach over 35% at full load). In addition, the waste heat from the generator set can be used for hot water supply and steam production in the steel plant, meeting the thermal needs of processes such as steel rolling, forming an energy loop of "coking power generation steel", and significantly reducing the comprehensive energy consumption of the enterprise.

  高耗能工業園區的熱電聯產項目中,焦化發電機組能兼顧電力與熱力供應。在化工、建材等產業集中的高耗能園區,企業不僅需要電力,還需大量蒸汽用于生產(如化工反應加熱、建材烘干)。焦化發電機組可采用熱電聯產模式,在發電的同時,通過余熱鍋爐回收煙氣中的熱量產生蒸汽,蒸汽通過園區熱力管網輸送至各企業,滿足其熱力需求。這種模式下,能源利用率可達 70% 以上,遠高于單純發電的效率,且能減少園區內分散鍋爐的數量,降低污染物排放總量。對于北方地區的工業園區,冬季還可利用余熱為園區內企業及周邊生活區供暖,實現 “電、熱、暖” 三聯供,提升能源綜合利用價值。

  In the cogeneration project of high energy consuming industrial parks, coking generator units can balance the supply of electricity and heat. In high energy consuming industrial parks with concentrated chemical and building materials industries, enterprises not only require electricity, but also a large amount of steam for production (such as chemical reaction heating and building material drying). Coking power generation units can adopt a combined heat and power generation mode. While generating electricity, the heat in the flue gas is recovered through a waste heat boiler to produce steam. The steam is transported to various enterprises through the park's thermal pipeline network to meet their thermal needs. In this mode, the energy utilization rate can reach over 70%, which is much higher than the efficiency of simple power generation, and can reduce the number of scattered boilers in the park and lower the total amount of pollutant emissions. For industrial parks in northern regions, waste heat can also be used to provide heating for enterprises and surrounding living areas in the park during winter, realizing the "electricity, heat, and heating" triple supply and enhancing the comprehensive utilization value of energy.

  本文由焦化發電機組友情奉獻.更多有關的知識請點擊:http://m.hdlelisa.com我們將會對您提出的疑問進行詳細的解答,歡迎您登錄網站留言.

  This article is a friendly contribution from a gas generator set For more information, please click: http://m.hdlelisa.com We will provide detailed answers to your questions. You are welcome to log in to our website and leave a message

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