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環(huán)能瓦斯發(fā)電機(jī)組如何減少甲烷“逃逸”?

發(fā)布時(shí)間:2025-06-10 發(fā)布人:中拓 發(fā)布來(lái)源:http://m.asianelephant.cn/

  在能源轉(zhuǎn)型與碳中和目標(biāo)驅(qū)動(dòng)下,瓦斯發(fā)電技術(shù)因同時(shí)實(shí)現(xiàn)低濃度瓦斯利用與甲烷減排而備受關(guān)注。環(huán)能瓦斯發(fā)電機(jī)組通過(guò)多維度技術(shù)革新,構(gòu)建起從氣體預(yù)處理到燃燒優(yōu)化的全流程甲烷逃逸控制體系,為煤礦瓦斯綜合治理提供高效解決方案。

  Driven by energy transition and carbon neutrality goals, gas power generation technology has attracted much attention for achieving both low concentration gas utilization and methane emission reduction. Through multidimensional technological innovation, the Huanneng gas generator set has established a full process methane escape control system from gas pretreatment to combustion optimization, providing efficient solutions for comprehensive gas management in coal mines.

  預(yù)處理系統(tǒng)精準(zhǔn)調(diào)控

  Precision control of pre-processing system

  瓦斯氣體成分波動(dòng)是甲烷逃逸的源頭性風(fēng)險(xiǎn)。機(jī)組配置智能預(yù)處理單元,采用多級(jí)過(guò)濾與動(dòng)態(tài)配氣技術(shù):首先通過(guò)陶瓷纖維濾芯去除直徑大于1μm的顆粒物,避免雜質(zhì)影響燃燒穩(wěn)定性;隨后利用氣相色譜儀實(shí)時(shí)監(jiān)測(cè)甲烷濃度,與氮?dú)狻⒖諝獍幢壤旌希瑢⒓淄轶w積分?jǐn)?shù)精準(zhǔn)控制在8%-12%的最佳燃燒區(qū)間。某低濃度瓦斯發(fā)電項(xiàng)目數(shù)據(jù)顯示,經(jīng)預(yù)處理后氣體熱值波動(dòng)幅度從±15%收窄至±3%,為穩(wěn)定燃燒奠定基礎(chǔ)。

  The fluctuation of gas composition is the source risk of methane escape. The unit is equipped with an intelligent preprocessing unit, which adopts multi-stage filtration and dynamic gas distribution technology: firstly, particles with a diameter greater than 1 μ m are removed through ceramic fiber filter cartridges to avoid impurities affecting combustion stability; Subsequently, the methane concentration was monitored in real-time using a gas chromatograph, and mixed with nitrogen and air in proportion to accurately control the methane volume fraction within the optimal combustion range of 8% -12%. According to data from a low concentration gas power generation project, the fluctuation range of gas calorific value after pretreatment narrowed from ± 15% to ± 3%, laying the foundation for stable combustion.

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  燃燒室結(jié)構(gòu)優(yōu)化設(shè)計(jì)

  Optimization design of combustion chamber structure

  針對(duì)傳統(tǒng)機(jī)組燃燒不充分導(dǎo)致甲烷逃逸的問(wèn)題,環(huán)能機(jī)組采用旋流式燃燒室與微孔噴嘴組合技術(shù)。燃燒室內(nèi)部設(shè)置螺旋導(dǎo)流葉片,使混合氣體產(chǎn)生強(qiáng)烈旋流,延長(zhǎng)燃燒時(shí)間至傳統(tǒng)機(jī)組的1.8倍;噴嘴孔徑縮小至0.3mm,配合激光打孔技術(shù)實(shí)現(xiàn)燃料均勻分布。某能源集團(tuán)實(shí)測(cè)表明,該設(shè)計(jì)使燃燒效率提升至99.2%,未燃甲烷排放量降低至15ppm以下,優(yōu)于歐盟排放標(biāo)準(zhǔn)。

  In response to the problem of methane escape caused by insufficient combustion in traditional units, the environmental energy unit adopts a combination technology of swirl combustion chamber and microporous nozzle. Spiral guide vanes are installed inside the combustion chamber to generate strong swirling flow of the mixed gas, extending the combustion time to 1.8 times that of traditional units; The nozzle aperture is reduced to 0.3mm, and laser drilling technology is used to achieve uniform distribution of fuel. A certain energy group's actual test shows that the design improves combustion efficiency to 99.2% and reduces unburned methane emissions to below 15ppm, which is better than the EU emission standards.

  智能監(jiān)控與動(dòng)態(tài)調(diào)節(jié)

  Intelligent monitoring and dynamic adjustment

  機(jī)組搭載工業(yè)物聯(lián)網(wǎng)系統(tǒng),通過(guò)部署于燃燒室、排氣道的12個(gè)傳感器節(jié)點(diǎn),實(shí)時(shí)采集溫度、壓力、氧含量等參數(shù)。基于邊緣計(jì)算算法,系統(tǒng)每100毫秒完成一次燃燒狀態(tài)診斷,自動(dòng)調(diào)節(jié)空燃比與點(diǎn)火提前角。在瓦斯?jié)舛韧蛔儓?chǎng)景中,該系統(tǒng)可在0.5秒內(nèi)完成參數(shù)修正,避免因燃燒波動(dòng)導(dǎo)致的甲烷逃逸。某礦區(qū)應(yīng)用案例顯示,動(dòng)態(tài)調(diào)節(jié)功能使異常工況下的甲烷逃逸量減少82%。

  The unit is equipped with an industrial Internet of Things system, which collects real-time parameters such as temperature, pressure, and oxygen content through 12 sensor nodes deployed in the combustion chamber and exhaust duct. Based on edge computing algorithms, the system completes combustion state diagnosis every 100 milliseconds and automatically adjusts the air-fuel ratio and ignition advance angle. In the scenario of sudden changes in gas concentration, the system can complete parameter correction within 0.5 seconds, avoiding methane escape caused by combustion fluctuations. A case study in a mining area shows that the dynamic adjustment function reduces methane escape by 82% under abnormal working conditions.

  余熱回收與深度利用

  Waste heat recovery and deep utilization

  傳統(tǒng)機(jī)組排氣溫度高達(dá)500℃,攜帶大量未利用熱能。環(huán)能機(jī)組采用有機(jī)朗肯循環(huán)(ORC)余熱發(fā)電系統(tǒng),將排氣熱量轉(zhuǎn)化為150kW·h電能,整體能源利用率提升至42%。更重要的是,余熱回收降低了排氣溫度至120℃以下,減少因高溫導(dǎo)致的甲烷熱裂解逃逸風(fēng)險(xiǎn)。某煤層氣發(fā)電項(xiàng)目測(cè)算,余熱利用系統(tǒng)使綜合甲烷減排效率提高9.6個(gè)百分點(diǎn)。

  The exhaust temperature of traditional units can reach up to 500 ℃, carrying a large amount of unused heat energy. The environmental energy unit adopts an organic Rankine cycle (ORC) waste heat power generation system, which converts exhaust heat into 150kW · h of electrical energy, increasing the overall energy utilization rate to 42%. More importantly, waste heat recovery reduces the exhaust temperature to below 120 ℃, reducing the risk of methane thermal cracking escape caused by high temperatures. According to the calculation of a coalbed methane power generation project, the waste heat utilization system has increased the comprehensive methane emission reduction efficiency by 9.6 percentage points.

  密封與安全防護(hù)升級(jí)

  Sealing and safety protection upgrade

  機(jī)組關(guān)鍵部位采用雙端面機(jī)械密封與氮?dú)獗Wo(hù)系統(tǒng),在旋轉(zhuǎn)軸與靜止部件間形成0.05mm級(jí)的密封間隙,配合0.2MPa氮?dú)庹龎焊綦x,徹底阻斷甲烷泄漏通道。防爆電機(jī)與無(wú)火花設(shè)計(jì)滿足Ex d IIB T4防爆等級(jí),確保在瓦斯?jié)舛炔▌?dòng)時(shí)仍能安全運(yùn)行。第三方檢測(cè)報(bào)告顯示,機(jī)組整體泄漏率低于0.01%,遠(yuǎn)低于國(guó)家標(biāo)準(zhǔn)限值。

  The key parts of the unit are equipped with double end mechanical seals and nitrogen protection systems, forming a sealing gap of 0.05mm level between the rotating shaft and the stationary components, coupled with 0.2MPa nitrogen positive pressure isolation, completely blocking the methane leakage channel. The explosion-proof motor and spark free design meet the Ex d IIB T4 explosion-proof level, ensuring safe operation even when gas concentration fluctuates. The third-party testing report shows that the overall leakage rate of the unit is less than 0.01%, far below the national standard limit.

  環(huán)能瓦斯發(fā)電機(jī)組通過(guò)預(yù)處理精準(zhǔn)調(diào)控、燃燒室結(jié)構(gòu)創(chuàng)新、智能監(jiān)控調(diào)節(jié)、余熱深度利用及密封系統(tǒng)升級(jí),構(gòu)建起甲烷逃逸的立體防控體系。隨著碳交易市場(chǎng)機(jī)制的完善,該技術(shù)將在煤礦瓦斯治理領(lǐng)域發(fā)揮更關(guān)鍵的減排作用,為能源清潔化轉(zhuǎn)型提供技術(shù)支撐。

  The environmental energy gas generator set has established a three-dimensional prevention and control system for methane escape through precise pre-treatment control, innovative combustion chamber structure, intelligent monitoring and regulation, deep utilization of waste heat, and upgrading of sealing system. With the improvement of the carbon trading market mechanism, this technology will play a more critical role in reducing emissions in the field of coal mine gas control, providing technical support for the transition to clean energy.

  本文由環(huán)能瓦斯發(fā)電機(jī)組友情奉獻(xiàn).更多有關(guān)的知識(shí)請(qǐng)點(diǎn)擊:http://m.asianelephant.cn我們將會(huì)對(duì)您提出的疑問(wèn)進(jìn)行詳細(xì)的解答,歡迎您登錄網(wǎng)站留言.

  This article is a friendly contribution from the analysis of gas generator sets For more information, please click: http://m.asianelephant.cn 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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