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還在因為沼氣差異發電機不能正常運行發愁嗎

發布時間:2025-04-14 發布人:中拓 發布來源:http://www.newsletterv.cn/

還存在因為沼氣差異降低性能的嗎?

Is there still a decrease in performance due to differences in biogas?

燃料適應性更強:以往的沼氣發電機組對沼氣來源和成分變化的適應能力有限,而環能沼氣發電機組通過智能控制系統,能夠靈活調整進氣量、點火時間等運行參數。無論是養殖場以豬糞、牛糞為主產生的沼氣,還是污水處理廠由生活污水、工業廢水處理生成的沼氣,其甲烷含量、雜質種類與濃度不盡相同,環能機組都能確保穩定高效發電,不會因沼氣差異而 “罷工” 或降低性能。

Stronger fuel adaptability: Previous biogas generators had limited adaptability to changes in biogas sources and composition, while environmental energy biogas generators can flexibly adjust operating parameters such as intake volume and ignition time through intelligent control systems. Whether it is biogas produced mainly from pig manure and cow manure in breeding farms, or biogas produced from domestic sewage and industrial wastewater treatment in sewage treatment plants, their methane content, impurity types and concentrations are not the same. Environmental energy units can ensure stable and efficient power generation, and will not "strike" or reduce performance due to differences in biogas.

能量轉化效率更高:在能量轉化效率方面表現優異,相較于部分傳統發電設備,它能更充分地利用沼氣能量,每立方米沼氣可產生更多電量,減少了單位電能的沼氣消耗。同時,通過優化燃燒過程與余熱回收技術,將原本浪費的熱量進行有效利用,進一步提升能源綜合利用率,降低運行成本。例如,高溫廢氣的熱量通過余熱鍋爐轉化成高溫高壓的蒸汽,可驅動汽輪機進行二次發電;中溫余熱可用于工業生產中的加熱環節;低溫余熱可用于廠區供暖或供應熱水。

Higher energy conversion efficiency: It performs excellently in terms of energy conversion efficiency. Compared to some traditional power generation equipment, it can more fully utilize biogas energy, generate more electricity per cubic meter of biogas, and reduce biogas consumption per unit of electricity. At the same time, by optimizing the combustion process and waste heat recovery technology, the originally wasted heat can be effectively utilized, further improving the comprehensive energy utilization rate and reducing operating costs. For example, the heat from high-temperature exhaust gas is converted into high-temperature and high-pressure steam through a waste heat boiler, which can drive a steam turbine for secondary power generation; Medium temperature waste heat can be used for heating in industrial production; Low temperature waste heat can be used for heating or supplying hot water in the factory area.

自動化程度更高:主控制系統由國外進口機組控制器及顯示器組成,集監視、控制、調節、保護于一體,使機組既能并網運行,又能并車運行。主控制器采用模塊化設計,通過 CAN 通訊可增加擴展模塊,滿足發電機組多種參數采集及控制的需要,多達 32 臺機組可并車運行。機組還可實現遠程啟停,有功功率及無功功率的自動調整,自動同期,滿足自動化機組的需要,保護功能也十分齊全,有發動機超速、油壓低、水溫高、機油溫度高等發動機保護,以及逆功、過流、欠壓 / 過壓、欠頻 / 過頻等發電機保護功能。

Higher degree of automation: The main control system consists of imported unit controllers and displays, integrating monitoring, control, regulation, and protection, enabling the units to operate both in parallel and in parallel. The main controller adopts a modular design, and can add expansion modules through CAN communication to meet the needs of various parameter acquisition and control of the generator set. Up to 32 units can be operated in parallel. The unit can also achieve remote start stop, automatic adjustment of active and reactive power, automatic synchronization, and meet the needs of automated units. The protection functions are also very complete, including engine overspeed, low oil pressure, high water temperature, high oil temperature, engine protection, as well as generator protection functions such as reverse power, overcurrent, undervoltage/overvoltage, underfrequency/overclocking.

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氣體凈化更徹底:配備了更先進的凈化系統,如旋風分離器利用離心力分離較大粉塵顆粒,裝有活性炭等吸附劑的吸附塔吸附硫化氫等有害氣體,低溫冷凝或干燥劑吸附手段去除水蒸氣,精細過濾設備攔截細微粉塵和萘等雜質,使進入燃燒室的沼氣更加純凈,減少了對發動機等部件的腐蝕和磨損,延長了設備使用壽命,也提高了燃燒效率。

More thorough gas purification: equipped with more advanced purification systems, such as cyclone separators that use centrifugal force to separate larger dust particles, adsorption towers equipped with activated carbon and other adsorbents to adsorb harmful gases such as hydrogen sulfide, low-temperature condensation or desiccant adsorption methods to remove water vapor, fine filtration equipment to intercept fine dust and impurities such as naphthalene, making the biogas entering the combustion chamber purer, reducing corrosion and wear on engine and other components, extending equipment service life, and improving combustion efficiency.

運行穩定性更好:通過高精度傳感器實時監測燃氣的流量、濃度、壓力等參數,控制系統根據這些數據自動調整運行參數,確保燃氣和空氣以最佳比例混合,使發電機組在面對燃氣成分和流量的變化時,仍能穩定、高效地運行,減少了因氣源波動導致的停機或功率下降等情況。

Better operational stability: By using high-precision sensors to monitor real-time parameters such as gas flow rate, concentration, and pressure, the control system automatically adjusts operating parameters based on these data to ensure that gas and air are mixed in the optimal ratio, allowing the generator set to operate stably and efficiently in the face of changes in gas composition and flow rate, reducing situations such as shutdowns or power decreases caused by fluctuations in gas sources.

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