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Effect of persistent trace compounds in landfill gas on engine performance during energy recovery: A case study

机译:案例:垃圾填埋气中持久性痕量化合物对能量回收过程中发动机性能的影响

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Performances of gas engines operated with landfill gas (LFG) are affected by the impurities in the LFG, reducing the economic viability of energy recovery. The purpose of this study was to characterize the trace compounds in the LFG at the Odayeri Landfill, Istanbul, Turkey which is used for energy recovery. Composite gas samples were collected and analyzed for trace compounds (hydrocarbons, siloxanes, and volatile halogenated hydrocarbons) over a 3-year period. Trace compounds entering the gas engines, their impact on the engine performance were evaluated. The operational problems included deposit formation in the combustion chamber, turbocharger, and intercooler of engine before the scheduled maintenance times. High levels of hydrogen sulfide, as well as chlorinated and fluorinated compounds cause corrosion of the engine parts and decrease life of the engine oils. Persistence of siloxanes results in deposit formation, increasing engine maintenance costs. Pretreatment of LFG is necessary to protect the engines at the waste-to-energy facilities with persistence levels of siloxanes and volatile halogenated hydrocarbons.
机译:使用垃圾填埋气(LFG)运转的燃气发动机的性能会受到LFG中杂质的影响,从而降低了能量回收的经济可行性。这项研究的目的是对土耳其伊斯坦布尔Odayeri垃圾填埋场中LFG中的痕量化合物进行表征,以用于能量回收。收集复合气体样品,并在三年内分析痕量化合物(烃,硅氧烷和挥发性卤代烃)。评估了进入汽油发动机的痕量化合物,它们对发动机性能的影响。运行问题包括在预定维护时间之前在燃烧室,涡轮增压器和发动机中冷器中形成沉积物。高含量的硫化氢以及氯化和氟化的化合物会导致发动机零件腐蚀并缩短发动机油的使用寿命。硅氧烷的持久性导致沉积物形成,增加了发动机维护成本。 LFG的预处理对于保护废物转化能源设施的发动机具有持久性的硅氧烷和挥发性卤代烃含量是必要的。

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