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在沼气能源设施中管理硅氧烷:燃烧前与燃烧后工艺的经济比较。

Managing siloxanes in biogas-to-energy facilities: Economic comparison of pre- vs post-combustion practices.

机构信息

Department of Civil and Environmental Engineering, Florida International University, College of Engineering and Computing, 10155 West Flagler St, Miami, FL 33174, United States.

Department of Civil and Environmental Engineering, Florida International University, College of Engineering and Computing, 10155 West Flagler St, Miami, FL 33174, United States.

出版信息

Waste Manag. 2019 Aug 1;96:121-127. doi: 10.1016/j.wasman.2019.07.019. Epub 2019 Jul 17.

Abstract

Siloxanes present in small concentrations in biogas interfere with the operation of biogas-to-energy facilities. During biogas combustion, siloxanes form white deposits on engine components (engine heads, spark plugs, valves) in crystals or amorphous forms depending on the temperature. The purpose of this study was to evaluate the economic feasibility of biogas-to-energy systems for managing the operational challenges due to siloxanes in biogas. The facility maintenance cost data were compiled by a survey of biogas-to-energy facilities in the United States. Economic analyses were performed to compare the operational costs due to increased maintenance for removing the white deposits forming on the engine components and the installation of a pretreatment system (carbon adsorption) to remove siloxanes prior to combustion. Numerical analyses showed that for the facilities with operating capacities less than 1300 m/h (750 scfm), the costs for installation and operation of the carbon adsorption system exceeded the maintenance costs for removal of deposits from the engine components. The maintenance costs correlated well with the reported maintenance needs which were between 120 and 800 man hours per year. On the basis of siloxane removal costs alone, it is not economically feasible to install a carbon adsorption system for siloxane removal prior to combustion for small facilities processing less than 1300 m/h (750 scfm) of biogas. However, using a process for siloxane removal prior to gas engines (e.g., carbon adsorption) would be improve the overall performance of the gas engines and reduce maintenance need at all facilities.

摘要

硅氧烷以低浓度存在于沼气中会干扰沼气转化为能源设施的运行。在沼气燃烧过程中,硅氧烷会根据温度以晶体或无定形形式在发动机部件(发动机缸盖、火花塞、阀门)上形成白色沉积物。本研究旨在评估沼气转化为能源系统管理沼气中硅氧烷带来的运行挑战的经济可行性。设施维护成本数据是通过对美国沼气转化为能源设施的调查编制的。进行了经济分析,以比较因发动机部件上形成的白色沉积物的增加而导致的运营成本以及安装预处理系统(碳吸附)以在燃烧前去除硅氧烷。数值分析表明,对于运行能力小于 1300 m/h(750 scfm)的设施,碳吸附系统的安装和运行成本超过了从发动机部件上去除沉积物的维护成本。维护成本与报告的维护需求密切相关,每年在 120 到 800 人工小时之间。仅基于硅氧烷去除成本,对于处理能力小于 1300 m/h(750 scfm)的小型设施,在燃烧前安装碳吸附系统去除硅氧烷在经济上是不可行的。然而,在气体发动机之前使用硅氧烷去除工艺(例如,碳吸附)将提高气体发动机的整体性能,并减少所有设施的维护需求。

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