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Understanding the effects of the origin, occurrence, monitoring, control, fate and removal of siloxanes on the energetic valorization of sewage biogas-A review

机译:了解硅氧烷的来源,发生,监测,控制,去向和去除对污水沼气的能量增值的影响-综述

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This paper reviews the effects of the origin, occurrence, monitoring, control, fate and removal of siloxanes on the energetic valorization of sewage biogas, which can be severely compromised by its volatile organic silicon compound (VOSiC) content. Almost 25 years after identifying silicon dioxide in the exhaust gases from engines powered using sewage and landfill gas, a wide range of studies have been conducted addressing the different stages of the siloxane life cycle. The cycle starts with the production and use of polydimethylsiloxane polymers in a wide range of industrial and domestic applications and its further dispersal into environmental compartments. Siloxanes are subsequently introduced into wastewater treatment plants, where as a result of their low biodegradability and high affinity to dissolved and particulate matter, they are first transferred from wastewater into sludge and later volatilized in biogas in anaerobic digesters. Biogas treatment technologies can reduce siloxane concentrations to less than 0.1 mg/m(3); adsorbent materials with micro- and mesoporous structures appear to be the most relevant technology in technical and economic terms. The state-of-the-art on siloxanes is vast and extensive, but there are still some knowledge gaps to be addressed in the future, such as the standardization of the methodology for off-line analysis, the development of on-line monitoring equipment, better understanding the fates of siloxanes in wastewater treatment processes to operate at specific conditions to avoid siloxanes-related problems, the development of more selective and regenerative removal technologies from biogas to reduce operating costs and even to recover silicon, and better understand the detrimental effects on energy recovery technologies to determine the inlet concentration limits. This work compiles the most relevant results available in the literature for each stage of the siloxane life cycle. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文综述了硅氧烷的来源,发生,监测,控制,去向和去除对污水沼气的能量增值的影响,其挥发性有机硅化合物(VOSiC)的含量会严重损害其价值。在确定使用污水和垃圾填埋气驱动的发动机排放的废气中的二氧化硅将近25年之后,针对硅氧烷寿命周期的不同阶段进行了广泛的研究。该循环始于在广泛的工业和家庭应用中生产和使用聚二甲基硅氧烷聚合物,并将其进一步分散到环境隔室中。随后将硅氧烷引入废水处理厂,由于它们的低生物降解性和对溶解物和颗粒物的高亲和力,它们首先从废水中转移到污泥中,然后在厌氧消化池的沼气中挥发。沼气处理技术可以将硅氧烷浓度降低到小于0.1 mg / m(3);从技术和经济角度看,具有微孔和中孔结构的吸附材料似乎是最相关的技术。硅氧烷方面的最新技术非常广泛,但是将来仍然存在一些需要解决的知识空白,例如离线分析方法的标准化,在线监测设备的开发,更好地了解在特定条件下操作的废水处理过程中硅氧烷的命运,以避免与硅氧烷相关的问题,开发更具选择性和再生性的沼气去除技术以降低运营成本甚至回收硅,并更好地了解有害影响根据能量回收技术确定进口浓度极限。这项工作汇编了有关硅氧烷寿命周期各个阶段的文献中最相关的结果。 (C)2015 Elsevier Ltd.保留所有权利。

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