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Low-carbon assessment for ecological wastewater treatment by a constructed wetland in Beijing

机译:北京人工湿地处理生态废水的低碳评估

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Presented in this paper is a low-carbon assessment for wastewater treatment by a constructed wetland as ecological engineering. Systems accounting by combining process and input-output analyses is applied to track both direct and indirect GHG emissions associated with the wastewater treatment. Based on the detailed assessment procedures and the embodied GHG emission intensity database for the Chinese economy in 2007, the GHG emissions embodied in both the construction and operation stages of a pilot constructed wetland in Beijing are investigated in concrete detail, with parallel calculations carried out for a cyclic activated sludge plant as a typical conventional wastewater treatment system for comparison. With the overall embodied GHG emissions taken into account, the constructed wetland is shown to be remarkably less carbon intensive than the conventional wastewater treatment system, and the contrast in GHG emission structure is also revealed and characterized. According to the results, the ecological engineering of the constructed wetland is considered to be favorable for achieving the low-carbon goal.
机译:本文介绍的是一种作为生态工程的人工湿地对废水的低碳评估。通过将过程分析和投入产出分析相结合的系统核算方法,可以跟踪与废水处理相关的直接和间接温室气体排放。根据详细的评估程序和内含的2007年中国经济的温室气体排放强度数据库,对北京试点湿地的建设和运营阶段所体现的温室气体排放进行了具体的详细研究,并进行了并行计算。循环活性污泥厂作为典型的常规废水处理系统进行比较。考虑到整体体现的温室气体排放量,与常规废水处理系统相比,人工湿地的碳密集度显着降低,而且温室气体排放结构的差异也得到了揭示和表征。根据结果​​,人工湿地的生态工程被认为有利于实现低碳目标。

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