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首页> 外文期刊>The Science of the Total Environment >Modeling the oxygen-depleting potential and spatially differentiated effect of sewage organics in life cycle assessment for wastewater management
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Modeling the oxygen-depleting potential and spatially differentiated effect of sewage organics in life cycle assessment for wastewater management

机译:在生命周期评估中对污水有机物的耗氧潜力和空间差异效应进行建模,以进行废水管理

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Excessive organic emissions measured as chemical oxygen demand ( COD) have caused serious regional water pollution i.e. the widespread malodorous black rivers in China. Assessing the optimum treatment strategies is generally a complicated work involving sophisticated trade-offs across regional improvement and global sustainability. Life cycle assessment (LCA) is a promising tool to support such trade-offs, but it appears difficult to comprehensively reflect the direct impact of high-COD wastewater. This is because, the current LCA framework only highlights the effect of nutrients as a representative eutrophication indicator. To address this issue, this study extends the LCA framework by defining a new COD category to characterize the oxygen-depleting processes associated with development of characterization factors and models. By combining water quality model, the modeling scheme is shown capable of converting dynamic effects of COD on the receiving water into the spatially differentiated impact-assessment results. Upon a descriptive case, we also illustrate that the modeling scheme can construct different environmental situations by varying the embedded variables. This enables the refined investigations of the paradigm shift in wastewater treatment, which contributes to the avoidance of "one-size-fits-all" solution identified without considerations of environmental sustainability. Last, we discuss the ways to further refining the modeling scheme to make it applicable in more cases of water pollution. (C) 2018 Elsevier B.V. All rights reserved.
机译:以化学需氧量(COD)衡量的过量有机物排放已引起严重的区域水污染,即中国广泛的恶臭黑河。评估最佳治疗策略通常是一项复杂的工作,涉及跨区域改进和全球可持续性的复杂权衡。生命周期评估(LCA)是支持此类折衷的有前途的工具,但似乎难以全面反映高COD废水的直接影响。这是因为,当前的LCA框架仅强调营养素作为富营养化指标的作用。为了解决这个问题,本研究通过定义新的COD类别来扩展LCA框架,以表征与表征因素和模型开发相关的耗氧过程。通过组合水质模型,显示了该建模方案,该方案能够将COD对接收水的动态影响转换为空间差异的影响评估结果。在描述的情况下,我们还说明了建模方案可以通过更改嵌入变量来构造不同的环境情况。这使得能够对废水处理的范式转变进行精确的研究,从而有助于避免在不考虑环境可持续性的情况下确定“一刀切”的解决方案。最后,我们讨论了进一步完善建模方案以使其适用于更多水污染案例的方法。 (C)2018 Elsevier B.V.保留所有权利。

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