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Uncertainty analysis for an effluent trading system in a typical nonpoint-sources-polluted watershed

机译:典型的非点源污染流域中污水交易系统的不确定性分析

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摘要

Conventional effluent trading systems (ETSs) between point sources (PSs) and nonpoint sources (NPSs) are often unreliable because of the uncertain characteristics of NPSs. In this study, a new framework was established for PS-NPS ETSs, and a comprehensive analysis was conducted by quantifying the impacts of the uncertainties associated with the water assimilative capacity (WAC), NPS emissions, and measurement effectiveness. On the basis of these results, the uncertain characteristics of NPSs would result in a less cost-effective PS-NPS ETS during most hydrological periods, and there exists a clear transition occurs from the WAC constraint to the water quality constraint if these stochastic factors are considered. Specifically, the emission uncertainty had a greater impact on PSs, but an increase in the emission or abatement uncertainty caused the abatement efforts to shift from NPSs toward PSs. Moreover, the error transitivity from the WAC to conventional ETS approaches is more obvious than that to the WEFZ-based ETS. When NPSs emissions are relatively high, structural BMPs should be considered for trading, and vice versa. These results are critical to understand the impacts of uncertainty on the functionality of PS-NPS ETSs and to provide a trade-off between the confidence level and abatement efforts.
机译:由于NPS的不确定性,点源(PS)和非点源(NPS)之间的常规污水交易系统(ETS)通常不可靠。在这项研究中,建立了PS-NPS ETS的新框架,并通过量化与水同化容量(WAC),NPS排放和测量有效性相关的不确定性的影响进行了全面分析。根据这些结果,NPSs的不确定性将导致大多数水文时期的PS-NPS ETS成本效益较低,如果这些随机因素受到影响,则存在从WAC约束到水质约束的明显过渡。考虑过的。具体而言,排放不确定性对PS的影响更大,但是排放或减排不确定性的增加导致减排努力从NPS转向PS。此外,从WAC到传统ETS方法的错误传递性比基于WEFZ的ETS的错误传递性更明显。当NPS排放相对较高时,应考虑使用结构性BMP进行交易,反之亦然。这些结果对于理解不确定性对PS-NPS ETS功能的影响以及在置信度水平和减排努力之间进行折衷至关重要。

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