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Co-ordinated environmental regulation: controlling non-point nitrate pollution while maintaining river flows

机译:协调的环境法规:控制面源硝酸盐污染,同时保持河流流量

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Environmental policy often addresses multiple targets, yet much economic analysis of pollution control is based on a single-target objective. In this paper, we present an analysis of policies to control non-point source nitrate pollution in the presence of minimum river flow restrictions. A non-linear bio-physical economic optimisation model of an intensively cultivated Scottish agricultural catchment was constructed. The presence of minimum river flow controls in the catchment was found to reduce nitrogen pollution. However, by themselves, river flow controls were found not to be a cost effective means to reduce non-point pollution. We quantify the improved social welfare from coordinating the environmental regulation of river flows and pollution, and determine the conditions under which such coordination is beneficial. The paper also investigates whether the benefits of such coordination can be sustained under wetter (winter) weather conditions implied by current climate change predictions.
机译:环境政策通常涉及多个目标,但是对污染控制的许多经济分析都是基于一个目标的目标。在本文中,我们对在最小流量限制下控制面源硝酸盐污染的政策进行了分析。建立了集约化苏格兰农业流域的非线性生物物理经济优化模型。人们发现流域内的最低河流量控制措施可以减少氮污染。但是,就其本身而言,控制河流流量并不是减少面源污染的经济有效手段。我们通过协调河流流量和污染的环境调节来量化改善的社会福利,并确定在这种条件下有益的协调。本文还研究了当前气候变化预测所暗示的在潮湿(冬季)天气条件下这种协调的好处是否能够持续。

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