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A quantitative integrated assessment of pollution prevention achieved by Integrated Pollution Prevention Control licensing

机译:综合污染预防控制许可对污染预防进行定量综合评估

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摘要

This paper presents an innovative, quantitative assessment of pollution avoidance attributable to environmental regulation enforced through integrated licensing, using Ireland's pharmaceutical-manufacturing sector as a case study. Emissions data reported by pharmaceutical installations were aggregated into a pollution trend using an Environmental Emissions Index (EEI) based on Lifecycle Assessment methodologies. Complete sectoral emissions data from 2001 to 2007 were extrapolated back to 1995, based on available data. Production volume data were used to derive a sectoral production index, and determine 'no-improvement' emission trends, whilst questionnaire responses from 20 industry representatives were used to quantify the contribution of integrated licensing to emission avoidance relative to these trends. Between 2001 and 2007, there was a 40% absolute reduction in direct pollution from 27 core installations, and 45% pollution avoidance relative to hypothetical 'no-improvement' pollution. It was estimated that environmental regulation avoided 20% of 'no-improvement' pollution, in addition to 25% avoidance under business-as-usual. For specific emissions, avoidance ranged from 14% and 30 kt a_(-1) for CO_2 to 88% and 598 t a~(-1) for SO_x. Between 1995 and 2007, there was a 59% absolute reduction in direct pollution, and 76% pollution avoidance. Pollution avoidance was dominated by reductions in emissions of VOCs, SO_x and NO_x to air, and emissions of heavy metals to water. Pollution avoidance of 35% was attributed to integrated licensing, ranging from between 8% and 2.91 a~(-1) for phosphorus emissions to water to 49% and 31431 a~(-1) for SO_x emissions to air. Environmental regulation enforced through integrated licensing has been the major driver of substantial pollution avoidance achieved by Ireland's pharmaceutical sector - through emission limit values associated with Best Available Techniques, emissions monitoring and reporting requirements, and performance targets specified in environmental management plans. This compliant sector offers a positive, but not necessarily typical, case study of IPPC effectiveness.
机译:本文以爱尔兰的制药业为例,提出了一种创新的,定量的避免污染评估,该评估归因于通过综合许可实施的环境法规,可避免污染。使用基于生命周期评估方法的环境排放指数(EEI),将制药厂报告的排放数据汇总为污染趋势。根据现有数据,可以将2001年至2007年的完整部门排放数据外推至1995年。生产量数据用于得出部门生产指数,并确定“无改进”的排放趋势,而来自20个行业代表的问卷调查问卷被用于量化相对于这些趋势,综合许可对避免排放的贡献。在2001年至2007年之间,相对于假设的“无改善”污染,来自27个核心设施的直接污染绝对减少了40%,避免了45%的污染。据估计,除了在常规情况下避免25%的污染外,环境法规还避免了20%的“无改善”污染。对于特定排放,避免量从CO_2的14%和30 kt a _(-1)到SO_x的88%和598 t a〜(-1)不等。在1995年至2007年之间,直接污染的绝对减少量为59%,避免污染的比例为76%。避免污染的主要方式是减少向大气排放的挥发性有机化合物,SO_x和NO_x以及向水中排放重金属。避免污染的35%归因于综合许可,范围从向水排放磷的8%至2.91 a〜(-1)到向空气排放SO_x的49%至31431 a〜(-1)。通过综合许可实施的环境法规一直是爱尔兰制药行业避免重大污染的主要驱动力-通过与最佳可行技术相关的排放限值,排放监测和报告要求以及环境管理计划中指定的性能目标。该合规部门为《国际植保公约》的有效性提供了积极但不一定典型的案例研究。

著录项

  • 来源
    《Environment international》 |2009年第8期|1177-1187|共11页
  • 作者单位

    Environmental Protection Agency, Richview Business Park, Clonskeagh Road, Dublin 14, Ireland School of Natural Sciences, Trinity College Dublin, Dublin 2, Ireland;

    Environmental Protection Agency, Richview Business Park, Clonskeagh Road, Dublin 14, Ireland;

    School of Natural Sciences, Trinity College Dublin, Dublin 2, Ireland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    pollution avoidance; IPPC; emissions; regulation; LCA;

    机译:避免污染;国际植保公约排放规;生命周期评价;
  • 入库时间 2022-08-17 13:31:00

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