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An Ecological Risk Assessment Methodology for Screening Discharge Alternatives of Produced Water

机译:筛选产出水排放替代方案的生态风险评估方法

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摘要

Previous studies on Ecological Risk Assessment (ERA) of produced water relied on the use of deterministic hydrodynamic models. The assessment was usually carried out in the North Sea context using a model such as the Chemical Hazard Assessment and Risk Management (CHARM), or in the North American context based on the output of a hydrodynamic model such as the Cornell Mixing Zone Expert System (CORMIX). In both these cases, however, probabilistic analysis has not been employed, particularly, to account for uncertainty associated with hydrodynamic models in the ERA study. In fact, it is the hydrodynamic model that has a direct linkage to the selection of the discharge alternatives. Apart from the monitoring purposes, in this article, it is suggested that criteria for evaluating discharge alternatives of produced water in a marine environment might incorporate an awareness of ecological risks by incorporating engineering and toxicological aspects. An ERA methodology consisting of problem formulation, analysis, and risk characterization is discussed in light of evaluating the discharge alternatives. A probabilistic analysis using Latin Hypercube Sampling (LHS)-based Monte Carlo (MC) simulations was employed. A depiction of associated risks for an area comparable to a regulatory mixing zone of typical effluent discharges is presented.
机译:先前对采出水的生态风险评估(ERA)的研究依赖于确定性水动力模型的使用。评估通常是在北海环境中使用诸如化学危害评估和风险管理(CHARM)之类的模型进行的,或者在北美环境中基于流体动力学模型(例如康奈尔混合区专家系统( CORMIX)。但是,在这两种情况下,都未采用概率分析,尤其是没有考虑ERA研究中与流体动力学模型相关的不确定性。实际上,正是水动力模型与排放替代方案的选择有着直接的联系。除了监视目的之外,在本文中,建议在海洋环境中评估采出水排放替代品的标准可以通过纳入工程和毒理学方面来纳入对生态风险的认识。根据评估排放替代方案,讨论了由问题制定,分析和风险表征组成的ERA方法。使用基于拉丁超立方采样(LHS)的蒙特卡洛(MC)模拟进行概率分析。给出了与典型废水排放的管制混合区相当的区域相关风险的描述。

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