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首页> 外文期刊>Journal of Applied Aquaculture >A Mixed Integer Programming Analysis of Effluent Treatment Options Proposed for Pond Production of Hybrid Striped Bass, Morone chrysops X M. saxatilis
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A Mixed Integer Programming Analysis of Effluent Treatment Options Proposed for Pond Production of Hybrid Striped Bass, Morone chrysops X M. saxatilis

机译:为混合条纹鲈鱼,莫罗氏金枪鱼X萨克斯提利斯池塘生产提议的污水处理方案的混合整数规划分析

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The growth of aquaculture farming has resulted in increased scrutiny by regulatory agencies. The Environmental Protection Agency (EPA) added aquaculture into the Effluent Limitation Guidelines (ELG) program that bases its rulemaking effort on technology-based standards that are economically achievable. The primary objective of this paper is to evaluate several effluent treatments that have been considered for hybrid striped bass (HSB), Morone chrysops X M. saxatilis, farming in pond production systems. A mixed integer programming (MIP) analytical model for HSB farming was developed focusing on maximizing profit derived from HSB production subject to the imposition of several different effluent treatment options. Settling basins and constructed wetlands entail high costs for farmers with high reduction in effluents. Filtering treatments incur high cost without much reduction in nutrient concentration in effluents. Not flushing water from the pond, or not draining the pond annually, reduces effluentvolume. Reduction in the amount of water flushed or drained from the pond also decreases operating costs without any additional investment cost associated with adoption of the treatments. It is estimated that various effluent treatment options would increase production costs on average by 0.001-6.79 dollar per kg. The main result of the MIP model is that no annual draining and not flushing the pond water are the best operational treatments. When effluent level standard regulations are imposed on effluent discharge, the model selected the no draining treatment. By not draining ponds, farms would minimize treatment cost by reducing effluent volume. Additional work is needed on the long-term risks associated with not flushing or not draining HSB production ponds.
机译:水产养殖业的发展导致监管机构的审查力度加大。环境保护局(EPA)将水产养殖纳入了《废水限量指南》(ELG)计划,该计划的制定工作基于经济上可实现的基于技术的标准。本文的主要目的是评估已考虑用于混合条纹鲈鱼(HSB),Morone chrysops X M. saxatilis,池塘生产系统中养殖的几种污水处理方法。开发了用于HSB养殖的混合整数规划(MIP)分析模型,其重点是在强加几种不同的污水处理方案的情况下,最大化HSB生产的利润。沉淀池和人工湿地给农民带来了高昂的成本,同时减少了废水排放。过滤处理的成本很高,而废水中的营养物浓度却没有大大降低。不从池塘冲洗水,或每年不排放池塘,可减少废水量。减少从池塘冲洗或排水的水量,也减少了运营成本,而无需因采用这种处理方法而增加任何投资成本。据估计,各种污水处理方案将使生产成本平均增加每公斤0.001-6.79美元。 MIP模型的主要结果是没有年度排水和不冲洗池塘水是最佳的操作处理方法。当对废水排放施加废水水平标准规定时,该模型选择了不排水处理。通过不排池塘,农场将通过减少废水量来最大程度地减少处理成本。对于不冲洗或不排干HSB生产池相关的长期风险,需要进行其他工作。

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