首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Reliability analysis of low-cost, full-scale domestic wastewater treatment plants for reuse in aquaculture and agriculture
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Reliability analysis of low-cost, full-scale domestic wastewater treatment plants for reuse in aquaculture and agriculture

机译:低成本,大规模家庭污水处理厂在水产养殖和农业中回用的可靠性分析

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The current paper assesses the reliability coefficients of fifty six low-cost, full-scale wastewater treatment plants, including nine different treatment technologies for wastewater reuse in aquaculture and agriculture in northeast Brazil. This was carried out with the aim to evaluate alternatives for sustainable wastewater reuse in communities experiencing water scarcity. The technologies evaluated include septic tanks (ST); septic tanks + anaerobic filters (ST + AF); septic tanks + anaerobic filters + chlorination (ST + AF + Cl); facultative ponds (FP); facultative + maturation ponds (FP + MP); anaerobic + facultative + maturation ponds (AP + FP + MP); facultative aerated ponds + facultative + maturation ponds (FAP + FP + MP); upflow anaerobic sludge blanket reactors (UASB); and upflow anaerobic sludge blanket reactors + chlorination (UASB + Cl). The parameters used for the analysis include chemical oxygen demand, total suspended solids, Escherichia coli and biochemical oxygen demand. By applying an 80% reliability level for standard compliance, the study aimed at presenting relevant, realistic and achievable targets for the evaluated parameters. Discharge limits for agriculture and aquaculture were obtained from a compilation of international and Brazilian guidelines. Performance data showed, in some cases, great variability among wastewater treatment plants of the same type, highlighting the importance of good management and operation. The technologies that presented the highest reliability for wastewater reuse were AP + FP + MP systems (waste stabilization ponds), followed by ST + AF + Cl and FAP + FP + MP. UASB and UASB + Cl performed similarly to ST + AF systems whilst the worst performances were observed for ST, FP + MP and FP. Results have shown that low-cost, full scale wastewater treatment plants are able to provide a suitable effluent for wastewater reuse in agriculture and aquaculture when an 80% reliability standard is applied. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文评估了巴西东北部56家低成本,大规模污水处理厂的可靠性系数,其中包括9种不同的污水处理技术,用于水产养殖和农业中的污水回用。这样做的目的是评估在缺水社区中可持续废水回用的替代方案。评估的技术包括化粪池(ST);化粪池+厌氧滤池(ST + AF);化粪池+厌氧滤池+氯化(ST + AF + Cl);兼性池塘(FP);兼性+成熟池(FP + MP);厌氧+兼性+成熟池(AP + FP + MP);兼性加气池+兼性+成熟池(FAP + FP + MP);上流式厌氧污泥床反应器(UASB);和上流式厌氧污泥层反应器+氯化(UASB + Cl)。用于分析的参数包括化学需氧量,总悬浮固体,大肠杆菌和生化需氧量。通过将80%的可靠性水平用于标准合规性,该研究旨在为评估的参数提供相关,现实和可实现的目标。农业和水产养殖的排放限值是从国际和巴西准则汇编中获得的。性能数据显示,在某些情况下,相同类型的废水处理厂之间存在很大差异,突出了良好管理和运营的重要性。废水回用可靠性最高的技术是AP + FP + MP系统(废物稳定池),其次是ST + AF + Cl和FAP + FP + MP。 UASB和UASB + Cl的表现与ST + AF系统相似,而ST,FP + MP和FP表现最差。结果表明,采用80%的可靠性标准时,低成本,大规模的废水处理厂能够为农业和水产养殖中的废水回用提供合适的废水。 (C)2015 Elsevier B.V.保留所有权利。

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