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采用活性污泥技术实现成本效益废水处理系统的成本耦合去除效率分析,用于肉类加工单元。

Cost coupled removal efficiency analyses of activated sludge technologies to achieve the cost-effective wastewater treatment system in the meat processing units.

机构信息

Department of Science and Biotechnology, Faculty of Nano and Bio Science and Technology, Persian Gulf University, Bushehr, 75169-13798, Iran.

Department of Environmental Science, Faculty of Natural Resources, Tarbiat Modares University, Noor, 46414-356, Iran.

出版信息

J Environ Manage. 2021 Apr 1;283:111991. doi: 10.1016/j.jenvman.2021.111991. Epub 2021 Jan 21.

Abstract

This study was conducted to distinguish the most cost-effective activated sludge-based wastewater treatment technology by focusing on removal efficiency (RE) for applying in the meat processing units. Four different wastewater treatment plants (WWTPs), namely anaerobic/anoxic/oxic (AO), membrane bioreactor (MBR), moving bed bioreactor (MBBR), and integrated fixed-film activated sludge (IFAS) were simulated regarding the daily annual data obtained from a meat processing unit. The descending order concerning the total cost (TC) was as follows: MBR > AO > IFAS > MBBR while it was as MBR > IFAS > MBBR > AO based on RE. Regarding the energy and material consumption costs, the AO and MBR were the highest and lowest cost-effective systems, respectively. However, the MBR was the best from a biological treatment cost perspective. The boilers and co-generators contributed to 75% and 25% of the produced biogas, respectively, that supplied 50% of WWTP electricity demand. Among all different influent parameters, the effect of flow rate, COD, and BOD on the TC was statistically significant. Furthermore, the TC and present worth illustrated the most sensitivity to the construction cost alteration. This research provides insights into key economic parameters for a WWTP design and application.

摘要

本研究旨在通过关注去除效率(RE),为肉类加工单位选择最具成本效益的活性污泥基废水处理技术。模拟了四个不同的废水处理厂(WWTP),即厌氧/缺氧/好氧(AO)、膜生物反应器(MBR)、移动床生物膜反应器(MBBR)和一体化固定膜活性污泥(IFAS),其数据来自于一个肉类加工单位的每日年度数据。基于 RE,总成本(TC)的降序排列如下:MBR>AO>IFAS>MBBR;而基于 RE,总成本(TC)的降序排列如下:MBR>IFAS>MBBR>AO。关于能源和材料消耗成本,AO 和 MBR 分别是最高和最低成本效益的系统。然而,从生物处理成本的角度来看,MBR 是最佳的。锅炉和发电机分别贡献了所产沼气的 75%和 25%,满足了 WWTP 50%的电力需求。在所有不同的进水参数中,流量、COD 和 BOD 对 TC 的影响具有统计学意义。此外,TC 和现值对建设成本变化最为敏感。本研究为 WWTP 的设计和应用提供了关键经济参数的见解。

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