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开发和采用巴基斯坦木尔坦市城郊农业污水处理系统。

Development and adoption of wastewater treatment system for peri-urban agriculture in Multan, Pakistan.

机构信息

Department of Agricultural Engineering, Bahauddin Zakariya University, Multan, Pakistan E-mail:

出版信息

Water Sci Technol. 2019 Oct;80(8):1524-1537. doi: 10.2166/wst.2019.403.

DOI:10.2166/wst.2019.403
PMID:31961815
Abstract

The present research was conducted to assess the feasibility of biological treatment of a typical wastewater (WW) stream in Multan, Pakistan, using daily trends of WW characteristics and to design a wastewater treatment (WWT) system for that stream. The pH (5.8-6.2), temperature (24-30 °C), biological oxygen demand (BOD: 128-265 mg/L), ultimate BOD (BOD: 227-438 mg/L), BOD/total Kjeldahl nitrogen (BOD/TKN:5.9-11.2), BOD/BOD (1.6-2.0), carbonaceous BOD/nitrogenous BOD (CBOD/NBOD:1.6-2.8) of the WW was found to support the biological WWT. The inclusion of NBOD also indicated the need for nitrification-denitrification. The linear regression analysis of volatile suspended solids (VSS) with total suspended solids (TSS) indicated the high content of organic solids, which also made the WW suitable for biological treatment. The BOD/COD (chemical oxygen demand) <0.8 indicated the requirement for biomass acclimation. The major process units of the WWT system developed included a primary clarifier, cascade aeration, trickling filter, adsorption filter and chlorination contact tank. During the validation of design procedures, considerable removal of TSS (91%), TDS (46%), BOD (88%), COD (87%) was observed over the 15 week operational period of the secondary WWT system. The WWT system developed was appropriate as a sustainable WWT system that consumed less energy and had lower operational costs.

摘要

本研究旨在评估使用典型废水(WW)特性的日常趋势来处理巴基斯坦木尔坦废水(WW)的生物处理的可行性,并为此废水设计一个废水处理(WWT)系统。WW 的 pH 值(5.8-6.2)、温度(24-30°C)、生物需氧量(BOD:128-265mg/L)、最终 BOD(BOD:227-438mg/L)、BOD/总凯氏氮(BOD/TKN:5.9-11.2)、BOD/BOD(1.6-2.0)、碳源 BOD/氮源 BOD(CBOD/NBOD:1.6-2.8)支持生物 WWT。NBOD 的包含也表明需要硝化-反硝化。挥发性悬浮固体(VSS)与总悬浮固体(TSS)的线性回归分析表明有机固体含量高,这也使 WW 适合生物处理。BOD/COD(化学需氧量)<0.8 表明需要生物量驯化。开发的 WWT 系统的主要工艺单元包括初次沉淀池、级联曝气、滴滤器、吸附过滤器和氯化接触罐。在二级 WWT 系统 15 周运行期间,观察到 TSS(91%)、TDS(46%)、BOD(88%)、COD(87%)的去除率相当高。所开发的 WWT 系统适合作为一种可持续的 WWT 系统,消耗较少的能源且具有较低的运营成本。

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