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Assessment of the Viability of the Reuse of Sedibeng District Municipal Secondary Effluent in Southern Gauteng, South Africa
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作者 Gugulethu Given Skosana Hein H. du Preez 《Journal of Water Resource and Protection》 2017年第8期1043-1061,共19页
Population growth, urbanization, water resources pollution, environmental awareness, uneven distribution of water resources and water scarcity have necessitated water reuse especially in arid and semi-arid countries. ... Population growth, urbanization, water resources pollution, environmental awareness, uneven distribution of water resources and water scarcity have necessitated water reuse especially in arid and semi-arid countries. Influent and effluent data of chemical and biological analyses from four wastewater treatment plants (WWTPs) in the Sedibeng district municipality (SDM) were used to assess the viability of water reuse. Available worldwide water reuse criteria of Water Reclamation Plants (WRPs) for different reuse options were used to characterize the SDM’s four WWTPs for potable water, power and steel industrial water reuse. Only WWTP4 does not meet the influent design criteria of the New Goreangab WRP in Windhoek, Namibia of 43 mg/l and the DWAF general limit of discharge of 75 mg/l used by Beaufort West WRP in South Africa for COD. WWTP2 and 4 do not meet the DWAF general limit of 25 mg/l for suspended solids. Some of the water quality parameters of the effluents from these plants were non-compliant to the requirements for reuse in power generation and steel manufacturing. However, the implementation of advance treatment technologies such as membrane or advanced oxidation processes (AOPs) as part of the treatment train in a potential WRP would address the water quality issues. Water reclamation of SDM effluent either through direct (DPR) or indirect potable (IPR) water reuse, power generation and steel manufacturing industry has the potential of reuse in the Southern Gauteng region. The success of the selected option would be depended on cost effectiveness, stakeholder commitment and public acceptance of the reuse strategy. 展开更多
关键词 Water RECLAMATION indirect/direct potable reuse Advanced Treatment Wastewater EFFLUENT
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可饮用再生水的应用与技术进展 被引量:2
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作者 王永刚 王书倩 +1 位作者 潘涛 孙长虹 《水处理技术》 CAS CSCD 北大核心 2013年第2期1-4,共4页
介绍了国外可饮用再生水的成功案例,总结了可饮用再生水的技术发展历程,展望了该技术未来发展方向。按目前的技术发展水平,可饮用再生水可以成为一种安全、可靠的饮用水源,对于缓解干旱地区和人口密集地区的缺水问题具有广阔的应用前景。
关键词 水危机 直接饮用再生水 间接饮用再生水 水回用
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MBR-RO组合工艺生产直接饮用再生水的试验研究
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作者 王永刚 李中锟 +4 位作者 董婧 潘涛 王旭 李明蔚 张俊娥 《河南水利与南水北调》 CAS 2016年第4期91-98,共8页
采用膜生物反应器-反渗透(MBR-RO)组合工艺处理生活污水的过程中,MBR出水污染指数(SDI)在2.5^3.5之间,符合RO膜元件进水要求,且添加10mg/L阻垢剂后能有效控制RO膜的结垢问题。MBR-RO组合工艺的产水水质良好,其中常规水质指标COD(M... 采用膜生物反应器-反渗透(MBR-RO)组合工艺处理生活污水的过程中,MBR出水污染指数(SDI)在2.5^3.5之间,符合RO膜元件进水要求,且添加10mg/L阻垢剂后能有效控制RO膜的结垢问题。MBR-RO组合工艺的产水水质良好,其中常规水质指标COD(Mn)浓度〈0.05mg/L、NH4^+-N浓度0.15mg/L、NO3^--N浓度2.82mg/L、NO2^--N浓度〈0.7mg/L、TP浓度0.12mg/L,TOC浓度0.51mg/L,参照国家《生活饮用水卫生标准》中主要的73项指标分析,产水达到饮用水水质标准。本研究结果表明,采用MBR-RO组合工艺生产直接饮用再生水是可行的。 展开更多
关键词 MBR-RO组合工艺 反渗透 生活污水 直接饮用再生水
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Role of water chemistry on estrone removal by nanofiltration with the presence of hydrophobic acids 被引量:1
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作者 Xue JIN Jiangyong HU 《Frontiers of Environmental Science & Engineering》 SCIE EI CAS CSCD 2015年第1期164-170,共7页
Hydrophobic acid organic matter (HpoA) extracted from treated effluent has been known to improve the rejection of steroid hormone estrone by reverse osmosis (RO) and nanofiltration (NF) membranes. In this study,... Hydrophobic acid organic matter (HpoA) extracted from treated effluent has been known to improve the rejection of steroid hormone estrone by reverse osmosis (RO) and nanofiltration (NF) membranes. In this study, the effects of solution chemistry (solution pH and ionic strength) on the estrone rejection by NF membrane with the presence of HpoA were systematically investigated. Crossflow nanofiltration experiments show that the presence of HpoA significantly improved estrone rejection at all pH and ionic strength levels investigated. It is consistently shown that the "enhancement effect" of HpoA on estrone rejection at neutral and alkaline pH is attributed to the binding of estrone by HpoA macromolecules via hydrogen bonding between phenolic functional groups in feed solutions, which leads to an increase in molecular weight and appearance of negative charge. The membrane exhibited the best performance in terms ofestrone rejection at pH 10.4 (compared to pH 4 and pH 7) as a result of strengthening the electrostatic repulsion between estrone and membrane with the presence of HpoA. At neutral pH level, the ability of HpoA macromolecules to promote estrone rejection became stronger with increasing ionic strength due to their more extended conformation, which created more chances for the association between estrone and HpoA. The important conclusion of this study is that increasing solution pH and salinity can greatly intensify the "enhancement effect" of HpoA. These results can be important for NF application in direct/indirect potable water reuse. 展开更多
关键词 steroid hormone nanofiltration(NF) REJECTION water chemistry hydrophobic acids indirect potable water reuse
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