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油田含油污水处理现状及综合利用技术 被引量:6
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作者 党伟 羊东明 《石油规划设计》 2005年第4期28-30,共3页
对各种多余污水处理技术的特点和适用范围进行了分析。根据部分油田的供水现状、污水性质和废热利用职权现状,提出了利用天然气发电机或锅炉产生的大量高温废气,将多余污水加热蒸发并冷凝成工农业生产用水的汽、液、固三相流的技术。介... 对各种多余污水处理技术的特点和适用范围进行了分析。根据部分油田的供水现状、污水性质和废热利用职权现状,提出了利用天然气发电机或锅炉产生的大量高温废气,将多余污水加热蒸发并冷凝成工农业生产用水的汽、液、固三相流的技术。介绍了采用该项技术的关键工艺及新型蒸发器的工艺原理、流程,并对照传统的污水回灌技术对其进行了经济分析和评价。 展开更多
关键词 油田 含油污水处理 蒸发器 污水生化处理技术 冰冻法 工艺流程 污水加热蒸发处理技术 汽、液、固三相流技术
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RPIR+磁混凝工艺在污水处理厂提标改造中的应用 被引量:4
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作者 彭东升 许洋 +4 位作者 李方源 张扬 张建建 尹娟 李红桔 《净水技术》 CAS 2023年第3期158-163,共6页
深圳市某污水处理厂原处理规模为2.5万m^(3)/d,采用接触氧化处理工艺,设计出水执行《城镇污水处理厂污染物排放标准》(GB 18918—2002)一级A标准(TN、TP除外)。为满足更加严格的水质考核要求,需对污水处理厂进行提标改造,使出水水质指... 深圳市某污水处理厂原处理规模为2.5万m^(3)/d,采用接触氧化处理工艺,设计出水执行《城镇污水处理厂污染物排放标准》(GB 18918—2002)一级A标准(TN、TP除外)。为满足更加严格的水质考核要求,需对污水处理厂进行提标改造,使出水水质指标满足《地表水环境质量标准》(GB 3838—2002)IV类标准(TN除外,SS采用原标准)。提标改造工程根据处理需求并结合各构筑物运行工况,处理规模调整为2万m^(3)/d,改造采用以快速生化污水处理技术(RPIR)+磁混凝沉淀为核心的处理工艺。项目改造后运行稳定,出水水质全面优于设计出水水质标准。此外,污水处理厂提标改造成本按日均污水量计算为1481.16元/m^(3),直接运行成本仅提高0.28元/m^(3)。 展开更多
关键词 污水处理 提标改造 快速生化污水处理技术 磁混凝 运行分析
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AA/RPIR+磁混凝工艺在城市污水处理厂扩能改造中的应用 被引量:2
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作者 王磊 俞健 张敏君 《净水技术》 CAS 2023年第12期154-161,共8页
昆山某城市污水处理厂处理水量长期处于超负荷状态,同时又面临建设面积紧缺及出水标准升级的问题,研究后决定采用AA/快速生化污水处理(RPIR)+磁混凝工艺在原厂址基础上进行扩能改造。重点对AA/RPIR+磁混凝工艺的实际运行效果及经济运行... 昆山某城市污水处理厂处理水量长期处于超负荷状态,同时又面临建设面积紧缺及出水标准升级的问题,研究后决定采用AA/快速生化污水处理(RPIR)+磁混凝工艺在原厂址基础上进行扩能改造。重点对AA/RPIR+磁混凝工艺的实际运行效果及经济运行效益展开分析。结果表明:该工艺对污染物的去除效果极好,COD_(Cr)去除率高达94.2%;出水浓度均优于设计标准,其中COD_(Cr)、BOD5、SS、氨氮、TN、TP均值分别为13.38、2.31、6.31、0.313、7.86、0.082 mg/L;沿程分析结果显示AA/RPIR与磁混凝工艺结合取得了良好脱氮除磷效果,氨氮、TN、TP去除率分别达到了99.0%、77.5%、97.9%,75.0%~90.2%的磷均在生化段去除且具备良好的工艺稳定性;经济效益分析结果显示本项目投资运行成本低,正式运营后RPIR池吨水电耗由0.511 kW·h下降到0.215 kW·h,磁混凝PAC+PAM吨水耗药成本由0.026元下降到0.0046元,节能降耗效果较好。 展开更多
关键词 快速生化污水处理技术(RPIR) 磁混凝 污水 改造 脱氮除磷 节能降耗
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Fluidized-Bed Bioreactor Applications for Biological Wastewater Treatment: A Review of Research and Developments 被引量:15
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作者 Michael J. Nelson George Nakhla Jesse Zhu 《Engineering》 SCIE EI 2017年第3期330-342,共13页
Wastewater treatment is a process that is vital to protecting both the environment and human health. At present, the most cost-effective way of treating wastewater is with biological treatment processes such as the ac... Wastewater treatment is a process that is vital to protecting both the environment and human health. At present, the most cost-effective way of treating wastewater is with biological treatment processes such as the activated sludge process, despite their long operating times. However, population increases have created a demand for more efficient means of wastewater treatment, Fluidization has been demonstrated to in- crease the efficiency of many processes in chemical and biochemical engineering, but it has not been widely used in large-scale wastewater treatment. At the University of Western Ontario, the circulating fluidized-bed bioreactor (CFBBR) was developed for treating wastewater. In this process, carrier particles develop a biofilm composed of bacteria and other microbes. The excellent mixing and mass transfer characteristics inherent to fluidization make this process very effective at treating both municipal and industrial wastewater. Studies of lab- and pilot-scale systems showed that the CFBBR can remove over 90% of the influent organic matter and 80% of the nitrogen, and produces less than one-third as much biological sludge as the activated sludge process. Due to its high efficiency, the CFBBR can also be used to treat wastewaters with high organic solid concentrations, which are more difficult to treat with conventional methods because they require longer residence times; the CFBBR can also be used to reduce the system size and footprint. In addition, it is much better at handling and recovering from dynamic loadings (i.e., varying influent volume and concentrations) than current systems. Overall, the CFBBR has been shown to be a very effective means of treating wastewa- ter, and to be capable of treating larger volumes of wastewater using a smaller reactor volume and a shorter residence time. In addition, its compact design holds potential for more geographically localized and isolat- ed wastewater treatment systems. 展开更多
关键词 WASTEWATER Biological wastewater treatment Fluidized-bed technology Fluidized-bed reactor Biological nutrient removal Bio-particles High-efficiency process
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