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废水的生化深度处理 被引量:2
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作者 Hiroshi ISHIDA 盛斌 《世界环境》 1995年第2期14-17,共4页
引言近年来,在废水的深度处理领域,迅速开发普及着多种多样的生物反应器。这些反应器与传统的悬浮增殖型生物反应器相比较,可以更好地固定高浓度的生物量;设备更为集约化;固液分离性能更好;除可去除议)D外还可去除氮等。
关键词 废水处理 生化深度处理 生物膜法 生物反应器
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浅析混酸废水生化深度处理设计
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作者 韩锋 孙小红 《山西建筑》 2021年第4期91-93,共3页
对轧钢混酸废水处理站出水水质进行了分析,从废水处理工艺和轧钢混酸废水深度脱氮处理方面进行了论述,提出了两级“硝化—反硝化”废水处理工艺流程,并进行了生物营养元素的选择和最佳配比的研究,达到了出水水质指标远低于设计指标和国... 对轧钢混酸废水处理站出水水质进行了分析,从废水处理工艺和轧钢混酸废水深度脱氮处理方面进行了论述,提出了两级“硝化—反硝化”废水处理工艺流程,并进行了生物营养元素的选择和最佳配比的研究,达到了出水水质指标远低于设计指标和国家及天津市地方标准的预期效果,解决了轧钢酸洗产生的混酸废水总氮超标问题,为轧钢混酸酸洗废水深度生化脱氮处理提供了一种新途径。 展开更多
关键词 混酸废水 生化深度处理 废水处理工艺
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豆类加工废水处理实践及运行 被引量:2
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作者 齐斌 靳娜 王景 《环境科技》 2010年第6期28-30,共3页
采用物化/生化/深度处理工艺处理高浓度豆类加工废水,出水水质稳定,各项指标均满足GB 8978—1996《污水综合排放标准》表4中二级排放标准,COD,BOD,NH3-N的去除率分别为可以达到98.3%,99.4%,85%。
关键词 高浓度 豆类加工废水 物化/生化/深度处理
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大连开发区小窑湾污水处理厂建设工程优化设计
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作者 苗恕 《资源节约与环保》 2019年第5期93-94,共2页
根据城区现状及发展情况,该污水处理厂的总设计规模12万m3/d,分三期建设。本文主要介绍其一期工程概况。主体处理工艺:预处理+改良AA/O+絮凝沉淀过滤+紫外线消毒工艺,确保出水水质达标排放。
关键词 进出水 水质改良 AA/O生化深度处理
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Advanced treatment of biologically pretreated coking wastewater by intensified zero-valent iron process(IZVI) combined with anaerobic filter and biological aerated filter(AF/BAF) 被引量:4
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作者 潘碌亭 韩悦 吴锦峰 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第10期3781-3787,共7页
Experiments were conducted to investigate the behavior of the sequential system of intensified zero-valent iron process(IZVI) and anaerobic filter and biological aerated filter(AF/BAF) reactors for advanced treatment ... Experiments were conducted to investigate the behavior of the sequential system of intensified zero-valent iron process(IZVI) and anaerobic filter and biological aerated filter(AF/BAF) reactors for advanced treatment of biologically pretreated coking wastewater. Particular attention was paid to the performance of the integrated system for the removal of chemical oxygen demand(COD), ammonia nitrogen(NH3-N) and total nitrogen(TN). The average removal efficiencies of COD, NH3-N and TN were 76.28%, 96.76% and 59.97%, with the average effluent mass concentrations of 56, 0.53 and 18.83 mg/L, respectively, reaching the first grade of the national discharge standard. Moreover, the results of gas chromatography/mass spectrum(GC/MS) and gel permeation chromatography(GPC) analysis demonstrated that the refractory organic compounds with high relative molecular mass were partly removed in IZVI process by the function of oxidation-reduction, flocculation and adsorption which could also enhance the biodegradability of the system effluent. The removal efficiencies of NH3-N and TN were achieved mainly in the subsequent AF/BAF reactors by nitrification and denitrification. Overall, the results obtained show that the application of IZVI in combination with AF/BAF is a promising technology for advanced treatment of biologically pretreated coking wastewater. 展开更多
关键词 advanced treatment coking wastewater intensified zero valent iron BIOFILTER
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