期刊文献+
共找到5篇文章
< 1 >
每页显示 20 50 100
新型循环流化床的脱氮除磷机理 被引量:4
1
作者 崔玉波 george nakhla Jesse Zhu 《中国给水排水》 CAS CSCD 北大核心 2005年第1期93-95,共3页
 新型循环流化床解决了固定生物膜不能回流的问题,并可实现脱氮除磷功能。清水和启动试验表明,该系统可有效去除污染物。
关键词 循环流化床 脱氮除磷 启动
下载PDF
新型循环流化床硝化-反硝化启动试验研究 被引量:1
2
作者 崔玉波 george nakhla Jesse Zhu 《环境污染治理技术与设备》 CSCD 北大核心 2005年第10期37-40,共4页
利用新型循环流化床进行清水实验及硝化、反硝化启动试验研究,考察了系统对有机物和氮的去除效果,并分析了曝气量对系统启动的影响。结果表明,将输送床和传统流化床工艺进行有机结合,技术上可行,可以在系统内不同区建立缺氧、好氧条件,... 利用新型循环流化床进行清水实验及硝化、反硝化启动试验研究,考察了系统对有机物和氮的去除效果,并分析了曝气量对系统启动的影响。结果表明,将输送床和传统流化床工艺进行有机结合,技术上可行,可以在系统内不同区建立缺氧、好氧条件,通过硝化和反硝化作用完成脱氮。 展开更多
关键词 循环流化床 硝化 反硝化 污水处理
下载PDF
Fluidized-Bed Bioreactor Applications for Biological Wastewater Treatment: A Review of Research and Developments 被引量:15
3
作者 Michael J. Nelson george nakhla Jesse Zhu 《Engineering》 SCIE EI 2017年第3期330-342,共13页
污水处理是保护环境和人类健康的重要过程。目前,最经济有效的污水处理方法为生物处理法,如运行时间较长的活性污泥法。然而,随着人口的增长,对新型高效污水处理技术的需求越来越迫切,流态化技术虽然已展示出能够提高许多化学与生化处... 污水处理是保护环境和人类健康的重要过程。目前,最经济有效的污水处理方法为生物处理法,如运行时间较长的活性污泥法。然而,随着人口的增长,对新型高效污水处理技术的需求越来越迫切,流态化技术虽然已展示出能够提高许多化学与生化处理过程的效率,但尚未在大型污水处理过程中得到广泛的应用。循环流化床生物反应器(CFBBR)污水处理技术的研究始于加拿大西安大略大学,在该技术中,载体颗粒表面会形成一层含细菌与其他微生物的生物膜,并在反应器中呈流化状态;流态化固有的良好混合和质量传递特性,使得该技术在生活污水和工业污水处理过程中均具优势。实验室阶段和中试阶段的研究均证实了CFBBR可去除污水中90%以上的碳源、80%以上的氮源,且污泥产量少于活性污泥法的1/3。由于该技术的高效性,CFBBR还可被用于传统方法难以处理的高有机碳污水处理,且具有占地面积小的优势。同时,CFBBR在动态负荷试验(进水量和进水浓度变化)中也展现了良好的抗冲击和恢复性能。总的来说,CFBBR是一种高效的污水处理方法,可在较短的水力停留时间和较小的反应器体积内处理更多的污水。此外,该反应器的紧凑设计将有助于在偏僻地区建造独立的污水处理系统。 展开更多
关键词 污水 污水生物处理 流化床技术 生物流化床反应器 生物营养物去除 生物膜技术 生物颗粒 高效过程
下载PDF
Enhanced biological phosphorus removal using thermal alkaline hydrolyzed municipal wastewater biosolids 被引量:4
4
作者 Masuduz Zaman Mingu Kim +2 位作者 george nakhla Ajay Singh Fenghua Yang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2019年第12期164-174,共11页
This study reports the feasibility of using municipal wastewater biosolids as an alternative carbon source for biological phosphorus removal.The biosolids were treated by a lowtemperature,thermal alkaline hydrolysis p... This study reports the feasibility of using municipal wastewater biosolids as an alternative carbon source for biological phosphorus removal.The biosolids were treated by a lowtemperature,thermal alkaline hydrolysis process patented by Lystek International Inc.(Cambridge,ON,Canada)to produce short-chain volatile fatty acids and other readily biodegradable organics.Two sequencing batch reactors(SBRs)were operated with synthetic volatile fatty acids(Syn VFA)and readily biodegradable organics produced from the alkaline hydrolysis of municipal wastewater biosolids(Lystek)as the carbon source,respectively.Municipal wastewaters with different strengths and COD:N:P ratios were tested in the study.The reactors’performances were compared with respect to nitrogen and phosphorus removal.It was observed that phosphorus removal efficiencies were between 98%–99%and 90%–97%and nitrogen removal efficiencies were 78%–81%,and 67%for the Syn VFA and Lystek,respectively.However,the kinetics for phosphorus release and uptake during the anaerobic and aerobic stages with Lystek were observed to be significantly lower than Syn VFA due to the presence of higher order VFAs(C4 and above)and other fermentable organics in the Lystek. 展开更多
关键词 Alternative carbon source Biological nutrient removal Organic resource recovery Biosolids application Phosphorus accumulating ORGANISMS
原文传递
Acute and chronic toxicity of nickel to nitrifiers at different temperatures 被引量:2
5
作者 Xiaoguang Liu Mohammad M.I.Chowdhury +2 位作者 Masuduz Zaman Mingu Kim george nakhla 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2019年第8期169-178,共10页
This study investigated the acute nickel toxicity on nitrification of low ammonia synthetic wastewater at 10, 23, and 35°C. The nickel inhibition half-velocity constants(K_(I,Ni)) for ammonia oxidizing bacteria(A... This study investigated the acute nickel toxicity on nitrification of low ammonia synthetic wastewater at 10, 23, and 35°C. The nickel inhibition half-velocity constants(K_(I,Ni)) for ammonia oxidizing bacteria(AOB) and nitrite oxidizing bacteria(NOB) based on Ni/MLSS ratio at 10, 23, and 35°C were 5.4 and 5.6 mg Ni/g MLSS, 4.6 and 3.5 mg Ni/g MLSS, and 9.1 and 2.7 mg Ni/g MLSS, respectively. In addition, chronic toxicity of nickel to nitrification of low ammonia synthetic wastewater was investigated at 10°C in two sequencing batch reactors(SBRs). Long-term SBRs operation and short-term batch tests were comparable with respect to the extent of inhibition and corresponding Ni/MLSS ratio. The μ_(max), b, and K_o of AOB were 0.16 day^(-1), 0.098 day^(-1) and 2.08 mg O_2/L after long-term acclimatization to nickel of 1 mg/L at 10°C, high dissolved oxygen(DO)(7 mg/L) and long solids retention time(SRT) of 63–70 days. Acute nickel toxicity of nitrifying bacteria was completely reversible. 展开更多
关键词 NICKEL INHIBITION Temperature Nitrifying culture ACTIVATED SLUDGE TOXICITY
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部