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Screening of Polyphosphate Accumulating Organisms and Their Phosphorus Removal Performance
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作者 Miaoxuan HONG Qitong LIANG +1 位作者 Yating HUANG Shasha LIU 《Asian Agricultural Research》 2024年第1期22-24,共3页
[Objectives]To study the phosphorus removal performance of phosphate accumulating organisms(PAOs).[Methods]Activated sludge from domestic sewage treatment plant was used as the strain source,and phosphate accumulating... [Objectives]To study the phosphorus removal performance of phosphate accumulating organisms(PAOs).[Methods]Activated sludge from domestic sewage treatment plant was used as the strain source,and phosphate accumulating organisms were screened by plate streaking method and dilution coating plate method.Six kinds of excellent phosphate accumulating organisms were obtained by metachromatic granule staining experiment,total phosphorus experiment and simulated sewage phosphorus removal experiment to assist the observation of bac-terial morphology and experiment of phosphorus removal capacity.In addition,the influencing factors of phosphorus removal capacity(nitrogen source,trace metal ions)were analyzed.[Results]In the case of simulated sewage,the phosphorus removal rate of strain b was the highest,reaching 66.25%,while the phosphorus removal rate of strain e and f was about 10%lower than that of the phosphorus uptake experiment.[Conclusions]This study is expected to provide a theoretical reference for the gradual optimization of the screening method of phosphorus re-moval bacteria in domestic sewage treatment. 展开更多
关键词 phosphate accumulating organisms(paos) Separation and screening Biological phosphorus removal
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Hypothesis for metabolites of denitrifying phosphate accumulating organisms by the restriction of denitrifying bacteria in anoxic phase
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作者 任南琪 陈鸣岐 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2011年第4期1-4,共4页
The objective of this work is to verify a hypothesis that nitrite accumulation comes from the metabolites of denitrification phosphate accumulating organisms (DPAOs),not denitrifying bacteria.On the precondition of th... The objective of this work is to verify a hypothesis that nitrite accumulation comes from the metabolites of denitrification phosphate accumulating organisms (DPAOs),not denitrifying bacteria.On the precondition of the restriction of denitrifying bacteria in anoxic phase,static experimental test was designed using NO3-as electron acceptor,effluent was removed after sedimentation in anaerobic phase,and the same concentration solution of PO43--P was returned,so that TOC was excluded and denitrification was inhibited in the next phases.A parallel experiment was carried out simultaneously with the normal anaerobic-anoxic progress.The results showed that,in static test,by keeping the normal growth of DPAO and inhibiting denitrification of denitrifying bacteria,P-release in anaerobic and P-uptake in anoxic phase proceeded normally.DPAO had obvious effect on P-removal and the P-removal efficiency was 69%.The effluent concentration of NO3--N and NO2--N was 7.62 mg/L and 6.05 mg/L respectively,compared with parallel experiments,and nitrogen removal rate was lower.No nitrite residue was found in parallel test.Therefore,it can confirm the hypothesis that the metabolites of DPAO are both nitrogen and nitrite when nitrate is taken as electron acceptor,and nitrite is subsequently converted to nitrogen by denitrifying bacteria. 展开更多
关键词 METABOLITE denitrification phosphate accumulating organisms (Dpaos) enhanced biological phosphorus removal (EBPR) nitrate NITRITE
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Biomass Fraction of Phosphate-Accumulating Organisms Grown in Anoxic and Aerobic Stages under Optimum Nitrate Concentration
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作者 王晓玲 李娜 +3 位作者 谢添 张芳 董利鹏 殷宝用 《Journal of Donghua University(English Edition)》 EI CAS 2014年第3期278-286,共9页
The effects of nitrate concentration on the capability of phosphorus uptake in the main anoxic stage were investigated.Meanwhile, the biomass fractions — heterotrophs, phosphateaccumulating organisms( PAOs),and nitri... The effects of nitrate concentration on the capability of phosphorus uptake in the main anoxic stage were investigated.Meanwhile, the biomass fractions — heterotrophs, phosphateaccumulating organisms( PAOs),and nitrifying organisms in a pilot-scale enhanced biological phosphorus removal( EBPR) system— were both experimentally and theoretically evaluated( from the mass balance calculations of organic matter, nitrogen and phosphorus),under optimum nitrate concentration in the main anoxic stage,in which the influent chemical oxygen demand( COD)concentration was stabilized at( 290 ± 10) mg·L- 1and the influent total phosphorus( TP) concentration was stabilized at( 7. 0 ± 0. 5)mg · L- 1. In long term operations,the process exhibited high performance in removing organic matter, nitrogen, and phosphorus. Approximately 46. 41% of organic matter,57. 21% of nitrogen,and 48. 14% of phosphorus were removed from the influent in the form of carbon dioxide,nitrogen gas,and polyphosphate,respectively. XH( heterotrophs),XPAO( PAOs),and XAUT( autotrophs) were regarded as the major organisms responsible for biomass production. The yield fractions of XHgrowth in the first anoxic,the second anoxic,and the aerobic stages were 10. 24%,19. 11%,and 19. 71%,respectively; the yield fractions of XPAO growth in the second anoxic and the aerobic stages were 24. 34% and19. 86%,respectively; the yield fraction of XAUTgrowth in the aerobic stage was 6. 74%. These results showed that XHand XPAOformed the major community. Moreover,a higher amount of XPAOgrowth on stored poly-hydroxyalkanoates( PHAs) under the anoxic condition was seen in this EBPR system for municipal wastewater treatment. 展开更多
关键词 biomass anoxic phosphorus uptake HETEROTROPHS phosphate-accumulating organisms nitrifying organisms
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Strain Pseudomonas putida PAO-1 Isolate with Polyphosphate Accumulating and Elongation Ability
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作者 DONG Xuetong TIAN Qing +3 位作者 ZHU Yanbin LI Fang YANG Bo LIU Yanbiao 《Journal of Donghua University(English Edition)》 CAS 2021年第6期539-548,共10页
Filamentous bacteria(FB)overgrowth is an important cause of sludge bulking in wastewater treatment plants(WWTPs).However,to date,methods for the cultivation and preservation of isolated FB in the laboratory have not b... Filamentous bacteria(FB)overgrowth is an important cause of sludge bulking in wastewater treatment plants(WWTPs).However,to date,methods for the cultivation and preservation of isolated FB in the laboratory have not been completely described.Furthermore,research on whether FB can function as phosphorus accumulating organisms(PAOs)is limited.In this study,a pure strain,a Pseudomonas putida PAO-1(P.putida PAO-1)isolate with phosphorus removal functions was isolated from the biofilm of an alternating anaerobic/aerobic biofilter(AABF),and its physiological characteristics were studied.Nitrate or nitrite could be used by the strain P.putida PAO-1 as electron acceptors for denitrification during phosphorus anoxic uptake,and 0.63 mg NO-3-N was consumed to reduce 1 mg soluble orthophosphate(SOP)by P.putida PAO-1.The strain P.putida PAO-1 consumed phosphorus within the optimal pH range of 6 to 8 and the temperature range of 25℃to 35℃.Cell deformity was a main morphological trait of the strain P.putida PAO-1,and it could elongate(with an elongation rate of 300%-500%)when it was subjected to oligotrophic or high-salt stress(15 g·L-1 NaCl).The findings in this study provide a microbiological reference for understanding the special characteristics of a denitrifying PAO. 展开更多
关键词 Pseudomonas putida pao-1 isolate(P.putida pao-1) ELONGATION ACCLIMATION denitrification phosphorus accumulating organism(pao)
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Biological nitrogen removal with enhanced phosphate uptake in (AO)2SBR using single sludge system 被引量:11
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作者 JIANGYi-feng WANGLin +2 位作者 WANGBao-zhen HESheng-bing LIUShuo 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2004年第6期1037-1040,共4页
Simultaneous biological phosphorus and nitrogen removal with enhanced anoxic phosphate uptake via nitrite was investigated in an anaerobic-aerobic-anoxic-aerobic sequencing batch reactor((AO)2 SBR). The system showed ... Simultaneous biological phosphorus and nitrogen removal with enhanced anoxic phosphate uptake via nitrite was investigated in an anaerobic-aerobic-anoxic-aerobic sequencing batch reactor((AO)2 SBR). The system showed stable phosphorus and nitrogen removal performance, and average removals for COD, TN and TP were 90%, 91% and 96%, respectively. The conditions of pH 7.5—8.0 and temperature 32℃ were found detrimental to nitrite oxidation bacteria but favorable to ammonia oxidizers, and the corresponding specific oxygen uptake rates(SOUR) for phase 1 and 2 of nitrification process were 0.7 and 15 mgO 2/(gVSS·h) in respect, which led to the nitrite accumulation in aerobic phase of(AO)2 SBR. Respiratory tests showed that 40 mgNO 2-N/L did not deteriorate the sludge activity drastically, and it implied that exposure of sludge to nitrite periodically enabled the biomass to have more tolerance capacity to resist the restraining effects from nitrite. In addition, batch tests were carried out and verified that denitrifying phosphorus accumulation organisms(DPAOs) could be enriched in a single sludge system coexisting with nitrifiers by introducing an anoxic phase in an anaerobic-aerobic SBR, and the ratio of the anoxic phosphate uptake capacity to aerobic phosphate uptake capacity was 45%. It was also found that nitrite(up to 20 mgNO 2-N/L) was not inhibitory to anoxic phosphate uptake and could serve as an electron acceptor like nitrate, but presented poorer efficiency compared with nitrate. 展开更多
关键词 denitrifying phosphorus accumulation organisms(Dpaos) shortcut nitrification and denitrification anoxic phosphate uptake sequencing batch reactor(SBR) NITRITE electron acceptor
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聚磷菌PAO1-1的筛选及除磷特性 被引量:21
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作者 刘亚男 于水利 +2 位作者 薛罡 赵方波 郭思远 《中国给水排水》 CAS CSCD 北大核心 2005年第10期13-17,共5页
从运行稳定的以生活污水为碳源的生物除磷污泥中筛选出一株聚磷菌PAO1-1,该菌株对普通活性污泥系统具有很好的强化作用,驯化10 d后可使除磷率由投菌前的44%提高到90%以上。对该菌株的形态、生理生化特征及16S rDNA序列进行分析后,鉴定... 从运行稳定的以生活污水为碳源的生物除磷污泥中筛选出一株聚磷菌PAO1-1,该菌株对普通活性污泥系统具有很好的强化作用,驯化10 d后可使除磷率由投菌前的44%提高到90%以上。对该菌株的形态、生理生化特征及16S rDNA序列进行分析后,鉴定该菌株为产碱杆菌属。该菌株对磷的平均吸收速率为13.8 mg/(g.h),处于“磷酸盐饥饿期”时对磷的吸收速率为19.2 mg/(g.h),比“非饥饿期”提高了39.1%。处于对数期的PAO1-1在厌氧条件下的无磷培养基中的释磷速率为11.8 mg/(g.h),稳定期释磷速率为7.0 mg/(g.h),释磷速率下降了40.7%。 展开更多
关键词 生物除磷 聚磷菌 释磷速率
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SPNED-PR系统内PAOs-GAOs的竞争关系及其氮磷去除特性 被引量:13
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作者 王晓霞 王淑莹 +2 位作者 赵骥 戴娴 彭永臻 《中国环境科学》 EI CAS CSSCI CSCD 北大核心 2018年第2期551-559,共9页
为研究同步短程硝化内源反硝化除磷(SPNED-PR)系统的脱氮除磷特性及系统内聚磷菌(PAOs)和聚糖菌(GAOs)在氮磷去除的贡献和竞争关系,本研究以实际低C/N比(4左右)生活污水为处理对象,考察了不同浓度的溶解氧(DO)(0.5~2.0mg/L)、NO2--N(4.7... 为研究同步短程硝化内源反硝化除磷(SPNED-PR)系统的脱氮除磷特性及系统内聚磷菌(PAOs)和聚糖菌(GAOs)在氮磷去除的贡献和竞争关系,本研究以实际低C/N比(4左右)生活污水为处理对象,考察了不同浓度的溶解氧(DO)(0.5~2.0mg/L)、NO2--N(4.7~39.9mg/L)和NO3--N(5.0~40.0mg/L)对延时厌氧(150min)/低氧(180min,溶解氧0.5~0.7mg/L)运行的SPNED-PR系统氮磷去除特性和底物转化特性的影响.结果表明,DO浓度均不影响PAOs和GAOs的好氧代谢活性,且两者之间几乎不存在DO竞争.不同NO2--N浓度条件下,GAOs较PAOs更具竞争优势,NO2--N主要是通过GAOs去除的(约占58%);且GAOs所具有的高内源反硝化活性和亚硝耐受力,减弱了高NO2--N浓度(26.2~39.9mg/L)对PAOs反硝化吸磷的抑制,保证了系统的脱氮除磷性能.不同NO3--N浓度条件下,PAOs较GAOs处于竞争优势,其在NO3--N去除中的贡献比例达61.2%.此外,SPNED-PR系统的PURDO>PURnitrate>PURnitrite,PAOs对DO的优先利用保证了低氧条件下系统的高效除磷,且GAOs的内源短程反硝化特性保证了系统的高效脱氮. 展开更多
关键词 强化生物除磷(EBPR) 同步短程硝化内源反硝化(SPNED) 聚磷菌(paos) 聚糖菌(GAOs)
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EBPR中两类细菌PAOs和GAOs竞争的研究进展 被引量:3
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作者 王旭东 王磊 +2 位作者 张龙涛 吕永涛 王志盈 《环境科学与技术》 CAS CSCD 北大核心 2010年第5期81-84,132,共5页
强化生物除磷(EBPR)工艺可以获取高效的除磷效果,已在很多污水处理厂得到广泛应用。但是大型污水处理厂在相当多的条件下,EBPR工艺也会出现周期性除磷效果的波动和不充分。针对这一难题,研究者试图采用许多手段来研究工艺中的主要微生... 强化生物除磷(EBPR)工艺可以获取高效的除磷效果,已在很多污水处理厂得到广泛应用。但是大型污水处理厂在相当多的条件下,EBPR工艺也会出现周期性除磷效果的波动和不充分。针对这一难题,研究者试图采用许多手段来研究工艺中的主要微生物。文章针对典型的EBPR工艺和碳源、pH值、温度等因素对EBPR工艺中两类细菌聚磷菌(PAOs)和聚糖菌(GAOs)竞争的研究进展进行了论述,并展望了未来的研究方向。 展开更多
关键词 强化生物除磷 聚糖菌 聚磷菌 除磷工艺
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DNPAO_S的富集及其同步除磷脱氮的实验研究 被引量:2
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作者 唐艳葵 童张法 +1 位作者 张寒冰 王孝英 《广西师范大学学报(自然科学版)》 CAS 北大核心 2007年第3期117-121,共5页
采用强化除磷反应器,通过厌氧/好氧和厌氧/缺氧过程,分两阶段对硝化菌和反硝化聚磷菌(DNPAOS)进行选择和富集,形成了以二者为优势菌群的同步强化生物除磷脱氮体系。实验结果表明,体系同时存在硝化和反硝化吸磷过程,达到在废水处理过程... 采用强化除磷反应器,通过厌氧/好氧和厌氧/缺氧过程,分两阶段对硝化菌和反硝化聚磷菌(DNPAOS)进行选择和富集,形成了以二者为优势菌群的同步强化生物除磷脱氮体系。实验结果表明,体系同时存在硝化和反硝化吸磷过程,达到在废水处理过程中同时脱氮除磷的效果,经过58周期的厌氧/缺氧驯化富集,污水氨氮和总磷的去除率分别达到了93%和97%,DNPAOS占总PAOS的48%。 展开更多
关键词 强化除磷反应器 反硝化聚磷菌 脱氮 除磷
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Phosphorus accumulation by bacteria isolated from a continuous-flow two-sludge system 被引量:15
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作者 BAO Lin-lin LI Dong +4 位作者 LI Xiang-kun HUANG Rong-xin ZHANG Jie LV Yang XIA Guang-qing 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2007年第4期391-395,共5页
In this article, polyphosphate-accumulating organisms (PAOs) from a lab-scale continuous-flow two-sludge system was isolated and identified, the different phosphorus accumulation characteristics of the isolates unde... In this article, polyphosphate-accumulating organisms (PAOs) from a lab-scale continuous-flow two-sludge system was isolated and identified, the different phosphorus accumulation characteristics of the isolates under anoxic and aerobic conditions were investigated. Two kinds of PAOs were both found in the anoxic zones of the two-sludge system, one of them utilized only oxygen as electron aeceptor, and the other one utilized either nitrate or oxygen as electron aeceptor. Of the total eight isolates, five isolates were capable of utilizing both nitrate and oxygen as electron acceptors to uptake phosphorus to some extent. And three of the five isolates showed good phosphorus accumulative capacities both under anoxic or aerobic conditions, two identified as Alcaligenes and one identified as Pseudomonas. Streptococcus was observed weak anoxic phosphorus accumulation because of its weak denitrification capacity, but it showed good phosphorus accumulation capacity under aerobic conditions. One isolates identified as Enterobacteriaceae was proved to be a special species of PAOs, which could only uptake small amounts of phosphorus under anoxic conditions, although its denitrification capacity and aerobic phosphorus accumulation capacity were excellent. 展开更多
关键词 aerobic phosphorus accumulation anoxic phosphorus accumulation continuous-flow two-sludge system polyphosphateaccumulating organisms (paos)
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MUCT工艺反硝化除磷效率与Candidatus Accumulibacter的群落演替
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作者 曾薇 李超 +1 位作者 孟庆安 马晨阳 《北京工业大学学报》 CAS CSCD 北大核心 2019年第12期1243-1251,共9页
以处理实际生活污水的连续流MUCT工艺为基础,探究了全程硝化和短程硝化状态下优势聚磷菌Candidatus Accumulibacter的群落动态与系统反硝化除磷效果之间的相互联系.流式细胞仪定量检测结果表明,系统中聚磷菌占全菌的比例为22.1%,Accumul... 以处理实际生活污水的连续流MUCT工艺为基础,探究了全程硝化和短程硝化状态下优势聚磷菌Candidatus Accumulibacter的群落动态与系统反硝化除磷效果之间的相互联系.流式细胞仪定量检测结果表明,系统中聚磷菌占全菌的比例为22.1%,Accumulibacter是处于全程硝化状态下的优势聚磷菌,对系统中氮磷的去除起到重要作用.q PCR定量结果表明,短程硝化状态下的优势种IIC和IIC(ppk1 excluding OTU NS D3)以及IIF的增长率较快,占总Accumulibacter比例分别为11.53%、34.31%和17.97%,其利用亚硝进行反硝化除磷的能力比其他分支强,对系统化中亚硝的去除起到重要作用.IID分支在反应器整个运行阶段一直处于优势地位,是系统内氮磷去除最重要的分支.其在全程硝化状态下占Accumulibacter分支总和的80%,但在短程状态下的竞争能力不如其他的TypeⅡ型分支. 展开更多
关键词 实际生活污水 反硝化除磷 聚磷菌 accumulibacter 实时荧光定量PCR 流式细胞仪
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低温反硝化聚磷菌脱氮除磷性能研究 被引量:2
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作者 林锦美 武之杰 +2 位作者 陈锦芳 段金明 巫晶晶 《内蒙古民族大学学报(自然科学版)》 2023年第5期385-391,共7页
经过对兰州市安宁污水处理厂冬季曝气池的活性污泥筛选、驯化分离获得反硝化聚磷菌;对其进行生理生化鉴定及核糖体的RNA的亚基(16S rDNA)基因序列测序,鉴定为荧光假单胞菌属Pseudomonas sp.以模拟废水的出水总氮(TN)、总磷(TP)、pH等为... 经过对兰州市安宁污水处理厂冬季曝气池的活性污泥筛选、驯化分离获得反硝化聚磷菌;对其进行生理生化鉴定及核糖体的RNA的亚基(16S rDNA)基因序列测序,鉴定为荧光假单胞菌属Pseudomonas sp.以模拟废水的出水总氮(TN)、总磷(TP)、pH等为指标,考察反应温度、原水pH、摇床转速、不同碳氮比(C/N)等单因素对反硝化除磷菌脱氮除磷性能的影响。使用软件design-expert8.0.6.1将数据进行分析,获得二次响应面回归模型,并探究pH、温度、转速与TN去除率、TP去除率的交互作用。在最佳反应条件,即反应温度为16℃,反应时间为10 h,原水pH为7,摇床转速为140 r·min^(-1),C/N质量浓度比为12时,TN与TP的去除率分别为82.7%与88.1%,为今后城市废水处理提供支持。 展开更多
关键词 反硝化聚磷菌 脱氮除磷 低温
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SRT对酪蛋白水解物为碳源的EPBR系统的影响
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作者 任晨竹 王少坡 +3 位作者 王丽杰 毕艳孟 李亚静 于静洁 《工业水处理》 CAS CSCD 北大核心 2023年第1期56-61,共6页
为了探究污泥龄(SRT)对以酪蛋白水解物(Cas aa)为唯一碳源的强化生物除磷(EPBR)系统性能的影响,采用序批式反应器(SBR),在低温条件下考察了SRT对Cas aa为碳源的EPBR中微生物菌群的变化及其污染物去除性能的影响。结果表明,SRT为15 d时,... 为了探究污泥龄(SRT)对以酪蛋白水解物(Cas aa)为唯一碳源的强化生物除磷(EPBR)系统性能的影响,采用序批式反应器(SBR),在低温条件下考察了SRT对Cas aa为碳源的EPBR中微生物菌群的变化及其污染物去除性能的影响。结果表明,SRT为15 d时,系统除磷性能最佳,除磷率可达95%以上,显著高于其他SRT条件。系统运行典型周期分析表明:当SRT为15 d时,系统的厌氧释磷质量浓度最大,为34.03 mg/L,好氧吸磷质量浓度最大,为48.45 mg/L,除磷效果最优。高通量测序分析结果表明,系统内聚磷菌(PAOs)的组成和结构会随着SRT的变化而变化,SRT为15 d时,系统内全体PAOs相对丰度最高。 展开更多
关键词 污泥龄 酪蛋白水解物 强化生物除磷 聚磷菌
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短程硝化-强化生物除磷序批式反应器处理畜禽养殖废水
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作者 王莉 秦璐 +3 位作者 黄梦博 曹瑞 郑兴 王东琦 《水资源与水工程学报》 CSCD 北大核心 2023年第6期52-60,68,共10页
畜禽养殖废水有机物水质水量变化大,有机物、氨氮与磷的浓度较高,直接排放会严重危害环境。通过构建厌氧-好氧序批式反应器(SBR)处理预酸化畜禽养殖废水,分析了不同进水负荷条件下反应器对污染物的去除性能和微生物群落结构的变化规律... 畜禽养殖废水有机物水质水量变化大,有机物、氨氮与磷的浓度较高,直接排放会严重危害环境。通过构建厌氧-好氧序批式反应器(SBR)处理预酸化畜禽养殖废水,分析了不同进水负荷条件下反应器对污染物的去除性能和微生物群落结构的变化规律。结果表明:SBR反应器对高负荷进水中TN、PO_(4)^(3-)—P和COD的平均去除率可分别达到64.5%、97.5%和94.5%。反应器出现NH_(4)^(+)—N和NO_(2)^(—)-N亚硝酸同时积累的短程硝化现象,这可能与高进水负荷对氨氧化菌和亚硝酸盐氧化菌的活性和种群的影响有关。与乙酸盐相比,以丙酸盐作碳源时污泥的强化生物除磷活性更高。随着进水负荷的增大,聚糖菌(GAOs)的相对丰度明显升高。四联球状菌(Tetrasphaera)为反应器中始终占优势的聚磷菌(PAOs),对反应器除磷性能有重要贡献。在高有机负荷条件下,SBR内PAOs与GAOs之间不存在明显的底物竞争关系,系统脱氮除磷性能未受影响。 展开更多
关键词 畜禽养殖废水 短程硝化 强化生物除磷 序批式反应器 聚糖菌 聚磷菌
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序批式膜生物反应器中反硝化聚磷菌的富集 被引量:13
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作者 代文臣 张捍民 +3 位作者 肖景霓 杨凤林 张兴文 张新宇 《环境科学》 EI CAS CSCD 北大核心 2007年第3期517-521,共5页
采用序批式膜生物反应器(SBMBR)对以硝酸盐作为电子受体的反硝化聚磷菌的富集进行了研究.结果表明,经过厌氧-好氧和厌氧-缺氧-好氧2个阶段的富集,反硝化聚磷菌占全部聚磷菌的比例从19.4%上升到69.6%,每周期缺氧段投加硝酸盐氮120mg时,SB... 采用序批式膜生物反应器(SBMBR)对以硝酸盐作为电子受体的反硝化聚磷菌的富集进行了研究.结果表明,经过厌氧-好氧和厌氧-缺氧-好氧2个阶段的富集,反硝化聚磷菌占全部聚磷菌的比例从19.4%上升到69.6%,每周期缺氧段投加硝酸盐氮120mg时,SBMBR系统运行最为稳定.稳定运行的SBMBR反硝化强化除磷体系具有良好的强化除磷和反硝化脱氮性能,缺氧段脱氮和除磷效率分别达到100%和84%,膜出水总磷浓度平均低于0.5mg/L,系统除磷率达到96.1%.此外,氨氮去除率保持在92.2%,氨氮被去除的同时并没有发现亚硝酸盐氮和硝酸盐氮的明显积累. 展开更多
关键词 序批式膜生物反应器 反硝化除磷 反硝化聚磷菌 聚磷菌 硝酸盐
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高效聚磷菌株GM1的分离和聚磷特性研究 被引量:22
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作者 蔡天明 管莉菠 +1 位作者 崔中利 李顺鹏 《土壤学报》 CAS CSCD 北大核心 2005年第4期635-641,共7页
采用纯培养结合蓝白斑筛选法从土壤中筛选到一株高效聚磷菌,初步鉴定为费氏柠檬酸杆菌属(Citrobacterfreundii),命名为GM1。GM1在LB、YG和MOPS培养基上均可正常生长,其生长pH在5·5至8·5之间,最适生长pH为7·5。该菌在不... 采用纯培养结合蓝白斑筛选法从土壤中筛选到一株高效聚磷菌,初步鉴定为费氏柠檬酸杆菌属(Citrobacterfreundii),命名为GM1。GM1在LB、YG和MOPS培养基上均可正常生长,其生长pH在5·5至8·5之间,最适生长pH为7·5。该菌在不同的培养基上最适生长温度不同,在LB培养基上为37℃,YG和MOPS-葡萄糖培养基上为30℃。在好氧条件下MOPS培养基培养24h后,GM1菌体含磷量为11·5%;上清液磷浓度由43·8mgL-1下降为14·7mgL-1,磷去除率达69%,poly-P染色显示菌体中有异染粒。GM1具有较强的聚磷能力。 展开更多
关键词 聚磷菌分离 筛选 菌体含磷量 聚磷特性
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恶臭假单胞菌(Pseudomonas putida)GM6的聚磷特性研究 被引量:17
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作者 蔡天明 管莉菠 +1 位作者 崔中利 李顺鹏 《土壤学报》 CAS CSCD 北大核心 2006年第1期117-123,共7页
从城市污水处理厂好氧池活性污泥中分离获得一株高效聚磷菌株GM6,经生理生化和16SrDNA初步鉴定为恶臭假单胞菌(Pseudomonas putida)。GM6生长pH在5.5至8.5之间,最适生长pH为6.5;当pH值为7.0时,聚磷能力最强,pH值小于5.5或大... 从城市污水处理厂好氧池活性污泥中分离获得一株高效聚磷菌株GM6,经生理生化和16SrDNA初步鉴定为恶臭假单胞菌(Pseudomonas putida)。GM6生长pH在5.5至8.5之间,最适生长pH为6.5;当pH值为7.0时,聚磷能力最强,pH值小于5.5或大于7.5时,除磷能力明显下降。通气量试验表明,装液量对GM6的生长影响较小;装液量为100ml时,磷的去除效果最好,当装液量大于150ml时磷的去除效果变差。GM6的最适生长温度为27℃,当温度小于5℃或大于37℃时生长较慢;当温度为20℃其除磷效果最好,温度大于33℃或小于5℃时,除磷效果明显变差。好氧条件下GM6在合成废水、MOPS培养基、LB及YG培养基中培养时磷的绝对去除量分别为9.87、12.1、87.3和67.1mgL^-1,磷的去除率分别为96.6%、85%、71.6%和63%,磷的绝对去除量和去除率远高于E.coli。好氧培养时菌体吸磷能力测定结果表明,GM6在合成废水、MOPS、LB及YG培养基中培养24h的菌体干重含磷量在6.80%~9.32%之间,而对照菌体含磷量在0.98%~2.31%之间,聚磷菌的聚磷效果远高于对照菌。用序批式反应器对GM6进行厌氧好氧纯培养时,厌氧末的上清液磷浓度为16.8mgL^-1,CODCr为230mgL^-1,放磷速率为4.5mgL^-1h^-1;好氧末的上清液磷浓度为2.56mgL^-1,CODCr为40mgL^-1,好氧吸磷速率为2.73mgL^-1h^-1,菌株GM6表现出了明显的好氧吸磷、厌氧放磷现象,具有聚磷菌的典型特征。 展开更多
关键词 聚磷菌 合成废水 鉴定 SBR 厌氧放磷 好氧吸磷
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耐低温聚磷菌的研究 被引量:8
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作者 王春丽 马放 +1 位作者 王立立 王强 《哈尔滨工业大学学报》 EI CAS CSCD 北大核心 2007年第8期1327-1330,共4页
采用模拟自然降温方式,筛选出在低温(8℃)下仍具有高效能的两株聚磷J4与J6,除磷率分别达56%和54%.经鉴定,两者均属于假单胞菌属(Pseudomonas).探讨pH、曝气时间和微量元素对这两株菌的生长及除磷效能的影响,结果表明,菌株J4、J6的... 采用模拟自然降温方式,筛选出在低温(8℃)下仍具有高效能的两株聚磷J4与J6,除磷率分别达56%和54%.经鉴定,两者均属于假单胞菌属(Pseudomonas).探讨pH、曝气时间和微量元素对这两株菌的生长及除磷效能的影响,结果表明,菌株J4、J6的生长最适pH范围为7~9,除磷反应的最佳pH分别为中性和中性偏碱;而曝气时间过长会造成聚磷菌的释磷;微量元素的有无对J4的生长和除磷率都有一定的影响,而对J6没有明显的影响. 展开更多
关键词 聚磷菌(paos) 低温 PH 曝气时间 微量元素
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市政污水处理厂生物除磷运行效能与机理分析 被引量:17
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作者 张志剑 周林强 +4 位作者 李慧 王行 陈晓燕 朱希 徐心 《中国环境科学》 EI CAS CSCD 北大核心 2010年第12期1614-1621,共8页
选取浙江北部10个污水处理厂,调研污水厂生物除磷的运行效能并开展污泥活性以及微生物分布特征及其除磷机理的研究.通过活性污泥批试验表明,厌氧释磷率和好氧聚磷率(以P计)平均为2.4mg/(g·h)和2.2mg/(g·h);反硝化聚磷菌(DPAOs... 选取浙江北部10个污水处理厂,调研污水厂生物除磷的运行效能并开展污泥活性以及微生物分布特征及其除磷机理的研究.通过活性污泥批试验表明,厌氧释磷率和好氧聚磷率(以P计)平均为2.4mg/(g·h)和2.2mg/(g·h);反硝化聚磷菌(DPAOs)占聚磷菌(PAOs)的比例为0.0%~80.1%.荧光原位杂交法(FISH)对活性污泥微生物群落结构分析表明,聚磷菌(PAOs)比例为2.0%~8.7%,聚糖菌(GAOs)比例为1.3%~22.4%.根据调查结果和生物除磷性能研究,可通过调整污水营养成分和设置独立前置反硝化池等方法改善除磷效果. 展开更多
关键词 强化生物除磷 荧光原位杂交 聚磷菌 聚糖菌 反硝化聚磷菌
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碳源和硝态氮浓度对反硝化聚磷的影响及ORP的变化规律 被引量:64
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作者 王亚宜 彭永臻 +2 位作者 王淑莹 宋学起 王少坡 《环境科学》 EI CAS CSCD 北大核心 2004年第4期54-58,共5页
利用间歇试验研究了反硝化除磷过程中有机碳源和硝态氮浓度对厌氧放磷和缺氧吸磷的影响 ,同时对反硝化除磷过程ORP的变化规律及以其作为控制参数的可行性作了探讨 .试验结果表明 :厌氧段碳源COD浓度越高 (1 0 0~ 30 0mg/L) ,放磷越充... 利用间歇试验研究了反硝化除磷过程中有机碳源和硝态氮浓度对厌氧放磷和缺氧吸磷的影响 ,同时对反硝化除磷过程ORP的变化规律及以其作为控制参数的可行性作了探讨 .试验结果表明 :厌氧段碳源COD浓度越高 (1 0 0~ 30 0mg/L) ,放磷越充分 ,则缺氧段反硝化和吸磷速率越大 ;但当碳源COD浓度高达 30 0mg/L时 ,未反应完全的有机物残留于后续缺氧段对缺氧吸磷产生抑制作用 .随着缺氧段硝态氮浓度升高 (5、1 5、4 0mg/L) ,反应初期反硝化和吸磷速率也随之升高 ;当硝态氮耗尽后 ,系统由缺氧吸磷转变为内源放磷 ,且随着初始硝态氮浓度的增高 ,这个转折点的出现时间向后延迟 .ORP可作为厌氧放磷的控制参数 ,在缺氧吸磷过程可预示反硝化的反应程度 。 展开更多
关键词 反硝化除磷 反硝化聚磷菌 氧化还原电位 COD 硝态氮浓度
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