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Bacterial Community and Function of Biological Activated Carbon Filter in Drinking Water Treatment 被引量:8
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作者 ZHANG DuoYing LI WeiGuang +3 位作者 ZHANG ShuMei LIU Miao ZHAO XiaoYu ZHANG XianCheng 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2011年第2期122-131,共10页
Objective It aims to investigate the changes in composition and structure of bacterial communities de-veloping on biological activated carbon (BAC) particles, and the bacterial functions. Method A pilot plant had be... Objective It aims to investigate the changes in composition and structure of bacterial communities de-veloping on biological activated carbon (BAC) particles, and the bacterial functions. Method A pilot plant had been in service for 180 days, aiming to develop bacterial communities on acti-vated carbon naturally. After 180 days of operation, the bacterial communities were determined by dena-turing gradient gel electrophoresis (DGGE) analyses of PCR-amplified 16S rRNA genes. The study on community composition and the phylogenetic relationships of the organisms was complemented by a se-quence analysis of cloned PCR products from 16S rRNA genes. Gas chromatorgaphy-mass (GC-MS) mea-surement was used to determine organic chemical composition of inflow and outflow water on the 300th day. TOC and NH 4 + -N were also tested in this experiment. Results It showed that the stable bacterial structure did not develop on BAC particles until the 9th month during running time of the BAC filter. The communities were finally dominated by Pseudomonas sp., Ba-cillus sp., Nitrospira sp., and an uncultured bacterium. Stable bacterial communities played an important role in removal of NH 4 + -N and total organic carbon (TOC). Results from gas chromatorgaphy-mass (GC-MS) showed that 36 kinds of chemicals in feed water were eliminated, and concentrations of 5 kinds of chemicals decreased. These chemicals served as nutrients for the dominant bacteria. Conclusion The findings from the study suggested that the stability of microbial structure was beneficial for improving NH 4 + -N and TOC removal efficiencies. The dominant bacteria had the advantage of biode-grading a wide range of organic chemicals and NH 4 + -N. 展开更多
关键词 biological activated carbon bacterial community Denaturing gradient gel electrophoresis
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Pilot plant study on ozonation and biological activated carbon process for drinking water treatment 被引量:11
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作者 KONG Ling-yu ZHANG Xiao-jian WANG Zhan-sheng 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2006年第2期232-235,共4页
A study on advanced drinking water treatment was conducted in a pilot scale plant taking water from conventional treatment process. Ozonation-biological activated carbon process (O3-BAC) and granular activated carbo... A study on advanced drinking water treatment was conducted in a pilot scale plant taking water from conventional treatment process. Ozonation-biological activated carbon process (O3-BAC) and granular activated carbon process (GAC) were evaluated based on the following parameters: CODMn, UV254, total organic carbon (TOC), assimilable organic carbon (AOC) and biodegradable dissolved organic carbon (BDOC). In this test, the average removal rates of CODMn, UV254 and TOC in O3-BAC were 18.2%, 9.0% and 10.2% higher on (AOC) than in GAC, respectively. Ozonation increased 19.3-57.6 μg Acetate-C/L in AOC-P17, 45.6-130.6 μg Acetate-C/L in AOC-NOX and 0.1-0.5 mg/L in BDOC with ozone doses of 2 8 mg/L. The optimum ozone dose for maximum AOC formation was 3 mgO3/L. BAC filtration was effective process to improve biostability. 展开更多
关键词 OZONATION biological activated carbon CODMN UV254 TOC AOC BDOC BIOSTABILITY
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Treatment of flotation wastewater using biological activated carbon 被引量:10
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作者 董颖博 林海 +1 位作者 刘泉利 霍汉鑫 《Journal of Central South University》 SCIE EI CAS 2014年第9期3580-3587,共8页
A laboratory scale up-flow biological activated carbon(BAC) reactor was constructed for the advanced treatment of synthetic flotation wastewater. Biodegradation of a common collector(i.e., ethyl xanthate) for non-ferr... A laboratory scale up-flow biological activated carbon(BAC) reactor was constructed for the advanced treatment of synthetic flotation wastewater. Biodegradation of a common collector(i.e., ethyl xanthate) for non-ferrous metallic ore flotation was evaluated. The results show that the two stages of domestication can improve microbial degradation ability. The BAC reactor obtains a chemical oxygen demand(COD) reduction rate of 82.5% for ethyl xanthate and its effluent COD concentration lowers to below 20 mg/L. The kinetics equation of the BAC reactor proves that the activated carbon layers at the height of 0 mm to 70 mm play a key role in the removal of flotation reagents. Ultraviolet spectral analysis indicates that most of the ethyl xanthate are degraded by microorganisms after advanced treatment by the BAC reactor. 展开更多
关键词 flotation wastewater biological activated carbon BIODEGRADATION chemical oxygen demand
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Enhanced biological nutrient removal in modified carbon source division anaerobic anoxic oxic process with return activated sludge pre-concentration 被引量:7
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作者 鲁骎 毋海燕 +1 位作者 李昊岩 杨殿海 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2015年第6期1027-1034,共8页
A pilot-scale modified carbon source division anaerobic anoxic oxic(AAO) process with pre-concentration of returned activated sludge(RAS) was proposed in this study for the enhanced biological nutrient removal(BNR) of... A pilot-scale modified carbon source division anaerobic anoxic oxic(AAO) process with pre-concentration of returned activated sludge(RAS) was proposed in this study for the enhanced biological nutrient removal(BNR) of municipal wastewater with limited carbon source. The influent carbon source was fed in step while a novel RAS pre-concentration tank was adopted to improve BNR efficiency, and the effects of an influent carbon source distribution ratio and a RAS pre-concentration ratio were investigated. The results show that the removal efficiency of TN is mainly influenced by the carbon source distribution ratio while the TP removal relies on the RAS pre-concentration ratio. The optimum carbon source distribution ratio and RAS pre-concentration ratio are 60% and 50%, respectively, with an inner recycling ratio of 100% under the optimum steady operation of pilot test, reaching an average effluent TN concentration of 9.8 mg·L-1with a removal efficiency of 63% and an average TP removal efficiency of 94%. The mechanism of nutrient removal is discussed and the kinetics is analyzed. The results reveal that the optimal carbon source distribution ratio provides sufficient denitrifying carbon source to each anoxic phase, reducing nitrate accumulation while the RAS pre-concentration ratio improves the condition of anaerobic zone to ensure the phosphorus release due to less nitrate in the returned sludge. Therefore, nitrifying bacteria, denitrifying bacteria and phosphorus accumulation organisms play an important role under the optimum condition, enhancing the performance of nutrient removal in this test. 展开更多
关键词 Modified AAO process carbon source distribution ratio Returned activated sludge pre-concentration biological nutrient removal
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Advanced Treatment of Wastewater and Slightly Deteriorated Raw Water by Biological Activated Carbon Method under Rich Oxygen Condition 被引量:1
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作者 田晴 陈季华 《Journal of China Textile University(English Edition)》 EI CAS 2000年第1期61-63,共3页
Rich oxygen-biological activated carbon(RO-BAC)method developed from traditional BAC method is a sys-tem in which high pressure is applied to improve the oxy-gen concentration of the influent.Experiment withwastewater... Rich oxygen-biological activated carbon(RO-BAC)method developed from traditional BAC method is a sys-tem in which high pressure is applied to improve the oxy-gen concentration of the influent.Experiment withwastewater and the slightly deteriorated raw water showsthe system is an effective option for advanced treatmentof industry wastewater and pretreatment of slightly dete-riorated raw water.The experiment results and the in-fluential factors are discussed in this paper. 展开更多
关键词 high concentration of OXYGEN biological activat-ed carbon (bac) TEXTILE industry WASTEWATER slightly dete-riorated RAW water.
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Effect of a biological activated carbon filter on particle counts
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作者 Su-hua WU Bing-zhi DONG +1 位作者 Tie-jun QIAO Jin-song ZHANG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2008年第11期1576-1581,共6页
Due to the importance of biological safety in drinking water quality and the disadvantages which exist in traditional methods of detecting typical microorganisms such as Cryptosporidium and Giardia, it is necessary to... Due to the importance of biological safety in drinking water quality and the disadvantages which exist in traditional methods of detecting typical microorganisms such as Cryptosporidium and Giardia, it is necessary to develop an alternative. Particle counts is a qualitative measurement of the amount of dissolved solids in water. The removal rate of particle counts was previously used as an indicator of the effectiveness of a biological activated carbon (BAC) filter in removing Cryptosporidium and Giardia. The particle counts in a BAC filter effluent over one operational period and the effects of BAC filter construction and operational parameters were investigated with a 10 m3/h pilot plant. The results indicated that the maximum particle count in backwash remnant water was as high as 1296 count/ml and it needed about 1.5 h to reduce from the maximum to less than 50 count/ml. During the standard filtration period, particle counts stay constant at less than 50 count/ml for 5 d except when influ- enced by sand filter backwash remnant water. The removal rates of particle counts in the BAC filter are related to characteristics of the carbon. For example, a columned carbon and a sand bed removed 33.3% and 8.5% of particles, respectively, while the particle counts in effluent from a cracked BAC filter was higher than that of the influent. There is no significant difference among particle removal rates with different filtration rates. High post-ozone dosage (>2 mg/L) plays an important role in particle count removal; when the dosage was 3 mg/L, the removal rates by carbon layers and sand beds decreased by 17.5% and increased by 9.5%, respectively, compared with a 2 mg/L dosage. 展开更多
关键词 biological activated carbon (bac filter CRYPTOSPORIDIUM GIARDIA Particle counts TURBIDITY
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Comprehensive Analysis of Indoor Formaldehyde Removal Techniques:Exploring Physical,Chemical,and Biological Methods
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作者 Yizhe Li 《Journal of Architectural Research and Development》 2024年第1期8-13,共6页
This research focuses on the evaluation of diverse approaches for removing formaldehyde from indoor environments,which is a significant concern for indoor air quality.The study systematically examines physical,chemica... This research focuses on the evaluation of diverse approaches for removing formaldehyde from indoor environments,which is a significant concern for indoor air quality.The study systematically examines physical,chemical,and biological methods to ascertain their effectiveness in formaldehyde mitigation.Physical methods,including air circulation and adsorption,particularly with activated carbon and molecular sieves,are assessed for their efficiency in various concentration scenarios.Chemical methods,such as photocatalytic oxidation using titanium dioxide and plasma technology,are analyzed for their ability to decompose formaldehyde into non-toxic substances.Additionally,biological methods involving plant purification and microbial transformation are explored for their eco-friendly and sustainable removal capabilities.The paper concludes that while each method has its merits,a combined approach may offer the most effective solution for reducing indoor formaldehyde levels.The study underscores the need for further research to integrate these methods in a practical,cost-effective,and environmentally sustainable manner,highlighting their potential to improve indoor air quality significantly. 展开更多
关键词 Indoor air quality Formaldehyde removal Photocatalytic oxidation activated carbon biological purification
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Invertebrate community characteristics in biologically active carbon filter 被引量:5
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作者 Xiaowei Li Yufeng Yang +2 位作者 Lijun Liu Jinsong Zhang Qing Wang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2010年第5期648-655,共8页
Biologically active carbon (BAC) system was set up in a water plant of South China during January to December 2007,to study the invertebrate community characteristics of BAC filter.Thirty-seven invertebrate species ... Biologically active carbon (BAC) system was set up in a water plant of South China during January to December 2007,to study the invertebrate community characteristics of BAC filter.Thirty-seven invertebrate species were found,of which 28 belonging to rotifers.Filter operation could lead to an output of invertebrates in high abundances with the filtrate,and the maximum density could reach 5608 individuals/m 3.Average abundances in the effluent water increased in 27-33 folds in comparison to the influent water during the sampling period.Invertebrate community succession had the following trend:filter-feeding animals → small benthic invertebrates → large benthic and resistant invertebrates.Abundances of large-sized invertebrates (copepod adult and oligochaete) at bigger-media column were significantly higher than that at small-media column.The results implied the abundant species diversity of invertebrate in BAC filter.The relationship between invertebrate and biofilm still remain to be studied in detail. 展开更多
关键词 biologically active carbon filter INVERTEBRATE community characteristics filter media
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Study on Treatment of the Pesticide Wastewater by the Composite Process of Biological Active Carbon Filter-Fluid Bed 被引量:2
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作者 YANG Tao ZHENG Wei +2 位作者 YU Hai-cheng WU Cong SONG Shan-cheng 《Meteorological and Environmental Research》 2012年第7期35-37,41,共4页
[ Objectlve] The research aimed to study treatment effect of the pesticide wastewater by the composite process of biological active car- bon filter-fluid bed. [Method] The composite process of biological active carbon... [ Objectlve] The research aimed to study treatment effect of the pesticide wastewater by the composite process of biological active car- bon filter-fluid bed. [Method] The composite process of biological active carbon filter- fluid bed was applied to treat the mixed pesticide wastewater. The removal efficiencies of CODcr, BODs, NH3-N, SS and the influence factors were investigated. [ Result] The composite process had good treatment efficiency for pesticide wastewater. After running stably, the average removal rates of CODc,, BODs, NH3-N and SS were re- spectively 91.6%, 96.2%, 90.2% and 87.5%. All indices reached the third level cdteda specified in Comprehensive Standard of the Sewage Dis- charge (DB12/356-2008). [ Conclusionl The whole system operates reliably and simply, and provides a stable, convenient and economical solu- tion for deep treatment of the mixed pesticide wastewater. 展开更多
关键词 biological active carbon Fluid bed Pesticide wastewater Composite process China
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Theory of pleiotropic action of biologically active compounds and medicines—Basic principles and practical application
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作者 N. A. Bizunok 《Open Journal of Clinical Diagnostics》 2013年第3期94-104,共11页
This article represents the main positions of the theory of pleiotropic action of biologically active compounds (BACs) and medicines, which has been designed by the author based on her own experimental researches. The... This article represents the main positions of the theory of pleiotropic action of biologically active compounds (BACs) and medicines, which has been designed by the author based on her own experimental researches. The term “pleiotropy” means the ability of the BACs and medicines to implement more than one mechanism of action resulting in the specific biological (pharmacological) effect. The interaction of these mechanisms forms a distinct pattern of biological response (pleiotropic pattern), which reflects the change in his character with the increased dose (concentration)-dependent efficacy of BACs and medicines. The article consists of description of different pleiotropic patterns established in experiments on the model of reactive oxygen species (ROS) generation by macrophages dependent on activity of specialized enzyme called Nox2-NAD(P)H oxidase (Nox2, EC 1.6.3.1). Moreover, it consists of explanation of pharmacodynamic nature of pleiotropic patterns by means of application Chou-Talalay median effect equalization and combination index (CI) theory. The novel theory explains unsolved until now universal aspects of activity BACs and medicines, such as slope angles of “dose-effect” dependences in the conditions relevant in vivo, and it is of fundamental interest. However, it has applications in experimental pharmacology, as it allows defining the choice of the individual compounds and combinations, modulating the trust effect selectively and efficiently. This knowledge opens up new approaches to medicines discovery and evaluation, their rational dosing and combining. 展开更多
关键词 Reactive Oxygen Species (ROS) Nox2-NAD(P)H Oxidase (Nox2) Slope Angles of DOSE-EFFECT DEPENDENCES PLEIOTROPY PLEIOTROPIC Patterns Polytropism Pharmacological Affect Nature MEDICINES Combinations Novel THEORY of biologically active Compounds (bacs) and MEDICINES Action
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BAC工艺中活性炭去除重金属机理研究--以Pb(Ⅱ)为例 被引量:2
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作者 董丽华 杨晓红 +6 位作者 陈志颖 宋晨 潘淑杰 韩英杰 张光辉 侯立安 康雅 《中国环境科学》 EI CAS CSCD 北大核心 2023年第5期2228-2238,共11页
为减少或避免BAC工艺全生命周期中大量有害废弃物--使用过的生物活性炭(SBAC)的产生,采用两种指标活性炭(LBC、HBC),进行了为期280d的进水有无臭氧氧化的4炭柱对比试验(LBC-Y、HBC-Y、LBC-O3、HBC-O3),通过对不同炭柱SBAC的定期跟踪采样... 为减少或避免BAC工艺全生命周期中大量有害废弃物--使用过的生物活性炭(SBAC)的产生,采用两种指标活性炭(LBC、HBC),进行了为期280d的进水有无臭氧氧化的4炭柱对比试验(LBC-Y、HBC-Y、LBC-O3、HBC-O3),通过对不同炭柱SBAC的定期跟踪采样,对该工艺去除重金属Pb(Ⅱ)的机理进行了研究.结果表明:不同炭柱的SBAC对Pb(Ⅱ)的去除性能均呈现随运行时间先短期降低后增强的特点.4根炭柱对Pb(Ⅱ)的吸附量首先从约6~7mg/g(新炭)下降到约1~2mg/g,然后逐渐增加并远超过新炭初始吸附量.灭活和保留生物膜的对比吸附实验表明,微生物的存在对SBAC吸附Pb(Ⅱ)的效果没有明显影响.结合不同炭柱SBAC的表面表征(包括pH值、等电点、表面官能团、元素分析等)和Pb(Ⅱ)去除性能分析,找出了BAC工艺中SBAC的两阶段除重金属机理:前期的碱性沉淀(0~约60d)及后期离子交换和酸性官能团络合,实现了SBAC在整个生命周期的循环和合理再利用. 展开更多
关键词 bac 使用过的活性炭 除重金属 机理 循环再利用
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Effect of biological activated carbon filter depth and backwashing process on transformation of biofilm community 被引量:2
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作者 Wanqi Qi Weiying Li +3 位作者 Junpeng Zhang Xuan Wu Jie Zhang Wei Zhang 《Frontiers of Environmental Science & Engineering》 SCIE EI CAS CSCD 2019年第1期159-169,共11页
The biological activated carbon (BAC) is a popular advanced water treatment to the provision of safe water supply. A bench-scale device was designed to gain a better insight into microbial diversity and community stru... The biological activated carbon (BAC) is a popular advanced water treatment to the provision of safe water supply. A bench-scale device was designed to gain a better insight into microbial diversity and community structure of BAC biofilm by using high-throughput sequencing method. Both samples of BAC biofilm (the first, third and fifth month) and water (inlet water and outlet water of carbon filter, outlet water of backwashing) were analyzed to evaluate the impact of carbon filter depth, running time and backwash process. The results showed that the microbial diversity of biofilm decreased generally with the increase of carbon filter depth and biofilm reached a steady-state at the top layer of BAC after three months' running. Proteobacteria (71.02%-95.61%) was found to be dominant bacteria both in biofilms and water samples. As one of opportunistic pathogen, the Pseudomonas aeruginosa in the outlet water of device (1.20%) was about eight times higher than that in the inlet water of device (0.16%) at the genus level after five-month operation. To maintain the safety of drinking water, the backwash used in this test could significantly remove Sphingobacteria (from 8.69% to 5.09%, p < 0.05) of carbon biofilm. After backwashing, the operational taxonomic units (OTUs) number and the Shannon index decreased significantly (p <0.05) at the bottom of carbon column and we found the Proteobacteria increased by about 10% in all biofilm samples from different filter depth. This study reveals the transformation of BAC biofilm with the impact of running time and backwashing. 展开更多
关键词 biological activated carbon BIOFILM COMMUNITY structure carbon filter DEPTH HIGH-THROUGHPUT SEQUENCING
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Removal of disinfection by-products formation potential by biologically intensified process 被引量:2
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作者 ANDong LIWei-guang +2 位作者 CUIFu-yi HEXin ZHANGJin-song 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2005年第2期315-318,共4页
The removal of disinfection by-products formation potential(DBPFP) in artificially intensified biological activated carbon(IBAC) process which is developed on the basis of traditional ozone granular activated carbon w... The removal of disinfection by-products formation potential(DBPFP) in artificially intensified biological activated carbon(IBAC) process which is developed on the basis of traditional ozone granular activated carbon was evaluated. By IBAC removals of 31% and 68% for THMFP and HAAFP were obtained respectively. Under identical conditions, the removals of the same substances were 4% and 32% respectively only by the granular activated carbon(GAC) process. Compared with GAC, the high removal rates of the two formed potential substances were due to the increasing of bioactivity of the media and the synergistic capabilities of biological degradation cooperating with activated carbon adsorption of organic compounds. A clear linear correlation(R 2=0.9562 and R 2=0.9007) between DOC HAAFP removal rate and Empty Bed Contact Time(EBCT) of IBAC process was observed, while that between THMFP removal rate and EBCT of GAC was R 2=0.9782. In addition certain linear correlations between THMFP, HAAFP and UV 254 (R 2=0.855 and R 2=0.7702) were found for the treated water. For IBAC process there are also more advantages such as long backwashing cycle time, low backwashing intensity and prolonging activated carbon lifetime and so on. 展开更多
关键词 intensified biological activated carbon(Ibac) disinfection by-products formation potential(DBPFP) empty bed contact time water treatment
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Characterization of bacterial community and iron corrosion in drinking water distribution systems with O3-biological activated carbon treatment 被引量:5
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作者 Xueci Xing Haibo Wang +1 位作者 Chun Hu Lizhong Liu 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2018年第7期192-204,共13页
Bacterial community structure and iron corrosion were investigated for simulated drinking water distribution systems(DWDSs) composed of annular reactors incorporating three different treatments: ozone, biologically... Bacterial community structure and iron corrosion were investigated for simulated drinking water distribution systems(DWDSs) composed of annular reactors incorporating three different treatments: ozone, biologically activated carbon and chlorination(O3-BAC-Cl2);ozone and chlorination(O3-Cl2); or chlorination alone(Cl2). The lowest corrosion rate and iron release, along with more Fe3O4 formation, occurred in DWDSs with O3-BAC-Cl2 compared to those without a BAC filter. It was verified that O3-BAC influenced the bacterial community greatly to promote the relative advantage of nitrate-reducing bacteria(NRB)in DWDSs. Moreover, the advantaged NRB induced active Fe(III) reduction coupled to Fe(II) oxidation, enhancing Fe3O4 formation and inhibiting corrosion. In addition, O3-BAC pretreatment could reduce high-molecular-weight fractions of dissolved organic carbon effectively to promote iron particle aggregation and inhibit further iron release. Our findings indicated that the O3-BAC treatment, besides removing organic pollutants in water, was also a good approach for controlling cast iron corrosion and iron release in DWDSs. 展开更多
关键词 bacterial community Nitrate-reducing bacteria(NRB) O3-biological activated carbon(O3-bac) Drinking water distribution systems (DWDSs) Corrosion inhibition Iron release
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UV/O_(3)-BAC实现海藻生产废水深度净化的技术验证 被引量:1
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作者 沈古体 王爱杰 +2 位作者 韩京龙 张建 高晓杰 《水处理技术》 CAS CSCD 北大核心 2023年第11期117-122,127,共7页
将UV/O_(3)-BAC应用于含海藻生产企业废水的污水深度净化过程,进一步降低其化学需氧量(COD)、粪大肠菌(FCB)等常规水质指标,以达到地方的排放要求。研究了UV/O_(3)-BAC和UV/O_(3)/H_(2)O_(2)-BAC两种组合工艺在污水处理厂深度净化过程... 将UV/O_(3)-BAC应用于含海藻生产企业废水的污水深度净化过程,进一步降低其化学需氧量(COD)、粪大肠菌(FCB)等常规水质指标,以达到地方的排放要求。研究了UV/O_(3)-BAC和UV/O_(3)/H_(2)O_(2)-BAC两种组合工艺在污水处理厂深度净化过程中的实际应用效果。UV/O_(3)/H_(2)O_(2)-BAC比UV/O_(3)-BAC有更好的COD去除效果,其COD去除率最高可以达到71.09%。分析了污染物在每个处理工艺段的具体去除情况,发现COD主要在生物活性炭工艺段被去除,而高级氧化技术(AOPs)的主要作用是破坏了有机物的难降解结构。研究了H_(2)O_(2)的投加浓度、O_(3)的投加浓度和废水的水力停留时间(HRT)对处理效果的影响,当进水COD为21.1 mg/L时,O_(3)和H_(2)O_(2)的最优投加浓度分别为10、5 mg/L。 展开更多
关键词 高级氧化技术 化学需氧量 污水处理厂 生物活性炭 海藻生产废水
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Removal of disinfection by-product formation potentials by biologically assisted GAC treatment
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作者 安东 Li Weiguang +1 位作者 Cui Fuyi Wang Rui 《High Technology Letters》 EI CAS 2006年第1期91-96,共6页
The object of this paper is to evaluate the removal of disinfection by-products formation potential by artificially intensified biological activated carbon(BAC) process which is developed on the basis of traditional... The object of this paper is to evaluate the removal of disinfection by-products formation potential by artificially intensified biological activated carbon(BAC) process which is developed on the basis of traditional ozone granular activated carbon (GAC). The results show that 23.1% of trihalomethane formation potential (THMFP) and 68% of haloacetic acid formation potential (HAAFP) can be removed by BAC, respectively. Under the same conditions, the removal rates of the same substances were 12.2% and 13-25% respectively only by GAC process. Compared with GAC, the high removal rates of the two formed potential substances were due to the increasing of bioactivity of the media and the synergistic capabilities of biological degradation cooperating with activated carbon adsorption of organic compounds. BAC process has some advantages such as long backwashing cycle time, low backwashing intensity and prolonged activated carbon lifetime, etc. 展开更多
关键词 biological activated carbon (bac trihalomethane (THM) haloacetic acid (HAA) empty bed contact time (EBCT) water treatment
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Application of Green Technology Using Biological Means for the Adsorption of Micro-Pollutants in Water
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作者 Tanimola Hamed Owolabi John +1 位作者 Awoyemi Emmanuel Kayode Benjamin 《Journal of Environmental Protection》 2020年第9期735-752,共18页
It is true that the world we have today is not the world we use to know. The Covid-19 pandemic has paralyzed all sector, hence the need for safety and enabling environment for mankind is of high importance. Adsorption... It is true that the world we have today is not the world we use to know. The Covid-19 pandemic has paralyzed all sector, hence the need for safety and enabling environment for mankind is of high importance. Adsorption technology is far the best and cheapest treatment technology for water and has extensively proven its worth for the uptake of micro-pollutant from surface, ground and water which are the major channels of home water. Over the years activated carbon is considered as the most common and universally used adsorbent for the eradication of different types of micro-pollutants from water. The contamination of surface water by micro-pollutant is a potential threat for the production of high quality and safe drinking water. Adsorption operation onto granulated activated carbon (GAC) in fixed-bed filters is often applied as a remedying step in the synthesis of safe and drinkable water. Activated carbon actively tends to act as a carrier material for a thin usually resistant layer of microorganisms (mostly bacteria) that forms on the coat of various surfaces (biofilm), hence biological simplification can be an alternative removal approach that can be adopted in granulated activated carbon filters. To evaluate the capacity of biofilm to biologically simplify micro-pollutants, it is very imperative to distinguish adsorption from biological simplification (biodegradation) as a removal mechanism. Experiment was carried out under the operating condition of a temperature range of 6?C to 20?C with biologically activated and autoclaved GAC to assess the biological simplification by the biofilm adsorbed on the GAC surface. Five micro-pollutants were selected as model compounds, of which some of them were biologically simplified by the GAC biofilm. Additionally, we observed that temperature can increase or decrease adsorption. Conclusively, comparison was made on the adsorption capacity of granulated activated carbon used for more than 50,000 beds. 展开更多
关键词 Green Technology Micro-Pollutants Removal Adsorption through activated carbon Water Treatment Biodegradation and biological Means Temperature Effect
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Preparation of a novel activated carbon microsphere and its in vitro adsorption characteristics for biological molecules 被引量:2
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作者 谢毅妮 高峰 +2 位作者 袁慧慧 梁晓怿 凌立成 《Journal of Chinese Pharmaceutical Sciences》 CAS 2011年第3期302-308,共7页
We prepared a novel pitch-based activated carbon microsphere(ACM)and studied its in vitro adsorption characteristics for biological molecules.The original spherical asphalt particles were prepared through bitumen em... We prepared a novel pitch-based activated carbon microsphere(ACM)and studied its in vitro adsorption characteristics for biological molecules.The original spherical asphalt particles were prepared through bitumen emulsification.After oxidation and burning,ACMs with a range of parameters were prepared.In vitro adsorption experiments of ACMs for biological molecules were carried out.The prepared ACMs possessed a BET specific surface of 1566 m^2/g with a voidage of 0.653 cm^3/g and a volume of micropores of 0.478 cm^3/g.They showed high adsorption for glucose and creatintine.Compared with the medically used carbon powder,the prepared ACMs exhibited significantly lower adsorption for digestion enzymes.In conclusion,the prepared ACMs,as an oral adsorbent candidate,possessed higher BET specific surface area and larger volume of micropores;they also exhibited favorable selective adsorption features for biological molecules. 展开更多
关键词 activated carbon microsphere Porous structure Adsorption characteristics biological molecules Digestion enzymes
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纤维素对活性炭孔结构的影响
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作者 宋磊 夏嘉誉 丁闻军 《华侨大学学报(自然科学版)》 CAS 2024年第5期649-653,共5页
为了探讨纤维素对活性炭孔结构的影响,采用废茶、荞麦壳和开心果壳3种生物废弃物作为制备活性炭的原材料,利用活化剂KOH,ZnCl_(2),通过改变浸渍比控制活性炭的比表面积和孔结构。结果表明:利用KOH活化的活性炭最佳浸渍比均为2.0;当KOH... 为了探讨纤维素对活性炭孔结构的影响,采用废茶、荞麦壳和开心果壳3种生物废弃物作为制备活性炭的原材料,利用活化剂KOH,ZnCl_(2),通过改变浸渍比控制活性炭的比表面积和孔结构。结果表明:利用KOH活化的活性炭最佳浸渍比均为2.0;当KOH为活化剂、浸渍比为2.0时,荞麦壳活性炭的BET比表面积和微孔孔容最大,分别达到904.8 m^(2)·g^(-1)和0.37 cm^(3)·g^(-1),开心果壳活性炭的BET比表面积和微孔孔容分别为746.7 m^(2)·g^(-1)和0.31 cm^(3)·g^(-1),废茶活性炭的BET比表面积和微孔孔容分别为747.8 m^(2)·g^(-1)和0.28 cm^(3)·g^(-1)。纤维素去除实验的结果表明:纤维素是影响活性炭微孔结构的主要因素。 展开更多
关键词 纤维素 活性炭 微孔结构 生物废弃物
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Removal of anaerobic soluble microbial products in a biological activated carbon reactor 被引量:3
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作者 Xiaojing Dong Weili Zhou Shengbing He 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2013年第9期1745-1753,共9页
The soluble microbial products (SMP) in the biological treatment effluent are generally of great amount and are poorly biodegradable. Focusing on the biodegradation of anaerobic SMP, the biological activated carbon ... The soluble microbial products (SMP) in the biological treatment effluent are generally of great amount and are poorly biodegradable. Focusing on the biodegradation of anaerobic SMP, the biological activated carbon (BAC) was introduced into the anaerobic system. The experiments were conducted in two identical lab-scale up-flow anaerobic sludge blanket (UASB) reactors. The high strength organics were degraded in the first UASB reactor (UASB1) and the second UASB (UASB2, i.e., BAC) functioned as a polishing step to remove SMP produced in UASB1. The results showed that 90% of the SMP could be removed before granular activated carbon was saturated. After the saturation, the SMP removal decreased to 60% on the average. Analysis of granular activated carbon adsorption revealed that the main role of SMP removal in BAC reactor was biodegradation. A strain of SMP-degrading bacteria, which was found highly similar to Klebsiella sp., was isolated, enriched and inoculated back to the BAC reactor. When the influent chemical oxygen demand (COD) was 10,000 mg/L and the organic loading rate achieved 10 kg COD/(m 3 ·day), the effluent from the BAC reactor could meet the discharge standard without further treatment. Anaerobic BAC reactor inoculated with the isolated Klebsiella was proved to be an effective, cheap and easy technical treatment approach for the removal of SMP in the treatment of easily-degradable wastewater with COD lower than 10,000 mg/L. 展开更多
关键词 anaerobic treatment soluble microbial products biological activated carbon bacterial isolation BIODEGRADATION
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