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1.
微生物法去除水中氯苯类化合物的研究进展   总被引:4,自引:1,他引:3  
氯苯类化合物是水环境污染中的主要污染物之一,本文主要介绍了目前国内外微生物法处理水中氯苯类化合物的最新研究成果,包括氯苯类化合物的微生物好氧降解、厌氧降解,共代谢、生物活性炭以及生物处理工艺等,并展望了该领域今后的研究方向.  相似文献   

2.
硝基苯类化合物微生物降解研究进展   总被引:4,自引:0,他引:4  
硝基苯类化合物是一类具有稳定化学性质、高毒性和易在生物体内积累的优先污染物.微生物降解在硝基苯类化合物废水废气治理和污染环境修复方面具有明显优势.从降解菌的驯化筛选、降解途径、降解机理、共代谢、趋化性和分子遗传学角度,阐述了硝基苯类化合物微生物降解研究的最新进展,指出应进一步加强工程菌的构建及其应用开发研究.在硝基苯类化合物污染环境的微生物修复方面,共代谢和混合菌株的协同作用具有重要的应用前景.  相似文献   

3.
芳香烃类化合物(aromatic hydrocarbon compounds)是一类基于苯环结构的有机物,广泛分布在自然环境中,难以自然降解、易被生物积累,且有很大的环境危害性。生物法是有机化合物转化降解的主流工艺,而电活性微生物(electroactive microorganisms, EAM)因其独特的胞外电子传递(extracellular electron transfer, EET)能力和生理代谢模式在芳香烃类化合物污染修复领域具有巨大的应用潜力。电活性微生物可以通过还原脱卤、脱硝与氧化开环过程相结合的方式,最终实现芳香烃类污染物的降解矿化。本文重点综述了电活性微生物降解芳香烃类污染物过程中主要还原/氧化反应机理,归纳了电活性微生物高效还原脱卤、脱硝的关键酶活、代谢途径及转化机理,分析了不同含氧条件下电活性微生物开环方式及降解代谢途径,并通过调控微生物胞外聚合物与添加导电材料等途径来提升电活性微生物的胞外电子传递过程,总结了电极电位、电极材料、电解液性质及温度等环境因子对芳香烃类化合物降解的影响,探讨了芳香烃类污染物的强化生物降解策略的可行性。最后,展望了电活性微生物降解技...  相似文献   

4.
氯代苯胺类化合物微生物降解的研究进展*   总被引:3,自引:0,他引:3  
对氯代苯胺类化合物(Chlovoanilines,CAS)好氧微生物降解的研究现状进行了系统的综述,内容包括具有降解氯代苯胺类化合物能力的微生物、氯代苯胺类化合物的代谢途径及相关代谢酶的分析、降解质粒和关键代谢酶的基因克隆和表达,并提出了氯代苯胺类化合物好氧微生物降解研究中存在的问题和尚需进一步研究的方面。  相似文献   

5.
纳米零价铁耦合假单胞菌协同高效降解五氯苯   总被引:1,自引:1,他引:0  
【背景】氯苯类化合物广泛应用于工业化合物的生产,由于其具有高毒性和环境持久性的特点,对人类健康和生态环境造成严重威胁,寻找高效降解这类化合物的新方法成为研究热点。【目的】将纳米零价铁与假单胞菌耦合,探究其在好氧条件下对五氯苯的降解效果和降解机理。【方法】建立纳米零价铁和假单胞菌降解五氯苯的反应体系,通过测定各反应体系中五氯苯及其中间产物的浓度,以及观测细菌的生长状况变化等,分析反应体系的降解效果及其可能的降解机理。【结果】纳米零价铁耦合假单胞菌的反应体系相对于两者的单一体系表现出更好的降解效果,36h的降解率可达55.4%,反应过程符合伪一级反应动力学,速率常数为0.02048h~(-1)。根据GC-MS所测的中间产物推测,该体系的反应机理为纳米零价铁在好氧条件下反应产生羟基自由基,攻击五氯苯使其变为低氯苯类化合物,假单胞菌进一步利用这些低氯苯类化合物;同时,假单胞菌又为纳米零价铁提供附着位点,有效地降低了纳米零价铁的聚集性,提高了反应活性。【结论】研究建立的纳米零价铁耦合假单胞菌反应体系对五氯苯具有较好的降解效果,为含有高氯代苯类等有机污染物的复杂环境的修复提供参考。  相似文献   

6.
硝基苯是一种淡黄色,苦杏仁味的高毒物质,且难生物降解,广泛应用于化工、染料、制药等工业,具有稳定化学性质、高毒性和易在生物体内积累的优先污染物.硝基苯的大量排放对环境构成了严重威胁,对该污染物的处理一直是研究焦点.对硝基苯的降解方法主要有物理法、化学法和生物法,生物法费用低、不易造成二次污染,可以最大程度的降解污染物.微生物降解在硝基苯类化合物废水治理和污染环境修复方面具有明显优势,近年来人们己筛选出许多硝基苯高效降解菌.从降解菌的种类,降解途径,共代谢,固定化,基因工程,高盐条件下的降解等方面阐述了硝基苯生物降解的最新研究进展.  相似文献   

7.
好氧氯苯降解菌的分离鉴定   总被引:3,自引:0,他引:3  
【目的】分离好氧氯苯降解菌,并通过研究降解特性为应用提供理论依据。【方法】利用富集培养技术分离菌株,通过形态、生理生化反应特征及16S rRNA基因序列分析鉴定菌株,测定培养液中氯苯、其它氯苯类化合物和氯离子的浓度以及菌体细胞的密度和菌体细胞粗提液中邻苯二酚双加氧酶的活性,研究菌株的降解特性。【结果】16S rRNA基因序列相似性比较表明,分离出的菌株与乙酸钙不动杆菌(Acinetobacter calcoaceticus)的相似性高达98.5%。以初始浓度为50mg/L的氯苯为唯一碳源和能源时,120h内菌株对氯苯的降解率高达98.2%,氯离子净释放量和氯苯降解量的摩尔比范围为1:1.85-1:1.39,菌体细胞粗提液中邻苯二酚1,2-双加氧酶的平均活性为0.538U/mg蛋白质。加入葡萄糖后,菌体细胞数量和氯离子浓度明显增加,但单位细胞的氯苯降解能力明显下降。在二氯苯和三氯苯共存时,菌株对氯苯的降解能力受到明显的抑制作用,但对二氯苯有一定的降解作用,降解能力大小顺序为:1,3-二氯苯1,2-二氯苯1,4-二氯苯。【结论】分离出的好氧氯苯降解菌属于Acinetobacter属菌株,该菌株对氯苯和二氯苯均具有降解作用,可能通过邻位裂环途径降解氯苯,氯苯对菌株的降解能力和邻苯二酚1,2-双加氧酶的活性具有明显的增强作用。  相似文献   

8.
李培睿  李宗义  秦广雍 《生物技术》2007,17(4):96-97,F0004
吡啶及其衍生物由于难降解、毒性、致畸变等特性而引发的环境污染日益得到人们的关注,受其污染的水和土壤环境的生物修复是目前环境治理领域的重要课题。该文综述了近年来国内外吡啶类化合物生物降解的研究进展,对好氧和厌氧情况下的微生物代谢路径及共代谢进行了讨论,并指出今后吡啶类化合物的研究方向。  相似文献   

9.
1,2,4-三氯苯在土壤中的降解   总被引:4,自引:0,他引:4  
在好氧和厌氧两种条件下研究了1,2,4-三氯苯的降解,结果表明,1,2,4-三氯苯的好氧降解和厌氧降解均遵循一级反应动力学在同样水分、温度及初始浓度条件下,1,2,4-三氯苯的好氧降解比厌氧降解迅速,其半衰期分别为1.89~5.86和5.07~19.08d土壤中1,2,4-三氯苯的初始浓度对于其降解也有显著影响,在0~100μg·g-1的范围内,浓度增高时,其降解加快,说明污染物浓度对降解的影响;在10~30℃范围内,温度增高导致降解过程加快,归因于温度升高对微生物酶活性的激活作用.  相似文献   

10.
以序批式气提生物反应器(SABR)为平台,研究了苯胺和氯苯胺类有毒有机废水处理过程好氧污泥颗粒化。结果表明,通过缩短污泥沉降时间、逐步提升目标污染物进水负荷,反应器连续运行3个月,最终在污泥沉降时间5min、COD负荷1.0~3.6kg/(m3.d)、苯胺和氯苯胺负荷1kg/(m3.d)条件下实现污泥颗粒化,COD、苯胺和氯苯胺去除率分别稳定在90%、99.9%以上;获得的成熟好氧颗粒粒径在0.45~2.5mm,SOUR稳定在150mgDO/(gVSS·h)以上,颗粒污泥EPS中PN含量为28.0±1.9mg/gVSS,PN/PS比值为6.5mg/mg,苯胺类比降解速率达0.18g/(g·d);应用PCR-DGGE分子指纹图谱技术分析了稳定运行的颗粒化反应器内好氧污泥微生物种群结构,结果表明好氧颗粒内主要细菌分属β-Proteobacteria、γ-Proteobacteria及Flavobacteria等类群,优势菌为Pseudomonas sp.、Flavobacterium sp.;与已获得的降解氯苯胺好氧颗粒相比,苯胺存在下培养获得的好氧颗粒污泥微生物菌群结构更为丰富。  相似文献   

11.
污水生物处理是一种利用微生物分解污水中的污染物、实现污水净化的方法。噬菌体是侵染细菌的病毒,在污水生物处理系统中广泛存在,它们能够特异性地控制微生物菌群,影响污水处理效果和调控污泥性状。因此,研究污水生物处理中噬菌体的分布及其功能具有重要意义。本文介绍了不同污水生物处理中噬菌体的分布,简要分析了噬菌体分离、培养与鉴定方法及其优缺点,详细总结了噬菌体在污水生物处理中的功能,包括:(1)调节微生物群落结构,影响污水处理效果;(2)作为环境监测的指示生物;(3)控制病原菌、污泥膨胀、污泥发泡和膜污染;(4)减少污泥产量,重点分析了影响噬菌体功能的因素,探讨了污水生物处理中噬菌体功能应用存在的问题及其解决方法,最后对噬菌体未来应用的发展方向进行了展望,以期为污水生物处理技术和工艺的开发与应用提供参考,促进污水处理健康发展。  相似文献   

12.
本项研究工作表明,塔式生物滤池在处理模拟洗涤剂工业废水时,能够适应和克服一般好氧生化法所不能解决的泡沫问题,并对废水中的LAS和COD具有一定的去除效果。根据实验结果,初步认为塔滤可应用于洗涤剂工业废水的生化处理,并向洗涤剂行业首次推荐这种废水生物学净化方法。从塔滤的生物膜中分离出了优势菌,经鉴定为一种气单胞菌(Aeromonas sp. D-4)。  相似文献   

13.
Online estimation of unknown state variables is a key component in the accurate modelling of biological wastewater treatment processes due to a lack of reliable online measurement systems. The extended Kalman filter (EKF) algorithm has been widely applied for wastewater treatment processes. However, the series approximations in the EKF algorithm are not valid, because biological wastewater treatment processes are highly nonlinear with a time-varying characteristic. This work proposes an alternative online estimation approach using the sequential Monte Carlo (SMC) methods for recursive online state estimation of a biological sequencing batch reactor for wastewater treatment. SMC is an algorithm that makes it possible to recursively construct the posterior probability density of the state variables, with respect to all available measurements, through a random exploration of the states by entities called ‘particle’. In this work, the simplified and modified Activated Sludge Model No. 3 with nonlinear biological kinetic models is used as a process model and formulated in a dynamic state-space model applied to the SMC method. The performance of the SMC method for online state estimation applied to a biological sequencing batch reactor with online and offline measured data is encouraging. The results indicate that the SMC method could emerge as a powerful tool for solving online state and parameter estimation problems without any model linearization or restrictive assumptions pertaining to the type of nonlinear models for biological wastewater treatment processes.  相似文献   

14.
The photo-Fenton coupled with a biological system for the removal of di-(2-ethylhexyl) phthalate (DEHP) in wastewater was analyzed. The toxicity of DEHP-containing wastewater was found to be reduced after pretreatment by the photo-Fenton reaction. The effect of different factors, such as DEHP, Fe3+ and H2O2 concentrations and the reaction time, on degradation efficiency was investigated. The optimal time to stop the pretreatment process and introduce the effluent to the biological system was 60 min. The results show that effluent of DEHP-containing wastewater pretreated by the photo-Fenton method is biodegradable and that mineralization can be completed when the wastewater is subsequently treated in a biological system. The coupled Fenton and biological treatment system for the degradation of DEHP-containing wastewater can be successfully performed in a semi-continuous mode. These results indicate that the coupled photo-biological system is an effective and potential method for the treatment of DEHP-containing wastewater.  相似文献   

15.
In view of the importance of biological treatment, it is the purpose of this work to present an overview of attached-growth biological wastewater treatment, considering the active role the engineers have to play in this field. This paper brings together conventional and advanced problems in the field of aerobic attached-growth (biofilm) wastewater treatment. Such an overview of biological wastewater treatment also precedes comments on some important aspects concerning the microorganisms responsible for wastewater treatment as well as considerations on the key factors governing the kinetic of the biological growth and waste treatment, together with application of fundamentals and kinetics to the analysis of these biological processes. A survey of the development of the attached-growth process and some modifications are given. These include additional details on the bioreactor progress and applications. Finally, some aspects regarding process intensification and bioreactor improvement were included.  相似文献   

16.
Thermophilic biological nitrogen removal in industrial wastewater treatment   总被引:1,自引:0,他引:1  
Nitrification is an integral part of biological nitrogen removal processes and usually the limiting step in wastewater treatment systems. Since nitrification is often considered not feasible at temperatures higher than 40 °C, warm industrial effluents (with operating temperatures higher than 40 °C) need to be cooled down prior to biological treatment, which increases the energy and operating costs of the plants for cooling purposes. This study describes the occurrence of thermophilic biological nitrogen removal activity (nitritation, nitratation, and denitrification) at a temperature as high as 50 °C in an activated sludge wastewater treatment plant treating wastewater from an oil refinery. Using a modified two-step nitrification–two-step denitrification mathematical model extended with the incorporation of double Arrhenius equations, the nitrification (nitrititation and nitratation) and denitrification activities were described including the cease in biomass activity at 55 °C. Fluorescence in situ hybridization (FISH) analyses revealed that Nitrosomonas halotolerant and obligatehalophilic and Nitrosomonas oligotropha (known ammonia-oxidizing organisms) and Nitrospira sublineage II (nitrite-oxidizing organism (NOB)) were observed using the FISH probes applied in this study. In particular, this is the first time that Nitrospira sublineage II, a moderatedly thermophilic NOB, is observed in an engineered full-scale (industrial) wastewater treatment system at temperatures as high as 50 °C. These observations suggest that thermophilic biological nitrogen removal can be attained in wastewater treatment systems, which may further contribute to the optimization of the biological nitrogen removal processes in wastewater treatment systems that treat warm wastewater streams.  相似文献   

17.
18.
微生物处理高盐工业有机废水工艺研究进展   总被引:1,自引:1,他引:0  
随着我国工业化进程加快,其所造成的水污染现象也越来越严重。含盐有机废水的排放会导致环境进一步恶化,为了合理循环利用水资源,相关废水的有效处理至关重要。本文从微生物角度出发,通过典型案例阐述了目前基于微生物所运行的生物工艺技术在高含盐有机废水领域中的研究进展,综述了微生物在高盐环境中的生存与耐受机制,以及在处理高盐工业有机废水方面的研究与应用情况,进一步提出了目前存在的问题及未来在本领域研究与应用的展望,为高盐工业有机废水的生物处理发展方向提供一定的参考。  相似文献   

19.
Abstract

The importance of highly efficient wastewater treatment is evident from aggravated water crises. With the development of green technology, wastewater treatment is required in an eco-friendly manner. Biotechnology is a promising solution to address this problem, including treatment and monitoring processes. The main directions and differences in biotreatment process are related to the surrounding environmental conditions, biological processes, and the type of microorganisms. It is significant to find suitable biotreatment methods to meet the specific requirements for practical situations. In this review, we first provide a comprehensive overview of optimized biotreatment processes for treating wastewater during different conditions. Both the advantages and disadvantages of these biotechnologies are discussed at length, along with their application scope. Then, we elaborated on recent developments of advanced biosensors (i.e. optical, electrochemical, and other biosensors) for monitoring processes. Finally, we discuss the limitations and perspectives of biological methods and biosensors applied in wastewater treatment. Overall, this review aims to project a rapid developmental path showing a broad vision of recent biotechnologies, applications, challenges, and opportunities for scholars in biotechnological fields for “green” wastewater treatment.  相似文献   

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