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1.
蚯蚓辅助微生物修复芘污染土壤   总被引:2,自引:0,他引:2  
通过微宇宙实验,研究了蚯蚓对不同土壤中芘的微生物降解率的影响及蚯蚓对芘的富集率.结果表明,有机质较高土壤中芘的微生物降解率和蚯蚓富集率都低于有机质低的土壤,而老化作用降低了芘的生物有效性.无论在新鲜染毒还是老化的土壤中.蚯蚓均可提高土壤中芘的去除率和微生物降解率.在新鲜染毒的红壤和潮土中,蚯蚓可使芘的去除率由41.78%和27.02%分别提高到89.24%和57.53%,其中分别有51.48%和41.63%是蚯蚓促进的微生物降解作用引起的,37.76%和15.90%归因于蚯蚓富集作用.而在老化的红壤和潮土中,蚯蚓可使芘的去除率由36.53%和20.50%分别提高到91.93%和45.46%,其中分别有54.43%和32.83%是蚯蚓促进的微生物降解作用引起的,37.50%和12.63%归因于蚯蚓富集作用.  相似文献   

2.
Performance of a full-scale anoxic-oxic activated sludge treatment plant(4.0×10~5 m~3/day for the first-stage project) was followed during a year.The plant performed well for the removal of carbon,nitrogen and phosphorus in the process of treating domestic wastewater within a temperature range of 10.8℃ to 30.5℃.Mass balance calculations indicated that COD utilization mainly occurred in the anoxic phase,accounting for 88.2% of total COD removal.Ammonia nitrogen removal occurred 13.71% in the anoxic zones and 78.77% in the aerobic zones.The contribution of anoxic zones to total nitrogen(TN) removal was 57.41%.Results indicated that nitrogen elimination in the oxic tanks was mainly contributed by simultaneous nitrification and denitrification(SND).The reduction of phosphorus mainly took place in the oxic zones,51.45% of the total removal.Denitrifying phosphorus removal was achieved biologically by 11.29%.Practical experience proved that adaptability to gradually changing temperature of the microbial populations was important to maintain the plant overall stability.Sudden changes in temperature did not cause paralysis of the system just lower removal efficiency,which could be explained by functional redundancy of microorganisms that may compensate the adverse effects of temperature changes to a certain degree.Anoxic-oxic process without internal recycling has great potential to treat low strength wastewater(i.e.,TN 35 mg/L) as well as reducing operation costs.  相似文献   

3.
Experiments were carried out to characterize the transformation of lipids in activated sludge under aerobic conditions. Results showed that the overall lipid content in the effluent could not be reduced to values below 300 mg/L from an initial content of 2, 000 mg/L. However, the contents of individual fatty acids underwent drastic decreases and increases during all microbial growth phases. These changes in contents of individual fatty acids showed that fatty acids were used as substrates by microorganisms as well as released into the wastewater as by-products. We have therefore suggested a novel model of transformation of lipids in activated sludge, showing that utilization of microbial activity for complete removal of lipids from wastewater is limited.  相似文献   

4.
高效细菌挂膜处理菊酯类、杂环类农药废水   总被引:9,自引:0,他引:9  
利用拟除虫菊酯类、杂环类农药废水作为唯一能源和碳源 ,从被农药废水污染的土壤中分离、筛选出降解能力较强的细菌W1、W2、Y3。 3株菌混合后在废水体系继续培养一定时间获得性状稳定的活性菌液ALMO ,用半软性填料进行挂膜 ,处理菊酯类、杂环类综合农药废水。当进水CODCr为 6 810mg L、3130mg L、1890mg L时 ,经过 2 4h的作用 ,细菌膜对CODCr的降解率分别达到 2 4 8%、4 3 5 %、5 3 4 %。而相同条件下 ,经过长期驯化的活性污泥 ,污泥含量 30 % ,处理进水CODCr浓度为 374 0mg L的废水 ,2 4h后 ,CODCr的降解率仅为 5 6 7%。试验结果表明 ,分离得到的降解菌的活性是相当高的 ,细菌挂膜作为该类废水的第一阶段处理工艺是可行的  相似文献   

5.
切割钢渣是钢铁生产过程中的固体废弃物,如何有效处理和利用这些废渣具有减少环境污染、实现废物资源化的重要意义.本文选择河北邢台钢铁厂中切割钢渣为过硫酸盐(PS)活化剂,活化过硫酸盐(PS)去除水相中偶氮染料酸性红73(AR73),实验表明,25 mg·L~(-1) AR73在15 min内,其降解率为99.9%,TOC矿化率达58.6%.同时考察了钢渣投入量、PS浓度、初始pH值等影响因素对AR73降解效率的影响:随着PS浓度、钢渣投入量的增加,AR73的降解速率也逐渐增加;在pH为3~9时,AR73均可被有效去除,酸性条件更有利于AR73的去除.活性自由基猝灭实验表明,酸性红73的降解是通过自由基和非自由基两种机制实现的,且钢渣可多次回收重复利用.钢渣活化PS技术,还可有效去除蒽醌类染料(活性蓝19),其去除率为99.9%,矿化率可达92.0%;同时该技术对某印染废水(COD_(Cr)=5625 mg·L~(-1))的去除率达49.9%.本文所构建的切割钢渣活化过硫酸盐(PS)技术可应用于偶氮印染废水的处理,实现"以废治废"的目标.  相似文献   

6.
Removal of nitrogen in wastewater before discharge into receiving water courses is an important consideration in treatment systems. However, nitrogen removal efficiency is usually limited due to the low carbon/nitrogen (C/N) ratio. A common solution is to add external carbon sources, but amount of liquid is difficult to determine. Therefore, a combined wood-chip-framework substrate (with wood, slag and gravel) as a slow-release carbon source was constructed in baffled subsurface-flow constructed wetlands to overcome the problem. Results show that the removal rate of ammonia nitrogen (NH4+-N), total nitrogen (TN) and chemical oxygen demand (COD) could reach 37.5%–85%, 57.4%–86%, 32.4%–78%, respectively, indicating the combined substrate could diffuse sufficient oxygen for the nitrification process (slag and gravel zone) and provide carbon source for denitrification process (wood-chip zone). The nitrification and denitrification were determined according to the location of slag/gravel and wood-chip, respectively. Nitrogen removal was efficient at the steady phase before a shock loading using slag-wood-gravel combined substrate because of nitrification–denitrification process, while nitrogen removal was efficient under a shock loading with wood-slag-gravel combined substrate because of ANAMMOX process. This study provides a new idea for wetland treatment of high-strength nitrogen wastewater.  相似文献   

7.
以6种典型N-亚硝胺(NAs)为研究对象,基于质量浓度监测数据系统研究了它们在3种不同处理工艺的污水处理厂中的分布及其去除规律,并分析了它们在受纳河水中的污染概况及来源.结果表明,6种NAs在3种不同处理工艺污水处理厂各工艺段废水中普遍存在,其中主要污染物为NPIP、NDMA和NPYR,质量浓度水平为几十到几百ng·L-1. 3种不同处理工艺的污水处理厂都能对NAs起到一定的去除效果,其中改良A~2/O和A~2/O+MBR对NAs的去除效果较好,总体去除率分别为95%和63%,主要依靠生化阶段的微生物降解和转化.在过滤、MBR和消毒阶段,废水处理体系中NAs前驱物经一系列反应后会形成一定的NAs增量. 6种NAs在受纳河流的表层水中也频繁检出,主要污染物和污水处理厂进水中的主要污染物一致,仍然是MDMA、NPIP和NPYR.受纳河流中的NAs来源广泛而复杂,包括污水处理厂尾水排入、未经处理的生活污水和工业废水以及工业区地表径流等的汇入.因此,应该通过增强污水收集和处理能力、优化污水处理工艺等措施减少NAs向受纳河流的输入.  相似文献   

8.
SSCP技术分析不同废水处理系统中微生物群落结构   总被引:10,自引:1,他引:9  
赵阳国  王爱杰  任南琪  赵焱 《环境科学》2006,27(7):1429-1433
为研究不同废水处理系统中微生物群落结构以及认识群落结构与系统处理效能的关系,采用单链构象多态性技术(SSCP)分别对稳定运行的脱氮除磷反应器(N),中药废水处理反应器(P),啤酒废水处理反应器(W),糖蜜废水发酵制氢反应器(H)以及硫酸盐还原反应器(S)等5种废水处理系统中的微生物群落结构进行了解析.结果表明,处理同种废水且状态均一的反应器中微生物群落结构相似性最大;微生物种群多样性与废水中的有机质复杂性成正相关,中药废水由于含有较复杂的有机质成分,种群多样性最高,而人工配水的处理系统由于营养成分单一,种群多样性较低;与模式群落中微生物SSCP条带比较显示,某些功能微生物类群在整个系统中相对数量并非占优势,发酵产氢菌Ethanologenbacterium sp.在状态良好的制氢反应器中相对含量仅占5%,而脱硫弧菌Desulfovibrio sp.在硫酸盐还原反应器中的相对比例小于1.5%.SSCP指纹图谱技术能够揭示不同处理系统中微生物群落结构的差别,并对这些工艺中的部分功能微生物进行监测,进而为提高反应器的运行效果提供有益的指导.  相似文献   

9.
Many nitrogen-containing aromatic compounds (NACs), such as nitrobenzene (NB), 4-nitrophenol (4-NP), aniline (AN), and 2,4-dinitrophenol (2,4-DNP), are environmentally hazardous, and their removal from contaminated water is one of the main challenges facing wastewater treatment plants. In this study, synthetic wastewater containing NB, 4-NP, 2,4-DNP, and AN at concentrations ranging from 50 to 180 mg/L was fed into a sequencing batch reactor (SBR). Analyses of the SBR system indicated that it simultaneously removed more than 99% of the NACs at loading rates of 0.36 kg NB/(m3·d), 0.3 kg 4-NP/(m3·d), 0.25 kg AN/(m3·d), and 0.1 kg 2,4-DNP/(m3·d). Bacterial groups of Bacteriodetes, Candidate division TM7, α-Proteobacteria, and β-Proteobacteria were dominant in the clone libraries of 16S rRNA genes retrieved from the microbial communities in the SBR system. "Cycle tests" designed to alter feeding and aeration parameters of the SBR system demonstrated that the resident microbial biome of the SBR system responded rapidly to changing conditions. Consumption of O2 was concomitant with the apparent mineralization of NACs. Aromatic ring-cleaving dioxygenase activities suggested that (1) AN and NB were degraded via catechol 2,3-dioxygenase; (2) 4-NP was degraded via 1,2,4-benzentriol 1,2-dioxygenase; and (3) 2,4-DNP was degraded via an unresolved pathway.  相似文献   

10.
双室微生物燃料电池不同接种条件下处理薯蓣素废水   总被引:3,自引:2,他引:1  
比较了在5种不同接种条件下,利用双室微生物燃料电池(Microbial Fuel Cells,MFCs)处理薯蓣素生产废水的污染物去除和产电效果. 结果表明,该种废水可以用作微生物燃料电池的底物,在去除有机物的同时能够获得电能;采用全混合接种对污染物的去除效果最好,在350 h时CODCr去除率达到90%;采用污水处理厂厌氧污泥和薯蓣素废水驯化菌液混合接种的产电效果最好,在1 000 Ω的外电阻下得到了370 mV的输出电压,最大输出功率密度达到10.32 mW/m2;不同菌属在MFCs中的作用差别显著,产电与去污功能可能由不同优势菌属承担;初步富集到优势菌菌b,菌d和菌e;PCR-DGGE和DNA序列分析结果显示,菌d和菌e与β-变形菌具有较好的同源性.   相似文献   

11.
The methylene blue(MB)removal abilities of raw activated carbon and iron/cerium modified raw activated carbon(Fe–Ce-AC)by adsorption were researched and compared.The characteristics of Fe–Ce-AC were examined by N_2adsorption,zeta potential measurement,FTIR,Raman,XRD,XPS,SEM and EDS.After modification,the following phenomena occurred:The BET surface area,average pore diameter and total pore volume decreased;the degree of graphitization also decreased.Moreover,the presence of Fe_3O_4led to Fe–Ce-AC having magnetic properties,which makes it easy to separate from dye wastewater in an external magnetic field and subsequently recycle.In addition,the equilibrium isotherms and kinetics of MB adsorption on raw activated carbon and Fe–Ce-AC were systematically examined.The equilibrium adsorption data indicated that the adsorption behavior followed the Langmuir isotherm,and the pseudo-second-order model matched the kinetic data well.Compared with raw activated carbon,the maximum monolayer adsorption capacity of Fe–Ce-AC increased by27.31%.According to the experimental results,Fe–Ce-AC can be used as an effective adsorbent for the removal of MB from dye wastewater.  相似文献   

12.
Bacillus sp.处理含锑废水试验研究   总被引:1,自引:0,他引:1  
利用某芽孢杆菌属微生物(Bacillus sp).对锑矿选矿废水进行了处理。研究微生物的接种量、作用时间、温度、体系pH值等对废水中Sb的去除效果的影响。结果表明:作用时间4 d、微生物接种量为5%、处理体系pH为2、最佳处理体系温度为30℃时,效果最佳,对废水中Sb的去除率达到99.75%,处理后废水中Sb的浓度由122.21 mg/L降低至0.30 mg/L,出水Sb浓度低于湖南省地方标准排放限值0.50 mg/L。  相似文献   

13.
MBR处理腈纶废水的效能及微生物群落结构分析   总被引:5,自引:2,他引:3  
魏健  宋永会  赵乐 《环境科学》2014,35(12):4610-4617
采用序批式膜生物反应器(SBMBR)处理腈纶聚合废水和丙烯腈废水,考察了不同废水比例和运行条件下反应器的运行效果,并采用PCR-DGGE技术分析了反应器内微生物群落结构的变化.结果表明,SBMBR对腈纶废水具有较好的处理效果,碳源和碱度不足是影响脱氮效果的两个主要因素;在水力停留时间为24 h,90 min缺氧/150 min好氧交替运行的条件下,COD、NH+4-N和TN的平均去除率分别为82.5%、98.7%和74.6%,出水水质可以稳定达到国家污水综合排放标准(GB8978-1996)的一级标准;PCR-DGGE分析结果表明,反应器内微生物多样性与进水水质和运行条件密切相关,微生物群落呈现出较明显的演替过程;通过克隆测序,从9个污泥样品中成功鉴定获得22种微生物的16S r DNA序列,并筛选出7种降解腈纶废水的优势菌种.  相似文献   

14.
为探讨养殖废水中兽用抗生素对湿地系统中氮素转化及相关微生物过程的影响,以养殖废水中常见的抗生素SD(磺胺嘧啶)为例,设置0、10、100和1 000 μg/L 4个添加浓度开展模拟试验.通过qPCR(实时荧光定量PCR)技术,测定了湿地底泥中氨氧化和反硝化功能基因丰度,结合Pearson相关分析,分析了养殖废水中不同氮素形态与底泥中氮转化功能基因丰度的关联性.结果表明:①与CK组比较,添加SD对湿地TN的最终去除效果无显著性差异,4个处理组的TN去除率为75.4%~80.5%,但在培养前期(0~14 d),SD对水体NH4+-N和NO3--N转化的抑制率最高分别达53.0%和99.5%,随着SD浓度的增加,抑制作用越强,到培养后期(14~28 d),各处理水体中不同形态的氮浓度无显著差异.②由qPCR测试结果得出,湿地底泥中AOA(氨氧化古菌)的丰度比AOB(氨氧化细菌)高出1~2个数量级,表明AOA在氨氧化过程中起主导作用,另外在培养第7天,AOB发生显著抑制现象,对SD更敏感;与CK相比,在第7天和第14天,反硝化基因narG、nirS、nirK和nosZ丰度随SD浓度的增加而逐渐降低.③相关性分析结果表明,AOA与ρ(NH4+-N)呈极显著正相关(P < 0.01),AOB与ρ(NO3--N)呈极显著正相关(P < 0.01),nirK与ρ(NO2--N)呈极显著正相关(P < 0.01).研究显示,SD能抑制湿地底泥中氮转化微生物及相关氮转化过程,且SD浓度越大,抑制作用也越大,但随着培养时间的增加抑制作用会减弱.   相似文献   

15.
王博  付宁  马放 《环境科学与管理》2012,37(8):83-85,101
文章对无机絮凝剂、有机合成高分子絮凝剂和微生物絮凝剂三种絮凝剂进行了比较,提出研究和开发絮凝效果好、应用范围广、易生物降解、对环境安全的微生物絮凝剂就成为必然,并综述了微生物絮凝剂其产生菌的筛选、鉴定、培养、微生物絮凝剂的提取和纯化、微生物絮凝剂的化学组成分析和合成途径的探索;列举了微生物絮凝剂对畜产废水有机物的去除、对废水中COD、BOD的去除、对印染废水脱色的应用、对工业废水重金属离子的脱除,最后,展望了微生物絮凝剂的研究发展方向。  相似文献   

16.
九龙江口湿地表层沉积物氮的形态分布特征   总被引:5,自引:1,他引:4  
利用连续提取法对九龙江口湿地表层沉积物中不同形态氮含量进行了测定,探究了滨海湿地表层沉积物中氮形态及其与沉积物理化性质的相关关系.结果表明:九龙江口滨海湿地沉积物中w(TN)达到12.67 mg/g,可转化态氮(EFN)质量分数〔w(EFN)〕占w(TN)的18.78%.有机硫化物结合态氮(OSFN)和碳酸盐结合态氮(CFN)是九龙江口滨海湿地沉积物EFN的主要形态,w(OSFN)和w(CFN)分别占w(EFN)的37.82%和36.97%.不同潮水位和植被类型沉积物中的w(TN)和w(EFN)呈现差异性,表现为高潮位>中潮位>低潮位,红树林>其他植被类型(北部互花米草、红树与互花米草混交和南部互花米草)>光滩.w(CFN),w(OSFN),w(EFN)和w(TN)存在显著相关关系,表明w(TN)和w(EFN)的增加主要来源于OSFN和CFN.w(OSFN),w(EFN)和w(TN)与w(OM)存在显著相关关系,表明河口滨海湿地有机质的累积、矿化,可增加沉积物中的w(OSFN),w(EFN)和w(TN),从而对滨海湿地氮生物地球化学过程产生重要影响.   相似文献   

17.
畜禽养殖废水污染物浓度高、生物毒性大,导致传统生物处理工艺难以满足达标排放要求.为探究高效的畜禽养殖废水处理工艺,采用生物转盘作为主体工艺,利用异养硝化-好氧反硝化菌(简称"HN-AD菌")为生物强化菌剂,对比了强化污泥挂膜和菌剂挂膜两种不同生物强化方式下该工艺在启动时间、碳耗、能耗、真实废水处理效果及微生物多样性方面的差异,以确定最佳生物强化方式.结果表明:①模拟废水试验中,菌剂挂膜反应器启动时间(19 d)明显短于强化污泥挂膜(33 d),参数优化后发现,在相同处理效果下,前者碳耗、能耗较后者分别低48.22%、33.33%.②真实废水处理试验中,菌剂挂膜反应器的CODCr、NH4+-N、TN平均去除率较后者分别高7.11%、26.97%、29.14%.③在微生物多样性方面,菌剂挂膜体系中Comamonas(丛毛单胞菌属)相对丰度是强化污泥挂膜体系的10倍左右,推测Comamonas可能是在异养硝化好氧反硝化过程中发挥关键作用的菌属.④SEM观察发现菌剂挂膜生物转盘盘片上的生物膜更薄,但HN-AD优势菌富集程度更高.研究显示,菌剂挂膜反应器对模拟废水、真实废水的处理效果均优于强化污泥挂膜反应器,且效果更稳定.   相似文献   

18.
池玉蕾  石烜  任童  王晓昌  金鹏康 《环境科学》2021,42(9):4374-4382
为了阐明溶解氧对低碳源城市污水处理系统脱氮除磷性能的影响,研究了供氧区溶解氧浓度分别为2~3、1~2和低于1mg·L-1的运行条件下微生物应对低碳源环境生长与代谢特性的差异.随着供氧区溶解氧浓度的降低利用外碳源和内碳源脱氮量分别升高了20.23%和80.54%,内碳源的除磷利用效率升高了13.89%,进而使低碳源城市污水的脱氮除磷效果得到强化.高通量测序和RDA分析结果表明,降低供氧区溶解氧浓度驱动微生物群落结构的调整,促使脱氮除磷功能微生物(如:Dechloromonas菌属)的丰度显著增加.基于PICRUSt预测分析可知,在低溶解氧浓度的运行环境中微生物与基质利用、能量合成和代谢调控功能相关的基因活性更高,保证了功能微生物在低碳源条件下稳定生长并维持较高的脱氮除磷效率.本研究为提升低碳源城市污水处理系统中脱氮除磷功能微生物的生长提供理论依据.  相似文献   

19.
Biochar has been introduced as an acceptable soil amendment due to its environmental benefits such as sequestering soil contaminants. However, the aging process in biochar amended soil probably decreases the adsorption capacity of biochar through changing its physico-chemical properties. Adsorption, leaching and bioavailability of fomesafen to corn in a Chinese soil amended by rice hull biochar after 0, 30, 90 and 180 days were investigated.Results showed that the addition of 0.5%–2% fresh biochar significantly increases the adsorption of fomesafen 4–26 times compare to unamended soil due to higher SSA of biochar. Biochar amendment also decreases fomesafen concentration in soil pore water by5%–23% resulting lower risk of the herbicide for cultivated plants. However, the aging process decreased the adsorption capacity of biochar since the adsorption coefficient values which was 1.9–12.4 in 0.5%–2% fresh biochar amended soil, declined to 1.36–4.16, 1.13–2.78 and 0.95–2.31 in 1, 3 and 6-month aged treatments, respectively. Consequently, higher desorption, leaching and bioavailable fraction of fomesafen belonged to 6-month aged treatment. Nevertheless, rice hull biochar was effective for sequestering fomesafen as the adsorption capacity of biochar amended soil after 6 months of aging was still 2.5–5 times higher compared to that of unamended soil.  相似文献   

20.
膜曝气-生物膜反应器(MABR)是一种新型的膜-生物废水处理工艺,在MABR中采用基因工程菌生物膜可以强化难降解污染物的生物去除.本研究在SPG膜表面形成基因工程菌生物膜,运行SPG膜曝气-生物膜反应器(SPG-MABR)处理阿特拉津废水,考察了气压、挂膜生物量和液体流速对SPG-MABR运行性能的影响,以及基因工程菌生物膜的变化.结果表明,提高气压可以增大透氧系数,从而提高阿特拉津和COD的去除速率以及复氧速率.提高挂膜生物量能够加快阿特拉津和COD的生物去除,但生物膜厚度增加使得氧传质阻力增大,复氧速率降低.层流状态下减小SPG-MABR中的液体流速,有利于污染物向生物膜扩散传质,从而提高污染物去除速率.气压为300 kPa、生物量为25 g·m-2、液体流速为0.05 m·s-1时,SPGMABR反应器对阿特拉津5 d的去除率可以达到98.6%.在SPG-MABR运行过程中,基因工程菌生物膜呈现微生物多态化趋势.生物膜表面逐渐被其他微生物细胞覆盖,基因工程菌分布减少,生物膜内部仍以基因工程菌细胞为主.  相似文献   

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