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1.
Dissimilatory Fe(Ⅲ) reduction is a universal process with irreplaceable biological and environmental importance in anoxic environments. Our knowledge about Fe(Ⅲ) reduction predominantly comes from pure cultures of dissimilatory Fe(Ⅲ) reducing bacteria (DFRB). The objective of this study was to compare the effects of glucose and a selection of short organic acids (citrate, succinate, pyruvate, propionate, acetate, and formate) on Fe(Ⅲ) reduction via the anaerobic culture of three paddy soil solutions with Fe(OH)3 as the sole electron acceptor. The results showed significant differences in Fe(Ⅲ) reduction among the three paddy soil solutions and suhstrate types. Bacteria from the Sichuan paddy soil responded quickly to substrate supply and showed higher Fe(Ⅲ) reducing activity than the other two soil types. Bacteria in the Jiangxi paddy soil culture solution could not use propionate as a source of electrons for Fe(Ⅲ) reduction. Similarly, bacteria in the Jilin paddy soil culture could not use succinate effectively. Pyruvate was readily used by cultures from all three paddy soil solutions, thus indicating that there were some similarities in substrate utilization by bacteria for Fe(Ⅲ) reduction. The use of glucose and citrate as substrate for dissimilatory Fe(Ⅲ) reduction indicates important ecological implications for this type of anoxic respiration.  相似文献   

2.
Dissimilatory Fe(Ⅲ) reduction is a universal process with irreplaceable biological and environmental importance in anoxic environments. Our knowledge about Fe(Ⅲ) reduction predominantly comes from pure cultures of dissimilatory Fe(Ⅲ) reducing bacteria (DFRB). The objective of this study was to compare the effects of glucose and a selection of short organic acids (citrate, succinate, pyruvate, propionate, acetate, and formate) on Fe(Ⅲ) reduction via the anaerobic culture of three paddy soil solutions with Fe...  相似文献   

3.
以SBBR反应器活性污泥作为铁还原菌菌种来源,采用兼性厌氧/严格厌氧恒温培养试验,投加不同Fe(III)考察各条件下的异化铁还原能力,同时比较对磷的去除效果.结果表明:2种条件下Fe(III)还原能力具有较好的一致性,依次为:Fe(OH)3>氧化铁皮>青矿>红矿,其中严格厌氧条件下较好.同时,除磷效果与其呈正相关,富集培养至7d, Fe(OH)3及氧化铁皮体系出水磷浓度均达到2mg/L以下,之后继续降低,最终达到0.5mg/L以下.结合异化铁还原除磷机理,可以证明,不同Fe(III)表面吸附作用对TP的去除贡献较小,其主要作用为铁还原菌驱动下的化学沉淀去除.  相似文献   

4.
一些发酵型异化铁还原细菌同时具有异化铁还原与产氢的能力,该类细菌在环境污染修复的同时能够解决能源问题,具有广阔应用前景。本文以海洋沉积物中异化铁还原细菌Enterococcus sp. ZQ21为研究对象,设置不同形态Fe(Ⅲ),分析菌株ZQ21异化铁还原与产氢性质。结果表明,当氢氧化铁和柠檬酸铁为电子受体时,菌株ZQ21以柠檬酸铁为电子受体时Fe(Ⅲ)还原效率较高,其酶活性分别为3.66 U和4.40 U。同时,菌株ZQ21在异化铁还原培养体系中具有产氢能力,以柠檬酸铁和氢氧化铁为电子受体进行厌氧发酵培养时,体系累积产氢量分别为(1395.30 ± 4.79)mL/L和(174.30 ± 3.23)mL/L,均显著高于对照组[(23.20 ± 2.09) mL/L]。通过液相发酵产物分析,在柠檬酸铁和氢氧化铁不同形态Fe(Ⅲ)培养条件下,菌株ZQ21分别表现出乙醇型发酵和丁酸型发酵产氢代谢类型。菌株Enterococcus sp. ZQ21具有异化铁还原和产氢能力,进一步拓宽发酵型异化铁还原细菌种质资源。  相似文献   

5.
Cr(VI)是一种毒性极强的重金属,利用微生物还原Cr(VI)为Cr(III)是解决Cr(VI)污染的一条有效途径。菌株Enterobacter sp. L6是一株分离自海洋沉积物中的异化铁还原细菌。接种时细胞密度A600为(0.25±0.03),培养12 h,A600达到(1.04±0.05),累积产生Fe(II)浓度为(0.80±0.03)mmol/L;随着培养时间的延长,细胞密度A600和累积产生Fe(II)浓度开始下降;培养36 h时,细胞密度A600为(0.81±0.04),累积Fe(II)浓度(0.63±0.01)mmol/L。在厌氧培养过程中,菌株L6细胞生长与异化还原Fe(III)性质存在明显的偶联关系。利用菌株L6的异化铁还原性质还原Cr(VI)的实验结果表明,在Cr(VI)浓度0~24 mg/L范围内,异化铁还原细菌L6都能进行细胞生长并还原Cr(VI)。Cr(VI)浓度为4、8和12 mg/L时,菌株L6对Cr(VI)还原率可达到100%,当Cr(VI)浓度为16 mg/L时,Cr(VI)还原率是参比[未添加Fe(III)]的2.11倍。Cr(VI)浓度为20、24 mg/L时,仍能够还原Cr(VI)。以Fe(III)为电子受体的异化铁还原细菌能明显提高Cr(VI)还原率,这为利用微生物修复Cr(VI)污染提供实验数据支持。  相似文献   

6.
以华南稻田土壤为研究对象,通过室内模拟控制实验,研究了Fe (Ⅱ)对厌氧稻田土壤中反硝化过程及其功能微生物群落结构组成与相对丰度的影响.结果表明,加入Fe (Ⅱ)减缓了土壤中NO3-的还原,但促进了NO2-的还原和N2O的生成;同时Fe (Ⅱ)只在Soil+Fe (Ⅱ)+NO3-处理中发生氧化.通过定量PCR结果发现,Fe (Ⅱ)的加入提高了亚硝酸盐还原基因nirS和N2O还原基因nosZ的拷贝数;但降低了细胞膜硝酸盐还原基因narG的拷贝数.通过高通量和克隆文库分析发现,Fe (Ⅱ)的加入主要对napA-周质硝酸盐还原微生物群落结构有明显影响,Soil+NO3-处理中优势菌是Dechloromonas,而Soil+Fe (Ⅱ)+NO3-处理中为AzonexusDechloromonasAzospira.Fe (Ⅱ)对厌氧稻田中的反硝化过程及其功能微生物群落具有显著影响,这对了解华南红壤地区稻田体系中的氮元素循环与铁元素转化的关系具有重要意义.  相似文献   

7.
微生物铁氧化作用对砷迁移转化的影响   总被引:12,自引:2,他引:10  
采用厌氧培养的方法,从砷污染的水稻上中富集依赖硝酸盐的铁氧化菌群,通过监测培养体系中Fe和A$的形态变化模拟水稻厌氧条件下微生物铁氧化过程对As迁移转化的影响.结果表明,约96%外源添加的Fe(Ⅱ)可在10d内氧化成Fe(Ⅲ),As(Ⅲ)对Fe(Ⅱ)的初期氧化速率具有一定的抑制作用;在微生物铁氧化过程中,As(Ⅲ)被氧...  相似文献   

8.
刘洪艳  覃海华  王珊 《海洋环境科学》2019,38(4):508-512, 520
取渤海沉积物进行厌氧培养,富集异化铁还原细菌。采用三层平板法筛选出一株高效异化铁还原细菌ZQ21。经鉴定,该菌株为Enterococcus sp.ZQ21(GenBank号MF192756)。设置不同电子供体、电子受体和电子传递体浓度,分析菌株ZQ21异化还原Fe(Ⅲ)性质。结果表明,在乙二胺四乙酸二钠、柠檬酸钠、葡萄糖、丙酮酸钠、乙酸钠和甲酸钠为电子供体时,菌株ZQ21利用丙酮酸钠还原Fe(Ⅲ)效率最高,累积Fe(Ⅱ)浓度达到113.14 ±3.46 mg/L。菌株ZQ21以柠檬酸铁和氢氧化铁为电子受体时,累积Fe(Ⅱ)浓度分别为91.75 ±1.45 mg/L和58.39 ±4.34 mg/L,Fe(Ⅲ)还原效率存在显著差异。在电子受体为氢氧化铁时,添加不同浓度电子传递体蒽醌-2-磺酸钠(AQS),旨在提高菌株ZQ21的Fe(Ⅲ)还原效率。当AQS浓度为1.50 mmol/L时,菌株ZQ21还原Fe(Ⅲ)效率最高,累积Fe(Ⅱ)浓度达到80.28 ±3.95 mg/L,比对照组提高27%。铁还原细菌ZQ21能够有效利用可溶性以及不溶性电子受体进行异化铁还原,可进一步应用于海洋污染环境中微生物介导的异化Fe(Ⅲ)还原过程。  相似文献   

9.
The potential of microbial mediated iron plaque reduction, and associated arsenic (As) mobility were examined by iron reducing bacteria enriched from As contaminated paddy soil. To our knowledge, this is the first time to report the impact of microbial iron plaque reduction on As mobility. Iron reduction occurred during the inoculation of iron reducing enrichment culture in the treatments with iron plaque and ferrihydrite as the electron acceptors, respectively. The Fe(II) concentration with the treatment of anthraquinone-2, 6-disulfonic acid (AQDS) and iron reducing bacteria increased much faster than the control. Arsenic released from iron plaque with the iron reduction, and a significant correlation between Fe(II) and total As in culture was observed. However, compared with control, the increasing rate of As was inhibited by iron reducing bacteria especially in the presence of AQDS. In addition, the concentrations of As(III) and As(V) in abiotic treatments were higher than those in the biotic treatments at day 30. These results indicated that both microbial and chemical reductions of iron plaque caused As release from iron plaque to aqueous phase, however, microbial iron reduction induced the formation of more crystalline iron minerals, leading to As sequestration. In addition, the presence of AQDS in solution can accelerate the iron reduction, the As release from iron plaque and subsequently the As retention in the crystalline iron mineral. Thus, our results suggested that it is possible to remediate As contaminated soils by utilizing iron reducing bacteria and AQDS.  相似文献   

10.
微生物异化Fe(Ⅲ)还原是指以Fe(Ⅲ)为末端电子受体在无氧条件下氧化有机物的产能过程,而铁元素是地壳中丰度最高的元素之一,因此,异化Fe(Ⅲ)还原在生物地球化学循环中起着重要的作用。文章围绕异化Fe(Ⅲ)还原机制,综述了国内外有关异化Fe(Ⅲ)还原在有机污染物(尤其是难降解有机污染物)、营养物质(N,P)等环境污染治理中的研究现状及其发展趋势,并对其进行了评述和展望,以期为特定污染物在环境污染治理中的实际应用提供参考依据。  相似文献   

11.
The flooding and drainage of paddy fields has great effects on the transformation of heavy metals, however, the transformation of Cr in basalt-derived paddy soil with high geological background values was less recognized. The typical basalt-derived paddy soil was incubated under alternating redox conditions. The Cr fractions and the dynamics of Fe/N/S/C were examined. The HCl-extractable Cr increased under anaerobic condition and then decreased during aerobic stage. The UV-vis spectra of the supernatant showed that amounts of colloids were released under anaerobic condition, and then re-aggregated during aerobic phase. The scanning transmission electron microscopy (TEM) and X-ray photoelectron spectroscopy (XPS) revealed that Fe oxides were reduced and became dispersed during anaerobic stage, whereas Fe(II) was oxidized and recrystallized under aerobic condition. Based on these results, a kinetic model was established to further distinguish the relationship between the transformation of Cr and Fe. During anaerobic phase, the reduction of Fe(III) oxides not only directly released the structurally bound Cr, but also enhanced the breakdown of soil aggregation and dissolution of organic matter causing indirect mobilization of Cr. During aerobic phase, the oxidation of Fe(II) and further recrystallization of newly formed Fe(III) oxides might induce the re-aggregation of soil colloids and further incorporation of Cr. In addition, the kinetic model of Cr and Fe transformation was further verified in the pot experiment. The model-based findings demonstrated that the Cr transformation in the basalt-derived paddy soil with high geological background values was highly driven by redox sensitive iron cycling.  相似文献   

12.
在实验室模拟条件下,研究了Shewanella oneidensis MR-1作用下Fe(III)还原和As(III)氧化动力学及其影响因素.结果表明,Fe(III)被还原为Fe(II)的同时伴随着As(III)氧化为As(V);S. oneidensis MR-1 在含低浓度As(III)培养基上生长良好,在高浓度培养基上生长被抑制;As(III)通过制约菌体的生长与活性来抑制Fe(III)异化还原.同样,适量浓度的Fe(III)含量对As(III)氧化转化有很强的促进作用,但是过高浓度的Fe(III)浓度使得溶液中产生过多的Fe(II),从而对As(III)氧化转化有一定程度的抑制作用.此外,弱碱环境更有利于As(III)氧化转化.  相似文献   

13.
铁-柠檬酸,铁-酒石酸,铁-丁二酸,铁-草酸配合物在高压汞灯(λmax=313nm,250W)的照射下,能使活性艳红X-3B染料水溶液脱色。染料初始浓度在10mg/L~50mg/L时,染料脱色为动力学一级反应,脱色速率随初始浓度增大而降低。在pH2.0~3.0时铁-柠檬酸,铁-滴石酸,铁-丁二酸的染料溶液脱色效果较佳,在pH4.0时铁-草酸的染料溶液脱色效果最好。铁/羧酸盐配比对染料脱色速率也有影响。  相似文献   

14.
硝酸盐抑制油田采出水中硫酸盐还原菌活性研究   总被引:4,自引:2,他引:2  
硫酸盐还原菌(SRB)的生长代谢可导致油藏酸化,进而引发一系列环境和腐蚀等问题.硝酸盐(NO-3)补加及对硝酸盐还原菌(NRB)的调控是抑制SRB活性进而控制油藏酸化的重要策略.本研究从大庆油田水驱采出液中分离筛选出了1株兼性自养的NRB菌株DNB-8,并分析了在有机碳源充足的条件下不同浓度的NO-3结合使用该菌株抑制SRB富集培养物SO2-4还原活性的作用效果与机制.结果表明,浓度≤1.0 mmol·L-1的NO-3无法抑制SRB的SO2-4还原活性;NO-3浓度>1.0mmol·L-1或NO-2浓度>0.45 mmol·L-1均可有效抑制SRB的SO2-4还原活性.此时,NRB对有机碳源的竞争以及在利用NO-3的同时产生的NO-2是抑制SRB活性的主要机制.另外,大庆油田采出水中SRB富集培养物的细胞内存在异化NO-3还原生成NH+4的代谢途径(NO-2为中间产物).当NO-3浓度较高时,SRB可能通过该代谢途径减轻NO-2引起的抑制效应.  相似文献   

15.
为了探究炉渣及生物炭施加处理对稻田土壤铁还原菌群落结构及甲烷排放的影响,在福州某平原稻田中分别进行施加生物炭、炉渣、生物炭+炉渣3种处理,测定早、晚稻生长期稻田甲烷排放通量和可培养铁还原菌数量,并比较施加处理与不施加处理稻田土壤铁还原菌群落结构组成之间的差异.结果表明:废弃物施加能够改变稻田土壤铁还原菌数量,晚稻生物炭施加组的铁还原菌数量显著高于其他3组(P<0.05);废弃物施加在一定程度上抑制了稻田土壤甲烷的排放,其中早稻混合施加组对甲烷排放的降低作用最为明显;福州平原稻田土壤中铁还原菌种类丰富,分布于10个门,其中厚壁菌门(Firmicutes)和变形菌门(Proteobacteria)为优势菌门相对丰度占比之和大于95%.共鉴定出20个属,其中相对丰度较高的菌属为芽孢杆菌属(Bacillus)、厌氧粘细菌属(Anaeromyxobacter)、梭状芽孢杆菌属(Clostridium)等10个属,占样品中已知铁还原菌属的62.07%~66.58%;生物炭和炉渣主要通过改变土壤pH值及含水量影响稻田土壤铁还原菌群落结构,混合施加的影响比单一施加更为显著;芽孢杆菌属(Bacillus)的相对丰度与稻田土壤甲烷的排放通量呈显著负相关,是稻田中抑制甲烷产生与排放的主要铁还原菌属.  相似文献   

16.
以嘉陵江沉积物为菌源,利用荧光绝对定量(qPCR)技术探究了不同碳源(葡萄糖和乙酸钠)和不同形态的锰氧化物(δ-MnO2和锰矿粉)对异化Mn(IV)还原菌激活效果的影响.在此基础上,研究了激活效果最佳的异化Mn(IV)还原菌对卡马西平、布洛芬、萘普生、雌激素和双氯芬酸5种有机药物的去除效果.结果表明,葡萄糖作为碳源,δ-MnO2作为电子受体时激活效果最佳,Mn2+10d累计生成浓度达416.03mg/L,TOC消耗率达88.24%.激活后的异化金属还原菌在有无外加碳源时对卡马西平和布洛芬均无明显去除,对萘普生在外加碳源时能实现11.88%的去除.雌二醇和双氯芬酸可以作为异化Mn(IV)还原菌唯一碳源,其去除率可达75.70%和58.25%.  相似文献   

17.
以华南稻田土壤为研究对象通过构建微宇宙体系,研究了淹水稻田自养硝酸盐还原耦合As(III)氧化过程及其微生物群落结构组成.结果表明,NO3-的添加促进了稻田土壤中As(III)的氧化,在未添加NO3-的处理(Soil+As(III))以及灭菌处理(Sterilized soil+As(III)+NO3-)中As(III)未发生明显的氧化;在Soil+As(III)+NO3-处理中,NO3-有少量被还原,而在Soil+NO3-处理中,NO3-没有被还原.通过16S rRNA高通量分析在NO3-还原耦合As(III)氧化体系中微生物群落结构特征,在Soil+As(III)+NO3-处理中shannon指数相对较低为8.19,土壤微生物群落多样性降低,其中在门水平上主要优势菌群为变形菌门Proteobacteria(33%)、绿弯菌门Chloroflexi(11%)、浮霉菌门Planctomycetes(12%);在属水平上主要的优势菌属为Gemmatimonas(7.4%)以及少量的Singulisphaera、Thermomonas、Bacillus.NO3-的添加能够促进稻田土壤中自养As(III)氧化,并且影响着稻田土壤中微生物群落组成.  相似文献   

18.
Scorodite (FeAsO4·H2O) is a common arsenic-bearing (As-bearing) iron mineral in nearsurface environments that could immobilize or store As in a bound state.In flooded soils,microbe induced Fe(Ⅲ) or As(Ⅴ) reduction can increase the mobility and bioavailability of As.Additionally,humic substances can act as electron shuttles to promote this process.The dynamics of As release and diversity of putative As(Ⅴ)-reducing bacteria during scorodite reduction have yet to be investigat...  相似文献   

19.
混合菌种在发酵法生物产氢中的协同作用   总被引:16,自引:3,他引:13  
为探讨产氢发酵细菌混合培养时菌种间的协同作用,本研究在间歇试验条件下,分别考察以葡萄糖和复杂有机物(淀粉、牛肉膏、聚乙二醇乙二酸酯和胰蛋白胨)为底物时,5株HPB(B49、H1、LM12、LM11和B51)混合培养,高效HPB(B49)与3株非产氢发酵细菌(L10、拟3-2和芽孢1)分别混合培养,以及B49与活性污泥混合培养对产氢能力的影响.试验结果表明,混合菌种间协同作用发挥是有条件的.当利用葡萄糖发酵产氢时,菌种间对共同底物的竞争使其协同作用无法发挥,从而制约了高效产氢细菌(HPB)的产氢能力;而利用复杂有机物发酵产氯时,菌种间的协同作用得以发挥,并促进了高效HPB产氢能力的提高.同时提出,针对不同底物可以采用不同的培养方式.  相似文献   

20.
控制BNR工艺好氧、反硝化除磷效果因素实验研究   总被引:3,自引:0,他引:3  
郝晓地  戴吉  兰荔  张璐平 《环境科学学报》2008,28(11):2186-2191
以实验室动态生物营养物去除(BNR)工艺(BCFS)运行实验为基础,采用静态实验,研究了厌氧初始COD、碳源种类和反应时间对好氧吸磷和反硝化除磷效果的影响,同时将二者进行对比.实验结果表明,好氧吸磷效果随厌氧初始COD升高而增加.厌氧初始COD相同时,以葡萄糖为碳源的实验吸磷速率最快,4 h好氧反应后残余PO34-浓度最低;但以乙酸和丙酸为碳源的实验表现出更强的超量吸磷能力.缺氧条件下,常规反硝化细菌(OHO)引起的常规反硝化限制了本来就速率较低的反硝化除磷过程.当厌氧初始COD为400 mg·L-1时,以葡萄糖、乙酸和丙酸为碳源的实验中反硝化除磷占总除磷量的比例分别为46.12%、32.03%和21.96%.  相似文献   

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