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11.
Microbial cycling of iron and sulfur in acidic coal mining lake sediments   总被引:1,自引:0,他引:1  
Lakes caused by coal mining processes are characterized by low pH, low nutrient status, and high concentrations of Fe(II) and sulfate due to the oxidation of pyrite in the surrounding mine tailings. Fe(III) produced during Fe(II) oxidation precipitates to the anoxic acidic sediment, where the microbial reduction of Fe(III) is the dominant electron-accepting process for the oxidation of organic matter, apparently mediated by acidophilic Acidiphilium species. Those bacteria can reduce a great variety of Fe(III)-(hydr)oxides and reduce Fe(III) and oxygen simultaneously which might be due to the small differences in the redox potentials under low pH conditions. Due to the absence of sulfide, Fe(II) formed in the upper 6 cm of the sediment diffuses to oxic zones in the water layer where itcan be reoxidized by Acidithiobacillus species. Thus, acidic conditions are stabilized by the cycling of iron which inhibits fermentative and sulfate-reducing activities. With increasing sediment depth, the amount of reactive iron decrease, the pH increases above 5, and fermentative and as yet unknown Fe(III)-reducing bacteria are also involved in the reduction of Fe(III). Sulfate is reduced apparently by the activity of spore-forming sulfate reducers including new species of Desulfosporosinus that have their pH optimum similar to in situconditions and are not capable of growth at pH 7. However, generation of alkalinity via sulfate reduction is reduced by the anaerobic reoxidation of sulfide back to sulfate. Thus, the microbial cycling of iron at the oxic-anoxic interface and the anaerobic cycling of sulfur maintains environmental conditions appropriate for acidophilic Fe(III)-reducing and acid-tolerant sulfate-reducing microbial communities.  相似文献   
12.
ClO2处理含铁,锰及细菌饮用水的应用研究   总被引:1,自引:0,他引:1  
陈贤  周明 《四川环境》1996,15(2):12-14
为了除去水中高含量的铁,锰及细菌,采用ClO2氧化Fe^2+,Mn^2+和灭菌的方法。研究结果表明,处理后水平铁,锰都末检出,细菌指标符合国家饮用水标准。此法具有工艺简单,操作方便,反应速度快,去除率极高,不产生致癌物质THM、且能很好地除水中的异味及色度等优点。此法适用于各种生活给水系统。  相似文献   
13.
The impact of Fe concentrations on the growth of Microcystisaeruginosa in aquatic systems under high nitrate and low chlorophyll conditions was studied. The responses of cell density, total and cell chlorophyll-a intracellular Fe content and organic elemental composition of M. aeruginosa to different concentration gradients of Fe(III) in the solutions were analysed. The results showed that the proliferation speeds of M. aeruginosa were: (1) decelerated when the Fe(III) concentration was lower than 50 μg/L in the solutions, (2) promoted and positively related to the increase of Fe(III) concentration from 100 to 500 μg/L in the solutions over the experimental period, and (3) promoted in the early stage but decelerated in later stages by excess adsorption of Fe by cells when the Fe(III) concentration was higher than 500 μg/L in the solutions. The maximum cell density, total and cell chlorophyll-a were all observed at 500 μg Fe(III)/L concentration. The organic elemental composition of M. aeruginosa was also affected by the concentration of Fe(III) in the solutions, and the molecular formula of M. aeruginosa should be expressed as C7–7.5H14O0.8–1.3N3.5–5 according to the functions for different Fe(III) concentrations. Cell carbon and oxygen content appeared to increase slightly, while cell nitrogen content appeared to decrease as Fe(III) concentrations increased from 100 to 500 μg/L in the solutions. This was attributed to the competition of photosynthesis and nitrogen adsorption under varying cell Fe content.  相似文献   
14.
况烨  周琰  王清萍  陈祖亮 《环境科学》2012,33(9):3160-3166
研究不同pH(8.0、6.0和3.0)下金属纳米颗粒(Fe和Fe/Ni)对纺锤芽孢杆菌(BFN)降解苯酚的影响.实验结果发现pH在8.0和6.0时投加2种金属纳米颗粒(Fe和Fe/Ni)对BFN降解苯酚有促进作用,其原因主要是纳米颗粒在水中持续腐蚀产生H2,为BFN降解苯酚提供电子,促进BFN的生长.但在pH=3.0时,只有BFN-纳米Fe耦合体系才使苯酚得到部分降解,主要是因为纳米Fe颗粒与水反应产生OH-,使pH值有所升高,更适宜BFN的生长,同时提供电子供体H2促进BFN对苯酚的利用.扫描电镜(SEM)和能谱分析(EDS)数据证实金属纳米颗粒(Fe和Fe/Ni)在反应后附着在微生物表面,但微生物的表面形态并未发生显著改变.因此,纳米金属颗粒虽然通过附着影响微生物的活性,但其在腐蚀过程中产生的H2将作为电子供体而被BFN所利用,综合作用的结果是有利于BFN的生长进而提高苯酚的降解速率.  相似文献   
15.
不同Fe(Ⅲ)对活性污泥异化铁还原及除磷影响研究   总被引:1,自引:0,他引:1  
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   
16.
活性炭/纳米零价铁复合吸附剂的制备及对砷的去除应用   总被引:1,自引:0,他引:1  
纳米零价铁在重金属去除领域应用前景广阔。为了大批量、低成本地制备纳米零价铁,本文采用电化学还原法在粒状活性炭表面电沉积纳米零价铁,通过X射线衍射分析对产物的结构进行了表征,并初步探讨了制备的纳米零价铁/活性炭复合吸附剂对模拟地下水中As(III)的去除效果。结果表明,通过自行设计的电沉积装置,成功地在颗粒活性炭上沉积了纳米零价铁颗粒。制备的活性炭/纳米零价铁复合吸附剂对模拟地下水中As(III)的去除效果良好。电化学沉积法制备纳米零价铁,技术可行,成本低廉,在重金属去除领域具有较大的应用潜力。  相似文献   
17.
Fe(EDTA)络合协同RDB去除NO废气效能及过程分析   总被引:1,自引:0,他引:1  
为进一步提高一氧化氮(NO)的去除效率,在新型生物转鼓反应器(rotating drum biofilter,RDB)中,以FeⅡ(EDTA)络合协同RDB生物转鼓的耦合技术强化难水溶性NO的气液传质速率,提高生物还原效能为目标进行了研究.结果表明,适量FeⅡ(EDTA)被添加到RDB底部营养液后,能迅速吸收气相中的NO并生成FeⅡ(EDTA)-NO络合物,进而可通过反硝化实现同步脱氮和络合剂再生.在转速0.5 r.min-1、空床停留时间(EBRT)57.7 s、温度30℃、pH 7~8的实验条件下,RDB的净化效能随络合剂的投加而显著改善;FeⅡ(EDTA)质量浓度从0增至500 mg.L-1后,NO去除率从61.1%提高到97.6%,去除负荷从16.2 g.(m3.h)-1上升到26.7 g.(m3.h)-1.分析了FeⅡ(EDTA)络合协同净化NO的反应过程,建立了NO净化效率与FeⅡ(EDTA)添加浓度的关联方程,可较好地拟合实验数据.  相似文献   
18.
Fe/Al改性膨润土对铬酸根的吸附性能研究   总被引:4,自引:1,他引:3  
利用膨润土原矿提取了粒径小于2μm的膨润土胶体,经过钠质化处理后分别用聚羟基铁和聚羟基铝进行改性,然后用一次平衡法研究了改性膨润土对水体中铬酸根的吸附性能.结果表明,与原矿相比,改性膨润土对铬酸根的吸附量有了不同程度的提高,铁改性膨润土对铬酸根的吸附量大于铝改性者.CrO42-的吸附平衡浓度为0.5 mmol·L-1时,Mt-1(Fe)、Mt-2(Fe)和Mt-3(Al)对铬酸根的吸附量分别为271.0 mmol·kg-1、114.0 mmol·kg-1和16.1 mmol·kg-1.改性膨润土对铬酸根的吸附量随离子强度的增加而增大,随体系pH值的增加而减小.铬酸根在改性膨润土表面的吸附以专性吸附机制为主,静电吸附所占比例很小,一般不超过30%.这些研究结果可为开发新型水处理剂提供理论指导.  相似文献   
19.
Phosphate removal from aqueous waste streams is an important approach to control the eutrophication downstream bodies of water. A Fe(III) coordinated amino-functionalized silicate adsorbent for phosphate adsorption was synthesized by a post-grafting and metal cation incorporation process. The surface structure of the adsorbent was characterized by X-ray di raction, N2 adsoropion/desoprotion technique, and Fourier transform infrared spectroscopy. The experimental results showed that the adsorption equilibrium data were well fitted to the Langmuir equation. The maximum adsorption capacity of the modified silicate material was 51.8 mg/g. The kinetic data from the adsorption of phosphate were fitted to pseudo second-order model. The phosphate adsorption was highly pH dependent and the relatively high removal of phosphate fell within the pH range 3.0–6.0. The coexistence of other anions in solutions has an adverse e ect on phosphate adsorption; a decrease in adsorption capacity followed the order of exogenous anions: F?? > SO2?? 4 > NO??3 > Cl??. In addition, the adsorbed phosphate could be desorbed by NaOH solutions. This silicate adsorbent with a large adsorption capacity and relatively high selectivity could be utilized for the removal of phosphate from aqueous waste streams or in aquatic environment.  相似文献   
20.
We compared the efficacy of a natural biocide with four chemical tetrakishydroxymethyl phosphonium sulfonate, benzyl trimethyl ammonium chloride, and formaldehyde, glutaraldehyde, to control microbial induced corrosion in oil pipelines. The efficacy of biocides were monitored against Desulfovibrio vulgaris and Desulfovibrio gigas in experimental pipes by measuring cell counts, H2S production, Fe(II) production, production of extracellular polymeric substances and structure of biofilm. The treatment with cow urine had minimum planktonic cell counts of 3 102 CFU/mL as well as biofilm cell counts of 9 101 CFU/mL as compared with tetrakishydroxyl methyl phosphonium sulfonate, benzyl trimethyl ammonium chloride, formaldehyde and glutaraldehyde. Sulfide production was the lowest with cow urine (0.08 mmol/L), followed by tetrakishydroxymethyl phosphonium sulfonate 0.72 mmol/L. On day 90 of treatment, Fe(II) production was also found to be the lowest with cow urine. The scanning electron microscopic studies indicated that the biofilm bacteria were killed by cow urine. These results demonstrate the cow urine mediated control of microbially induced corrosion, and this is indicative of its potential as a viable substitute of toxic biocides. To the best of our knowledge, this seems to be the first report which screens possible biocidal activity by cow urine as compared to the most common biocides which oil industry is currently using.  相似文献   
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