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1.
Pseudomonas sp. QJX-1的锰氧化特性研究   总被引:2,自引:2,他引:0  
从锰矿土壤样品中分离、纯化出1株高效锰氧化细菌(QJX-1),经16S rDNA序列鉴定为Pseudomonas sp.QJX-1.研究表明,Pseudomonas sp.QJX-1含有锰氧化的必需成分多铜氧化酶基因CumA,当初始Mn2+为5.05 mg·L-1,菌密度D600为0.020时,该菌可在48 h内将Mn2+转化,且转化率高达99.4%.在寡营养条件下该菌锰氧化速率较富营养条件下有显著提高;添加石英砂滤料促使生物膜的快速形成,进而促进Mn2+的生物转化.根据研究结果推测地下水处理过程中生物锰氧化速率较快.  相似文献   

2.
滤池被广泛运用于饮用水厂中,前期研究发现某水厂生物滤池处理含砷地下水时,一方面三价砷可被生物氧化锰氧化为五价砷,另一方面滤池系统中存在的微生物砷还原酶可促使五价砷还原为三价砷,而滤池表面存在的这种微生物竞争关系会影响滤池的稳定性及处理效率.为探讨其内在机制,本研究选取1株锰氧化模式菌(Pseudomonas sp.QJX-1)和1株砷还原模式菌(Brevibacterium sp.LSJ-9),考察在Mn2+、As(As3+、As5+)共存时,两菌株对空间、营养物质以及对砷氧化/还原的竞争关系.结果表明,不同的反应时间,Mn、As质量浓度/价态不同,三价及五价砷体系中,Pseudomonas sp.QJX-1生成的锰氧化物在砷的氧化还原反应中占主导地位,即能迅速氧化本身存在的As3+(三价砷体系)和砷还原菌产生的As3+(五价砷体系),最终两体系中砷都主要以As5+的形式存在.PCR及RT-PCR结果表明,反应过程中锰氧化菌功能基因(cum A)抑制了砷还原酶(ars C)的表达,锰氧化菌16S rRNA表达量始终比砷还原菌高两个数量级,即锰氧化菌在生长竞争过程中占优势.实验结果表明滤池的水力停留时间是决定出水中砷价态的一个重要因素.  相似文献   

3.
在饮用水处理过程中,高锰酸钾与铁锰氧化物预氧化作为化学预氧化的典型工艺,能有效去除饮用水中有机物的污染,并控制消毒副产物(DBPs)的产生.但研究发现,这两种预氧化都会生成具有遗传毒性效应的Mn2+.为解决该问题,研究构想在化学预氧化后耦合生物锰氧化技术,通过生物作用将Mn2+转化为具有较强氧化吸附能力的生物锰氧化物,从而对水质进一步净化.在以天然有机物酪氨酸(Tyr)和人工合成有机物2-羟基-4-甲氧基二苯甲酮-5-磺酸(BP-4)为基质的模拟污染源水中,试验结果验证了上述构想.高锰酸钾或铁锰氧化物预氧化能够去除Tyr,但无法去除BP-4,并会产生Mn2+;在以锰氧化细菌Pseudomonas sp.QJX-1构建的生物体系中,Pseudomonas sp.QJX-1能利用Tyr进行生长并产生锰氧化,生成的生物锰氧化物能有效去除BP-4;在最优试验条件下,特定强度的高锰酸钾预氧化耦合生物锰氧化试验中Tyr、BP-4及Mn2+去除率分别为100%、50%和98.9%.  相似文献   

4.
针对日益严重的地表水锰污染,本实验采用高锰酸钾与接触氧化的方法协同除锰;通过调配进水中Ca2+、Mg2+含量模拟我国不同地区硬度差异显著的地表水,探究水体硬度对锰的去除效果的影响.结果表明:Mn2+被高锰酸钾氧化并形成"锰质活性滤膜",可在停药后实现稳定有效除锰.成熟滤池的除锰效果会显著受到硬度的影响,进水硬度在40、200、400 mg·L-1及700 mg·L-1(CaCO3计)时,接触氧化滤池分别在48、56、64 d及72 d实现稳定除锰,而4根滤柱对Mn2+去除的极限浓度分别为1.8、1.7、1.2 mg·L-1及0.7 mg·L-1.  相似文献   

5.
MnxCe1- xO2(x: 0.3–0.9) prepared by Pechini method was used as a catalyst for the thermal catalytic oxidation of formaldehyde(HCHO). At x = 0.3 and 0.5, most of the manganese was incorporated in the fluorite structure of Ce O2 to form a solid solution. The catalytic activity was best at x = 0.5, at which the temperature of 100% removal rate is the lowest(270°C). The temperature for 100% removal of HCHO oxidation is reduced by approximately 40°C by loading 5 wt.% Cu Oxinto Mn0.5Ce0.5O2. With ozone catalytic oxidation, HCHO(61 ppm) in gas stream was completely oxidized by adding 506 ppm O3 over Mn0.5Ce0.5O2 catalyst with a GHSV(gas hourly space velocity) of 10,000 hr-1at 25°C. The effect of the molar ratio of O3 to HCHO was also investigated. As O3/HCHO ratio was increased from 3 to 8, the removal efficiency of HCHO was increased from 83.3% to 100%. With O3/HCHO ratio of 8, the mineralization efficiency of HCHO to CO2 was 86.1%. At 25°C, the p-type oxide semiconductor(Mn0.5Ce0.5O2) exhibited an excellent ozone decomposition efficiency of 99.2%,which significantly exceeded that of n-type oxide semiconductors such as Ti O2, which had a low ozone decomposition efficiency(9.81%). At a GHSV of 10,000 hr-1, [O3]/[HCHO] = 3 and temperature of 25°C, a high HCHO removal efficiency(≥ 81.2%) was maintained throughout the durability test of 80 hr, indicating the long-term stability of the catalyst for HCHO removal.  相似文献   

6.
不同氧化还原环境对煤矸石污染物质释放的影响   总被引:3,自引:0,他引:3  
为评价不同氧化还原环境对煤矸石污染物质释放的影响,设置处理1(充氧饱和的曝气去离子水,Eh=229mV)、处理2(煮沸30min的去离子水,Eh=250mV)两种氧化环境及处理3(添加富含有机质的过滤养殖废水,Eh=14mV)一种还原环境的水溶液做浸提剂,对煤矸石进行0~9d的连续振荡浸提试验.结果表明:在浸提初期(0~1d内),煤矸石表面已形成的氧化产物迅速溶出,使得两种氧化环境和还原环境下的煤矸石浸出液pH都迅速降低,EC、Eh及多种溶出离子浓度迅速升高,但还原环境下煤矸石浸出液中Cu、F-浓度变化不显著,且还原环境下浸出液中其他离子虽有上升但显著低于氧化环境下.随浸提时间延长(1~9d),两种氧化环境下煤矸石浸出液pH继续降低,浸出液中Fe、Mn、Cu、Zn和SO2-4、F-多种污染物质溶出数量明显增加并呈现典型的持续氧化产酸过程;而还原环境下煤矸石浸出液的pH随时间延长降低不明显,Fe、Mn、Zn等污染物质溶出数量显著低于两种氧化环境下,Cu和SO2-4的释放也受到明显抑制.说明还原环境能有效抑制煤矸石氧化产酸及多种污染物质的溶出,且显著低于氧化环境.因此,在煤矸石堆场投加有机质形成还原(厌氧)环境可进行矸石污染的原位控制及治理.  相似文献   

7.
为了有效去除高含盐废水中的有机染料污染物,利用有序介孔硅材料作为模板剂,通过硬模板法制备了新型锰系氧化物(MnOx)介孔材料作为类Fenton催化剂.催化剂的结构表征结果表明,模板剂在锰前驱物溶液中浸渍和后续煅烧成型过程决定了氧化锰介孔材料的结构.浸渍-煅烧成型重复次数越多,MnOx介孔材料中孔道结构的有序度和氧化锰的结晶度越好.浸渍-煅烧成型次数过少,MnOx介孔材料中孔道呈现无序状态,比表面积较大但氧化锰结晶度不足;次数过多则形成更为致密的小孔径的孔道结构,从而使MnOx介孔材料的比表面积减小.由于对罗丹明B(RhB)良好的选择性吸附能力和较多的Mn3+/Mn4+对,具有有序规则孔道的氧化锰介孔材料具有优异的类Fenton催化活性,对高含盐废水中RhB的5 h降解去除率最高可达90%左右.  相似文献   

8.
Ferrous and manganese ions, as essential elements, significantly affect the synthesis of Haem-C, which participates in the energy metabolism and proliferation of anammox bacteria. In this study, two identical sequencing batch biofilm reactors were used to investigate the effects of ferrous and manganese ions on nitrogen removal efficiency and the potential of metal ions serving as electron donor/acceptors in the anammox process. Fluorescence in situ hybridization analysis was applied to investigate the microbial growth. Results showed that the nitrogen removal increased at high concentrations of Fe2+ and Mn2+ and the maximum removal efficiency was nearly 95% at Fe2+ 0.08 mmol/L and Mn2+ 0.05 mmol/L, which is nearly 15% and 8% higher than at the lowest Fe2+ and Mn2+ concentrations (0.04 and 0.0125 mmol/L). The stabilities of the anammox reactor and the anammox bacterial growth were also enhanced with the elevated Fe2+ and Mn2+ concentrations. The Fe2+ and Mn2+were consumed by anammox bacteria along with the removal of ammonia and nitrite. Stoichiometry analysis showed Fe2+ could serve as an electron donor for NO3-N in the anammox process. Nitrate could be reduced with Fe2+ serving as the electron donor in the anammox system, which causes the value of NO~-N/NH4-N to decrease with the increasing of N-removal efficiency.  相似文献   

9.
The adsorption of Mn2+ onto immobilized Mn-oxide and Fe-oxide adsorbent such as manganese oxide-coated sand1 (MOCS1), manganese oxide-coated sand2 (MOCS2), iron oxide-coated sand2 (IOCS2), and manganese and iron oxide-coated sand (MIOCS) was investigated. The effects of pH (5.5 to 8.0) and temperature (25 to 45℃) on the equilibrium capacity were examined. Equilibrium studies showed that there is a good fit with both Freundlich and Langmuir isotherm, which indicates surface heterogeneity and monolayer adsorption of the adsorbents. Kinetic data showed high correlation with the pseudo second-order model, which signifies a chemisorption-controlled mechanism. The activation energies, activation parameters (ΔG*, ΔH*, ΔS*), and thermodynamic parameters (ΔG0, ΔH0, ΔS0) confirmed that adsorption with MIOCS was endothermic and more spontaneous at higher temperature while an opposite trend was observed for the other adsorbents. Thermodynamic studies showed that adsorption involved formation of activated complex, where MOCS1 and MIOCS follow a physical-chemical mechanism, while MOCS2 and IOCS2 follows purely chemical mechanism.  相似文献   

10.
孙楠  谌燕丽  张颖  鲁岩  宋秋霞  李春艳  姜昭 《环境科学》2017,38(3):1028-1037
针对严寒地区特有地理气候条件及制约当前村镇建设与发展的典型问题,以建设绿色低碳、节能环保村镇为目标,研发碳化稻壳-优势铁锰氧化菌耦合工艺净化严寒村镇高铁锰地下水,探究生物滤柱低温快速启动方式;基于接触氧化与生物法,对比分析不同滤速条件下滤柱沿程除铁效能与反应速率,研究生物滤层除铁机制;基于扫描电子显微镜(scanning electron microscope,SEM)、傅立叶红外线光谱(Fourier transform infrared spectroscopy,FTIR)、X射线光电子能谱(X-ray photoelectron spectroscopy,XPS)、拉曼光谱(Raman spectra)、电子顺磁共振(electron paramagnetic resonance,EPR)对运行不同阶段的滤料与反冲洗水泥样表征剖析生物滤层除锰机制.结果表明,优势菌液低滤速-全循环的运行方式使稻壳生物滤层成熟且稳定仅需15 d;稳定运行阶段出水铁、锰、细菌浓度分别低于0.3 mg·L~(-1)、0.1 mg·L~(-1)、100 CFU·m L~(-1),均满足国家生活饮用水卫生标准(GB 5749-2006);除铁机制主要依靠物化作用、辅以生物作用;在滤料成熟阶段与稳定运行初期除锰主要依靠生物作用,稳定运行后期物理化学作用占优势;该研究为严寒村镇Fe~(2+)、Mn~(2+)地下水集中处理应用提供了技术支撑.  相似文献   

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