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1.
Fan Jinhong Xu Wenying Gao Tingyao Ma Luming 《Frontiers of Environmental Science & Engineering in China》2007,1(4):504-508
Iron and copper bimetallic system (catalyzed Fe-Cu process) is a promising technology for alkaline nitrobenzene-containing
wastewater treatment. However, little is currently known about the changes of treatment efficiency with time going. This research
investigated the long-term performance of the catalyzed Fe-Cu process to reduce nitrobenzene (NB) in alkaline wastewater.
In addition, the changes of the metal surfaces morphologies and matters before and after the reaction were analyzed by scanning
electron microscopy (SEM) in conjunction with energy-dispersion spectroscopy (EDS) and X-ray diffraction spectroscopy (XRD).
The results showed that the surface properties of copper almost remained unchanged after weeks of operation, which spelled
its strong chemical stability and resistance to poisoning. Moreover, the results indicated that there were two reasons for
the treatment efficiency decreasing with time. One was the gradual iron element consumption due to corrosion. The other was
iron reactivity weakened due to the precipitates accumulation on the surfaces that were mainly Fe3O4 and FeCO.
__________
Translated from Environmental Pollution & Control, 2006, 28(10): 783–785 [译自: 环境污染与防治] 相似文献
2.
微生物燃料电池(microbial fuel cell,MFC)阳极的比表面积、生物相容性以及导电性被认为是影响微生物燃料电池产电性能的关键因素。三维金属阳极因其导电性强、比表面积较二维电极材料大等优点可用来取代碳基电极。为了提高微生物燃料电池的产电性能,本研究选用2种具有三维结构的不锈钢刷(SSB)和泡沫镍(Ni-foam)为金属阳极基材,并将石墨烯氧化物(GO)通过一步冷冻干燥法合成石墨烯氧化物气凝胶复合金属电极(GOA-SSB/Ni-foam),将其作为阳极进行MFC的产电性能研究。结果显示:在MFC运行中,GOA-SSB和GOA-Ni-foam作为阳极,最大功率密度分别达到490和119 mW·m-2,比未修饰SSB和Ni-foam提高8.1和5.5倍。扫描电镜(SEM)表征显示三维复合金属阳极表面附着的微生物量远高于未修饰电极,且未修饰的SSB和Ni-foam电极表面较GOA-SSB和GOA-Ni-foam电极表面腐蚀更严重,说明GOA不仅可提升阳极比表面积、生物相容性还可减缓阳极基材的腐蚀。电化学阻抗(EIS)结果表明GOA-SSB和GOA-Ni-foam阳极相比于未修饰阳极能够极大的降低传荷电阻,证实GOA修饰阳极加快了电子传递速率。另外,拉曼(Raman)表征显示Shewanella oneidensis MR-1菌可原位还原GOA,佐证了GOA修饰阳极运行后欧姆内阻降低的原因。 相似文献
3.
自养-异养联合反硝化(integrated autotrophic and heterotrophic denitrification,IAHD)工艺可以同时进行硫化物,硝酸盐和有机物的降解,作为工业废水处理的关键单元近年来受到广泛关注.引入微量氧气作为电子受体的微氧技术已被证明是强化IAHD运行效能的有效策略.本研究关注于IAHD工艺的电子平衡计算并发现了IAHD生物反应器在微氧条件下运行时利用有限的硝酸盐可将硫化物和乙酸盐完全转化去除.在IAHD序批实验中,当电子缺失率达到峰值55. 1%时,硫化物、硝酸盐和乙酸盐去除效率和去除速率均最高.进一步的硫化物氧化间歇实验表明,电子得失不平衡现象发生在生物硫化物氧化过程中,当氧气含量为5 m L和10 m L时,电子缺失率分别为18. 7%和38. 2%. Illumina微生物群落测序结果表明,Thiobacillus、Thauera、Mangroviflexus和Erysipelothrix为硫氧化过程的主要占优属,其中Thiobacillus的相对丰度随着电子缺失率的增加而增加.本研究揭示了微氧条件下电子受体缺失现象与强化的IAHD运行效能之间的潜在联系,并为深入探讨硫、氮和有机碳的代谢机制提供了新的研究视角. 相似文献
4.
铜氰溶液的电子束辐照降解 总被引:1,自引:0,他引:1
研究了铜氰溶液中总氰初始浓度、pH、铜浓度等对总氰降解效率的影响,比较了KCN溶液和铜氰溶液的总氰降解率,初步推断了铜氰溶液在辐照过程中的降解机制.实验结果表明,在同样的辐照剂量下,随着总氰初始浓度的增加,总氰降解率降低,相应的总氰降解G值增大;铜浓度越低,总氰降解率越高;pH越小的铜氰溶液总氰降解率越高.电子束辐照KCN溶液和铜氰溶液的总氰降解反应属于表观一级反应.在相同的辐照剂量下,KCN溶液的总氰降解率比铜氰溶液要高得多.铜氰溶液的电子束辐照降解过程非常复杂,主要是铜氰络合离子逐步离解出的CN-与·OH的反应. 相似文献
5.
Biofilm structure and its influence on clogging in drip irrigation emitters
distributing reclaimed wastewater 总被引:2,自引:0,他引:2
Using reclaimed wastewater for crop irrigation is a practical alternative to discharge wastewater treatment plant effluents into surface waters.However,biofouling has been identified as a major contributor to emitter clogging in drip irrigation systems distributing reclaimed wastewater.Little is known about the biofilm structure and its influence on clogging in the drip emitter flow path.This study was first to investigate the microbial characteristics of mature biofilms present in the emitters and the effect of flow path structures on the biofilm microbial communities.The analysis of biofilm matrix structure using a scanning electron microscopy (SEM) revealed that particles in the matrix of the biofilm coupled extracellular polysaccharides (EPS) and formed sediment in the emitter flow path.Analysis of biofilm mass including protein,polysaccharide and phospholipid fatty acids (PLFAs) showed that emitter flow path style influenced biofilm community structure and diversity.The correlations of biofilm biomass and discharge reduction after 360 h irrigation were computed and suggest that PFLAs provide the best correlation coefficient.Comparatively,the emitter with the unsymmetrical dentate structure and shorter flow path (Emitter C) had the best anti-clogging capability.By optimizing the dentate structure,the internal flow pattern within the flow path could be enhanced as an important method to control the biofilm within emitter flow path.This study established electron microscope techniques and biochemical microbial analysis methods that may provide a framework for future emitter biofilm studies. 相似文献
6.
7.
As a remedial option, the natural attenuation capacity of a petroleum contaminated groundwater at a military facility was examined. Hydrogeological conditions, such as high water level, permeable uppermost layer and frequent heavy rainfall, were favorable to natural attenuation at this site. The changes in the concentrations of electron acceptors and donors, as well as the relevant hydrochemical conditions, indicated the occurrence of aerobic respiration, denitrification, iron reduction, manganese reduction and sulfate reduction. The calculated BTEX expressed biodegradation capacity ranged between 20.52 and 33.67 mg/L, which appeared effective for the reduction of the contaminants levels. The contribution of each electron accepting process to the total biodegradation was in the order: denitrification > iron reduction > sulfate reduction > aerobic respiration > manganese reduction. The BTEX and benzene point attenuation rates were 0.0058-0.0064 and 0.0005-0.0032 day-1, respectively, and the remediation time was 0.7-1.2 and 2.5-30 years, respectively. The BTEX and benzene bulk attenuation rates were 8.69 × 10-4 and 1.05 × 10-3 day-1, respectively, and the remediation times for BTEX and benzene were 7.2 and 17.5 years, respectively. However, most of the natural attenuation occurring in this site can be attributed to dilution and dispersion. Consequently, the biodegradation and natural attenuation capacities were good enough to lower the contaminants levels, but their rates appeared to be insufficient to reach the remediation goal within a reasonable time frame. Therefore, some active remedial measures would be required. 相似文献
8.
苯酚对活性污泥活性及微型动物群落结构的影响 总被引:1,自引:1,他引:0
为了探究苯酚对污泥活性及微型动物群落结构的影响,以SBR工艺的活性污泥为研究对象,分析苯酚对污泥TTC-ETS活性、INT-ETS活性和微型动物群落结构及其动态变化的影响.结果表明,污泥TTC-ETS活性较之INT-ETS活性能够更有效表征有机毒害物质苯酚对污泥活性的影响,且随着进水苯酚浓度的增大,苯酚对污泥活性的抑制越明显:进水浓度在50mg·L-1时,苯酚对污泥活性的抑制率为(20.75±10.43)%.进水苯酚浓度为100 mg·L-1时,抑制率为(39.73±26.92)%,且波动较大.在300 mg·L-1进水运行后期,苯酚对污泥活性的抑制率稳定在40%左右;苯酚对活性污泥微型动物群落结构的影响随浓度的增大而增大,且对不同微型动物类群影响不同:在低浓度苯酚进水条件下,只有单个微型动物类群(有壳变形虫)受到明显的抑制,而当浓度增大至100 mg·L-1和300 mg·L-1时,对多个微型动物类群(固着型纤毛虫、有壳变形虫、匍匐型纤毛虫、肉食性纤毛虫等)产生抑制,对少数类群(鞭毛虫、线虫等)产生促进作用;苯酚影响下的污泥活性与微型动物之间存在一定的关联性,针棘匣壳虫(Centropyxis aculeata)、多变斜板虫(Plagiocampa mutabilis)等可作为含酚废水处理过程中污泥活性低的指示生物,湖累枝虫(Epistylis lacustris)、软波豆虫(Bodo lens)、跳侧滴虫(Pleuromonas jaculans)等可作为污泥活性高的指示生物. 相似文献
9.
微生物燃料电池恒电流预培养阳极生物膜分析表征 总被引:1,自引:1,他引:0
阳极性能是影响微生物燃料电池(Microbial Fuel Cells,MFCs)性能的关键因素之一,同时阳极的接种挂膜过程是影响微生物燃料电池启动效率的关键因素.因此,本课题组提出了预培养阳极作为微生物燃料电池的一种新型阳极的概念,在三电极体系下,通过外加恒定电流预培养阳极,在不同条件下对阳极表面进行电化学选择和生物膜驯化以丰富生物膜结构和厚度.结果表明,阳极的性能与预培养电流大小密切相关,预培养阳极CF-4i(外加4 A·m-2电流密度)通过循环伏安法、塔菲尔曲线、电化学阻抗谱测试,性能好于其他测试组及对照组,装配阳极CF-4i的微生物燃料电池能实现最大功率密度968.20 m W·m-2,是对照组的2.53倍.同时,通过共聚焦显微镜观察发现,生物膜大体分两层,外层的活细胞及内层的死细胞,外层活细胞长在内层死细胞之上.这种结构分布表明,阳极生物膜中的活细胞部分绝大多数都分布于生物膜的外侧,而不是均布于整个阳极生物膜中;同时这也表明不是整个阳极生物膜都具有新陈代谢活性,但死亡的细胞可以继续积累在电极表面附近,活的外层膜负责电流的产生,而内层的死细胞作为一种导电基质. 相似文献
10.
Parise Henry Olufunmilayo Owopetu Demilade Adisa Thao Nguyen Kevin Anthony David Ijoni-Animadu 《Journal of environmental science and health. Part. B》2016,51(8):546-552
The free living nematode Caenorhabditis elegans is a proven model organism for lipid metabolism research. Total lipids of C. elegans were extracted using chloroform and methanol in 2:1 ratio (v/v). Fatty acids composition of the extracted total lipids was converted to their corresponding fatty acids methyl esters (FAMEs) and analyzed by gas chromatography/accurate mass quadrupole time of flight mass spectrometry using both electron ionization and chemical ionization techniques. Twenty-eight fatty acids consisting of 12 to 22 carbon atoms were identified, 65% of them were unsaturated. Fatty acids containing 12 to17 carbons were mostly saturated with stearic acid (18:0) as the major constituent. Several branched-chain fatty acids were identified. Methyl-14-methylhexadecanoate (iso- 17:0) was the major identified branched fatty acid. This is the first report to detect the intact molecular parent ions of the identified fatty acids in C. elegans using chemical ionization compared to electron ionization which produced fragmentations of the FAMEs. 相似文献