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Pan B Liu WX Shi Z Cao J Shen WR Qing BP Sun R Tao S 《Journal of environmental science and health. Part. B》2004,39(3):353-365
The methods of sample purification for determinations of organochlorine pesticides (OCPs) in sediment and fish muscle were investigated in this study. A two-step procedure with preliminary cleanup and florisil column fraction was adopted. The working conditions of florisil column were firstly optimized. As to preliminary cleanup, liquid-liquid extraction by mixture of dimethyl formamide (DMF) and hexane and sulphonation by concentrated sulfuric acid were applied respectively and compared for the studied samples. The results indicated that liquid-liquid distribution could effectively separate lipids from fish muscle extracts, while failed in elimination of chlorophyll extracted from the relicts of hydrophytes in the sediment sample. In view of the sample appearance and clarity of gas chromatogram, sulphonation was more suitable to purify the sediment sample, however, the recoveries of the spiked standards were poor. The use of eluting solvent with stronger polarity could improve the corresponding recoveries significantly. Due to complete loss of Dieldrin, Endrin, and Endrin aldehyde after sulphonation, this pretreatment was improper to the three components. Sulfur, as the particular disturbing element in sediment, could be removed sufficiently by addition of activated copper powder. The relevant detection limits of the selected methods for OCPs in the studied substrates were also provided. 相似文献
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生物强化系统微生物分子诊断技术的应用及新发展 总被引:1,自引:0,他引:1
现代分子生物技术的飞速发展及其在环境研究领域的应用,为生物强化技术的研究和发展提供了新方法和新思路。本文从生物强化系统特异微生物检测及定量化技术、生物强化系统微生物群落结构组成及动态演替规律研究、生物强化作用机制的分子生物学解析、生物强化菌的基因工程构建、生物强化系统微生物的安全释放及控制技术几方面,对生物强化系统微生物分子诊断技术的应用和发展作了较为全面的综述。 相似文献
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Modification of trace metal accumulation in the green mussel Perna viridis by exposure to Ag, Cu, and Zn 总被引:2,自引:0,他引:2
To examine the Cd, Hg, Ag, and Zn accumulation in the green mussel Perna viridis affected by previous exposure to Cu, Ag, or Zn, the dietary metal assimilation efficiency (AE) and the uptake rate from the dissolved phase were quantified. The mussel's filtration rate, metallothionein (MT) concentration, and metal tissue burden as well as the metal subcellular partitioning were also determined to illustrate the potential mechanisms underlying the influences caused by one metal pre-exposure on the bioaccumulation of the other metals. The green mussels were pre-exposed to Cu, Ag, or Zn for different periods (1-5 weeks) and the bioaccumulation of Cd, Hg, Ag, and Zn were concurrently determined. Pre-exposure to the three metals did not result in any significant increase in MT concentration in the green mussels. Ag concentration in the insoluble fraction increased with increasing Ag exposure period and Ag ambient concentration. Our data indicated that Cd assimilation were not influenced by the mussel's pre-exposure to the three metals (Cu, Ag, and Zn), but its dissolved uptake was depressed by Ag and Zn exposure. Although Hg assimilation from food was not affected by the metal pre-exposure, its influx rate from solution was generally inhibited by the exposure to Cu, Ag, and Zn. Ag bioaccumulation was affected the most obviously, in which its AE increased with increasing Ag tissue concentration, and its dissolved uptake decreased with increasing tissue concentrations of Ag and Cu. As an essential metal, Zn bioaccumulation remained relatively stable following the metal pre-exposure, suggesting the regulatory ability of Zn uptake in the mussels. Zn AE was not affected by metal pre-exposure, but its dissolved uptake was depressed by Ag and Zn pre-exposure. All these results indicated that the influences of one metal pre-exposure on the bioaccumulation of other metals were metal-specific due to the differential binding and toxicity of metals to the mussels. Such factors should be considered in using metal concentrations in mussel's soft tissues to evaluate the metal pollution in coastal waters. 相似文献
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Extracellular polymeric substances (EPS) are organic metabolic compounds excreted by microorganisms. They largely impact microbial aggregate structures and functions. Extracellular polysaccharides (EP) in EPS are responsible for the formation of microbial aggregates. In this work, we successfully separated and characterized EP from EPS of the bacterium Bacillus megaterium TF10. Extraction of EP from EPS was optimized using Sevag''s reagent. Chemical characteristics, functional groups, and molecular weight (MW) distribu-tion of EP were compared with the harvested EPS and soluble microbial products (SMP). We found that the polymers of lower MW and free proteins were successfully removed by Sevag''s reagent. The higher MW components of EPS were predominantly polysaccharides, while the polymers of lower MW tended to secrete to the supernatant and were described as SMP. A part of the proteins in the EP was polysaccharide-bonded. Our results can be further used in elucidating the complex flocculation mechanisms in which EP play a major role. 相似文献
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Runmiao Xue Ariel Donovan Haiting Zhang Yinfa M Craig Adams John Yang Bin Hu Enos Inniss Todd Eichholz Honglan Shi 《环境科学学报(英文版)》2018,30(2):82-91
When adding sufficient chlorine to achieve breakpoint chlorination to source water containing high concentration of ammonia during drinking water treatment, high concentrations of disinfection by-products(DBPs) may form. If N-nitrosamine precursors are present, highly toxic N-nitrosamines, primarily N-nitrosodimethylamine(NDMA), may also form. Removing their precursors before disinfection should be a more effective way to minimize these DBPs formation. In this study, zeolites and activated carbon were examined for ammonia and N-nitrosamine precursor removal when incorporated into drinking water treatment processes.The test results indicate that Mordenite zeolite can remove ammonia and five of seven N-nitrosamine precursors efficiently by single step adsorption test. The practical applicability was evaluated by simulation of typical drinking water treatment processes using six-gang stirring system. The Mordenite zeolite was applied at the steps of lime softening, alum coagulation, and alum coagulation with powdered activated carbon(PAC) sorption. While the lime softening process resulted in poor zeolite performance, alum coagulation did not impact ammonia and N-nitrosamine precursor removal. During alum coagulation, more than67% ammonia and 70%–100% N-nitrosamine precursors were removed by Mordenite zeolite(except 3-(dimethylaminomethyl)indole(DMAI) and 4-dimethylaminoantipyrine(DMAP)). PAC effectively removed DMAI and DMAP when added during alum coagulation. A combination of the zeolite and PAC selected efficiently removed ammonia and all tested seven N-nitrosamine precursors(dimethylamine(DMA), ethylmethylamine(EMA), diethylamine(DEA), dipropylamine(DPA), trimethylamine(TMA), DMAP, and DMAI) during the alum coagulation process. 相似文献
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甘肃亚高山云杉人工林土壤特性及水源涵养功能对林分密度的响应特征 总被引:6,自引:0,他引:6
定量分析不同密度云杉(Picea asperata)人工林的土壤特性及水源涵养功能,为人工林可持续经营提供理论依据。以28块7种不同密度梯度的云杉人工幼龄林为研究对象,采用样地调查及取样分析方法,测定土壤理化性质、枯落物持水量以及林地贮水性能等。结果表明:1)林分密度对云杉人工林的土壤容重、孔隙度、有机质含量、土壤持水量、枯落物蓄积量和持水量都具有显著影响,随着林分密度的增加,土壤孔隙度、土壤养分、枯落物蓄积量、枯落物持水量、土壤持水量表现为先增加后减小,而土壤容重则表现为先减小后增加。密度为1 550 株/hm2时林分土壤容重最小(1.09 g/cm3),总孔隙度较大(58.99%),有机质含量最高(9.12%),枯落物总蓄积量最多(44.41 t/hm2),最大持水量较高(166.67 t/hm2),是密度为3 000 株/hm2林分的4.49倍,土壤持水性能较好(3 898.93 t/hm2)。2)根据林地总贮水量评价的涵养水源功能依次为林分密度1 550 株/hm2(4 068.36 t/hm2)>密度1 750 株/hm2(3 945.32 t/hm2)>密度1 350株/hm2(3 698.39 t/hm2)>密度1 060 株/hm2(3 484.10 t/hm2)>密度2 300 株/hm2(3 157.60 t/hm2)>密度850 株/hm2(2 915.03 t/hm2)>密度3 000 株/hm2(2 820.81 t/hm2)。3)在该研究的林分密度范围内,密度为1 550 株/hm2时林分的土壤特性及水源涵养功能最佳。 相似文献