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排序方式: 共有3998条查询结果,搜索用时 281 毫秒
991.
污泥的处理处置是一项关系民生的社会化工程,由于前些年对污泥处理的忽视,导致污泥引起的环境问题愈来愈严重。对现阶段污泥常用处理处置的各种工艺与方法进行梳理和总结,同时对各种工艺及处理措施技术的优劣进行了探讨。  相似文献   
992.
Cyanobacteria, which occurred in eutrophic water harvest solar light to carry out photosynthesis with high efficiency. In this work, cyanobacteria (Microcystis sp.) were used as biotemplate to synthesize titania structure. The synthesized titania sample had similar morphology to that of the original template in spite of the fragile unicellular structures and extremely high water content of cyanobacterial cells. Incorporation of biogenic C, as well as the morphology inherited from biotemplate improved visible- light absorbance of the titania structure. The sample exhibited higher visible-light photocatalytic activity than commercial titania photocatalyst Degussa P25 for Rhodamine B (RhB) degradation. Compared with those C-doped titania photocatalysts prepared by other methods, cyanobacteria templated titania photocatalyst offer some potential for competitive advantages. The reported strategy opened up a new use for the cyanobacteria. It could also be used for titania in applications such as treatment of polluted water, dye-sensitized solar cells, or other regions.  相似文献   
993.
Schwertmannite, a ubiquitous mineral present in iron oxyhydroxides formed in iron- and sulfate-rich acid media, favors incorporation of some toxic anions in its structure. We reported an iron-oxidizing bacterial strain HX3 from a municipal sludge that facilitates the formation of pure schwertmannite in cultures. Ferrous iron oxidation by the isolated strain HX3 was optimum at an initial pH of 2.0-3.3 and temperature of 28-35°C. Pure schwertmannite was found through bacterial oxidation of ferrous iron at an initial pH 2.8and temperature 28°C. Following 16 S rDNA gene sequence analysis the bacterial strain HX3 was identified as Acidithiobacillus ferrooxidans. The arsenic-resistance A. ferrooxidans HX3 showed the potential of environmental application in arsenic removal from the As(Ⅲ)- and iron-rich acid sulfate waters directly by As(Ⅲ) adsorption or the formation of schwertmannite in the environment.  相似文献   
994.
High salt concentrations can cause plasmolysis and loss of activity of cells, but the salt-torlerant bacterium can endure the high salt concentrations in wastewater. In this research 7 salt-torlerant bacteria, which could survive in dry powder products and could degrade organic contaminants in saline wastewater, were isolated from a membrane bioreactor. The strain NY6 which showed the fastest growth rate, best property for organic matter degradation and could survive in dry powder more than 3 months was selected and characterized. It was classified as Bacillus aerius based on the analysis of the morphological and physiological properties as well as the 16 S rRNA sequence and Neigh borjoining tree. The strain NY6 could survive in the salinity up to 6% and the optimal growth salinity is2%; it belongs to a slightly halophilic bacterium. The capability of its dry powder products for COD removal was 800 mg COD/(g·day) in synthesized saline wastewater with salinity of 2%. According to salt-tolerant mechanism research, when the salinity was below 2%, the stain NY6 absorbed K+and Na+to maintain osmotic equilibrium, and when the salinity was above 2%, the NY6 kept its life by producing a large amount of spores.  相似文献   
995.
Two hybrid processes including ozonation-ceramic membrane-biological activated carbon (BAC) (Process A) and ceramic membrane-BAC (Process B) were compared to treat polluted raw water. The performance of hybrid processes was evaluated with the removal efficiencies of turbidity, ammonia and organic matter. The results indicated that more than 99% of particle count was removed by both hybrid processes and ozonation had no significant effect on its removal. BAC filtration greatly improved the removal of ammonia. Increasing the dissolved oxygen to 30.0 mg/L could lead to a removal of ammonia with concentrations as high as 7.80 mg/L and 8.69 mg/L for Processes A and B, respectively. The average removal efficiencies of total organic carbon and ultraviolet absorbance at 254 nm (UV254, a parameter indicating organic matter with aromatic structure) were 49% and 52% for Process A, 51% and 48% for Process B, respectively. Some organic matter was oxidized by ozone and this resulted in reduced membrane fouling and increased membrane flux by 25%-30%. However, pre-ozonation altered the components of the raw water and affected the microorganisms in the BAC, which may impact the removals of organic matter and nitrite negatively.  相似文献   
996.
To evaluate decolorization and detoxification of Azure B dye by a newly isolated Bacillus sp. MZS10 strain, the cultivation medium and decolorization mechanism of the isolate were investigated. The decolorization was discovered to be dependent on cell density of the isolate and reached 93.55%(0.04 g/L) after 14 hr of cultivation in a 5 L stirred-tank fermenter at 2.0 g/L yeast extract and 6.0 g/L soluble starch and a small amount of mineral salts. The decolorization metabolites were identified with ultra performance liquid chromatography-tandem mass spectroscopy(UPLC-MS). A mechanism for decolorization of Azure B was proposed as follows: the C=N in Azure B was initially reduced to –NH by nicotinamide adenine dinucleotide phosphate(NADPH)-dependent quinone dehydrogenase, and then the –NH further combined with –OH derived from glucose to form a stable and colorless compound through a dehydration reaction. The phytotoxicity was evaluated for both Azure B and its related derivatives produced by Bacillus sp. MZS10 decolorization, indicating that the decolorization metabolites were less toxic than original dye. The decolorization efficiency and mechanism shown by Bacillus sp. MZS10 provided insight on its potential application for the bioremediation of the dye Azure B.  相似文献   
997.
硫氧同位素示踪南京北郊大气PM2.5中硫酸盐来源   总被引:3,自引:1,他引:2  
魏英  郭照冰  葛鑫  祝胜男  姜文娟  石磊  陈姝 《环境科学》2015,36(4):1182-1186
采用EA-IRMS联用技术对2014年1月南京北郊大气细粒子(PM2.5)中硫酸盐的硫和氧同位素组成进行了分析,结合大气颗粒物化学组成,追溯南京北郊大气PM2.5中硫酸盐的来源,并评估了各污染源的贡献率.结果表明,2014年1月南京北郊硫酸盐气溶胶的硫同位素组成(δ34S)范围为2.7‰~6.4‰,平均值为5.0‰±0.9‰(n=16);氧同位素组成(δ18O)值范围为10.6‰~16.1‰,平均值为12.5‰±1.37‰(n=16).通过气溶胶与可能污染源的δ34S值对比和后向轨迹分析,得出结论:研究区域大气中硫同位素组成主要受当地燃煤中硫的影响,其次是远距离传输硫.此外,有低δ34S值硫源存在,但贡献比较小,可能来自生物成因硫.绝对主因子分析结果显示:人为成因硫和远距离传输硫贡献率分别为46.74%和31.54%.  相似文献   
998.
运用"道化学公司火灾、爆炸危险指数评价方法"对加油站的埋地汽油储罐和埋地柴油储罐进行安全评价,并提出相关的注意事项.  相似文献   
999.
新农药硫肟醚在土壤中降解的影响因子研究   总被引:2,自引:0,他引:2  
在实验室条件下对新农药硫肟醚(O(3苯氧苄基)2甲硫基1(4氯苯基)丙基酮肟醚)在土壤中降解的影响因子进行了研究.结果表明,在20 d的培养时间内,随着土壤含水量的增加,硫肟醚的降解速率加快.当土壤含水量增加到80%(质量分数)时,其降解率达到最大(46.73%),然后随土壤含水量增加反而下降.随着土壤温度的升高,硫肟醚在土壤中的降解速率增加.30 ℃时降解速率达到最大(47.83%),以后温度继续升高,其降解速率呈现出下降趋势.在5~100 mg/kg的质量比范围内硫肟醚在土壤中的降解速率随其质量比的增加而提高;但当质量比继续增加时,硫肟醚的降解速率表现出下降趋势.硫肟醚在土壤中的降解遵循一级动力学方程,其在非灭菌与灭菌土壤中的降解速率常数k分别为8.106×10-3和1.63×10-3;半衰期分别为85.5 d和425.2 d.微生物对硫肟醚在土壤中的降解具有显著的影响.  相似文献   
1000.
由于硫酸盐还原的影响,普通高温UASB反应器处理亚硫酸盐纸浆厂排出的高硫酸盐难降解废水过程中甲烷菌活性受到了严重抑制.考虑到空气对硫化氢的吹脱和对硫化物的氧化作用可能减轻硫化物对甲烷菌的抑制,本研究在厌氧反应器中引入限量曝气措施.试验结果表明,反应器的运行稳定性和处理能力均得到大幅提高.在有机负荷提高到原来2倍的情况下,曝气后COD去除率仍有提高,从40%~50%提高到60%~70%.试验证明部分甲烷菌可以耐氧,而某些种类的水解酸化细菌则对不完全厌氧环境比较敏感.  相似文献   
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