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321.
目前已经发现了2种微生物脱氯新途径:一是根据好氧氨氧化菌具有反硝化能力,从而在一定条件下反硝化脱氯:二是在功能微生物的作用下,亚硝酸盐与氨离子一起厌氧氨氧化,并且发现了厌氧氨氧化菌与好氧氨氧化菌或甲烷菌能协同耦合在一种有利的微生态环境中。基于以上新途径提出了几种生物脱氟新工艺,包括了:SHARON、ANAMMOX、SHARON—ANAMMOX、CANON、OLAND、NOX工艺、需氧反氨化工艺(Aerobic deammonification)、甲烷化与厌氧氨氧化耦舍工艺。  相似文献   
322.
土壤汞的地球化学行为及其污染的防治对策   总被引:4,自引:0,他引:4  
综述了土壤汞的来源 ,以及汞在土壤中的迁移方式、转化模式和富集行为 ,并介绍了当前几种土壤汞污染的防治对策 ,重点讨论了改进农耕技术、减少人为活动向大气的排汞量、生物修复以及电解法等方法 ,最后对土壤汞的研究方向进行了展望。  相似文献   
323.
A study on the leaching behaviour of trifluralin, lindane and aldicarb in three different types of soil was performed using soil column method. Leaching of trifluralin was not much influenced by soil types. Organic matter content showed an apparent influence on the leaching of lindane and aldicarb. Leaching depth of the pesticide was found to be negatively related to the organic matter content of the soil under study. It was also found that hydrophobic property of the pesticide increased the tendency of adsorption of the chemical to soil particles and hence reduced its leaching tendency. Thus, the leaching depths of the three pesticides in each of the three soils were observed in the order: aldicarb >lindane> trifluralin. Leaching behaviour of the three pesticides was also predicted based on the adsorption coefficients of the chemicals. For trifluralin and lindane, the predicted results were considerably in line with the results of the experiment.  相似文献   
324.
杞麓湖水污染成因及控制途径的定量研究   总被引:1,自引:0,他引:1  
利用1988-1997年的统计资料,建立了关于杞麓湖水污染的多投入要素的Cobb-Dauglas生产函数模型,研究了主要影响因子对杞麓湖污染发展的贡献率及杞麓湖污染治理的途径。  相似文献   
325.
高效加压溶气气浮工艺在炼油污水处理中的应用   总被引:1,自引:0,他引:1  
通过对传统溶气气浮工艺及高效加压溶气气浮工艺(SUPR-DAF)的工作原理、工艺流程、气浮效果、运行管理、技术经济等方面加以比较、分析,显示出SUPR-DAF工艺的高效性、灵活性、优越性。该工艺可适用于任何改建、扩建、新建的炼油污水处理项目。  相似文献   
326.
利用相对分子质量分布、三维荧光光谱仪及红外光谱仪等方法研究了城市污水二级出水中溶解性有机物亲疏水性对超滤膜污染的影响。结果表明:城市污水二级出水中疏水性酸占42.8%,过渡亲水性酸占19.1%,亲水性有机物占38.1%;水中疏水性酸、过渡亲水性酸和亲水性有机物分别使膜通量减小32.8%、29.9%和18.6%,膜阻力增大106.6%、92.2%和58.6%;过渡亲水性酸为蛋白质类,相对分子质量主要在4000~30000 Da;亲水性有机物为脂肪类,主要集中在6 000 Da以下;疏水性酸物质为腐殖酸类,主要集中在4 000 Da以下,其中疏水性酸物质更容易引起超滤膜污染。  相似文献   
327.

Electric vehicles based on lithium-ion batteries (LIB) have seen rapid growth over the past decade as they are viewed as a cleaner alternative to conventional fossil-fuel burning vehicles, especially for local pollutant (nitrogen oxides [NOx], sulfur oxides [SOx], and particulate matter with diameters less than 2.5 and 10 μm [PM2.5 and PM10]) and CO2 emissions. However, LIBs are known to have their own energy and environmental challenges. This study focuses on LIBs made of lithium nickel manganese cobalt oxide (NMC), since they currently dominate the United States (US) and global automotive markets and will continue to do so into the foreseeable future. The effects of globalized production of NMC, especially LiNi1/3Mn1/3Co1/3O2 (NMC111), are examined, considering the potential regional variability at several important stages of production. This study explores regional effects of alumina reduction and nickel refining, along with the production of NMC cathode, battery cells, and battery management systems. Of primary concern is how production of these battery materials and components in different parts of the world may impact the battery’s life cycle pollutant emissions and total energy and water consumption. Since energy sources for heat and electricity generation are subject to great regional variation, we anticipated significant variability in the energy and emissions associated with LIB production. We configured Argonne National Laboratory’s Greenhouse gases, Regulated Emissions, and Energy use in Transportation (GREET®) model as the basis for this study with key input data from several world regions. In particular, the study examined LIB production in the US, China, Japan, South Korea, and Europe, with details of supply chains and the electrical grid in these regions. Results indicate that 27-kWh automotive NMC111 LIBs produced via a European-dominant supply chain generate 65 kg CO2e/kWh, while those produced via a Chinese-dominant supply chain generate 100 kg CO2e/kWh. Further, there are significant regional differences for local pollutants associated with LIB, especially SOx emissions related to nickel production. We find that no single regional supply chain outperforms all others in every evaluation metric, but the data indicate that supply chains powered by renewable electricity provide the greatest emission reduction potential.

  相似文献   
328.
The sensitivity of Chinese soybean cultivars to ambient ozone(O3) in the field is unknown,although soybean is a major staple food in China. Using ethylenediurea(EDU) as an O3 protectant, we tested the gas exchange, pigments, antioxidants and biomass of 19 cultivars exposed to 28 ppm·hr AOT40(accumulated O3 over an hourly concentration threshold of40 ppb) over the growing season at a field site in China. By comparing the average biomass with and without EDU, we estimated the cultivar-specific sensitivity to O3 and ranked the cultivars from very tolerant( 10% change) to highly sensitive( 45% change), which helps in choosing the best-suited cultivars for local cultivation. Higher lipid peroxidation and activity of the ascorbate peroxidase enzyme were major responses to O3 damage, which eventually translated into lower biomass production. The constitutional level of total ascorbate in the leaves was the most important parameter explaining O3 sensitivity among these cultivars. Surprisingly, the role of stomatal conductance was insignificant. These results will guide future breeding efforts towards more O3-tolerant cultivars in China, while strategies for implementing control measures of regional O3 pollution are being implemented. Overall, these results suggest that present ambient O3 pollution is a serious concern for soybean in China, which highlights the urgent need for policy-making actions to protect this critical staple food.  相似文献   
329.
PM_(2.5) aerosol samples were collected over 12 hr and 24 hr intervals in an inland background area, Gongga Mountain National Nature Reserve(hereafter shortened to Gongga), during the summer of 2011. Polar organic tracers, inorganic ions and meteorological data were measured. The purpose of this work was to investigate the variation patterns, formation and sources of the secondary organic aerosol tracers in the studied atmosphere. The average concentrations of isoprene oxidation products, α-pinene oxidation products, β-caryophyllinic acid, sugars, sugar alcohols and anhydrosugars were 88.6 ± 106.1, 3.6 ± 5.7,0.13 ± 0.30, 13.6 ± 13.1, 31.9 ± 31.4 and 14.8 ± 10.7 ng/m3 respectively in all aerosol samples.The aged α-pinene second organic aerosol(SOA) tracers(i.e., 3-hydroxyglutraric acid(3 HGA), 3-hydroxy-2,2-dimethylglutaric acid(HDMGA), 3-acetylpentandioic acid(APDA) and 3-methyl-1,2,3-butanetricarboxylic acid(MBTCA)) correlated significantly with each other in the 24 hr PM2.5 aerosol samples, indicating that OH· is the major factor controlling the formation of these α-pinene SOA tracers. Using the positive matrix factorization(PMF) model and the tracer-based source apportionment method, we calculated that isoprene oxidation products, α-pinene oxidation products, sesquiterpene oxidation products, biomass burning, fungi spores and anthropogenic SOA accounted for 21.9% ± 5.5%, 8.4% ± 2.1%, 3.0% ± 0.7%, 5.2% ± 5.3%, 5.0% ± 6.2% and 31.4% ± 7.8% of organic carbon respectively during the sampling period.  相似文献   
330.
Anthropogenic activities usually contaminate water environments, and have led to the eutrophication of many estuaries and shifts in microbial communities. In this study, the temporal and spatial changes of the microbial community in an industrial effluent receiving area in Hangzhou Bay were investigated by 454 pyrosequencing. The bacterial community showed higher richness and biodiversity than the archaeal community in all sediments. Proteobacteria dominated in the bacterial communities of all the samples; Marine_Group_Ⅰ and Methanomicrobia were the two dominant archaeal classes in the effluent receiving area. PCoA and AMOVA revealed strong seasonal but minor spatial changes in both bacterial and archaeal communities in the sediments. The seasonal changes of the bacterial community were less significant than those of the archaeal community, which mainly consisted of fluctuations in abundance of a large proportion of longstanding species rather than the appearance and disappearance of major archaeal species. Temperature was found to positively correlate with the dominant bacteria, Betaproteobacteria, and negatively correlate with the dominant archaea,Marine_Group_Ⅰ; and might be the primary driving force for the seasonal variation of the microbial community.  相似文献   
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