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21.
Sommar J Feng X Gårdfeldt K Lindqvist O 《Journal of environmental monitoring : JEM》1999,1(5):435-439
Although it makes up only a few per cent. of total gaseous mercury (TGM) in the atmosphere, the fraction of oxidised (divalent) mercury plays a major role in the biogeochemical cycle of mercury due to its high affinity for water and surfaces. Quantitative knowledge of this fraction present in mixing ratios in the parts-per-10(15) (ppq) range is currently very scarce. This work is based on approximately 220 data for divalent gaseous mercury (DGM) collected during 1995-99 in ambient air. Over the course of the measurements, the sampling and analytical methods were modified and improved. This is described here in detail and includes transition from wet leaching and reduction procedures to thermo-reductive desorption, the use of annular as well as tubular denuders and adoption of an automated sampling system. The concentration of DGM exhibited a strong seasonal behaviour in contrast to atomic gaseous mercury, with low values in winter and maximum values in summer. The DGM/TGM ratios were frequently found to be below the detection limit (< or = 1%) and in the range 1-5%. A trend of diurnal DGM patterns was observed and implies photolytically induced sources. Scavenging of DGM during rain events was also noticed. 相似文献
22.
Methane emissions from natural wetlands 总被引:3,自引:0,他引:3
Zhengping Wang Dong Zeng William H. Patrick Jr. 《Environmental monitoring and assessment》1996,42(1-2):143-161
Methane is considered one of the most important greenhouse gases in the atmosphere. Because of the strict anaerobic conditions required by CH4-generating microorganisms, natural wetland ecosystems are one of the main sources of biogenic CH4. The total natural wetland area is estimated to be 5.3 to 5.7 × 1012 m2, making up less than 5% of the Earth's land surface. However, natural wetland plays a disproportionately large role in CH4 emissions. Wetlands are likely the largest natural sources of CH4 to the atmosphere, accounting for about 20% of the current global annual emission. Out of the total amount of CH4 emitted, northern wetlands contribute 34%, temperate wetlands 5%, and tropical systems about 60%.Because of the unique characteristics and high productivity, wetland ecosystems are important in the global carbon cycle. Natural wetlands are permanently or temporarily saturated. Strict anaerobic conditions consequently develop, which allows methanogenesis to occur. But the thin oxic layer and the oxic plant rhizophere promote activity of CH4-oxidizing bacteria or methanotrophs. Thus, both CH4 formation and consumption in wetland systems are microbiological processes and are controlled by many factors. Eight of the controlling factors, including carbon supply, soil oxidation-reduction status, pH, temperature, vegetation, salinity and sulfate content, soil hydrological conditions and CH4 oxidation are discussed in this paper. 相似文献
23.
Spatial structure analysis and kriging analysis have been identified to be useful tools in illustrating the spatial patterns of variables. Taihu Lake is one of the largest fresh water lakes in China, and has suffered serious eutrophication in recent years due to the rapid economic development and growing environmental pollution in the Taihu Catchment. In this paper, spatial structural analysis, kriging interpolation and eutrophication assessment were carried out for chlorophyll a in the lake. Studies show that spherical model could be applied to fit all experimental variograms. Positive nuggets were observed for three directions except NE–SW direction. The variograms show some anisotropy with anisotropic ratio falling within 1.76. The spatial structural patterns of chlorophyll a in the lake were affected by factors such as distribution of pollution sources, water flow and wind. Two-dimensional ordinary block kriging was applied for interpolation process. An eutrophication assessment map was also made based on a water-quality evaluation standard. Results show that the content of chlorophyll a in Taihu Lake was quite high. The whole lake has suffered serious eutrophication. However, the eutrophic situation varied in space. Higher contents of chlorophyll a appeared mainly in the northern part of the lake. 相似文献
24.
根据国家科技攻关研究的结果,论证了长江中下游地区地下水中Zn元素的背景特征的形成及其分布规律与地下水的含水介质成分、有机质含量、氧化还原环境、地下水迳流条件和地下水酸碱度之间的关系。 相似文献
25.
中国乳腺癌与土壤环境中化学元素的相关性研究 总被引:12,自引:1,他引:12
利用土壤元素资料2069448个数据、乳腺癌死亡调查资料31320例,研究了乳腺癌死亡率与人群生存的土壤环境中64个元素的相关性。结果表明,砷、汞、钡、铊、钕、铀、锆、锑等元素与乳腺癌死亡率有相关性。等级相关系数分别为-0.6820(P〈0.0005)、0.4567(P〈0.01)、-0.3773(P〈0.025)、-0.3852(P〈0.025)、0.3179(P〈0.05)、-0.4377(P〈 相似文献
26.
城镇污水资源化技术发展状况 总被引:12,自引:0,他引:12
污水资源化是解决当前水资源短缺,减少环境污染的有效途径,经过几十年的发展,城镇污水资源化技术取得了很大进展,讨论了城镇污水资源化的意义、技术和发展前景。 相似文献
27.
IntroductionTeraphthalicacid (TA)isoneofthepetrochemicalswidelyusedinthesynthesisofpolyesterfiber,videofilmsandotherapplications .Sincebis (2 ethylhexyl)phthalate ,diethylphthalateanddimethylphthalatehavebeenclassifiedaspriorityhazardouscompoundsbyEPAofthe… 相似文献
28.
29.
利用国家科技攻的成果,并根据国内外的研究现状,论证了地下水中铜元素的形成及其与人群健康的关系。 相似文献
30.
本文论述了目前环境污染治理技术及其在应用中存在的问题。由于环境污染治理技术本身的局限性以及人们观念等原因 ,目前的环境污染治理存在一定的局限性 ,如何认识并克服它成为一个不容忽视的问题 ;并提出有实施污染治理过程中 ,必须用持续发展的理论进行指导 ,将污染物的污染防治战略转变为污染防止战略即“清洁生产”战略 相似文献