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The Finnish anthropogenic CH4 emissions in 1990 are estimated to be about 250 Gg, with an uncertainty range extending from 160 to 440 Gg. The most important sources are landfills and animal husbandry. The N2O emissions, which come mainly from agriculture and the nitric acid industry are about 20 Gg in 1990 (uncertainty range 10–30 Gg). The development of the emissions to the year 2010 is reviewed in two scenarios: the base and the reduction scenarios.According to the base scenario, the Finnish CH4 emissions will decrease in the near future. Emissions from landfills, energy production, and transportation will decrease because of already decided and partly realized volume and technical changes in these sectors. The average reduction potential of 50%, as assumed in the reduction scenario, is considered achievable.N2O emissions, on the other hand, are expected to increase as emissions from energy production and transportation will grow due to an increasing use of fluidized bed boilers and catalytic converters in cars. The average reduction potential of 50%, as assumed in the reduction scenario, is optimistic.Anthropogenic CH4 and N2O emissions presently cause about 30% of the direct radiative forcing due to Finnish anthropogenic greenhouse gas emissions. This share would be even larger if the indirect impacts of CH4 were included. The contribution of CH4 can be controlled due to its relatively short atmospheric lifetime and due to the existing emission reduction potential. Nitrous oxide has a long atmospheric lifetime and its emission control possiblities are limited consequently, the greenhouse impact of N2O seems to be increasing even if the emissions were limited somehow. 相似文献
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人工湿地控制非点源污染的应用 总被引:7,自引:0,他引:7
随着点源污染的有效管理和控制,非点源污染已成为水环境污染的主要原因。人工湿地作为一种控制水环境非点源污染的有效工具,已被世界上很多国家所认可。本文首先简述了非点源污染的危害,其次对人工湿地的概念和类型进行了介绍,论述了人工湿地对非点源污染中氮、磷、重金属和农药等主要污染物的去除机理,最后对人工湿地处理系统的附属设施、水力因素、表土层以及植物收割等应用问题进行了探讨。 相似文献
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铅锌矿产资源开发重金属污染风险评价 总被引:3,自引:0,他引:3
在论述环境风险评价的概念、理论和方法的基础上,通过对某典型铅锌矿山重金属污染程度、重金属毒性响应系数和生态危害系数的计算与探讨,建立了铅锌矿山重金属生态风险评价指标体系.根据所建立的指标体系,计算了每个样点的生态风险指数,结果认为该矿山总体环境质量很差,重金属污染极其严重. 相似文献
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Zhi-Long Ye Xiaoqing Xie Lanhua Dai Ziwen Wang Wenhua Wu Fuyi Zhao Xiaoming Xie Shiqing Huang Meiling Liu Shaohua Chen 《Waste management (New York, N.Y.)》2014,34(11):2305-2311
Fresh leachate, generated in municipal solid waste incineration (MSWI) plants, contains various pollutants with extremely high strength organics, which usually requires expensive and complex treatment processes. This study investigated the feasibility of blending treatment of MSWI leachate with municipal wastewater. Fresh MSWI leachate was pretreated by coagulation–flocculation with FeCl3 2 g/L and CaO 25 g/L, plate-and-frame filter press, followed by ammonia stripping at pH above 12. After that, blending treatment was carried out in a full-scale municipal wastewater treatment plant (WWTP) for approximately 3 months. Different operational modes consisting of different pretreated leachate and methanol addition levels were tested, and their performances were evaluated. Results showed that throughout the experimental period, monitored parameters in the WWTP effluent, including COD (<60 mg/L), BOD5 (<20 mg/L), ammonium (<8 mg/L), phosphorus (<1.5 mg/L) and heavy metals, generally complied with the Chinese sewage discharged standard. Under the experimental conditions, a certain amount of methanol was needed to fulfill TN removal. An estimation of the operation cost revealed that the expenditure of blending treatment was much lower than the total costs of respective treatment of MSWI leachate and municipal wastewater. The outcomes indicated that blending treatment could not only improve the treatability of the MSWI leachate, but also reduce the treatment cost of the two different wastewaters. 相似文献
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应用相平衡分配法建立湘江衡阳段沉积物重金属质量基准 总被引:4,自引:2,他引:2
采集湘江衡阳段29个站点的表层沉积物样品,测定沉积物中4种重金属(Cu、Pb、Zn和Cd)含量及赋存形态、以及孔隙水中重金属含量,根据相平衡分配法的基本理论,考虑参与沉积物-水相平衡分配的重金属组成,实测法计算重金属的沉积物-水相平衡分配系数(Kp),分别引用美国EPA制定保护水生生物不受重金属慢性毒性影响的基本连续浓度(CCC)和我国地表水环境质量标准(GB 3838-2002)Ⅰ类水质标准,建立两种湘江衡阳段沉积物重金属质量基准(SQC)进行对比分析,其中基于美国CCC建立的湘江衡阳段沉积物重金属质量基准与国内外研究成果相比可比性较好,4种重金属(Cu、Pb、Zn和Cd)的SQC值分别为64.62、55.57、1 360.40和2.34μg.g-1,此SQC具有保护长期生活于沉积物中的底栖生物不受重金属慢性毒性影响的意义.通过单因子评价法将湘江衡阳段沉积物中重金属总量与沉积物质量基准值(SQC)进行比较,结果表明,湘江衡阳段沉积物中Cd和Pb含量水平对底栖生物具有较大的慢性毒性影响,Cd污染不容忽视. 相似文献
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膨润土调质对污泥堆肥的脱毒及重金属钝化和雌酮消除作用 总被引:1,自引:1,他引:0
利用干基添加比例为0~10%钙基膨润土对污泥进行了调质,通过52 d的好氧堆肥研究了调质对堆体温度、pH、水溶性盐分(EC)、有机碳、总氮、铵态氮(NH_4~+-N)、硝态氮(NO_3~--N)的影响,并进一步分析了其对污泥脱毒(种子萌发)和重金属(Zn、Cu、Pb、Cd)钝化及雌酮(E1)消除的影响.结果表明,污泥经外加膨润土调质后,可以促进堆肥物料的热灭活无害化,能使有机碳矿化率达到15.27%~19.71%;堆肥过程中各处理堆肥pH先降低后升高,最终稳定在6.76~7.05之间,但膨润土调质堆肥pH的波动变缓;添加膨润土的堆肥EC显著低于对照处理(1 132μS·cm~(-1)),整个堆肥过程EC值随着膨润土添加比例的增加而稍有降低.堆肥过程中的总氮含量逐渐增加,但对照处理在堆肥初期存在一定的氮素损失,而污泥经过调质可减少堆肥初期氮素损失;整个堆肥中NH_4~+-N含量先增加后降低,各处理NO_3~--N均呈现出逐渐增加的趋势,表明污泥调质促进NO_3~--N的转化.虽然调质对种子发芽产生一定的抑制作用,但均不影响堆肥的腐熟,且能显著促进重金属的钝化,同时添加膨润土处理显著降低堆料E1含量,添加比例5%处理使E1含量由90.48μg·kg~(-1)降低至28.27μg·kg~(-1).研究表明,膨润土不高于5%的添加比例是适合的污泥调质措施,在污泥堆肥物料的安全化、脱毒及重金属钝化和雌酮消除方面具有较好的应用潜力. 相似文献