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101.
区域(城市)水体中主要有机毒物的筛选 总被引:1,自引:0,他引:1
本研究发展了区域(或城市)水体中主要有毒化学品的筛选方法。 在城市下游采集大体积水样,用CH_2Cl_2洗脱,再用有机溶剂萃取,用硅胶柱把有机物分成许多馏分,馏分最终变为水溶液。每个馏分中有机物浓度比原水大1000倍。用这种馏分水溶液进行溞的急性毒性试验和Ames试验。只对毒性大的馏分进行色谱/质谱/数据系统的鉴定和定量分析,然后根据各个化合物的急性毒性、降解难易和“三致”物质的资料及原水样中有机物的浓度资料,就可筛选出一个区域(城市)水体中的主要有毒化学品。 相似文献
102.
Liu Zhenyu Yang Fenglin Quan Xie Zhang Xiaohong 《Frontiers of Environmental Science & Engineering in China》2007,1(2):166-171
A QWASI model dependent on temperature is parameterized to describe the long-term fate of persistent organic pollutants (POPs)
in the Liao River. The model parameters, namely fugacity capacity, degradation rate, and transfer coefficient, are profoundly
affected by temperature. This model is used to simulate the fate of γ-hexachlorocyclohexane (γ-HCH) in the lower reaches of the Liao River from 1998 to 2008. Modeling results show that γ-HCH fugacity capacities in air, water, and sediment increase as temperature decreases, and the transfer and transformation
rate coefficients increase as temperature increases. The variations of transfer and transformation parameter D values depend on fugacity capacities, and transfer and transformation coefficients simultaneously. The performance of the
model is evaluated by comparing the predicted and observed concentrations in the water and sediment of the Liao River. The
predicted values agree well with the observed value in the order of magnitude, in most cases within the factor of 3. It is
believed that the model is appropriate for simulating the long term fate of POPs in the Liao River.
Translated from Environmental Science, 2006, 27(1): 121–125 [译自: 环境科学] 相似文献
103.
黄河口及邻近海域溶解态无机磷、有机磷、总磷的分布研究 总被引:3,自引:0,他引:3
于2003年8月下旬对黄河口及邻近海域进行了十船连续同步27h采样调查,分析了调查区域的溶解态无机磷、有机磷、总磷的平面分布、断面分布、时间分布特征.结果表明,在调查区域内,溶解态无机磷浓度很低,而溶解态有机磷浓度较高(占溶解态总磷的85%以上),是溶解态总磷的主要组成部分.各形态磷的平面分布、断面分布均呈现出由河口向邻近海域降低的趋势,溶解态总磷、溶解态有机磷梯度变化较溶解态无机磷更为明显;潮汐对河口浅水区的各形态磷浓度影响较大,对邻近调查海域的影响不明显. 相似文献
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文章采用铁屑一活性炭内电解法作为光合细菌生化处理染料废水的预处理方法,考查了3个主要影响因素(铁炭比、停留时间、初始pH值)。结果表明,最佳的处理条件为:铁炭比为7:3,pH值为5,停留时间为60min。在上述最佳处理条件下,对初始COD为6790mg/L的染料废水处理效率可以达到66.1%,并且废水经预处理后可生化性得到大大提高,有利于后续生化处理的进行。 相似文献
107.
Developing Canada's National Forest Carbon Monitoring, Accounting and Reporting System to Meet the Reporting Requirements of the Kyoto Protocol 总被引:2,自引:0,他引:2
The rate of carbon accumulation in the atmosphere can be reduced by decreasing emissions from the burning of fossil fuels
and by increasing the net uptake (or reducing the net loss) of carbon in terrestrial (and aquatic) ecosystems. The Kyoto Protocol
addresses both the release and uptake of carbon. Canada is developing a National Forest Carbon Monitoring, Accounting and
Reporting System in support of its international obligations to report greenhouse gas sources and sinks. This system employs
forest-inventory data, growth and yield information, and statistics on natural disturbances, management actions and land-use
change to estimate forest carbon stocks, changes in carbon stocks, and emissions of non-CO2 greenhouse gases. A key component of the system is the Carbon Budget Model of the Canadian Forest Sector (CBM-CFS). The model
is undergoing extensive revisions to enable analyses at four spatial scales (national, provincial, forest management unit
and stand) and in annual time steps. The model and the supporting databases can be used to assess carbon-stock changes between
1990 and the present, and to predict future carbon-stock changes based on scenarios of future disturbance rates and management
actions. 相似文献
108.
Carbon Dioxide Balance of Wood Substitution: Comparing Concrete- and Wood-Framed Buildings 总被引:3,自引:0,他引:3
Leif Gustavsson Kim Pingoud Roger Sathre 《Mitigation and Adaptation Strategies for Global Change》2006,11(3):667-691
In this study a method is suggested to compare the net carbon dioxide (CO2) emission from the construction of concrete- and wood-framed buildings. The method is then applied to two buildings in Sweden
and Finland constructed with wood frames, compared with functionally equivalent buildings constructed with concrete frames.
Carbon accounting includes: emissions due to fossil fuel use in the production of building materials; the replacement of fossil
fuels by biomass residues from logging, wood processing, construction and demolition; carbon stock changes in forests and
buildings; and cement process reactions. The results show that wood-framed construction requires less energy, and emits less
CO2 to the atmosphere, than concrete-framed construction. The lifecycle emission difference between the wood- and concrete-framed
buildings ranges from 30 to 130 kg C per m2 of floor area. Hence, a net reduction of CO2 emission can be obtained by increasing the proportion of wood-based building materials, relative to concrete materials. The
benefits would be greatest if the biomass residues resulting from the production of the wood building materials were fully
used in energy supply systems. The carbon mitigation efficiency, expressed in terms of biomass used per unit of reduced carbon
emission, is considerably better if the wood is used to replace concrete building material than if the wood is used directly
as biofuel. 相似文献
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