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151.
以上海市某冶金企业为例,该厂有正常运行的冶炼炉13座,每年向大气中排放大量颗粒污染物.基于高斯倾斜烟羽模式,整理了2003年上海市全年的气象资料,运用气象概率矩阵法计算了该厂直排点源及无组织面源排放颗粒物的影响,得出了厂区内无组织排放颗粒物落地浓度等值线图.计算结果表明,厂区内颗粒物污染主要来自无组织面源,污染集中在厂区中心的污染源附近;直排点源对环境的影响较小,污染主要集中在下风向. 相似文献
152.
A model is developed to predict the rate of mass transfer between a double-layer material and indoor air. The model allows non-uniform initial material-phase concentrations in each of the two layers and a transient influent gas-phase concentration to be considered. This model builds on a recently validated single-layer model and should prove useful in predicting the behavior of double-layer material assemblies. Many indoor furnishings and building structures are comprised of layers of different material. The approach taken here represents a first step in the development of a more generally applicable multi-layer model. An analytical solution to the double-layer model is obtained and a parametric analysis is performed illustrating the behavior of the model as a function of the primary model parameters. The paper concludes by examining the potential use of thin diffusion barriers to reduce material emission rates and a hypothetical example of emissions from an adhesive that is part of an adhesive/material assembly. 相似文献
153.
Qianfeng Li Di Hu Sirakarn Leungsakul Richard M. Kamens 《Atmospheric environment (Oxford, England : 1994)》2007,41(40):9341-9352
This work merges kinetic models for α-pinene and d-limonene which were individually developed to predict secondary organic aerosol (SOA) formation from these compounds. Three major changes in the d-limonene and α-pinene combined mechanism were made. First, radical–radical reactions were integrated so that radicals formed from both individual mechanisms all reacted with each other. Second, all SOA model species from both compounds were used to calculate semi-volatile partitioning for new semi-volatiles formed in the gas phase. Third particle phase reactions for particle phase α-pinene and d-limonene aldehydes, carboxylic acids, etc. were integrated. Experiments with mixtures of α-pinene and d-limonene, nitric oxide (NO), nitrogen dioxide (NO2), and diurnal natural sunlight were carried out in a dual 270 m3 outdoor Teflon film chamber located in Pittsboro, NC. The model closely simulated the behavior and timing for α-pinene, d-limonene, NO, NO2, O3 and SOA. Model sensitivities were tested with respect to effects of d-limonene/α-pinene ratios, initial hydrocarbon to NOx (HC0/NOx) ratios, temperature, and light intensity. The results showed that SOA yield (YSOA) was very sensitive to initial d-limonene/α-pinene ratio and temperature. The model was also used to simulate remote atmospheric SOA conditions that hypothetically could result from diurnal emissions of α-pinene, d-limonene and NOx. We observed that the volatility of the simulated SOA material on the aging aerosol decreased with time, and this was consistent with chamber observations. Of additional importance was that our simulation did not show a loss of SOA during the daytime and this was consistent with observed measurements. 相似文献
154.
测定了在差异很大的4种水样(京密引水渠、北京地下水、长江南京段和汤旺河)中铜对虹鳟(Oncorhynchusmykiss)的半致死浓度,同步分析了各类水样参数和鳃铜蓄积量.用生物配位模型计算了铜在水相的形态分布和在鱼鳃表面的吸附量.研究了铜的水相形态、鳃表吸附量和鱼鳃蓄积量及毒性的关系.结果表明,铜的毒性与水相游离铜含量并无线性关系,但与鳃组织蓄积量成正比.图6参10 相似文献
155.
天然河流的二维等效扩散模型 总被引:1,自引:0,他引:1
通过对天然河流流带的拉伸或压缩处理,使之成为处处流速和水深均相等的理想河流,在此基础上建立了等效二维扩散模型。文中对建模方法和参数计算方法作了详细的介绍。 相似文献
156.
157.
中国能源消费与温室气体排放预测分析 总被引:4,自引:0,他引:4
构造了中国18个部门的能源—经济—环境投入产出模型,分析了能源消耗系数的变动规律,对2020年我国能源消费量与温室气体排放量进行了预测。结果表明:我国2020年的能源消费总量为29.5亿t(标准煤),等于1990年的299%,1995年的229%;煤炭消费最为26亿t,石油消费量为4.1亿t,天然气消费量为1420亿m~3,水电6400亿kW·h;能源消费弹性系数为0.43左右;CO_2排放量为17.50亿t(碳当量)。 相似文献
158.
Zhang Xinshi 《环境科学学报(英文版)》1990,2(4):95-109
The Chikugo Model is used to estimate radiative dryness indexes (RDI) and net primary productivity (NPP) of vegetation zones in China by calculating cli-matic parameters. That provides the water-heat equilibrium condition, potential primary production for natural vegetation in various vegetation zones, and their geographical distribution pattern. That could be used as the basis for study the effect of global climate change on ecosystems. 相似文献
159.
160.