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Environmental Science and Pollution Research - High temperature environment causes reduction in productivity in broilers by disrupting the intestinal barrier function. This study aimed to...  相似文献   
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Accurate measures of human effects on landscape processes require consideration of both the direct impacts from human activities and the indirect consequences of the interactions between humans and the landscape. This is particularly evident in systems experiencing regular natural disturbances such as in the mountainous areas of southwestern China, where the remaining population of giant pandas (Ailuropoda melanoleuca) is supported. Here the spatiotemporal patterns of human impacts, forests, and bamboo episodic die-offs combine to determine the distribution of panda habitat. To study the complex interactions of humans and landscapes, we developed an integrated spatiotemporally explicit model of household activities, natural vegetation dynamics, and their impacts on panda habitat. Using this model we examined the direct consequences of local fuelwood collection and household creation on areas of critical giant panda habitat and the indirect impacts when coupled with vegetation dynamics. Through simulations, we found that over the next 30 years household impacts would result in the loss of up to 30% of the habitat relied on by pandas during past bamboo die-offs. The accumulation and spatial distribution of household impacts would also have a considerable indirect influence on the spatial distribution of understory bamboo. While human impacts influence both bamboo die-off and regeneration, over 19% of pre-existing low-elevation bamboo habitat may be lost following an episodic die-off depending on the severity of the impacts and timing of the die-offs. Our study showed not only the importance of the spatial distribution of direct household impacts on habitat, but also the far-reaching effects of the indirect interactions between humans and the landscapes they are modifying.  相似文献   
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有机化合物水解的研究方法   总被引:39,自引:1,他引:39  
杨克武  莫汉宏 《环境化学》1994,13(3):206-209
有机化合物在水中的化学降解是其在环境中消失的重要途径之一,本文介绍有机化合物在水中的化学降解的研究方法,并给出研究实例。  相似文献   
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We studied the removal of cadmium and copper from industrial wastewaters by a microalloyed aluminium composite. The composite was highly efficient, resulting in water concentrations of cadmium and copper below the maximal allowed concentrations for drinking water. Moreover, our results show that the removal mechanism is mainly based on reduction and coprecipitation, since Cd and Cu were removed from the wastewater in reduced forms as metals and hydroxides.Selected article from the Regional Symposium on Chemistry and Environment, Krusevac, Serbia, June 2003, organised by Dr. Branimir Jovancicevic  相似文献   
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农药和其它有机化合物环境参数的相关性及其预测   总被引:5,自引:0,他引:5  
莫汉宏  杨克武 《环境化学》1994,13(5):401-408
农药和其它有机化合物的水溶解度、正辛醇/水分配系数、有机碳吸附常数和生物浓缩因子等物化参数之间存在着明显的相关性,有机化合物的水溶解度与其正辛醇/水分配系数、有机碳吸附常数和生物浓缩因子呈负相关;正辛醇/水分配系数与有机碳吸附常数和生物浓缩因子呈正相关。本文所建立的数学关系式能较好地预测未知化合物的环境特性。  相似文献   
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微生物转化生产L-苯基乙酰基甲醇(L-PAC)研究进展   总被引:3,自引:0,他引:3  
L-苯基乙酰基甲醇(L-Phenylacetylcarbinol,L-PAC)在制药业中被用作前体来合成L-麻黄素(L-ephedrine)、D-伪麻黄素(D-pseudoephedrine),在医学上,麻黄素可用来治疗低血压和哮喘,并有利尿之功效[1].近些年有报道指出,L-麻黄素可用于减肥[2].另外,L-PAC还可以用于合成安非他明(ampheta-mine),苯丙胺和苯胺等药物[3].  相似文献   
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Chemical and biological parameters were analyzed to examine how regional hydrological fluctuations influence water quality of a artificial lentic ecosystem over a two-year period The intensity of seasonal monsoon rain accounted for most of annual inflow and discharge and influenced flow pathway (interflow vs. overflow), resulting in a modification of chemical and biological conditions. Sharp contrasting interannual hydrology of intense vs. weak monsoon occurred during the study. The intense monsoon disrupted thermal stratification and resulted in ionic dilution, high TP and high inorganic solids (NVSS) in the headwater reach. The variation of NVSS accounted 75% of TP variation (slope = 4.14, p < 0.01, n = 48). Regression analysis of residual chlorophyll-a (Chl) versus flushing rate indicated that short hydraulic retention time and high mineral turbidity affected algal growth in the headwater reach during summer monsoon. In contrast, severe drought during weak monsoon produced strong thermal stratification, low inorganic solids, high total dissolved solids (TDS), and low TP in the entire system. In addition, Chl concentrations were controlled by phosphorus. Based on the physical, chemical and biological parameters, riverine conditions, dominated during the intense monsoon, but lacustrine conditions were evident during the weak monsoon. The interannual dynamics suggest that monsoon seasonality is considered the main forcing factor regulating overall functions and processes of the waterbody and this characteristic has an important implication to eutrophication of the system.  相似文献   
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