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881.
能源是现代社会发展的重要基础,其在社会经济发展中占有不可替代的地位。以四川省统计年鉴及相关数据资料为基础,参考美国能流图绘制了四川省2010年的能流图,并对四川省2005~2010年间的能源输入、输出、消耗,以及相应的污染物排放进行了分析,分析发现:近年来能源消费总量增长迅速,年均增长率达10.8%,能源对外依存度较高,尤其是石油。能源消耗结构有待进一步优化,传统化石能源所占比重偏高,2010年达77.18%。同时构建了能源-社会经济-环境复合系统能流分析指标,分析了2005~2010年四川省能源、经济、环境两两子系统及三者系统之间的协调度,结果显示:四川省能源-经济-环境系统协调度不断上升,2010年三者综合协调度0.97238。最后根据能流分析、污染物排放水平、协调度分析等结果,提出了四川省能源发展战略、能流的优化管理、节能减排等对策建议。 相似文献
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883.
柴油发动机尾气排放中含有比汽油发动机更多的颗粒污染物。文章叙述了尾气净化装置反应原理,触媒及化学稳定性,柴油氧化催化剂和颗粒催化过滤器优点。通过外部加装尾气净化装置,解决了尾气污染问题,具有较好的发展前景、较强的实用性和可操作性。 相似文献
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886.
大型燃煤机组由于耗煤量巨大,在设计时均考虑了多煤种的情况,但电除尘器对不同煤种燃烧后产生的煤灰的收尘性能差异很大。针对多煤种设计工况,以广东平海电厂为例,SO3烟气调质+电除尘器组合技术既能满足燃烧多煤种时的低排放要求,又具备了较低的一次性投资和较低的运行费,是一种最佳的除尘方案,该项目对同类工程除尘方案的选型推广具有积极的示范及借鉴意义。 相似文献
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888.
Yuhe Ji Liding Chen Ranhao Sun 《Journal of the American Water Resources Association》2012,48(5):999-1007
Ji, Yuhe, Liding Chen, and Ranhao Sun, 2012. Temporal and Spatial Variability of Water Supply Stress in the Haihe River Basin, Northern China. Journal of the American Water Resources Association (JAWRA) 48(5): 999‐1007. DOI: 10.1111/j.1752‐1688.2012.00671.x Abstract: Water resources are becoming increasingly stressed under the influence of climate change and population growth in the Haihe River Basin, Northern China. Assessing the temporal and spatial variability of water supply stress is urgently needed to mitigate water crisis caused by water resource reallocation. Water supply and use data were compiled for the time period of 1998‐2003 in this synthesis study. The Water Supply Stress Index (WSSI) as defined as Water Demand/Water Supply was used to quantitate whether water supply could meet the demand of human activities across the study region. We found a large spatial gradient of water supply stress in the study region, being much higher in the eastern subbasins (ranging from 2.56 to 4.31) than the west subbasins (ranging from 0.56 to 1.92). The eastern plain region not only suffered more serious water supply stress but also had a much higher interannual variability than the western hilly region. The uneven spatial distribution of water supply stress might result from the distribution of land use, population, and climate. Future climate change and rapid economic development are likely to aggravate the existing water crisis in the study region. 相似文献
889.
Triclosan is used as an antibacterial agent in household items and personal care products. Since this compound is found in maternal milk of humans and bodies of wild animals, there is growing concern among some consumer groups and scientific community that triclosan is adverse for humans and wild animals. In order to estimate adverse actions of triclosan, the effects of triclosan on intracellular Zn2+ concentration and cellular thiol content were studied in rat thymocytes by the use of flow cytometer with appropriate fluorescent probes. Triclosan at 1-3 μM (sublethal concentrations) increased the intensity of FluoZin-3 fluorescence (intracellular Zn2+ concentration) and decreased the intensity of 5-chloromethylfluorescein (5-CMF) fluorescence (cellular thiol content). Negative correlation (r = −0.985) between triclosan-induced changes in FluoZin-3 and 5-CMF fluorescences was found. Removal of external Zn2+ did not significantly affect the triclosan-induced augmentation of FluoZin-3 fluorescence, suggesting an intracellular Zn2+ release by triclosan. These actions of triclosan were similar to those of H2O2 and triclosan significantly potentiated the cytotoxicity of H2O2. Therefore, the results may suggest that triclosan at sublethal concentrations induces oxidative stress that decreases cellular thiol content, resulting in an increase in intracellular Zn2+ concentration by Zn2+ release from intracellular store(s). Since recent studies show many physiological roles of intracellular Zn2+ in cellular functions, the triclosan-induced disturbance of cellular Zn2+ homeostasis may induce adverse actions on the cells. 相似文献
890.
Anaerobic degradation of microcrystalline cellulose: kinetics and micro-scale structure evolution 总被引:1,自引:0,他引:1
The degradation kinetics and micro-scale structure change of microcrystalline cellulose during anaerobic biodegradation were investigated. A modified Logistic model was established to properly describe the kinetics, which showed good fitness and wide applicability for cellulose degradation. A maximum degradation rate of 0.14 g L−1 h−1 was achieved after cultivating for 51.5 h. This result was in good agreement with the scanning electron microscope and X-ray diffraction analysis. Channels of 400-500 nm size started to occur on the crystalline surface of cellulose at around the inflexion time. Accordingly, the crystallinity significantly decreased at this point, indicating a degradation of the crystalline structure zones by anaerobic bacteria. This study offers direct morphological evidence and quantitative analysis of the biodegradation process of cellulose, and is beneficial to a better understanding of the cellulose degradation mechanism. 相似文献