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131.
A two-dimensional numerical model for evaluating the wind flow and pollutant dispersion within a street canyon was first developed using the FLUENT code, which was then validated against a wind tunnel experiment. Then, the effects of the upstream building width and upwind building arrangement on the airflow and pollutant dispersion inside an isolated street canyon were investigated numerically. The numerical results revealed that: (1) the in-canyon vortex center shifts downwards as the upstream building width increases; (2) the recirculation zone covers the entire upstream building roof for the cases when W/H = 0.5, 1.0, 1.5, and 2.0 (W is the upstream building width and H is the building height), whereas the flow reattaches the upstream building roof for the cases when W/H = 2.5 and 3.0; (3) when the upstream building width is shorter than the critical width WC (= 2H), an increase in the upstream building width leads to an increase in the pollution level on the leeward wall of the canyon and a decrease in the roof-level concentrations at the upstream building; (4) when the upstream building width is longer than the critical width, the roof-level concentrations at the upstream building are negligibly small and the pollution level on the leeward wall of the canyon is almost unaffected by a further increase in the upstream building width; (5) when the buildings are placed upwind of the canyon, the flow attaches the upstream building roof and, therefore, almost none of the pollutants are distributed on the upstream building roof; and (6) the pollution levels inside the canyon and on the downstream building roof increase significantly with the number of upwind buildings. 相似文献
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Boqiang Cui Yin Liu Jinwen Bai Xianjie Du Changxiang Wang 《International Journal of Green Energy》2020,17(12):730-741
ABSTRACT In order to study the effect of fly ash content in cemented paste backfill (CPB) on its anti-sulfate erosion, the apparent phenomenon, strength development, and hydration products change the law of CPB with different fly ash content under long-term soaking of 5% sodium sulfate solution were studied by the macrotest and microanalysis, in addition, the mechanism of CPB anti-sulfate attack was analyzed by combining with a scanning electron microscope (SEM). The results indicated that the effect of sulfate environment on the strength of fly ash cemented paste backfill (FCPB) was mainly determined by the hydration products in the FCPB at different soaking times. In the early soaking stage, the formation of ettringite (AFt) in FCPB could improve its compactness, which was conducive to improving the strength of FCPB. In the late soaking stage, there were ettringite-type erosion damage and gypsum erosion-type damage internal of the FCPB with low content fly ash, resulting in microfracture, cracking of the FCPB, and reducing the strength. CPB with an appropriate content of fly ash could improve the internal structure of the FCPB to achieve the purpose of anti-sulfate erosion. 相似文献
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生态文明是继农业、工业文明之后,适应新形势而提出的.以直接解决与人类生存相关的生态问题为己任,用于指引人们实现可持续发展为目标.在内蒙古地区,草原是最具内蒙古特色和开发价值的资源,然而在近几十年的开发中严重违反了生态文明理念,以致出现草场退化、生物生存危机等状况.在当前内蒙古草原出现的严重问题的情况下,很有必要去探寻生态文明理念的重要价值.结合中国传统文化中天时地利人和的重要思想,实现在“因时制宜、因地制宜、以人为本及各方因素协调共促”理念下新的草原开发. 相似文献
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针对污水处理过程中存在的难降解有机物问题,介绍了芬顿的概念和特点,探讨了均相芬顿氧化在原位产生芬顿试剂的机理及应用.目前均相芬顿氧化技术总体可归纳为超声-芬顿氧化技术、微波-芬顿氧化技术、光-芬顿氧化技术、电-芬顿氧化技术.这些技术的应用能促进有机物的降解,提高芬顿技术的处理效率.通过介绍芬顿氧化技术降解废水中污染物的机理,综述了均相芬顿氧化技术在废水处理中的应用,分析了各种方法的适用范围和优缺点. 相似文献
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Zhang Yifan Ma Yuxia Shen Jiahui Li Heping Wang Hang Cheng Bowen Ma Liya 《Environmental science and pollution research international》2022,29(45):67776-67786
Environmental Science and Pollution Research - In recent years, O3 pollution had been worsening in China and became a major challenge for human health. To evaluate the O3 effects on circulatory and... 相似文献
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电动修复技术是一种新型的污染土壤修复技术,相关的理论和实验室小试研究较多,但鲜见野外现场条件下的原位修复研究。本研究以某电镀厂铜污染区为修复对象,以可生物降解的络合剂乳酸和柠檬酸为阴极池增强试剂,考察在原位条件下电动修复技术对土壤中铜的去除效率,并评估修复过程的电能消耗。结果表明:在电压梯度7.5 V·m-1,阴极池乳酸和柠檬酸浓度为0.5 mol·L-1,处理24 d(乳酸处理)和17 d(柠檬酸处理)的条件下,乳酸处理较柠檬酸处理电流要高、且阴阳极池溶液和土壤的pH、电导率变化要小;乳酸处理后土壤铜含量明显下降(阳极和阴极附近土壤铜去除率分别为52.6%和35.7%),而柠檬酸处理条件下阳极和阴极附近铜的去除效率分别为27.2%和-17.5%,这可能与其较低的电流和较短的处理时间有关。与现有文献比较,乳酸处理总能耗(15.7 kWh·m-3)处于较低水平,而Cu的去除率处于较高水平(35.7%~52.6%),优于文献报道的电动修复去除效率和电能消耗。 相似文献