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121.
Environmental Science and Pollution Research - Caffeine is considered the most representative pharmaceutical emerging contaminant (PEC) because of its ubiquity, high environmental abundance,...  相似文献   
122.
Environmental Science and Pollution Research - The fiscal decentralization system under China’s political centralization affects local economic and environmental policies, and thus has an...  相似文献   
123.
Environmental Science and Pollution Research - Inappropriate farm management practices can lead to increased agricultural inputs and changes in atmospheric greenhouse gas (GHG) emissions, impacting...  相似文献   
124.
为考察ZnO NPs粒径效应对人工湿地运行性能的影响,在进水COD约为216.00 mg·L-1、总氮约为11.10 mg·L-1和总磷约为3.84 mg·L-1的条件下连续运行126 d,对暴露于不同粒径ZnO NPs(10.00mg·L-1)的人工湿地脱氮除磷性能、填料渗透系数、胞外聚合物(extracellular polymeric substances,EPS)产量和特性以及微生物群落结构和多样性的变化进行了研究.结果表明:与对照组(未投加ZnONPs)相比,进水中投加15、50和90nm ZnO NPs后,人工湿地对COD的去除率分别下降了8.73%、7.55%和6.97%;氨氮和总氮的去除率分别下降了21.96%和10.95%、17.75%和10.00%以及15.34%和3.78%.高通量测序结果表明,ZnO NPs粒径越小,对硝化菌属Thauera的抑制作用越明显.投加Zn ONPs后,其释放的Zn2+会与水中磷酸盐结合生成磷酸锌等不溶物,同时会增加异养硝化菌Acinetobacter的相对丰度,从而导致总磷的去除率比对照组提高了42.49%~56.38%.此外,与对照组(97.18 mg·g-1)相比,投加15、50和90 nm的ZnO NPs后EPS的产量分别增加到212.97、156.30和128.53 mg·g-1.EPS分泌量的增大,导致填料渗透系数快速降低,在运行83 d后分别下降了71.17%、67.83%和37.50%.  相似文献   
125.
Environmental Science and Pollution Research - The high NO2/NOX ratio in the after-treatment system is beneficial to its performance and achieved by NO catalytic conversion in diesel oxidation...  相似文献   
126.
In this study, a lab-scale biological anaerobic/anaerobic/anoxic/membrane bioreactor(A_-~3MBR) was designed to treat wastewater from the ethanol fermentation of food waste,a promising way for the disposal of food waste and reclamation of resources. The 454 pyrosequencing technique was used to investigate the composition of the microbial community in the treatment system. The system yielded a stable effluent concentration of chemical oxygen demand(202 ± 23 mg/L), total nitrogen(62.1 ± 7.1 mg/L), ammonia(0.3 ±0.13 mg/L) and total phosphorus(8.3 ± 0.9 mg/L), and the reactors played different roles in specific pollutant removal. The exploration of the microbial community in the system revealed that:(1) the microbial diversity of anaerobic reactors A_1 and A_2, in which organic pollutants were massively degraded, was much higher than that in anoxic A_3 and aerobic MBR;(2) although the community composition in each reactor was quite different, bacteria assigned to the classes Clostridia, Bacteroidia, and Synergistia were important and common microorganisms for organic pollutant degradation in the anaerobic units, and bacteria from Alphaproteobacteria and Betaproteobacteria were the dominant microbial population in A_3 and MBR;(3) the taxon identification indicated that Arcobacter in the anaerobic reactors and Thauera in the anoxic reactor were two representative genera in the biological process. Our results proved that the biological A_-~3MBR process is an alternative technique for treating wastewater from food waste.  相似文献   
127.
The reaction of HCHO with Beijing winter's real ambient particulate matter(PM) inside a 3.3 m~3 Teflon Chamber was conducted in this study. NO_2, O_3 and H_2O gases were removed from the ambient aerosol before entering into the chamber. The decays of HCHO were monitored(acetylacetone spectrophotometry method) during the reactions at different PM number concentrations(N_a) and relative humidities(RHs), and the formed particulate formate was detected by IC and XPS techniques. The results showed that when RH was10%–15%, the decay rate of HCHO in the chamber was higher with the existence of PM from relatively clean days(with number concentration(N_a) 200,000 particle/L, 0.35–22.5 μm)compared to dirty days(N_a 200,000 particle/L, 0.35–22.5 μm). When RH increased to 30%–45%, PM can hardly have significant influences on the decay of HCHO. The formations of formate on the reacted PM were consistent with the HCHO decay rates at different ambient PM N_aand RH conditions. This is a first study related to the "real" ambient PM reacted with HCHO and suggested that in the clean and low RH days, PM could be an effective medium for the conversion of HCHO to formate.  相似文献   
128.
生态环境敏感性评价研究对于区域社会、经济与生态环境可持续发展具有重要现实意义。基于"压力-状态-响应"(PSR)模型构建相关指标体系,运用均方差赋权法对选取的2001~2013年宝鸡市生态环境"压力-状态-响应"层共25项指标进行评价研究。结果表明:生态环境压力指数和响应指数是影响宝鸡市生态环境敏感性变化的主要因素;受人类活动影响,2001~2013年宝鸡市生态环境敏感性不断波动,其发展大致经历了4个阶段:即2001~2004年属于较高敏感阶段,2005~2009年属于中度敏感阶段,2010~2011年属于较低敏感阶段,2012~2013年属于低敏感阶段。调整区域产业结构、优化经济发展方式、加强生态环境治理力度,是降低宝鸡市生态环境敏感性,实现区域人与社会、经济、资源和生态环境持续协调发展的有效途径。  相似文献   
129.
The selective catalytic reduction(SCR) activities of the MoO_3 doped V/WTi catalysts prepared by the incipient wetness impregnation method at low temperature were investigated.The results showed that the addition of MoO_3 could enhance the NO_ xconversion at low temperature and the best SCR activity was obtained when the dosage of MoO_3 reached5 wt.%. The NH3-TPD and DRIFTS experiments indicated that the addition of MoO_3 changed the type and number of acid sites on the surface of catalysts and reaction activities of acid sites were altered at the same time. The redox capacity and amount of active oxygen species got improved for V3Mo5/WTi catalyst, which could be confirmed by the H_2-TPR and transient response experiments. Water vapor inhibited the NO_xconversion at low temperature. Deposition of ammonium sulfate or bisulfate might be main reason for the loss of catalytic activity in the presence of SO_2 at low temperature. Choosing the suitable NH_3/NO ratio and elevation of reaction temperature both could weaken the influence of SO_2 on the SCR activity of the V3Mo5/WTi catalyst. Thermal treatment of the deactivated catalyst at350°C could get the low temperature activity recovered. The decrease of GHSV improved the de NO_x efficiency at low temperature and we speculated that the rational technological process and operation parameters could contribute to the application of this kind of catalysts in real industrial environment.  相似文献   
130.
依据美国环保署颁布的储罐VOCs排放量核算公式,从环境参数、原油参数和储罐结构参数3个方面对外浮顶储罐VOCs排放的影响进行了研究,其中包括了边缘密封排放挂壁排放、浮盘附件排放和浮盘着陆期间排放等几个相关排放核算数学公式。结果表明:环境风速增大,环境温度升高或太阳辐射强度提高均导致排放量增大;原油温度升高或原油周转量增加也导致排放量增加;储罐直径增加,罐漆颜色浅,或者罐壁锈蚀情况好会降低VOCs排放量。  相似文献   
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