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101.
研究基于Fe2+可以刺激硫酸盐还原菌的活性,氢气又可以作为电子供体促进反硝化脱氮理论,考察了铁粉对同步反硝化脱硫运行技能的影响.在混养(主)、自养和异养(辅)条件下对比加入铁粉前后各种底物的代谢规律,结果表明:混养条件下加入铁粉前后,硫化物去除率均在99%以上,硝酸盐和乙酸盐的去除率分别为80%,90%和88%,62%.铁粉不影响碳、氮、硫的同步脱除,而且可以强化硫酸盐还原作用和反硝化作用,却使硫化物的去除时间延长2倍.经分析得知,铁粉的加入可以提高自养菌群的活性,进而提供氢气这种更容易被自养菌利用的电子供体将硝酸盐还原为氮气,使硫化物剩余.而且,Fe和H2O发生化学反应生成的Fe2+和氢气均能提高硫酸盐还原菌的活性,硫酸盐还原菌群和自养菌群之间可能存在一定的共生关系,Fe的加入会破坏这种共生关系. 相似文献
102.
突发性环境事件时间序列特征可表征环境风险管理成效及存在问题。研究表明2000年以来中国突发环境事件预防、控制与管理取得了显著成效,其中,突发性水污染事件、大气污染事件以及噪声振动危害年发生频次呈大幅度降低趋势,但固废污染事件自2003年以来的年发生频次变化不大,而其它突发性环境事件自2002年以来的年发生频次则呈快速增长态势,说明中国在强调突发性水环境和大气环境事件监管的同时,还需加强固废污染事件及其它类型突发环境事件的监控与管理。 相似文献
103.
火灾下钢框架结构热-力耦合模拟与性能分析 总被引:1,自引:0,他引:1
基于"自然火灾安全概念"(NFSC)的基本思想,提出了火灾下钢结构热-力耦合模拟方法。利用ANSYS的参数化设计语言,建立了ANSYS软件与OZone火灾分析软件的数据接口,实现了火灾分析软件与大型有限元软件的耦合运用。基于火灾模拟软件OZone的分析结果,利用APDL语言,对钢框架结构进行了真实火灾场景下的热-力耦合模拟。研究表明:钢框架结构在真实火灾场景下,受非均匀变热流影响,结构内部将产生热应力梯度和应力牵移现象;同时钢框架中钢梁固接时,火灾初期变形较小,当达到某个关键时间点后将开始大的变形破坏,其主要原因是钢框架内部产生塑性铰,即钢梁由固接变为铰接,释放了对钢梁的约束。 相似文献
104.
105.
Soonchul Kwon Maohong Fan Herbert F. M. DaCost Armistead G. Russell 《环境科学学报(英文版)》2011,23(8):1233-1239
Olivine, one of the most abundant minerals existing in nature, is explored as a CO2 carbonation agent for direct carbonation of
CO2 in flue gas. Olivine based CO2 capture is thermodynamically favorable and can form a stable carbonate for long-term storage.
Experimental results have shown that water vapor plays an important role in improving CO2 carbonation rate and capacities. Other
operation conditions including reaction temperature, initial CO2 concentration, residence time corresponding to the flow rate of CO2
gas stream, and water vapor concentration also considerably affect the performance of the technology. 相似文献
106.
针对黄浦江源水砂滤出水,进行了紫外线单独作用的研究,同时对于紫外线与消毒剂联合消毒时消毒剂的投加方式对灭菌作用和消毒副产物的影响进行了研究。实验结果表明:当紫外线剂量达到42 mJ/cm2时出水水质已达到了生活饮用水卫生标准中对细菌总数和大肠杆菌数的要求,且在相同紫外剂量下,高强度时对细菌的灭活效果要好于低强度时的效果;先紫外消毒后消毒剂消毒对于微生物具有很好的杀灭作用,但是不能减少消毒副产物的产生;紫外线和消毒剂同时作用对于微生物的杀灭作用不佳,但是出水的消毒剂余量高,消毒副产物量少,这样有利于出水的安全稳定性;先消毒剂消毒再紫外消毒,发现对于消毒副产物没有多大的降解作用,更浪费了高的紫外剂量。 相似文献
107.
108.
Qiushi Shen Qilin Zhou Jingge Shang Shiguang Shao Lei Zhang Chengxin Fan 《环境科学学报(英文版)》2014,26(2):281-288
Organic matter-induced black blooms(hypoxia and an offensive odor) are a serious ecosystem disasters that have occurred in some large eutrophic shallow lakes in China. In this study, we investigated two separate black blooms that were induced by Potamogeton crispus in Lake Taihu, China. The main physical and chemical characteristics, including color- and odor-related substances, of the black blooms were analyzed. The black blooms were characterized by low dissolved oxygen concentration(close to 0 mg/L), low oxidation-reduction potential, and relatively low pH of overlying water. Notably higher Fe2+and∑S2-were found in the black-bloom waters than in waters not affected by black blooms. The black color of the water may be attributable to the high concentration of these elements, as black FeS was considered to be the main substance causing the black color of blooms in freshwater lakes. Volatile organic sulfur compounds, including dimethyl sulfide, dimethyl disulfide, and dimethyl trisulfide, were very abundant in the black-bloom waters. The massive anoxic degradation of dead Potamogeton crispus plants released dimethyl sulfide, dimethyl disulfide, and dimethyl trisulfide, which were the main odor-causing compounds in the black blooms. The black blooms also induced an increase in ammonium nitrogen and soluble reactive phosphorus levels in the overlying waters. This extreme phenomenon not only heavily influenced the original lake ecosystem but also greatly changed the cycling of Fe, S, and nutrients in the water column. 相似文献
109.
Mo-modified Pd/Al2O3catalysts were prepared by an impregnation method and tested for the catalytic combustion of benzene. The catalysts were characterized by N2 isothermal adsorption, X-ray diffraction(XRD), X-ray photoelectron spectroscopy(XPS), temperatureprogrammed desorption of NH3(NH3-TPD), H2temperature-programmed reduction(H2-TPR), and high-angle annular dark-field scanning transmission electron microscopy(HAADF-STEM). The results showed that the addition of Mo effectively improved the activity and stability of the Pd/Al2O3catalyst by increasing the dispersion of Pd active components, changing the partial oxidation state of palladium and increasing the oxygen species concentration on the surface of catalyst. In the case of the Pd-Mo/Al2O3catalyst,benzene conversion of 90% was obtained at temperatures as low as 190°C, which was 45°C lower than that for similar performance with the Pd/Al2O3catalyst. Moreover, the 1.0% Pd-5% Mo/Al2O3catalyst was more active than the 2.0% Pd/Al2O3catalyst. It was concluded that Pd and Mo have a synergistic effect in benzene catalytic combustion. 相似文献
110.
Ionic composition of submicron particles (PM1.0) during the long-lasting haze period in January 2013 in Wuhan, central China 总被引:1,自引:0,他引:1
Hairong Cheng Wei Gong Zuwu Wang Fan Zhang Xinming Wang Xiaopu Lv Jia Liu Xiaoxin Fu Gan Zhang 《环境科学学报(英文版)》2014,26(4):810-817
In January 2013, a long-lasting severe haze episode occurred in Northern and Central China; at its maximum, it covered a land area of approximately 1.4 million km2. In Wuhan, the largest city in Central China, this event was the most severe haze episode in the 21st century. Aerosol samples of submicron particles (PM1.0) were collected during the long-lasting haze episode at an urban site and a suburban site in Wuhan to investigate the ion characteristics of PM1.0 in this area. The mass concentrations of PM1.0 and its water-soluble inorganic ions (WSIIs) were almost at the same levels at two sites, which indicates that PM1.0 pollution occurs on a regional scale in Wuhan. WSIIs (Na+, NH4+, K+, Mg2+, Ca2+, Cl-, NO3- and SO42-) were the dominant chemical species and constituted up to 48.4% and 47.4% of PM1.0 at WD and TH, respectively. The concentrations of PM1.0 and WSIIs on haze days were approximately two times higher than on normal days. The ion balance calculations indicate that the particles were more acidic on haze days than on normal days. The results of the back trajectory analysis imply that the high concentrations of PM1.0 and its water-soluble inorganic ions may be caused by stagnant weather conditions in Wuhan. 相似文献