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21.
黄磷尾气的综合利用及净化途径探讨 总被引:16,自引:0,他引:16
对黄磷尾气综合利用的途径和生产的技术进行了探讨,应用变温吸附和变压吸附分离技术处理黄磷尾气,净化效果较好,再生容易,各种杂质脱除率高. 相似文献
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《环境科学学报(英文版)》2023,35(4):396-407
Based on the experimental and theoretical methods, the NO selective catalytic oxidation process was proposed. The experimental results indicated that lattice oxygen was the active site for NO oxide over the -MnO2(110) surface. In the theoretical study, DFT (density functional theory) and periodic slab modeling were performed on an -MnO2(110) surface, and two possible NO oxidation mechanisms over the surface were proposed. The non-defect -MnO2(110) surface showed the highest stability, and the surface Os (the second layer oxygen atoms) position was the most active and stable site. O2 molecule enhanced the joint adsorption process of two NO molecules. The reaction process, including O2 dissociation and O=N-O-O-N=O formation, was calculated to carry out the NO catalytic oxidation mechanism over -MnO2(110). The results showed that NO oxidation over the -MnO2(110) surface exhibited the greatest possibility following the route of O=N-O-O-N=O formation. Meanwhile, the formation of O=N-O-O-N=O was the rate-determining step. 相似文献
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IntroductionChlorinatedorganiccompoundshavebeenusedonalargescaleinthechemical,petrochemical,andelectronicindustries.Inrecentyears ,worldwideattentionhasbeengiventotheenvironmentalandhealthimpactofthemasaclassofcontaminants .Severalareknowntocauseozonedepletion ,whileothersproduceadverseeffectsonthehumancentralnervoussystemandhavebeenlinkedtodiseasessuchascancer.Almostallofthechlorinatedaromaticcompoundsaretoxicandthermallystable .Oncereleasedintoenvironment,theywillaccumulateinthesurroundings… 相似文献
26.
The preparation of immobilizing-catalysts for decomposing ozone by using dipping method was studied. XRD, XPS and TEM were used to characterize the catalysts. The three kinds of catalysts were selected preferentially, and their catalytic activities were investigated. The results showed that the catalyst with activated carbon dipping acetate( active components are Mn:Cu = 3:2, active component proportion in catalyst is 15%, calcination temperature is 200℃ ) has the best catalytic activity for ozone decomposing. One gram of catalyst can decompose 17.6g ozone at initial ozone concentration of 2.5g/m^3 and the residence time in reactor of 0.1s. The experimental results also indicated that humidity of reaction system had negative effect on catalytic activity. 相似文献
27.
催化裂化废水连续萃取脱酚研究 总被引:2,自引:0,他引:2
选用焦化粗柴油为萃取剂,在转盘萃取搭连续试验装置中,对催化裂化含酚废水进行脱酚预处理。结果表明,用焦化粗柴油做萃取剂,进水pH值为80~90不加调节;油水比(体积比)17∶1~21∶1;转盘转数1100r/min,酚萃取脱除率达到85%以上。萃取后的粗柴油依据现有工艺而进行加氢精制,不需进行再生等后处理。整个萃取工艺简单易行,能满足预处理的要求 相似文献
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《环境科学学报(英文版)》2023,35(4):263-274
The cryptomelane-type manganese oxide (OMS-2)-supported Co (xCo/OMS-2; x = 5, 10, and 15 wt.%) catalysts were prepared via a pre-incorporation route. The as-prepared materials were used as catalysts for catalytic oxidation of toluene (2000 ppmV). Physical and chemical properties of the catalysts were measured using the X-ray diffraction (XRD), Fourier transform infrared spectroscopic (FT-IR), scanning electron microscopic (SEM), X-ray photoelectron spectroscopy (XPS), and hydrogen temperature-programmed reduction (H2-TPR) techniques. Among all of the catalysts, 10Co/OMS-2 performed the best, with the T90%, specific reaction rate at 245°C, and turnover frequency at 245°C (TOFCo) being 245°C, 1.23 × 10−3 moltoluene/(gcat·sec), and 11.58 × 10−3 sec−1 for toluene oxidation at a space velocity of 60,000 mL/(g·hr), respectively. The excellent catalytic performance of 10Co/OMS-2 were due to more oxygen vacancies, enhanced redox ability and oxygen mobility, and strong synergistic effect between Co species and OMS-2 support. Moreover, in the presence of poisoning gases CO2, SO2 or NH3, the activity of 10Co/OMS-2 decreased for the carbonate, sulfate and ammonia species covered the active sites and oxygen vacancies, respectively. After the activation treatment, the catalytic activity was partly recovered. The good low-temperature reducibility of 10Co/OMS-2 could also facilitate the redox process accompanied by the consecutive electron transfer between the adsorbed O2 and the cobalt or manganese ions. In the oxidation process of toluene, the benzoic and aldehydic intermediates were first generated, which were further oxidized to the benzoate intermediate that were eventually converted into H2O and CO2. 相似文献
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采用聚合羟基复合阳离子合成交联黏土A1-Ce-PILC,经SO4^2-改性后,以浸渍法制备了铜基交联黏土催化剂Cu/A1-Ce-PILC,并将其应用于C3H6选择性催化还原NO的反应,350℃时NO转化率达到最大值56%,700℃时下降至22%.为探究催化剂高温失活的原因,采用XPS、TPR、TGA、Py-IR和DSC对反应前后催化剂的物化性能进行了表征.结果表明,经过H2预处理活化后活性组分Cu物种以Cu^+形式存在,而高温反应后Cu物种除以Cu^+和Cu^2+ 2种形式存在外,还出现了少量CuO物种;高温反应过程中A1-Ce-PILC上结构羟基和SO4^2-流失导致催化剂表面酸性减弱;此外,还存在表面积炭覆盖了部分活性中心并堵塞了催化剂孔道的现象.这三者的共同影响促进了C3H6深度氧化,抑制了NO还原,从而导致催化剂的失活. 相似文献
30.