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41.
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
42.
4—氯苯甲酸钠的光催化氧化降解及其影响因素 总被引:8,自引:0,他引:8
本试验采用P-25TiO2,光催化剂,对4-氯苯甲酸钠的光催化氧化降解及污染物初始浓度,催化剂投加量和入射光强等因素的影响进行了研究,研究发现污染物初始降解速率与其初始浓度的关系遵循Langmuir-Hinshelwood模式,其中半饱和浓度常数Ks不仅是催化剂和污染物种类的函数,而且也是入射光强的函数,催化剂投加量存在一限值,当低于此限值时,污染物降解速率由于催化剂浓度的不足受到影响而下降,当高于此限值时,污染物降解速率受催化剂投加量的影响变小,在本试验4-CBA-Na浓度为0.15-0.6mmol/L时该催化剂限值浓度大约为0.4g/L,在入射光强为1-7mW/cm^2和催化剂浓度为0.4g/L下,污染物降解速率与光强成0.67次幂关系,经估算其量子效率为6.3%。 相似文献
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酞酸酯对人与环境的危害 总被引:32,自引:1,他引:32
酞酸酯是一种增塑剂,随着时间的推移,可由塑料中转移到外环境,现已成为地球上最为广泛存在的环境污染物。该文较系统地介绍了酞酸酯的理化性质,毒性和致癌作用,以及其对环境的影响,环境行为,动物的吸收,分布、代谢和排泄等等,最后还对酞酸酯的有关毒性评价作了部分介绍。 相似文献
46.
Decomposition mass loss and pyrolysis products analyses of particles sampled at various locations along the tailpipe of a Euro-IV diesel engine were performed using a thermogravimetry in conjunction with Fourier transformation infrared spectrometry-mass spectrum. Diesel particles were collected at the same location with and without diesel oxidation catalyst (DOC) mounted on the test engine separately. The three poles in thermal gravity-differential thermal gravity images suggested that the decomposition process of diesel particles could be divided into three stages which correspond to the decompositions of lower boiling substances, higher boiling substances and soot respectively. It is noticed that no matter whether DOC was mounted or not, the further the particles were sampled away from the engine block, the lower the peak temperatures and the heavier the mass losses within the first two stages, which indicated that the soluble organic fraction in the particle samples increased and therefore lowering the activation energy of thermal decomposition. Hydroxyl, ammonia, CxHy fragments, benzene, toluene, and phenol were found to be the primary products of particle decomposition, which didn't change with the location of particle sample point. The employment of DOC increased the activation energy for particle oxidation and resulted in a higher peak temperature and lower mass loss within the first-stage. Moreover, the CO stretching bands of aldehyde and ketone at 1771 cm?1 was only detected without a DOC, while the NO2 peak at 1634 cm?1 was solely noticed with the presence of DOC. Compared to the first-stage pyrolysis products, more polycyclic aromatic hydrocarbons and less CxHy fragments were seen in the second-stage. 相似文献
47.
《环境科学学报(英文版)》2023,35(4):387-395
This study examined the effectiveness for degradation of hydrophobic (HPO), transphilic (TPI) and hydrophilic (HPI) fractions of natural organic matter (NOM) during UV/H2O2, UV/TiO2 and UV/K2S2O8 (UV/PS) advanced oxidation processes (AOPs). The changing characteristics of NOM were evaluated by dissolved organic carbon (DOC), the specific UV absorbance (SUVA), trihalomethanes formation potential (THMFP), organic halogen adsorbable on activated carbon formation potential (AOXFP) and parallel factor analysis of excitation–emission matrices (PARAFAC-EEMs). In the three UV-based AOPs, HPI fraction with low molecular weight and aromaticity was more likely to degradate than HPO and TPI, and the removal efficiency of SUVA for HPO was much higher than TPI and HPI fraction. In terms of the specific THMFP of HPO, TPI and HPI, a reduction was achieved in the UV/H2O2 process, and the higest removal rate even reached to 83%. UV/TiO2 and UV/PS processes can only decrease the specific THMFP of HPI. The specific AOXFP of HPO, TPI and HPI fractions were all able to be degraded by the three UV-based AOPs, and HPO content is more susceptible to decompose than TPI and HPI content. UV/H2O2 was found to be the most effective treatment for the removal of THMFP and AOXFP under given conditions. C1 (microbial or marine derived humic-like substances), C2 (terrestrially derived humic-like substances) and C3 (tryptophan-like proteins) fluorescent components of HPO fraction were fairly labile across the UV-based AOPs treatment. C3 of each fraction of NOM was the most resistant to degrade upon the UV-based AOPs. Results from this study may provide the prediction about the consequence of UV-based AOPs for the degradation of different fractions of NOM with varied characteristics. 相似文献
48.
《环境科学学报(英文版)》2023,35(3):340-348
In recent years, near surface ozone pollution, has attracted more and more attention, which necessitates the development of high efficient and low cost catalysts. In this work, CuO/Cu2O heterojunctioned catalyst is fabricated by heating Cu2O at high temperature, and is adopted as ozone decomposition catalyst. The results show that after Cu2O is heated at 180°C conversion of ozone increases from 75.2% to 89.3% at mass space velocity 1,920,000 cm3/(g·hr) in dry air with 1000 ppmV ozone, which indicates that this heterojunction catalyst is one of the most efficient catalysts reported at present. Catalysts are characterized by electron paramagnetic resonance spectroscopy and ultraviolet photoelectron spectroscopy, which confirmed that the heterojunction promotes the electron transfer in the catalytic process and creates more defects and oxygen vacancies in the CuO/Cu2O interfaces. This procedure of manufacturing heterostructures would also be applicable to other metal oxide catalysts, and it is expected to be more widely applied to the synthesis of high-efficiency heterostructured catalysts in the future. 相似文献
49.
PW—W膜分离式活性污泥法处理中小规模高浓度有机废水 总被引:3,自引:0,他引:3
阐述PW-W膜分离式活性污泥法处理高浓度有机废水的原理、工艺流程及特点。处理系统集生化处理功能和固液分离于一体,对高浓度有机废水的处理取得了良好的效果,且剩余污泥量少,处理水质稳定,维护管理方便,运行费用低。 相似文献
50.