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染料中间体废水的催化臭氧化预处理 被引量:12
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作者 张彭义 祝万鹏 +1 位作者 余刚 蒋展鹏 《环境科学》 CAS CSSCI CSCD 北大核心 1996年第4期14-17,共4页
自制了2种高活性的催化剂Mn-02和Fe-Ni-Urea,并对典型染料中间体废水──吐氏酸废水进行金属催化臭氧化预处理.对初始COD浓度约为1500mg/L的废水,当臭氧投加量为0.82g/L时,COD去除卒大于50... 自制了2种高活性的催化剂Mn-02和Fe-Ni-Urea,并对典型染料中间体废水──吐氏酸废水进行金属催化臭氧化预处理.对初始COD浓度约为1500mg/L的废水,当臭氧投加量为0.82g/L时,COD去除卒大于50%;其臭氧化指数(OI)分别为豆.44和1.07,而相应的空白则为1.90.色质联用和离子色谱分析表明吐氏酸的金属催化臭氧化产物为:邻苯二甲酸、乙二酸、硝酸根、硫酸根,提出了吐氏酸的臭氧化途径;理论分析表明,吐氏酸经金属催化臭氧化后,可生化性大大改善. 展开更多
关键词 吐氏酸废水 催化 金属催化臭氧化 染料
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化学工业三废处理与综合利用
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《环境工程技术学报》 CAS 1997年第3期66-68,共3页
关键词 综合利用 三废处理 色度去除率 学工业 环境科学 环境工程 染料中间体废水 吐氏酸废水 生态环境研究中心 金属催化臭氧化
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Promotional effect of spherical alumina loading with manganese-based bimetallic oxides on nitric-oxide deep oxidation by ozone 被引量:7
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作者 林法伟 王智化 +4 位作者 邵嘉铭 袁定琨 何勇 朱燕群 岑可法 《Chinese Journal of Catalysis》 CSCD 北大核心 2017年第7期1270-1280,共11页
Nitric oxide (NO) deep oxidation to dinitrogen pentoxide (N2O5) by ozone together with wet scrub-bing has become a promising technology for nitrogen-oxide (NOx) removal in industrial boilers. Catalysts wer... Nitric oxide (NO) deep oxidation to dinitrogen pentoxide (N2O5) by ozone together with wet scrub-bing has become a promising technology for nitrogen-oxide (NOx) removal in industrial boilers. Catalysts were introduced to enhance the N2O5 formation rate with less ozone injection and leakage. A series of monometallic catalysts (manganese, cobalt, cerium, iron, copper, and chromium) as pre-pared by the sol-gel method were tested. The manganese oxides achieved an almost 80% conver-sion efficiency at an ozone (O3)/NO molar ratio of 2.0 in 0.12 s. The crystalline structure and porous parameters were determined. The thermodynamic reaction threshold of NO conversion to N2O5 is oxidation with an O3/NO molar ratio of 1.5. Spherical alumina was selected as the support to achieve the threshold, which was believed to improve the catalytic activity by increasing the surface area and the gas-solid contact time. Based on the manganese oxides, cerium, iron, chromium, cop-per, and cobalt were introduced as promoters. Cerium and iron improved the deep-oxidation effi-ciency compared with manganese/spherical alumina, with less than 50 mg/m3 of outlet NO + nitro-gen oxide, and less than 25 mg/m3 of residual ozone at an O3/NO molar ratio of 1.5. The other three metal oxides inhibited catalytic activity. X-ray diffraction, nitrogen adsorption, hydrogen tempera-ture-programmed reduction, and X-ray photoelectron spectroscopy results indicate that the cata-lytic activity is affected by the synergistic action of NOx oxidation and ozone decomposition. 展开更多
关键词 Nitric oxide Deep oxidation Catalyst OZONE Transition metal oxide
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