Erratum: PHOTO-FENTON REACTION OF DYES WITH Fe(III)-TREATED HYDROXYAPATITES AS HETEROGENEOUS CATALYSTS IN WATER

T. Moriguchi, S. Nakagawa
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引用次数: 4

Abstract

: Fe(III)-treated hydroxyapatites, HAP-300-Fe and HAP-400-Fe, were prepared from hydroxyapatites, HAP-300 (stoichiometric type) and HAP-400 (Ca-deficient type), respectively, and applied to photo-Fenton reaction of dyes as heterogeneous catalysts in comparison with other Fe catalysts such as Fe 2 O 3 , FePO 4 •2H 2 O, and FeOOH. Among the Fe catalysts, HAP-400-Fe revealed the highest consumption and mineralization in photo-Fenton reaction of alizarin red S (ARS), and also indicated good catalytic activity to other dyes, alizarin, neutral red, methyl red, methyl orange (MO), Congo red, and indigo carmine. Generation of hydroxyl radical •OH as an oxidation species from H 2 O 2 was observed in the all Fe catalysts by an indirect method using N, N-dimethylamino-4-nitrosoaniline, which is exclusively sensitive to •OH. In order to elucidate catalysis mechanism of Fe catalysts, kinetic investigation based on Michaelis-Menten theory was conducted in the reaction of ARS and MO. As a result, HAP-400-Fe indicated high ability of bearing many dye molecules but low degradative catalysis ability to H 2 O 2 , compared with Fe 2 O 3 . However, judging from high mineralization ability as well as repeating availability (5 times), HAP-400-Fe is considered as an excellent heterogeneous catalyst for photo-Fenton reaction.
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勘误:染料与铁(III)处理的羟基磷灰石作为非均相催化剂在水中的光fenton反应
以羟基磷灰石、HAP-300(化学量型)和HAP-400(缺钙型)为原料,分别制备了经Fe(III)处理的HAP-300-Fe和HAP-400-Fe,并与fe2o3、fepo4•2h2o和FeOOH等其他Fe催化剂作为非均相催化剂应用于染料的光fenton反应。Fe催化剂中,HAP-400-Fe在茜素红S (ARS)光fenton反应中消耗和矿化最高,对茜素、中性红、甲基红、甲基橙、刚果红、靛胭脂红等染料也有较好的催化活性。采用对•OH敏感的N, N-二甲胺-4-亚硝基苯胺间接法,在所有Fe催化剂中观察到羟基自由基•OH作为h2o2的氧化产物生成。为了阐明Fe催化剂的催化机理,基于Michaelis-Menten理论对ARS与MO的反应进行了动力学研究。结果表明,HAP-400-Fe与fe2o3相比,具有较高的承载多种染料分子的能力,但对h2o2的降解催化能力较低。然而,从高矿化能力和重复利用率(5次)来看,HAP-400-Fe被认为是一种优秀的光- fenton反应非均相催化剂。
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PREPARATION OF SILICON-SUBSTITUTED BETA-TRICALCIUM PHOSPHATE BY THE POLYMERIZED COMPLEX METHOD PHOTODEGRADATION OF DYES IN THE PRESENCE OF BISMUTH-TREATED APATITES AS HETEROGENEOUS CATALYSTS IN WATER KEY FACTORS FOR THE SEPARATION OF SILICON AND IRON DURING PHOSPHORUS RECOVERY FROM SLAG DISCHARGED FROM THE DOUBLE-SLAG REFINING PROCESS ION RELEASE BEHAVIOR OF SILICOPHOSPHATE GLASSES CONTAINING SIX-FOLD COORDINATED SILICON STRUCTURE PHOSPHORUS RECOVERY FROM SEWAGE-SLUDGE MOLTEN SLAG USING A COMBINATION OF ACID-DISSOLUTION, ALKALI-PRECIPITATION, AND ION-EXCHANGE
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