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Photocatalyzed Degradation of Agrochemicals in Water

Photocatalyzed Degradation of Agrochemicals in Water
光催化降解水中农药
批准号:
07680599
负责人:
HASEGAWA Kiyoshi
金额:
$0.19万
依托单位:
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (C)
财政年份:
1995
资助国家:
日本
项目状态:
已结题
起止时间:
1995 至 1996

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中文摘要
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英文摘要
1. The phtocatalyzed degradation of agrochemicals (simazine, benthiocarb, thiram, diazinon, fenitrothion, isoprothiolane, propyzamide, dichlorvos, fenobucarb, and iprobenfos) has been investigated in an aqueous suspension of TiO_2 using a ultra high-pressure mercury lamp (lambda>290nm and 365nm) at 35゚C.2. The degradation is much faster than direct photolysis without TiO_2 and depends on the first order kinetics to the concentrations of the agrochemicals. 3. The degradation depends on the structures of the agrochemicals. The half-lives of the agrochemicals ranged from 4.11-11.9min (lambda>290nm) and 5.0-24.3min (lambda=365nm). Quantum yields were estimated to be 0.0086-0.032min (lambda=365nm). The agrpchemicals were ultimately mineralized to form Cl^-, SO_4^<2->, NO_3^-.4.Several factors affecting the degradation were examined in details with iprobenfos. 5. Optimum concentration of TiO_2 was found to be 0.5-1.0mg/ml. The initial reaction rate (r_0) is proportional to the photons absobed by TiO_2 (I_a) and quantum yield (PHI). r_0 follows the langmuir-llinshelwood relationship with the initial concentration (C_0) of iprobenfos and the partial pressure of O_2 in the bubbling gas (pO_2). The action of adsorbed O_2 (O_2(ads)) is discussed. We propose the empirical rate of the photocatayzed degradation of iprobenfos as follows : r_0=I_aPHIpO_2, _<ads>(iprobenfos)_<ads>. Fair agreement of r_0 was found between experiment and calculation. 6. Based on the GC/MS analysis of the degradation products, degradation pathways were examined. One pathway is OH attack on alpha, beta, and gamma bond of iprobenfos, another pathways is OH attack on the benzene ring of iprobenfos followed by the alpha cleavage. It was found that the photocatalyzed degradation could be applicable to the degradation of water contaminants.
期刊论文(2)
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会议论文
Kiyoshi Hasegawa, Takaki Kanbara, and Shigehiro Kagaya: "Photocatalyzed Degradation of Agrochemicals in TiO_2 Aqueous Suspensions" Denki Kagaku. Vol.66, No.6(in press).
Kiyoshi Hasekawa、Takaki Kanbara 和 Shigehiro Kagaya:“TiO_2 水悬浮液中农用化学品的光催化降解”Denki Kagaku。
DOI: --
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期刊:
影响因子: --
作者: []
通讯作者:
長谷川淳: "排水中の農薬の光触媒分解" 富山大学工学部紀要. 49巻. (1997)
长谷川淳:“废水中农药的光催化分解”富山大学工学部通报第49卷。(1997年)
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  • 批准号:
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  • 项目类别:
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  • 财政年份:
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  • 负责人:
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海外基金