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中试规模下太阳能光催化降解某些有害水溶性农药

Solar photocatalytic degradation of some hazardous water-soluble pesticides at pilot-plant scale.

作者信息

Oller I, Gernjak W, Maldonado M I, Pérez-Estrada L A, Sánchez-Pérez J A, Malato S

机构信息

Plataforma Solar de Almería (CIEMAT), Carretera Senés, Km 4, 04200 Tabernas, Almería, Spain.

出版信息

J Hazard Mater. 2006 Dec 1;138(3):507-17. doi: 10.1016/j.jhazmat.2006.05.075. Epub 2006 Jun 2.

Abstract

The technical feasibility and performance of photocatalytic degradation of six water-soluble pesticides (cymoxanil, methomyl, oxamyl, dimethoate, pyrimethanil and telone) have been studied at pilot-plant scale in two well-defined systems which are of special interest because natural solar UV light can be used: heterogeneous photocatalysis with titanium dioxide and homogeneous photocatalysis by photo-Fenton. TiO(2) photocatalysis tests were performed in a 35L solar pilot plant with three Compound Parabolic Collectors (CPCs) under natural illumination and a 75L solar pilot plant with four CPC units was used for homogeneous photocatalysis tests. The initial pesticide concentration studied was 50 mg L(-1) and the catalyst concentrations employed were 200 mg L(-1) of TiO(2) and 20 mg L(-1) of iron. Both toxicity (Vibrio fischeri, Biofix) and biodegradability (Zahn-Wellens test) of the initial pesticide solutions were also measured. Total disappearance of the parent compounds and nearly complete mineralization were attained with all pesticides tested. Treatment time, hydrogen peroxide consumption and release of heteroatoms are discussed.

摘要

在中试规模下,对六种水溶性农药(霜脲氰、灭多威、草肟威、乐果、嘧霉胺和威百亩)进行光催化降解的技术可行性和性能研究,研究在两个明确的系统中进行,这两个系统特别值得关注,因为可以利用自然太阳光紫外线:使用二氧化钛的多相光催化和光芬顿的均相光催化。二氧化钛光催化试验在一个配备三个复合抛物面聚光器(CPC)的35升太阳能中试装置中在自然光照下进行,一个配备四个CPC单元的75升太阳能中试装置用于均相光催化试验。研究的初始农药浓度为50毫克/升,使用的催化剂浓度为200毫克/升的二氧化钛和20毫克/升的铁。还测定了初始农药溶液的毒性(费氏弧菌,Biofix)和生物降解性(赞恩-韦伦斯试验)。所有测试农药的母体化合物均完全消失,几乎完全矿化。讨论了处理时间、过氧化氢消耗和杂原子释放情况。

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