Intermediate products of carbendazim degradation in water from photolysis, TiO2 photocatalysis, and TiO2 sorption

IF 3 4区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
P. Chuaybamroong, N. S. Hamjinda, S. Supothina
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引用次数: 0

Abstract

This work used TiO2 photocatalysis under natural sunlight irradiation to degrade residual carbendazim in water by using Degussa P25 suspension, Degussa P25 coated filters, and titanium tetra-isopropoxide (TTiP) sol–gel coated filters. Their induced intermediate products were compared with the natural sunlight photolytic degradation and sorption process under white-light fluorescent lamps. The carbendazim degradation efficiencies from Degussa P25 in the forms of suspension and coated filters were 100% and 99.5%, respectively, with no sorption of carbendazim onto them. For sol–gel coated filters, similar efficiencies of 92.3–96.4% were rapidly obtained due to the synergistic effect from the sorption process. For their intermediate products, photolysis could induce benzimidazole isocyanate, 2-AB, 1,2-phenylenediamine, and monocarbomethoxy-guanidine in stable intensities along with their parent compound, carbendazim. With photocatalysis, carbendazim and benzimidazole isocyanate rapidly decreased within 30–60 min. There was a significant difference between 2 photocatalysts in producing 2-AB and monocarbomethoxy-guanidine that Degussa P25 induced much higher intensities than the sol–gel filters. Moreover, TiO2 photocatalytic degradation could induce more intensity of 1,2-phenylenediamine than photolytic degradation. With the sorption capability from sol–gel coated filters, the intensities of carbendazim, benzimidazole isocyanate, 2-AB, benzimidazole, and monocarbomethoxy-guanidine were significantly reduced from the aqueous solution.

多菌灵在水中降解的中间产物:光解、TiO2光催化和TiO2吸附
本课题采用德固赛P25悬浮液、德固赛P25包被过滤器和四异丙醇钛(TTiP)溶胶-凝胶包被过滤器,在自然阳光照射下,利用TiO2光催化降解水中残留的多菌灵。将其诱导的中间产物与自然日光在白光荧光灯下的光解降解和吸附过程进行了比较。在不吸附多菌灵的情况下,德固赛P25悬浮液和包被滤网对多菌灵的降解效率分别为100%和99.5%。对于溶胶-凝胶包覆过滤器,由于吸附过程的协同作用,可以迅速获得相似的92.3-96.4%的效率。对于它们的中间产物,光解反应可以稳定地诱导出苯并咪唑异氰酸酯、2-AB、1,2-苯二胺和单氧甲氧基胍及其母体化合物多菌灵。在光催化作用下,多菌肼和苯并咪唑异氰酸酯在30-60 min内迅速减少。两种光催化剂在产生2- ab和单甲氧基胍方面存在显著差异,德固赛P25诱导的强度远高于溶胶-凝胶过滤器。此外,TiO2光催化降解比光降解能诱导出更强的1,2-苯二胺。利用溶胶-凝胶包覆过滤器的吸附能力,多菌灵、苯并咪唑异氰酸酯、2-AB、苯并咪唑和单甲氧基胍在水溶液中的吸附强度显著降低。
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来源期刊
CiteScore
5.60
自引率
6.50%
发文量
806
审稿时长
10.8 months
期刊介绍: International Journal of Environmental Science and Technology (IJEST) is an international scholarly refereed research journal which aims to promote the theory and practice of environmental science and technology, innovation, engineering and management. A broad outline of the journal''s scope includes: peer reviewed original research articles, case and technical reports, reviews and analyses papers, short communications and notes to the editor, in interdisciplinary information on the practice and status of research in environmental science and technology, both natural and man made. The main aspects of research areas include, but are not exclusive to; environmental chemistry and biology, environments pollution control and abatement technology, transport and fate of pollutants in the environment, concentrations and dispersion of wastes in air, water, and soil, point and non-point sources pollution, heavy metals and organic compounds in the environment, atmospheric pollutants and trace gases, solid and hazardous waste management; soil biodegradation and bioremediation of contaminated sites; environmental impact assessment, industrial ecology, ecological and human risk assessment; improved energy management and auditing efficiency and environmental standards and criteria.
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