最近最好的2019中文,最好看免费中文,最好免费观看高清在线,中文字幕在线观看,中文字幕2019年最好看电视剧,最好看的免费观看高清视频,最好看的电影2019中文字幕,最好看的2019年中文视频,最好看的MV中文字幕国语电影,最好看的中文字幕国语电视剧,最好看的2018国语在线,最好看免费中文在线看电视剧网站

  設(shè)為主頁 加入收藏 English
 
 
 
 產(chǎn)品資料
 技術(shù)資料
 參考文獻(xiàn)
 
 

測量應(yīng)用案例-20200206

文件大?。?/strong>2.20
發(fā)布時(shí)間:2020-02-28
下載次數(shù):0

文獻(xiàn)名: Photocatalytic Degradation of 2,4-Dichlorophenoxyacetic Acid in Aqueous Solution Using Mn-doped ZnO/Graphene Nanocomposite Under LED Radiation

 

作者Roya Ebrahimi, Mahnaz Mohammadi, Afshin Maleki, Ali Jafari, Behzad Shahmoradi, Reza Rezaee, Mahdi Safari, Hiua Daraei, Omid Giahi, Kaan Yetilmezsoy & Shivaraju Harikaranahalli Puttaiah

Environmental Health Research Center, Research Institute for Health Development, Kurdistan University of Medical Sciences, Sanandaj, Iran

 

摘要: Chemical pesticides and herbicides are one of the most important pollutants in urban, agricultural and industrial wastewaters. Improper discharge of these compounds into water bodies’ cause harmful effects on both environment and human health. In this study, photocatalytic degradation of 2,4-Dichlorophenoxyacetic acid (usually called 2,4-D) was investigated using Mn-doped zinc oxide/graphene nanocomposite under light emitting diodes (LED) radiation. FTIR, AFM, DLS, Zeta potential, XRD, and SEM techniques were used to determine the characteristics of the nanocomposite. The effects of process-related parameters, such as the amount of nanocomposite, initial pH, 2,4-D concentrations, and contact time, on the photocatalytic degradation of the 2,4-D were studied. The results showed that the efficiency of photocatalytic degradation of 2,4-D decreased with an increase in the initial concentration of 2,4-D, while photocatalytic degradation efficiency increased by increasing the initial pH and the nano-catalyst content. The results showed that 66.2% of 2,4-D could be photocatalytically degraded using Mn-doped zinc oxide/graphene nanocomposite under LED radiation at optimal conditions (pH 5, initial Zn concentration of 10 mg L−1, nano-composite concentration of 2 g L−1, contact time of 120 min). Findings of this experimental study concluded that photocatalysis using Mn-doped zinc oxide/graphene nanocomposite under LED radiation could efficiently remove 2,4-D herbicide from aqueous media.

下載地址下載地址1
 
上海市普陀區(qū)嵐皋路567號(hào)1108-26室 電話:021-62665073 400-718-7758 傳真:021-62761957 聯(lián)系郵箱:info@bicchina.com
美國布魯克海文儀器公司上海代表處 版權(quán)所有  管理登陸 ICP備案號(hào):滬ICP備19006074號(hào)-2 技術(shù)支持:化工儀器網(wǎng)