The application of granular and biological activated carbon columns in removal of organochlorine and organophosphorus pesticides in a water treatment plant

化学 甲草胺 杀虫剂 吸附 活性炭 环境化学 阿特拉津 氟乐灵 对硫磷 生物吸附 西马嗪 粉末活性炭处理 色谱法 有机化学 吸附 农学 生物
作者
Ali Akbar Tahmasebi,Alireza Salimi Beni,Abooalfazl Azhdarpoor,Zohre Moeini
出处
期刊:Journal of water process engineering [Elsevier BV]
卷期号:56: 104383-104383 被引量:29
标识
DOI:10.1016/j.jwpe.2023.104383
摘要

As it is not feasible to remove pesticides from water sources through conventional treatment methods, the utilization of supplementary treatment approaches, such as biological adsorption processes, becomes necessary. The present study investigated the performance of the biological and granular activated carbon in 18 organophosphate and organochlorine pesticides removal from raw water entering Shiraz city water treatment plant separately. The biosorption and granular activated carbon columns were placed after the ozonation unit. The results demonstrated that the activated carbon column effectively removed pesticides, including trans-chlorfenvinphos, fenthion, parathion, bromofos, and alachlor. Additionally, the biological activated carbon column exhibited a 100 % removal efficiency for trans-chlorfenvinphos, methyl parathion, malathion, bromofos, parathion, trifluralin, and alachlor. Biosorption efficiency in all pesticides was found to be greater than or almost equal to the removal rate by the adsorption process. As an example, the adsorption efficiencies for ethyl paraoxon, methyl parathion, and atrazine pesticides were 88.4 %, 67.38 %, and 64.67 %, respectively. Furthermore, the corresponding biosorption efficiencies were 94.45 %, 100 %, and 98.43 %, respectively. It can be concluded that there is a synergistic interaction between adsorption and biodegradation processes in biological activated carbon systems. Thus, the biological adsorption process can be employed as an efficient filter along with other conventional treatment processes in order to remove pesticides in urban water treatment plants.
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