激进的
化学
双酚A
辐照
光化学
动力学
腐植酸
光老化
闪光光解
瓶子
反应速率常数
浸出(土壤学)
核化学
有机化学
工程类
物理
生物
土壤科学
土壤水分
环氧树脂
核物理学
机械工程
量子力学
遗传学
肥料
环境科学
作者
Yang Li,Yuan Liu,Shengdong Liu,Lilan Zhang,Heng Shao,Xinjie Wang,Wen Zhang
标识
DOI:10.1021/acs.est.1c05812
摘要
This study evaluated the release of bisphenol S (BPS) from polyethersulfone (PES) and polyphenylsulfone microplastics (MPs) derived from baby bottles under UV irradiation. Released BPS fluctuates over time because it undergoes photolysis under UV254 irradiation. Under UV365 irradiation, the highest released concentration at 50 °C was 1.7 and 3.2 times that at 35 and 25 °C, respectively, as the activation energy of the photochemical reactions responsible for MP decay was reduced at high temperatures. Low concentrations of humic acid (HA, ≤10 mg·L–1) promote BPS release because HA acts as a photosensitizer. A high concentration of HA (10∼50 mg·L–1) decreases the BPS release because HA shields MPs from light and scavenges reactive radicals that are produced via photochemical reactions. For example, under UV irradiation, hydroxyl radicals (•OH) attack results in the breakage of ether bonds and the formation of phenyl radicals (Ph•) and phenoxy radicals (Ph–O•).The•OH addition and hydrogen extractions further produce BPS from the decayed MPs. A leaching kinetics model was developed and calibrated by the experimental data. The calibrated model predicts the equilibrium level of BPS release from MPs that varies with the surface coverage density of BPS and leaching rate constants. This study provides groundwork that deepens our understanding of environmental aging and the chemical release of MPs.
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