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Remediation of α-methylnaphthalene-contaminated sediments using peroxy acid

机译:过氧酸修复α-甲基萘污染的沉积物

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Laboratory experiments have been conducted to elucidate the degradation of α-methylnaphthalcne in lake sediments using an advanced oxidation process (AOP) employing peroxy-acids as oxidizing agents. Abiotic degradation of α-methy(naphthalene was observed in sediment samples exposed to a 1:1:1 v/v/v mixture of water/organic acid/hydrogen peroxide solution. Sediment samples were collected from Lake Macatawa (Holland, MI) and ranged in total organic carbon content from 2.1% (sandy sediment sample Ⅲ) to 12.8% (silty-clay sediment sample Ⅰ) and surface area, which ranged from 3.2m~2/g (sandy sediment sample Ⅲ) to 22.0m~2/g (silty-clay sediment sample Ⅰ). Analytical measurements performed by gas chromatography revealed varied rates of degradation, depending on the type of acid and the characteristics of the sediment sample. Within 24 h, α-methylnaphthalene was reduced to 70% and 100% of its original concentration when propionic acid and acetic acid were used as the organic acids, respectively. The formation of products was explored using a gas chromatograph equipped with a mass spectrometer and indicated mainly the formation of lower molecular weight compounds, such as alkyl chains. This AOP method of PAH degradation in sediment/liquid slurry was fast acting and products were most likely biodegradable.
机译:已经进行了实验室实验,以阐明采用过氧酸作为氧化剂的高级氧化工艺(AOP)在湖泊沉积物中的α-甲基萘的降解。在暴露于水/有机酸/过氧化氢溶液的1:1:1 v / v / v混合物的沉积物样品中观察到α-甲基萘的非生物降解,沉淀物样品来自Macatawa湖(荷兰密歇根州)和总有机碳含量范围从2.1%(桑迪沉积物样本Ⅲ)到12.8%(粉质粘土沉积物样本Ⅰ)和表面积,范围从3.2m〜2 / g(桑迪沉积物样本Ⅲ)到22.0m〜2 / g(粉质粘土沉积物样品Ⅰ)。气相色谱分析表明,降解速率因酸的种类和沉积物样品的特性而异,在24小时内,α-甲基萘还原为70%,当分别使用丙酸和乙酸作为有机酸时,其浓度为原始浓度的100%,使用配有质谱仪的气相色谱仪探索产物的形成,主要表明形成了低分子量化合物,例如烷基链条。沉积物/液体浆液中PAH降解的AOP方法作用快,产品极有可能被生物降解。

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