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High adsorption performance for As(Ⅲ) and As(V) onto novel aluminum-enriched biochar derived from abandoned Tetra Paks

机译:废弃的利乐包衍生的新型富铝生物炭对砷(Ⅲ)和砷(Ⅴ)的高吸附性能

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In order to develop promising sorbents for value-added application of solid wastes, low-cost aluminum-enriched biochar was prepared from abandoned Tetra Pak used to hold milks, a paper-polyethylence-Al foil laminated package box, after acid pretreatment and subsequent slow pyrolysis under an oxygen-limited environment at 600 °C. The basic physicochemical properties of the resultant biochar were characterized and the sorption performance of aqueous As(III) and As(V) was investigated via batch and column sorption experiments. Carbon (49.1%), Ca (7.41%) and Al (13.5%) were the most abundant elements in the resultant biochar; and the specific surface area and the pH value at the point of zero charge (pHPZC) were 174 m2 g−1and 9.3, respectively. Batch sorption showed excellent sorption performance for both As(III) (24.2 mg g−1) and As(V) (33.2 mg g−1) and experimental data were fitted well with Langmuir model for the sorption isotherms and pseudo-second order kinetic model for the sorption kinetics. The residual concentrations of As(V) after sorption were below the limited value of arsenic in WHOGuidelines for Drinking water Quality(0.01 mg L−1) even if coexistence of PO43−. Column sorption confirmed the high sorption performance for As(III) and As(V). So the slow pyrolysis of abandoned Tetra Paks as low-cost and value-added sorbents is a sustainable strategy for solid waste disposal and wastewater treatment.
机译:为了开发用于固体废物增值应用的有前景的吸附剂,经过酸预处理和随后的慢速处理,从废弃的用来盛装牛奶的利乐,纸-聚乙烯-铝箔层压包装盒制备了低成本的富含铝的生物炭。在600 C的氧气受限环境下进行热解。表征了所得生物炭的基本理化性质,并通过分批和柱吸附实验研究了As(III)和As(V)水溶液的吸附性能。碳(49.1%),钙(7.41%)和铝(13.5%)是所得生物炭中最丰富的元素。零电荷(pHPZC)时的比表面积和pH值分别为174 m2 g-1和9.3。分批吸附对As(III)(24.2 mg g-1)和As(V)(33.2 mg g-1)均表现出优异的吸附性能,并且实验数据与Langmuir模型拟合得很好,用于吸附等温线和拟二级动力学吸附动力学模型。即使PO43-共存,吸附后As(V)的残留浓度仍低于WHO《饮用水质量准则》中砷的极限值(0.01 mg L-1)。柱吸附证实了As(III)和As(V)的高吸附性能。因此,废弃的利乐包装作为低成本和高附加值吸附剂的缓慢热解是固体废物处理和废水处理的可持续策略。

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