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A mesoporous biochar from bio-invasion alligator weed for adsorption of rhodamine B from aqueous solution

机译:来自生物入侵鳄鱼杂草的中孔生物炭,用于从水溶液中吸附罗丹明B

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摘要

Alligator weed, a malignant invasive weed worldwide, was used to prepare a low-cost and effective alligator weed biochar (AWBC) that adsorbs rhodamine B from aqueous solution. Scanning electron microscopy revealed that AWBC has a rough surface with a highly porous structure, a high surface area (736.3 m(2)/g) and an abundant array of micropores and mesopores. The average pore size was 4.05 nm, which is predicted to improve the activated carbon adsorption performance of macromolecules and small molecule particles. Phosphorus-containing groups, C-H, C-O, and C=C moieties were present on the AWBC surface. Kinetic data obtained from three pollutants that were adsorbed by AWBC fit with a pseudo-second-order kinetic model (R-2 0.99), and this was considered as the rate-limiting factor for adsorption. The batch equilibrium data fitted well to the Langmuir isotherm (R-2 0.99), revealing monolayer adsorption and an adsorption capacity of 286 mg/g (R-2 0.99). Negative Delta G values confirmed the spontaneity of the adsorption process, and positive Delta H and Delta S values indicated endothermic and irreversible adsorption.
机译:鳄鱼杂草是一种全球性的恶性入侵杂草,被用于制备低成本和有效的鳄鱼杂草生物炭(AWBC),该生物炭从水溶液中吸附若丹明B。扫描电子显微镜显示,AWBC的表面粗糙,具有高度多孔的结构,高表面积(736.3 m(2)/ g)和大量微孔和中孔。平均孔径为4.05 nm,这有望改善大分子和小分子颗粒的活性炭吸附性能。含磷基团C-H,C-O和C = C部分存在于AWBC表面上。由AWBC吸附的三种污染物获得的动力学数据符合拟二级动力学模型(R-2> 0.99),这被认为是吸附的限速因子。批料平衡数据非常适合Langmuir等温线(R-2> 0.99),显示出单层吸附和286 mg / g的吸附容量(R-2> 0.99)。负Delta G值确认了吸附过程的自发性,正Delta H和Delta S值表示吸热和不可逆吸附。

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