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Fabrication, performance and mechanism of MgO meso-/macroporous nanostructures for simultaneous removal of As(III) and F in a groundwater system

机译:MgO中/大型纳米结构的制备,性能和机理,可同时去除地下水系统中的As(III)和F

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摘要

The coexistence of arsenic and fluoride in groundwater has attracted extensive attention worldwide, and it is of crucial importance to efficiently remove them. In this study, hierarchically meso-/macroporous MgO using nanosheets as building blocks and with pore size distribution in the range of 10 to 150 nm was synthesized. The maximum adsorption capacities for As(III) and F were found to be about 540.9 mg g~(-1) (7.22 mmol g~(-1)) and 290.67 mg g~(-1) (15.30 mmol g~(-1)), respectively. Research indicated that a broad and multimodal pore size distribution provided suitable channels for ion diffusion, which were conducive to the proximity of contaminants to the internal surfaces of the adsorbent. Thermodynamic adsorption models demonstrated that two types of active sites coexisted on the MgO surface. The adsorption mechanisms of As(III) and F were proposed to include surface complexation as well as exchanges with hydroxyl and carbonate groups. Moreover, the removal rates of As(III) and F for a co-contaminated groundwater sample were determined to be 98.9% and 95%, respectively.
机译:地下水中砷和氟化物的共存引起了全世界的广泛关注,有效去除它们至关重要。在这项研究中,使用纳米片作为构造单元并在10到150 nm范围内的孔径分布合成了介孔/大孔MgO。对As(III)和F的最大吸附容量约为540.9 mg g〜(-1)(7.22 mmol g〜(-1))和290.67 mg g〜(-1)(15.30 mmol g〜(-) 1))。研究表明,宽广的多峰孔径分布为离子扩散提供了合适的通道,这有助于污染物接近吸附剂的内表面。热力学吸附模型表明在MgO表面上共存在两种类型的活性位。有人提出As(III)和F的吸附机理包括表面络合以及与羟基和碳酸根的交换。此外,确定被共同污染的地下水样品中As(III)和F的去除率分别为98.9%和95%。

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