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首页> 外文期刊>Angewandte Chemie >Hydrophobic-Force-Driven Removal of Organic Compounds from Water by Reduced Graphene Oxides Generated in Agarose Hydrogels
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Hydrophobic-Force-Driven Removal of Organic Compounds from Water by Reduced Graphene Oxides Generated in Agarose Hydrogels

机译:通过在琼脂糖水凝胶中产生的石墨烯氧化物中产生的疏水力驱动从水中除去有机化合物

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摘要

Hydrophobic reduced graphene oxides (rGOs) were generated in agarose hydrogel beads (AgarBs) by NaBH4 reduction of graphene oxides (GOs) initially loaded in the AgarBs. The resulting rGO-loaded AgarBs were able to effectively adsorb organic compounds in water as a result of the attractive hydrophobic force between the rGOs in the AgarBs and the organic compounds dissolved in aqueous media. The adsorption capacity of the rGOs was fairly high even toward reasonably water-soluble organic compounds such as rhodamineB (321.7mgg(-1)) and aspirin (196.4mgg(-1)). Yet they exhibited salinity-enhanced adsorption capacity and preferential adsorption of organic compounds with lower solubility in water. Such peculiar adsorption behavior highlights the exciting possibility for adopting an adsorption strategy, driven by hydrophobic forces, in practical wastewater treatment processes.
机译:通过NaBH4的琼脂糖水凝胶珠(Agarbs)在最初加载在琼脂酮中的石墨烯氧化物(GOS)中的琼脂糖水凝胶珠粒(Agarbs)中产生疏水性还原石墨烯氧化物(RGOS)。 所得的Rgo负载的伞虫能够在琼脂斯中的RGOS与溶解在含水介质中的有机化合物之间的有吸引力的疏水力,在水中有效地吸附有机化合物。 甚至朝向合理水溶性有机化合物如罗丹明碱(321.7mgg(-1))和阿司匹林(196.4mgg(-1)),RGOS的吸附容量也相当高。 然而,它们表现出盐度增强的吸附能力和优先吸附水中溶解度较低的有机化合物。 这种特殊的吸附行为突出了采用疏水力驱动的吸附策略的激动人心的可能性,在实际废水处理过程中。

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