首页> 外文期刊>The Science of the Total Environment >New insight into adsorption and co-adsorption of arsenic and tetracycline using a Y-immobilized graphene oxide-alginate hydrogel: Adsorption behaviours and mechanisms
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New insight into adsorption and co-adsorption of arsenic and tetracycline using a Y-immobilized graphene oxide-alginate hydrogel: Adsorption behaviours and mechanisms

机译:Y固定化氧化石墨烯-藻酸盐水凝胶对砷和四环素的吸附和共吸附的新见解:吸附行为和机理

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Heavy metals (e.g., arsenic (As)) and tetracycline (TC) usually coexist in wastewater from livestock farm, whereas the co-adsorption behaviours and mechanisms of As(V) and TC were not well-known. This study investigated the adsorption and co-adsorption of As(V) and TC by a novel yttrium-immobilized-graphene oxide-alginate hydrogel (Y-GO-SA) to explore the adsorption behaviours and mechanisms. The adsorption of As(V) and TC was pH-dependent. The maximum adsorption capacities under the studied concentrations were 273.39 mg/g for As(V), and 477.9 mg/g for TC, respectively, which are much higher than many other reported adsorbents. Furthermore, As(V) adsorption was due to ion exchange between hydroxyl groups and H2AsO42 groups and H-bonds formed with O-containing groups on Y-GO-SA, and the adsorption of TC by Y-GO-SA was mainly ascribed to electrostatic interaction, H-bonds, pi - pi EDA interaction, n-p EDA interaction, and cation-bonding bridge effects. The co-adsorption of As(V) and TC in binary system indicated that the presence of TC obviously suppressed the adsorption of As(V) due to the competition for active sites, whereas the effect of presence of As(V) on adsorption of TC can be negligible due to the balance contributions from its contrary effects, i.e. enhancement (anion-p interaction) and reduction (competition for Y ions) in TC adsorption. Finally, the hydrogels performed well in the treatment of livestock farm waste water. It can be anticipated that the prepared 3D hydrogel can be used as a powerful adsorbent in the practical application of waste water treatment, owing to its easy separation, high adsorption and good reusability. (C) 2019 Elsevier B.V. All rights reserved.
机译:畜禽养殖场废水中通常同时存在重金属(例如砷(As)和四环素(TC)),而砷(V)和TC的共吸附行为及其机理尚不为人所知。这项研究调查了新型的钇固定的氧化石墨烯-藻酸盐水凝胶(Y-GO-SA)对As(V)和TC的吸附和共吸附,以探讨其吸附行为和机理。 As(V)和TC的吸附是pH依赖性的。在研究浓度下,As(V)的最大吸附容量分别为273.39 mg / g和TC的最大吸附容量为477.9 mg / g,远高于许多其他已报道的吸附剂。此外,As(V)的吸附是由于羟基和H2AsO42之间的离子交换以及Y-GO-SA上由含O的基团形成的H键所致,Y-GO-SA对TC的吸附主要归因于静电相互作用,氢键,pi-pi EDA相互作用,np EDA相互作用和阳离子键桥效应。二元体系中As(V)和TC的共吸附表明,TC的存在由于对活性位的竞争而明显抑制了As(V)的吸附,而As(V)的存在对As(V)的吸附的影响TC可以忽略不计,原因是它的相反作用(即TC吸附的增强(阴离子-p相互作用)和还原(Y离子的竞争))产生的平衡贡献。最后,水凝胶在畜牧场废水的处理中表现良好。可以预料,制备的3D水凝胶由于其易于分离,高吸附性和良好的可重复使用性,可以在废水处理的实际应用中用作强力吸附剂。 (C)2019 Elsevier B.V.保留所有权利。

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