A'/> Iron-oxide modified sericite alginate beads: A sustainable adsorbent for the removal of As(V) and Pb(II) from aqueous solutions
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Iron-oxide modified sericite alginate beads: A sustainable adsorbent for the removal of As(V) and Pb(II) from aqueous solutions

机译:铁氧化铁改性的藻酸盐珠粒:可持续吸附剂,用于从水溶液中除去AS(V)和Pb(II)

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Abstract Sericite powder was used as a substrate to immobilize the iron-oxide particles and it was encapsulated into beads using Na-alginate and Fe(III) ions by a simple cross-linking method to obtain iron-oxide modified sericite alginate beads (IMSA). The presence of iron oxide particle and other functional groups of alginate allows interaction of anionic arsenic species as well as the cationic Pb(II) ions with the IMSA beads; therefore, the material possess enhanced affinity towards these two highly toxic pollutants. The surface morphology and chemical composition of the beads were characterized by SEM-EDX analysis. Various functional groups present in the beads were identified by FT-IR analysis. Moreover, the iron content in the beads was obtained by US EPA 3050B method and the stability of immobilized iron was evaluated as a function of pH. The batch experiment showed that an increase in solution pH facilitate the uptake of Pb(II) whereas the As(V) removal found to decrease at higher pH. The simultaneous adsorption study showed that the As(V) removal was significantly high even at basic solution, which is perhaps, due to the presence of Pb(OH)2 precipitates. The adsorption capacity of IMSA beads is evaluated using Langmuir adsorption isotherm and found to be 21.61mg/g and 133.73 for As(V) and Pb(II), respectively. The adsorption kinetic data of As(V) fit well to pseudo second order kinetic model whereas Pb(II) showed a better fit to the pseudo first order kinetic model. Moreover, 100 times increase in the ionic strength of the solution did not show significant effect in the uptake of As(V) whereas Pb(II) removal was slightly suppressed. This study demonstrates that IMSA beads obtained by exploiting natural sericite, iron oxide and alginate are efficient and sustainable adsorbent for the removal of arsenic and lead from the aquatic environment. Highlights ? Incorporation of iron-oxide particles into sericite clay ? Encapsulation of Fe-modified sericite into the beads using Na-alginate and Fe(III) as a cross-linking agent ? Prepared IMSA beads prove as an effective adsorbent for As(V) and Pb(II). ? Simultaneous removal of As(V) and Pb(II) from water ]]>
机译:<![cdata [ 抽象 纤晶粉用作固定氧化铁颗粒的基材,并且使用NA-将其包封成珠子。使用NA-通过简单的交联方法藻酸盐和Fe(III)离子,得到铁氧化铁改性的藻酸盐珠粒(IMSA)。氧化铁颗粒的存在和藻酸盐的其他官能团允许阴离子砷物种的相互作用以及阳离子Pb(II)离子与IMSA珠子;因此,该材料对这两个高度毒性污染物具有增强的亲和力。通过SEM-EDX分析表征珠粒的表面形态和化学成分。通过FT-IR分析鉴定珠粒中存在的各种官能团。此外,通过USEPA 3050B方法获得珠粒中的铁含量,并根据pH的函数评价固定的铁的稳定性。批量实验表明,溶液pH的增加促进了Pb(II)的摄取,而AS(v)发现以在较高pH下降低。同时吸附研究表明,即使在碱性溶液中,也可能是(v)的去除显着高,这可能是由于Pb(OH)的存在 2 沉淀物。使用Langmuir吸附等温线评估IMSA珠子的吸附能力,发现为21.61 mg / g和133.73,分别为(v)和pb(ii)。 AS(V)的吸附动力学数据适合于伪二阶动力学模型,而PB(II)则显示出更好的拟合伪第一阶动力学模型。此外,溶液离子强度的100倍增加在略微抑制了(v)的吸收中没有显示出显着的影响,而Pb(II)略微抑制。本研究表明,通过利用天然绢云母,氧化铁和藻酸盐获得的IMSA珠子是用于去除砷和水生环境的有效和可持续的吸附剂。 < / ce:摘要> 亮点 将氧化铁颗粒的掺入纤体粘土中:para> 使用Fe-Demified Sericite的封装使用Na-藻酸盐和Fe(III)作为交联剂 < CE:标签>? 准备的IMSA珠子作为(v)和pb(ii)的有效吸附剂。 同时删除来自水的(v)和pb(ii) ]]>

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