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Synthesis of Chitosan-g-Biomass Ash/Graphene Oxide Nanocomposite for the Removal of Copper and Chromium from Industrial Waste Water

机译:壳聚糖-G-生物质灰/石墨烯纳米复合材料的合成从工业废水中除去铜和铬

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摘要

Biomass ash (BA) obtained as a byproduct from biomass feedstock shows adsorption capacity for heavy metals and could be economical and environment friendly adsorbent. Chitosan (Cs) and Graphene oxide (GO) are efficient adsorbent for removal of dyes, metal ions and toxic compounds. When biomass ash is used as nanocomposite formation along with Chitosan and Graphene Oxide then its adsorption capacity is enhanced. In the present work, Chitosan grafted Biomass ash on Graphene oxide base nanocomposite adsorbent (Cs-g-BA/GO) is synthesized for the effective removal of Cu (II) and Cr (VI) metal ions present in industrial waste water. They were characterized by FTIR, UV, FESEM and adsorption was studied by employing AAS with variables like pH, Adsorbent dose and contact time. The results showed that Cs-g-BA/GO nanocomposite is an efficient adsorbent with 69.5 % for Cu(II) and 74.7 % for Cr (VI) at pH 4.5 and 5 respectively. The optimum adsorbent dose was 0.12 gl~(-1) at pH 5 with removal efficiency was 80.0 % and 82.6 %for Cu (II) and Cr (VI) respectively at a contact time of 90 min. Chitosan-g-Biomass ash/Graphene oxide nanocomposite was significant adsorbent for the removal of Cu(II) and Cr(VI) metal ions present in waste water.
机译:作为生物质原料的副产物获得的生物质灰(BA)显示了重金属的吸附能力,并且可以是经济的和环保吸附剂。壳聚糖(Cs)和氧化铟烯(GO)是高效吸附剂,用于去除染料,金属离子和毒性化合物。当生物量灰烬用作纳米复合材料和壳聚糖和石墨烯氧化物时,其吸附能力得到增强。在本作本作中,壳聚糖接枝生物质灰在石墨烯氧化物基础纳米复合剂吸附剂(CS-G-BA / GO)中合成,用于有效除去工业废水中存在的Cu(II)和Cr(VI)金属离子。它们的特征是通过使用FTIR,UV,FESEM和吸附来研究,所述AAS与pH值,吸附剂剂量和接触时间等变量采用AAS。结果表明,Cs-G-BA / GO纳米复合材料分别为CS-G-BA / GO纳米复合材料,分别在pH 4.5和5的Cr(vi)的Cu(II)和74.7%的高效吸附剂。最佳吸附剂剂量为0.12G1(-1)在pH5下,除去效率为80.0%和82.6%,Cu(II)和Cr(VI)分别在90分钟的接触时间。壳聚糖-G-生物质灰/石墨烯纳米复合材料是除去废水中存在的Cu(II)和Cr(VI)金属离子的显着吸附剂。

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