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首页> 外文期刊>Modern Applied Science >The Effect of Crosslinker and Pore Generated on Selective Adsorbent (Cu2+) based on Grafting of Acrylic Acid onto Cassava Starch
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The Effect of Crosslinker and Pore Generated on Selective Adsorbent (Cu2+) based on Grafting of Acrylic Acid onto Cassava Starch

机译:木薯淀粉上接枝丙烯酸对交联剂和生成的孔对选择性吸附剂(Cu2 +)的影响

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The technology development in many industries nowadays, such as electronic industry produces heavy metal wastes which may pollute our environment. The use of adsorbent as a heavy metal removal from soil and water is one of the efficient process which can be considered to be used. In addition the release of the adsorbate becomes an important way as well because usually those heavy metals still have a high value. The objective of this research is to develop adsorbent based on cassava starch. So, the release process will become easier and will not produce another waste. The adsorbent was produced through the grafting of acrylic acid onto cassava starch by using Fenton initiator. To construct a stable 3-D network, the crosslinker (CL) N,N’- methylenebisacrylamide was added. The variable observed were the amount of CL added (0.5%; 1.5%; 2.5% and 3.5%) and the treatment of generating more pores on starch copolymer. The treatments on starch copolymer observed were single freezing, second freezing, and citric acid modification and carbonization methods. Analysis performed on the adsorbent was % add-on, water absorption and metal adsorption (especially Cu2+ ion) capacity. The result showed that the used of 2.5% CL produced the highest add-on (47.66 %), the highest water absorption capacity and the highest metal adsorption capacity (0.29g Cu2+/g adsorbent) The citric acid modification also produced the highest pores on the adsorbent.
机译:当今许多行业的技术发展,例如电子工业产生的重金属废物可能污染我们的环境。使用吸附剂作为去除土壤和水中的重金属是一种可以被认为是有效的有效方法。另外,由于通常那些重金属仍然具有高价值,因此释放吸附质也成为重要的方式。这项研究的目的是开发基于木薯淀粉的吸附剂。因此,释放过程将变得更加容易,并且不会产生其他浪费。通过使用Fenton引发剂将丙烯酸接枝到木薯淀粉上来生产吸附剂。为了构建稳定的3-D网络,添加了交联剂(CL)N,N'-亚甲基双丙烯酰胺。观察到的变量是CL的添加量(0.5%; 1.5%; 2.5%和3.5%)以及在淀粉共聚物上产生更多孔的处理。观察到的对淀粉共聚物的处理是单冷冻,二次冷冻以及柠檬酸改性和碳化方法。对吸附剂进行的分析是添加%,吸水率和金属吸附(尤其是Cu 2+离子)容量。结果表明,使用2.5%的CL可以产生最高的添加量(47.66%),最高的吸水能力和最高的金属吸附能力(0.29g Cu2 + / g吸附剂)。吸附剂。

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