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Adsorption of copper ions from aqueous solution by citric acid modified soybean straw

机译:柠檬酸改性大豆秸秆对水溶液中铜离子的吸附

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The objectives of the present study were to convert soybean straw to a metal ion adsorbent and further to investigate the potential of using the adsorbent for the removal of Cu~(2+) from aqueous solution. The soybean straw was water or base washed and citric acid (CA) modified to enhance its nature adsorption capacity. The morphological and chemical characteristics of the adsorbent were evaluated by spectroscopy and N_2-adsorption techniques. The porous structure, as well as high amounts of introduced free carboxyl groups of CA modified soybean straw makes the adsorbent be good to retain Cu~(2+). The adsorption capacities increased when the solution pH increased from 2 to 6 and reached the maximum value at pH 6 (0.64 mmol g~(-1) for the base washed, CA modified soybean straw (CA-BWSS)). The Cu~(2+) uptake increased and percentage adsorption of the Cu~(2+) decreased with the increase in initial Cu~(2+) concentration from 1 mM to 20 mM. Both the Langmuir and Freundlich adsorption isotherms were tested, and the Freundlich model fited much better than the Langmuir model. It was found that CA-BWSS have the highest adsorption capacity of the four kinds of pretreated soybean straw.
机译:本研究的目的是将大豆秸秆转化为金属离子吸附剂,并进一步研究使用该吸附剂从水溶液中去除Cu〜(2+)的潜力。用水或碱洗大豆秸秆,并改性柠檬酸(CA)以增强其自然吸附能力。通过光谱学和N_2-吸附技术评估了吸附剂的形态和化学特性。 CA改性大豆秸秆的多孔结构以及大量引入的游离羧基使吸附剂很好地保留了Cu〜(2+)。当溶液的pH从2增加到6时,吸附能力增加,并在pH 6达到最大值(碱洗的CA改性大豆秸秆(CA-BWSS)为0.64 mmol g〜(-1))。随着初始Cu〜(2+)浓度从1 mM增加到20 mM,Cu〜(2+)的吸收增加,而Cu〜(2+)的吸附百分比降低。测试了Langmuir和Freundlich的吸附等温线,并且Freundlich模型比Langmuir模型拟合得更好。结果发现,CA-BWSS在四种预处理的大豆秸秆中具有最高的吸附能力。

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