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首页> 外文期刊>Chemistry and Materials Research >Removal of Copper and Zinc Metals from Aqueous System by Using Rice Husk as Low Cost Materials: Original Research
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Removal of Copper and Zinc Metals from Aqueous System by Using Rice Husk as Low Cost Materials: Original Research

机译:以稻壳为低成本材料从水系统中去除铜和锌金属的原始研究

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In the present study the adsorption of Cu (II) and Zn (II) ions on rice husk from artificially prepared aqueous solutions of these metal ions was investigated following the batch mode adsorption procedure. Accordingly, the effects of operating parameters such as pH, contact time, and initial concentration of metal ion solution were evaluated. The results so obtained in this study indicated that the optimum conditions for the Cu(II) and Zn(II) ions adsorption were found to be as follows: pH of 6 and 7; contact times of 100 and 125 minutes; and these values were actually determined by setting the initial concentration of 50 mg/L for each metal ion solution. Upon measurements of the residual metal ion concentration using FAAS method, the percent adsorption of both Cu (II) and Zn (II) ions showed significant increase with an increase in each case of the contact time. Furthermore, it was evidently implicated that the binding process of the metal ions on the adsorbent (rice husk) could be affected by change in the pH of both metal ion solutions. In addition the experimental data were analyzed against both Langmuir and Freundlich isotherm for determining the maximum adsorption capacity of the title bioserbent with respect to each of the tested metal ions. The adsorption maxima were calculated on the basis the Langmuir isotherm and found to be 1.93 and 12.98 mg/g for Cu (II) and Zn (II) metal ions respectively. These values are suggested that the rice husk investigated in this study can have a good application potential for the removal of both metal ions (Cu (II) and Zn (II)) from aqueous solutions. In fact, the goal of this work was to develop an inexpensive, highly available, effective metal ion adsorbent from natural waste as alternative to existing commercial adsorbents.
机译:在本研究中,按照分批模式吸附程序,研究了从这些金属离子的人工制备水溶液中,稻壳上Cu(II)和Zn(II)离子的吸附。因此,评价了诸如pH,接触时间和金属离子溶液的初始浓度的操作参数的影响。如此获得的结果表明,Cu(II)和Zn(II)离子的最佳吸附条件为:pH为6和7; pH为6。接触时间分别为100和125分钟;这些值实际上是通过将每种金属离子溶液的初始浓度设置为50 mg / L来确定的。在使用FAAS方法测量残留金属离子浓度时,Cu(II)和Zn(II)离子的吸附百分比均随着接触时间的增加而显着增加。此外,显然暗示了两种离子在金属离子在吸附剂(稻壳)上的结合过程可能会受到pH值变化的影响。另外,针对朗缪尔(Langmuir)和弗氏(Freundlich)等温线两者分析了实验数据,以确定相对于每种测试金属离子的标题生物质的最大吸附容量。吸附最大值是根据Langmuir等温线计算得出的,对于Cu(II)和Zn(II)金属离子分别为1.93和12.98 mg / g。这些值表明,本研究中研究的稻壳对于从水溶液中去除金属离子(Cu(II)和Zn(II))具有良好的应用潜力。实际上,这项工作的目标是从天然废物中开发一种廉价,高度可用的有效金属离子吸附剂,以替代现有的商业吸附剂。

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