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The Comparison of Surface Modification Methods of the Heavy Metals Adsorption of Activated Carbon from Rice Husk

机译:稻壳中重金属吸附活性炭的表面改性方法比较。

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摘要

Abstract Surface modification of activated carbon (AC) could be done through different methods in order to modify their specific physical and chemical properties to facilitate metals removal from wastewater. Three methods were used to modify the rice husk AC (RHAC) including the use of (1) HNO3, (2) dithizone and (3) the combination of HNO3 with dithizone. These modification agents were increased its affinity towards the desired pollutant. The modification methods demonstrated the effective process for the metal ions adsorption capability and the removal of them from water. For Ni~(2+) and Cd~(2+) adsorption, RHAC was modified by HNO_3 giving the best adsorption capacity in comparison with using dithizone or the combination of HNO_3 with dithizone. That adsorption was reached 17.23 mg/g for Ni~(2+) and 29.61 mg/g for Cd~(2+). Additionally, the surface area, which was characterized by BET (Brunauer-Emmett-Teller) of RHAC, was 710.8 m~2/g and DA micropore volume was 0.447 (cm~3/g). Especially, the only modified RHACs had the peak of N-H functional group by using Fourier transform infrared spectrum (FTIR). Besides, the only RHAC modification by HNO3 had peak of C=0. That significantly contributed to increase the metal ions adsorption capacity of RHAC.
机译:摘要可以通过多种方法对活性炭(AC)进行表面改性,以改变其特定的理化特性,以促进废水中金属的去除。三种方法用于修饰稻壳AC(RHAC),包括使用(1)HNO3,(2)双硫zone和(3)HNO3与双硫zone的组合。这些改性剂增加了其对所需污染物的亲和力。改性方法证明了金属离子吸附能力和从水中去除金属离子的有效过程。对于Ni〜(2+)和Cd〜(2+)的吸附,与使用双硫zone或HNO_3与双硫zone的组合相比,用HNO_3改性RHAC具有最佳的吸附能力。 Ni〜(2+)的吸附达到17.23 mg / g,Cd〜(2+)的吸附达到29.61 mg / g。另外,以RHAC的BET(Brunauer-Emmett-Teller)为特征的表面积为710.8m 2 / g,DA微孔体积为0.447(cm 3 / g)。特别地,通过使用傅立叶变换红外光谱(FTIR),仅修饰的RHAC具有N-H官能团的峰。此外,HNO3对RHAC的唯一修饰峰为C = 0。这极大地提高了RHAC对金属离子的吸附能力。

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