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Chemical Modification of Imperata cylindrica Leaf Powder for Heavy Metal Ion Adsorption

机译:白茅叶粉对重金属离子吸附的化学改性

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摘要

Imperata cylindrica leaf was used as raw material to prepare two different adsorbents through chemical modification by using sulfuric acid and phosphoric acid. These two adsorbents, sulfuric acid-modified /. cylindrica leaf-based adsorbent (SIC) and phosphoric acid-modified /. cylindrica leaf-based adsorbent (PIC), were used to adsorb nickel ions (Ni2+) from aqueous solutions. The /. cylindrica leaf-based adsorbent and modified /. cylindrica leaf-based adsorbents were characterized by Fourier transform infrared (FT-IR) spectroscopy and scanning electron microscopy (SEM). Different operational parameters such as initial solution pH, adsorbent size, adsorbent dosage, initial Ni2+ ion concentration, and temperature were studied. The adsorption isotherm and the adsorption kinetics were studied systematically. Based on the FT-IR spectrum before and after adsorption of Ni2+ ions, the adsorption mechanism involved both ion exchange and complexation between Ni2+ ions and functional groups on the surface of adsorbents. There was no sulfur and phosphorus detected in the aqueous solutions after adsorption. Therefore, SIC and PIC are effective in adsorbing Ni2+ ions and will not cause secondary pollution to the environment.
机译:以银杏叶为原料,通过硫酸和磷酸的化学修饰制备了两种不同的吸附剂。这两种吸附剂,经硫酸改性/。 cylindrica叶基吸附剂(SIC)和磷酸改性的。圆柱叶基吸附剂(PIC)用于从水溶液中吸附镍离子(Ni2 +)。 /。 cylindrica叶基吸附剂和改性/。通过傅里叶变换红外(FT-IR)光谱和扫描电子显微镜(SEM)对圆柱状叶基吸附剂进行了表征。研究了不同的操作参数,例如初始溶液pH,吸附剂尺寸,吸附剂用量,初始Ni2 +离子浓度和温度。系统地研究了吸附等温线和吸附动力学。根据吸附Ni2 +之前和之后的FT-IR光谱,吸附机理涉及离子交换以及Ni2 +离子与吸附剂表面上的官能团之间的络合。吸附后在水溶液中未检测到硫和磷。因此,SIC和PIC可有效吸附Ni2 +离子,不会对环境造成二次污染。

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