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Removal of aniline and phenol from water using raw and aluminum hydroxide-modified diatomite

机译:使用生氢氧化铝改性的硅藻土从水中去除苯胺和苯酚

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The feasibility of using raw diatomite and aluminum hydroxide-modified diatomite (Al-diatomite) for removal of aniline and phenol from water was investigated. Their physicochemical characteristics such as pHsolution, point of zero charge (pHPZC), surface area, Fourier transform infrared (FT-IR) and scanning electron microscopy was determined. After the raw diatomite was modified, the surface area of Al-diatomite increases from 26.67 to 82.65 m ~2 g~(-1). The pHPZC and pHsolution (10%) occurred around pH 5.2 and pH 8.6, respectively. The removal rates of aniline and phenol on diatomite and Aldiatomite decreased with increasing solution pH, while surface charge density decreased. The adsorption of aniline and phenol on diatomite presented a good fit to the Langmuir and Freundlich models, but the models are not fit to forecast the adsorption of aniline and phenol on Al-diatomite. The study indicated that electrostatic interaction was a dominating mechanism of aniline and phenol sorption onto Al-diatomite.
机译:研究了使用生硅藻土和氢氧化铝改性硅藻土(Al-硅藻土)去除水中苯胺和苯酚的可行性。测定了它们的理化特性,例如pH溶液,零电荷点(pHPZC),表面积,傅立叶变换红外光谱(FT-IR)和扫描电子显微镜。对原始硅藻土进行改性后,硅藻土的表面积从26.67增加到82.65 m〜2 g〜(-1)。 pHPZC和pHsolution(10%)分别在pH 5.2和pH 8.6左右发生。随着溶液pH值的升高,硅藻土和硅藻土上苯胺和苯酚的去除率降低,表面电荷密度降低。硅藻土对苯胺和苯酚的吸附与Langmuir和Freundlich模型具有很好的拟合性,但这些模型并不适合预测苯胺和苯酚在硅藻土上的吸附。研究表明,静电相互作用是苯胺和苯酚吸附在硅藻土上的主要机理。

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