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Immobilization of phenol in cement-based solidified /stabilized hazardous wastes using regenerated activated carbon: leaching studies

机译:使用再生活性炭将苯酚固定在水泥基固化/稳定的危险废物中:浸出研究

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In this research, we investigated the use of an inexpensive thermally regenerated activated carbon as a pre-adsorbent in the solidification/stabilization of phenol-contaminated sand. Our results show that even the addition of very low amounts of regenerated activated carbon (l/100-2/100 w/w sand) resulted in the rapid adsorption of phenol in the Chemical solidification/stabilization (S/S) matrix, with phenol leaching reduced by as much as 600/100. Adsorption studies indicated that the adsorption of phenol on the reactivated carbon was found to be partially irreversible over time in the S/S waste form, indicating possible chemical adsorption. Pore-fluid analyses of the cement paste containing phenol suggested the formation of a calcium-phenol complex, which further reduced the amount of free phenol present in the pores. Studies using several micro-structural techniques, including field emission scanning electron microscopy, X-ray diffraction, Fourier transform infrared spectroscopy and energy dispersive X-ray spectroscopy, indicated significant morphological changes in the cement matrix upon the addition of phenol and reactivated carbon. The hydration of cement in the presence of phenol was retarded concomitant with formation of amorphous portlandite.
机译:在这项研究中,我们研究了使用廉价的热再生活性炭作为预吸附剂来固化/稳定苯酚污染的沙子。我们的结果表明,即使添加非常少量的再生活性炭(l / 100-2 / 100 w / w砂)也导致苯酚在化学固化/稳定化(S / S)基质中与苯酚的快速吸附浸出减少多达600/100。吸附研究表明,随时间推移,S / S废物形式中苯酚在再活化碳上的吸附是部分不可逆的,表明可能存在化学吸附。对含有苯酚的水泥浆的孔隙液分析表明形成了钙-苯酚复合物,这进一步减少了孔隙中游离苯酚的含量。使用几种微结构技术进行的研究,包括场发射扫描电子显微镜,X射线衍射,傅里叶变换红外光谱和能量色散X射线光谱,表明在添加苯酚和活性炭后,水泥基质的形态发生了显着变化。在存在苯酚的情况下,水泥的水合作用被阻止,同时形成了无定形的硅酸盐。

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