首页> 外文期刊>Journal of Hazardous Materials >Immobilization of phenol in cement-based solidified /stabilized hazardous wastes using regenerated activated carbon: role of carbon
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Immobilization of phenol in cement-based solidified /stabilized hazardous wastes using regenerated activated carbon: role of carbon

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:碳的作用

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The use of regenerated activated carbon as an immobilizing additive for phenol in solidification/stabilization (S/S) processes was investigated. The adsorption capacity of regenerated carbon was compared to that of the virgin form and was found to be very close. The effects of pH and Ca(OH)_2 concentration within the S/S monolith on the adsorption process were also examined. Kinetic tests were performed to evaluate the adsorption of phenol on different forms of F400 carbon, including the regenerated form. Kinetic tests were performed in aqueous solutions as well as in liquid-sand mixtures. In both cases, it was found that phenol adsorption on F400 carbon was fairly fast. More than 60/100 of the equilibrium adsorption amount could be achieved within the first hour for aqueous solutions. For sand-solution kinetics, it was found that l/100 carbon (based on dry sand weight) was capable of achieving more than 95/100 removal of the initial amount of phenol present in solution (l000 and 5000 ppm). Fourier transform infrared (FT-IR) spectroscopy and X-ray mapping tests indicated a homogenous mixing of the carbon into the cement matrix. The carbon was also found to enhance the hydration of cement, which was retarded by the existence of phenol.
机译:研究了再生的活性炭在固化/稳定化(S / S)过程中作为苯酚固定化添加剂的用途。将再生碳的吸附能力与原始形式的吸附能力进行比较,发现非常接近。还考察了S / S整体料中pH和Ca(OH)_2浓度对吸附过程的影响。进行了动力学测试,以评估苯酚在F400碳不同形式(包括再生形式)上的吸附。动力学测试是在水溶液以及液体-沙子混合物中进行的。在两种情况下,都发现苯酚在F400碳上的吸附相当快。对于水溶液,在第一小时内可以达到60/100以上的平衡吸附量。对于砂溶液动力学,发现1/100碳(基于干砂重量)能够实现溶液中存在的苯酚初始量(1000和5000 ppm)的去除率超过95/100。傅立叶变换红外(FT-IR)光谱和X射线图测试表明碳均匀混合到水泥基体中。还发现碳增强了水泥的水合作用,而苯酚的存在阻碍了水合作用。

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