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使用改性木屑作为吸附剂,从 Ce 废水中回收纳米 CeO 的新型高效方法。

A novel and efficient method on the recovery of nanosized CeO in Ce wastewater remediation using modified sawdust as adsorbent.

机构信息

Department of Chemistry, Faculty of Material Science and Chemistry, China University of Geosciences, Wuhan 430074, PR China.

School of Environmental and Chemical Engineering, Shanghai University, 333 Nanchen Road, Shanghai 200444, PR China.

出版信息

J Colloid Interface Sci. 2018 Feb 15;512:629-637. doi: 10.1016/j.jcis.2017.09.032. Epub 2017 Sep 8.

Abstract

In this study, by using heterogeneous esterification reaction and UV photo-induced technology, dendritic polyacrylic acid (PAA) was successfully grafted on to the surface of pinewood sawdust (PSD) particles to be used as an adsorbent and recovery medium for Ce from wastewater. 18 alkyl acid (stearic acid, SA), as a pre-modifier, was grafted onto the PSD surface. The outcome was the replacement of hydroxyl groups by hydrocarbon chains. Therefore, rich hydrogen atoms of the hydrocarbon chains on the PSD particles became sites whom can be taken away by photosensitizer molecules to form surface radicals. Acrylic molecules can be initiated polymerization by these radicals, PAA chains were grafted on to PSD surface via "grafting from" method, forming dendritic functional polymer layers around the PSD particles. The end product (PSD-g-PAA) have a good adsorption performance for Ce (adsorption capacity reached 153.90mg/g), can be used as a carrier to recycle the Cerium oxide. And desorption and reusability experiment suggested that the adsorption capacity was virtually unchanged after five cycles and the desorption rate is almost 100% in every cycle. The adsorption achieves equilibrium after about 120min. The kinetic and thermodynamic investigations as well as isotherm analysis were also undertaken.

摘要

在这项研究中,通过使用异质酯化反应和紫外光诱导技术,成功地将树枝状聚丙烯酸(PAA)接枝到松木屑(PSD)颗粒表面,用作废水Ce 的吸附剂和回收介质。十八烷酸(硬脂酸,SA)作为预改性剂接枝到 PSD 表面。结果是羟基被烃链取代。因此,PSD 颗粒上烃链的丰富氢原子成为可以被光敏剂分子带走的位点,形成表面自由基。丙烯酸分子可以通过这些自由基引发聚合,PAA 链通过“从接枝”法接枝到 PSD 表面,在 PSD 颗粒周围形成树枝状官能聚合物层。最终产物(PSD-g-PAA)对 Ce 具有良好的吸附性能(吸附容量达到 153.90mg/g),可用作回收氧化铈的载体。解吸和可重复使用性实验表明,在五个循环后吸附容量几乎没有变化,每个循环的解吸率几乎为 100%。吸附在大约 120min 后达到平衡。还进行了动力学和热力学研究以及等温线分析。

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