中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Advanced degradation of brominated epoxy resin and simultaneous transformation of glass fiber from waste printed circuit boards by improved supercritical water oxidation processes

文献类型:期刊论文

作者Liu, Kang; Zhang, Zhiyuan; Zhang, Fu-Shen
刊名WASTE MANAGEMENT
出版日期2016-10
卷号56页码:423-430
关键词Waste PCBs Advanced degradation Supercritical water Mechanism Anorthite
英文摘要This work investigated various supercritical water oxidation (SCWO) systems, i.e. SCWO1 (only water), SCWO2 (water +H2O2) and SCWO3 (water + H2O2/NaOH), for waste printed circuit boards (PCBs) detoxification and recycling. Response surface methodology (RSM) was applied to optimize the operating conditions of the optimal SCWO3 systems. The optimal reaction conditions for debromination were found to be the NaOH of 0.21 g, the H2O2 volume of 9.04 mL, the time of 39.7 min, maximum debromination efficiency of 95.14%. Variance analysis indicated that the factors influencing debromination efficiency was in the sequence of NaOH > H2O2 > time. Mechanism studies indicated that the dissociated ions from NaOH in supercritical water promoted the debromination of brominated epoxy resins (BERs) through an elimination reaction and nucleophilic substitution. HO2, produced by H2O2 could induce the oxidation of phenol ring to open (intermediates of BERs), which were thoroughly degraded to form hydrocarbons, CO2, H2O and NaBr. In addition, the alkali-silica reaction between OH- and SiO2 induced the phase transformation of glass fibers, which were simultaneously converted into anorthite and albite. Waste PCBs in H2O2/NaOH improved SCWO system were fully degraded into useful products and simultaneously transformed into functional materials. These findings are helpful for efficient recycling of waste PCBs. (C) 2016 Elsevier Ltd. All rights reserved.
收录类别SCI
源URL[http://ir.rcees.ac.cn/handle/311016/35774]  
专题生态环境研究中心_固体废弃物处理与资源化实验室
推荐引用方式
GB/T 7714
Liu, Kang,Zhang, Zhiyuan,Zhang, Fu-Shen. Advanced degradation of brominated epoxy resin and simultaneous transformation of glass fiber from waste printed circuit boards by improved supercritical water oxidation processes[J]. WASTE MANAGEMENT,2016,56:423-430.
APA Liu, Kang,Zhang, Zhiyuan,&Zhang, Fu-Shen.(2016).Advanced degradation of brominated epoxy resin and simultaneous transformation of glass fiber from waste printed circuit boards by improved supercritical water oxidation processes.WASTE MANAGEMENT,56,423-430.
MLA Liu, Kang,et al."Advanced degradation of brominated epoxy resin and simultaneous transformation of glass fiber from waste printed circuit boards by improved supercritical water oxidation processes".WASTE MANAGEMENT 56(2016):423-430.

入库方式: OAI收割

来源:生态环境研究中心

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