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Advanced degradation of brominated epoxy resin and simultaneous transformation of glass fiber from waste printed circuit boards by improved supercritical water oxidation processes

机译:改进的超临界水氧化工艺可实现溴化环氧树脂的高级降解以及废印刷电路板中玻璃纤维的同时转化

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.
机译:这项工作研究了各种超临界水氧化(SCWO)系统,即SCWO1(仅水),SCWO2(水+ H2O2)和SCWO3(水+ H2O2 / NaOH),用于废印刷电路板(PCB)的排毒和回收。应用响应面方法(RSM)来优化最佳SCWO3系统的操作条件。发现脱溴的最佳反应条件为NaOH为0.21 g,H2O2体积为9.04 mL,时间为39.7 min,最大脱溴效率为95.14%。方差分析表明,影响脱溴效率的因素依次为NaOH> H2O2>时间。机理研究表明,超临界水中NaOH的离解离子通过消除反应和亲核取代作用促进了溴化环氧树脂(BERs)的脱溴。由H2O2产生的HO2可以诱导苯酚环氧化以打开(BERs的中间体),然后将其彻底降解以形成烃,CO2,H2O和NaBr。另外,OH-和SiO2之间的碱-二氧化硅反应引起玻璃纤维的相变​​,玻璃纤维同时转变为钙长石和钠长石。 H2O2 / NaOH改进的SCWO系统中的废PCB被完全降解为有用的产品,同时转变为功能材料。这些发现有助于有效回收废PCB。 (C)2016 Elsevier Ltd.保留所有权利。

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