College of Geology & Environment, Xi'an University of Science and Technology, Xi'an 710054, People's Republic of China.
College of Geology & Environment, Xi'an University of Science and Technology, Xi'an 710054, People's Republic of China.
J Hazard Mater. 2018 Feb 15;344:333-342. doi: 10.1016/j.jhazmat.2017.10.033. Epub 2017 Oct 18.
Critical water system used for decomposition and debromination of waste printed circuit board (PCBs) has two disadvantages: low value-added oil phase products and halfway debromination at low temperature condition. In this study, critical water-alcohol composite medium was found to be a promising method to surmount these disadvantages. Critical water-ethanol (CWE) and critical water-methanol (CWM) were selected as the composite medium. The temperature of CWE and CWM had a significant effect on the oil phase composition. At low temperature CWE/CWM of 300°C, 4-(1-methylethyl)-phenol with high concentration could be recovered. CWM of 400°C was beneficial to the generation of ether compounds and high level of anisole could be obtained, while 450°C was beneficial to the generation of high level of multi-alkyl substituted phenol derivatives or benzene derivatives such as p-xylene. Br-free oil phase products could be obtained when the temperature of CWE/CWM ≥300°C. Different oil phase products with high level of chemicals or chemical intermediates could be obtained by controlling the reaction conditions of CWE/CWM. It is believed that the additional value of the oil phase products derived from waste PCBs can be greatly improved by this new process.
用于废弃印刷电路板(PCBs)分解和脱溴的临界水系统存在两个缺点:附加值低的油相产物和低温下的不完全脱溴。在本研究中,发现临界水-醇复合介质是克服这些缺点的一种很有前途的方法。选择临界水-乙醇(CWE)和临界水-甲醇(CWM)作为复合介质。CWE 和 CWM 的温度对油相组成有显著影响。在 300°C 的低温 CWE/CWM 下,可以回收高浓度的 4-(1-甲基乙基)-苯酚。400°C 的 CWM 有利于醚类化合物的生成,可以获得高浓度的苯甲醚,而 450°C 有利于生成多烷基取代的酚衍生物或苯衍生物,如对二甲苯。当 CWE/CWM 的温度≥300°C 时,可以得到无溴的油相产物。通过控制 CWE/CWM 的反应条件,可以得到具有高浓度化学品或化学中间体的不同油相产物。相信通过这一新工艺可以大大提高从废 PCB 中获得的油相产物的附加值。