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在温和条件下,亚临界乙酸增强废印刷电路板中溴化环氧树脂的催化降解作用。

Swelling-enhanced catalytic degradation of brominated epoxy resin in waste printed circuit boards by subcritical acetic acid under mild conditions.

机构信息

Institute of Resource and Environment, Henan Polytechnic University, Jiaozuo 454000, Henan, China.

Institute of Resource and Environment, Henan Polytechnic University, Jiaozuo 454000, Henan, China.

出版信息

Waste Manag. 2020 Feb 1;102:464-473. doi: 10.1016/j.wasman.2019.11.011. Epub 2019 Nov 16.

Abstract

Waste printed circuit boards (WPCBs) contain a large amount of brominated epoxy resins (BERs), which may cause environmental problems. However, BERs degradation under mild conditions is challenging due to the good thermal and chemical stabilities of BERs. This study proposes a mild and efficient method that uses subcritical acetic acid (220 °C-260 °C, 2.6-3.6 MPa) to decompose BERs. BERs swell quickly at 200 °C and are thoroughly decomposed into bisphenol A and phenol at 220 °C when the acetic acid mass concentration and holding time are fixed at 49.90% and 1 h, respectively. Experimental results show that subcritical acetic acid has excellent swelling and catalytic degradation effects on BERs. The quick swelling of BERs allows the free migration of the catalyst in the epoxy network and thus significantly enhances the catalytic degradation effect. Therefore, BERs can be thoroughly decomposed by subcritical acetic acid under mild conditions. Temperature and acetic acid concentration are the major parameters that control the resin degradation rate. Bromine-free oil phase products are obtained at ≥240 °C. The possible decomposition pathway of BERs in subcritical acetic acid is also investigated. Most of the bromine is transformed into HBr and enriched in the aqueous phase. In conclusion, the proposed mild method could be used as a novel practical and industrial procedure for the degradation and debromination of BERs.

摘要

废弃印刷电路板(WPCBs)含有大量溴化环氧树脂(BERs),这可能会造成环境问题。然而,由于 BERs 的热稳定性和化学稳定性良好,在温和条件下对其进行降解具有一定的挑战性。本研究提出了一种温和且高效的方法,使用亚临界乙酸(220-260°C,2.6-3.6MPa)来分解 BERs。当乙酸质量浓度和保持时间分别固定在 49.90%和 1 小时时,BERs 在 200°C 时迅速溶胀,并在 220°C 时完全分解为双酚 A 和苯酚。实验结果表明,亚临界乙酸对 BERs 具有出色的溶胀和催化降解效果。BERs 的迅速溶胀使得催化剂在环氧网络中自由迁移,从而显著增强了催化降解效果。因此,BERs 可以在温和条件下通过亚临界乙酸彻底分解。温度和乙酸浓度是控制树脂降解速率的主要参数。在≥240°C 时可得到无溴油相产物。还研究了 BERs 在亚临界乙酸中的可能分解途径。大部分溴转化为 HBr 并富集在水相中。总之,所提出的温和方法可用作 BERs 降解和脱溴的新型实用且工业化的方法。

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