School of Environmental Engineering, University of Seoul, Seoul 02504, Republic of Korea.
Department of Environmental Sciences and Biotechnology, Hallym University, Chuncheon 24252, Republic of Korea.
J Hazard Mater. 2019 Apr 5;367:50-58. doi: 10.1016/j.jhazmat.2018.12.040. Epub 2018 Dec 14.
The two-step catalytic pyrolysis (CP) of a phenolic-printed circuit board (PPCB) over in-situ natural clays (dolomite, bentonite, and olivine) and ex-situ HY(30, SiO/AlO: 30) was investigated by tandem micro reactor-gas chromatography/mass spectrometry. The non-catalytic pyrolysis (NCP) of PPCB produced oxygenated, phosphorous, and brominated compounds due to the presence of paper, tetrabromo bisphenol A (TBBA), phosphorous flame retardants, and phenol resin in the PPCB. Among the natural clays, dolomite showed the highest debromination and aromatics formation efficiency during the in-situ CP of PPCB followed by bentonite and olivine owing to the different catalyst properties. Two-step CP of PPCB over in-situ natural clays and ex-situ HY(30) achieved higher efficiency on the formation of higher quality oil (mono-phenol and aromatic hydrocarbons) with a lower Br content than the one-step CP of PPCB. Among the two-step catalysts, the combination of in-situ dolomite and ex-situ HY(30) provided the highest quality oil production due to the high acidity and sufficiently large pore size of dolomite. Two-step CP of PPCB over in-situ dolomite and ex-situ HY(30) also revealed a longer lifetime than the one-step CP of PPCB over ex-situ HY(30), not only for the formation of aromatic hydrocarbons and mono-phenols, but also for debromination.
采用串联微反-气相色谱/质谱联用仪,研究了原位天然黏土(白云石、膨润土和橄榄石)和异位 HY(30、SiO/AlO:30)两步催化热解酚醛印刷电路板(PPCB)的过程。由于 PPCB 中存在纸张、四溴双酚 A(TBBA)、磷系阻燃剂和酚醛树脂,非催化热解(NCP)会产生含氧化合物、含磷化合物和含溴化合物。在天然黏土中,白云石在 PPCB 的原位 CP 过程中表现出最高的脱溴和芳烃生成效率,其次是膨润土和橄榄石,这是由于催化剂性能的不同。两步 CP 法比一步 CP 法更能高效地生成高品质油(单酚和芳烃),且 Br 含量更低,其中 PPCB 与原位天然黏土和异位 HY(30)两步 CP 生成的高品质油的 Br 含量更低。在两步 CP 法中,原位白云石与异位 HY(30)的组合提供了最高产率的优质油,这是由于白云石具有较高的酸度和足够大的孔径。两步 CP 法比一步 CP 法具有更长的寿命,不仅在芳烃和单酚的形成过程中,而且在脱溴过程中也是如此。