Department of Biological Systems Engineering, Washington State University, 2710 Crimson Way, Richland, WA 99354, USA.
Department of Biological Systems Engineering, Washington State University, 2710 Crimson Way, Richland, WA 99354, USA.
J Hazard Mater. 2022 Mar 15;426:128080. doi: 10.1016/j.jhazmat.2021.128080. Epub 2021 Dec 14.
The salvaging of the waste disposable mask was conducted in this study through catalytic pyrolysis over corn stover derived biochar catalyst combined with the boosted generation of hydrogen and mono-aromatic hydrocarbons for the first time. In the absence of biochar, up to 53 wt% of wax was observed at 550 ºC, whereas at the biochar/mask ratio of 2, around 41 wt% of liquid oil was produced without the formation of wax. The hydrogen content in the gas stream was about 26 vol% at 600 ºC for non-catalytic pyrolysis, which increased to around 55 vol% at the expense of light hydrocarbons such as methane and C for the catalytic process with the biochar/mask ratio of 3. In resulting liquid oil, the content of mono-aromatics, especially toluene, xylenes, and ethylbenzene was about 55% for catalytic runs, which was far greater than that of 38% from the non-catalytic run. Interestingly, the dyes released from mask pyrolysis could be completely captured/adsorbed by biochar, leading to a much cleaner oil. After 10 cycles of reuse at 600 ºC without regeneration, the biochar still held a good selectivity toward hydrogen and mono-aromatic hydrocarbons. This study exemplified a readily accessible concept and pathway of 'waste against waste' targeted to upcycle waste disposable masks over biochar from biomass waste.
本研究首次通过玉米秸秆衍生生物炭催化剂上的催化热解,同时增强氢气和单芳烃的生成,对废弃一次性口罩进行了回收利用。在没有生物炭的情况下,在 550°C 时观察到高达 53wt%的蜡,而在生物炭/口罩比例为 2 时,在不形成蜡的情况下,可生产约 41wt%的液态油。在 600°C 下进行非催化热解时,气流中的氢气含量约为 26vol%,而在生物炭/口罩比例为 3 的催化过程中,由于甲烷和 C 等轻烃的消耗,氢气含量增加到约 55vol%。在所得的液态油中,单芳烃,特别是甲苯、二甲苯和乙苯的含量在催化条件下约为 55%,远高于非催化条件下的 38%。有趣的是,口罩热解释放的染料可以被生物炭完全捕获/吸附,从而得到更清洁的油。在 600°C 下不进行再生而重复使用 10 次后,生物炭对氢气和单芳烃仍具有良好的选择性。本研究例证了一种易于获得的概念和途径,即通过生物质废物的生物炭,对废弃一次性口罩进行“废物对废物”的升级利用。