Faculty of Engineering, Universiti Malaysia Sabah, Jalan UMS, 88400, Kota Kinabalu, Sabah, Malaysia.
Eco-Innovation Research Interest Group, Faculty of Science and Marine Environment, Universiti Malaysia Terengganu, Terengganu, Malaysia.
Environ Res. 2022 Oct;213:113737. doi: 10.1016/j.envres.2022.113737. Epub 2022 Jun 23.
To keep COVID-19 at bay, most countries have mandated the use of face masks in public places and imposed heavy penalties for those who fail to do so. This has inadvertently created a huge demand for disposable face masks and worsened the problem of littering, where a large number of used masks are constantly discarded into the environment. As such, an efficient and innovative waste management strategy for the discarded face mask is urgently needed. This study presents the transformation of discarded face mask into catalyst termed 'mask waste ash catalyst (MWAC)' to synthesise bisindolylmethanes (BIMs), alkaloids that possess antibacterial, antioxidant and antiviral properties. Using commercially available aldehydes and indole, an excellent yield of reaction (62-94%) was achieved using the MWAC in the presence of water as the sole solvent. On the other hand, the FT-IR spectrum of MWAC showed the absorption bands at 2337 cm, 1415 cm and 871 cm, which correspond to the signals of calcium oxide. It is then proposed that the calcium oxides mainly present in MWAC can protonate oxygen atoms in the carbonyl molecule of the aldehyde group, thus facilitating the nucleophile attack by indole which consequently improved the product yield. Moreover, the MWAC is also observed to facilitate the photodegradation of methylene blue with an efficiency of up to 94.55%. Our results showed the potential applications of the MWAC derived from discarded face masks as a sustainable catalyst for bioactive compound synthesis and photodegradation of dye compounds.
为了防范 COVID-19,大多数国家都强制要求在公共场所佩戴口罩,并对不遵守规定的人处以重罚。这无意中造成了对一次性口罩的巨大需求,并加剧了乱扔垃圾的问题,大量用过的口罩不断被丢弃到环境中。因此,迫切需要一种高效和创新的废弃口罩管理策略。本研究提出将废弃口罩转化为一种名为“口罩废灰催化剂(MWAC)”的催化剂,用于合成具有抗菌、抗氧化和抗病毒特性的双吲哚甲烷(BIMs)。使用市售的醛和吲哚,在 MWAC 的存在下,以水为唯一溶剂,反应收率达到了 62-94%。另一方面,MWAC 的 FT-IR 光谱在 2337cm、1415cm 和 871cm 处显示出吸收带,对应于氧化钙的信号。因此,MWAC 中主要存在的氧化钙可以质子化醛基中羰基分子的氧原子,从而促进吲哚的亲核进攻,从而提高产物收率。此外,MWAC 还被观察到可以促进亚甲基蓝的光降解,效率高达 94.55%。我们的结果表明,由废弃口罩衍生的 MWAC 作为生物活性化合物合成和染料化合物光降解的可持续催化剂具有潜在的应用前景。