School of Chemical and Energy Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, 81310, Skudai, Johor, Malaysia.
Department of Industrial Chemistry, Kaduna State University, Kaduna, Nigeria.
Sci Rep. 2020 Feb 19;10(1):2928. doi: 10.1038/s41598-020-60021-6.
Adsorption of Reactive Black 5 and Congo Red from aqueous solution by coffee waste modified with polyethylenimine was investigated. The removal percentages of both dyes increased with amount of polyethyleneimine in the modified adsorbent. Characterization revealed that polyethyleneimine modification improved the adsorbent surface chemistry, while slight improvement of adsorbent textural properties was also observed. The adsorbent's excellent performance was demonstrated by high removal percentages towards the anionic dyes in most experimental runs. The modelling result showed that anionic dyes adsorption occurred via monolayer adsorption, and chemisorption was the rate-controlling step. The adsorbent possesses higher maximum adsorption capacity towards Reactive Black 5 (77.52 mg/g) than Congo Red (34.36 mg/g), due to the higher number of functional groups in Reactive Black 5 that interact with the adsorbent. This study reveals the potential of adsorbent derived from coffee waste in textile wastewater treatment. Furthermore, surface chemistry modification is proven as an effective strategy to enhance the performance of biowaste-derived adsorbents.
采用聚乙烯亚胺改性咖啡废料吸附水溶液中的活性黑 5 和刚果红。染料的去除率随改性吸附剂中聚乙烯亚胺用量的增加而增加。表征结果表明,聚乙烯亚胺改性改善了吸附剂表面化学性质,同时也观察到吸附剂结构性能的轻微改善。该吸附剂在大多数实验中对阴离子染料表现出优异的去除性能。模型结果表明,阴离子染料的吸附是通过单层吸附进行的,化学反应是速率控制步骤。由于活性黑 5 中具有更多的与吸附剂相互作用的官能团,因此该吸附剂对活性黑 5 的最大吸附容量(77.52mg/g)高于刚果红(34.36mg/g)。本研究揭示了源自咖啡废料的吸附剂在纺织废水处理中的潜力。此外,表面化学改性被证明是增强生物废料衍生吸附剂性能的有效策略。