Nanotechnology Centre, CEET, VŠB - Technical University of Ostrava, 17. listopadu 2172/15, 708 00, Ostrava, Poruba, Czech Republic; Laboratory of Growth Regulators, Palacký University & Institute of Experimental Botany ASCR, Šlechtitelů 27, 783 71, Olomouc, Czech Republic.
Nanotechnology Centre, CEET, VŠB - Technical University of Ostrava, 17. listopadu 2172/15, 708 00, Ostrava, Poruba, Czech Republic.
Environ Res. 2024 Dec 15;263(Pt 2):120134. doi: 10.1016/j.envres.2024.120134. Epub 2024 Oct 9.
Biowaste valorisation into high-value compounds is one of the main challenges of green chemistry, as chemicals produced from biological sources are identified as key substances in the development of a low-carbon and circular bioeconomy in connection with the transition from fossil to renewable feedstocks. The review summarizes the production of high-value products such as glucose-based chemicals, phenolic compounds and volatile-fatty acids prepared from biomass waste. Biowaste pretreatment methods such as milling, filtration and extraction followed by current non-catalytic methods such as microwave or ultrasound extraction and catalytic methods for the production value-added compounds in the presence of various catalyst types in conventional, nano or enzyme form are listed with a focus on value-added chemicals applied in the food, cosmetic and pharmaceutical industries. The economic feasibility, technical aspects and concept of the biorefinery are briefly mentioned, emphasizing the necessity of life cycle assessment for each bioproduct and technological process. Finally, it provides a future perspective and makes recommendations for potential research strategies, recognizing the importance of utilizing biomass waste for the production of useful compounds as an attractive and environmentally friendly approach whose development should be encouraged. The utilization of biowaste for high-value chemicals production shows high potential, however, there are still many challenges to be resolved throughout the entire production chain, reflecting technological, economic, ecological, sociological and long-term issues.
生物废物增值转化为高附加值化合物是绿色化学的主要挑战之一,因为从生物资源中生产的化学品被认为是发展低碳和循环生物经济的关键物质,这与从化石资源向可再生原料的转变有关。本文综述了从生物质废物生产高附加值产品,如葡萄糖基化学品、酚类化合物和挥发性脂肪酸。文中列出了生物废物预处理方法,如粉碎、过滤和提取,以及当前的非催化方法,如微波或超声波提取,以及在各种催化剂类型存在下的催化方法,包括常规、纳米或酶形式的催化剂,重点介绍了应用于食品、化妆品和制药行业的增值化学品。简要提及了生物炼制的经济可行性、技术方面和概念,强调了对每种生物产品和工艺过程进行生命周期评估的必要性。最后,它提供了未来的展望,并为潜在的研究策略提出了建议,认识到利用生物质废物生产有用化合物作为一种有吸引力和环保的方法的重要性,应该鼓励这种方法的发展。利用生物废物生产高附加值化学品具有很大的潜力,然而,在整个生产链中仍然存在许多需要解决的挑战,反映了技术、经济、生态、社会学和长期问题。