Lee Alicia, Lan John Chi-Wei, Jambrak Anet Režek, Chang Jo-Shu, Lim Jun Wei, Khoo Kuan Shiong
Algae Bioseparation Research Laboratory, Department of Chemical Engineering and Materials Science, Yuan Ze University, Taoyuan, Taiwan.
Biorefinery and Bioprocess Engineering Laboratory, Department of Chemical Engineering and Materials Science, Yuan Ze University, Taoyuan, Taiwan.
Food Chem (Oxf). 2024 Apr 9;8:100203. doi: 10.1016/j.fochms.2024.100203. eCollection 2024 Jul 30.
Fruit and vegetable wastes are linked to the depletion of natural resources and can pose serious health and environmental risks (e.g. eutrophication, water and soil pollution, and GHG emissions) if improperly managed. Current waste management practices often fail to recover high-value compounds from fruit wastes. Among emerging valorization methods, the utilization of fruit wastes as a feedstock for microalgal biorefineries is a promising approach for achieving net zero waste and sustainable development goals. This is due to the ability of microalgae to efficiently sequester carbon dioxide through photosynthesis, utilize nutrients in wastewater, grow in facilities located on non-arable land, and produce several commercially valuable compounds with applications in food, biofuels, bioplastics, cosmetics, nutraceuticals, pharmaceutics, and various other industries. However, the application of microalgal biotechnology towards upcycling fruit wastes has yet to be implemented on the industrial scale due to several economic, technical, operational, and regulatory challenges. Here, we identify sources of fruit waste along the food supply chain, evaluate current and emerging fruit waste management practices, describe value-added compounds in fruit wastes, and review current methods of microalgal cultivation using fruit wastes as a fermentation medium. We also propose some novel strategies for the practical implementation of industrial microalgal biorefineries for upcycling fruit waste in the future.
果蔬废弃物与自然资源的消耗有关,如果管理不当,会带来严重的健康和环境风险(如富营养化、水和土壤污染以及温室气体排放)。当前的废弃物管理做法往往无法从水果废弃物中回收高价值化合物。在新兴的增值方法中,将水果废弃物用作微藻生物炼制的原料是实现零废弃物和可持续发展目标的一种有前景的方法。这是因为微藻能够通过光合作用有效固定二氧化碳、利用废水中的养分、在非耕地上的设施中生长,并生产出几种具有商业价值的化合物,可应用于食品、生物燃料、生物塑料、化妆品、营养保健品、制药及其他各种行业。然而,由于一些经济、技术、操作和监管方面的挑战,微藻生物技术在水果废弃物升级利用方面的应用尚未实现工业化规模。在此,我们确定了食品供应链中的水果废弃物来源,评估了当前和新兴的水果废弃物管理做法,描述了水果废弃物中的增值化合物,并综述了目前以水果废弃物作为发酵培养基进行微藻培养的方法。我们还提出了一些新颖的策略,以便未来实际实施用于水果废弃物升级利用的工业微藻生物炼制。