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基于生物经济的柑橘加工废弃物微生物增值利用方法

Bioeconomy-Based Approaches for the Microbial Valorization of Citrus Processing Waste.

作者信息

Stavrakakis Ioannis, Melidis Paraschos, Kavroulakis Nektarios, Goliomytis Michael, Simitzis Panagiotis, Ntougias Spyridon

机构信息

Laboratory of Wastewater Management and Treatment Technologies, Department of Environmental Engineering, Democritus University of Thrace, Vas. Sofias 12, 67132 Xanthi, Greece.

Institute for Olive Tree, Subtropical Plants and Viticulture, Hellenic Agricultural Organization-Dimitra (ELGO-DIMITRA), Agrokipio-Souda, 73164 Chania, Greece.

出版信息

Microorganisms. 2025 Aug 13;13(8):1891. doi: 10.3390/microorganisms13081891.

Abstract

The citrus processing industry is an economically important agro-industrial sector worldwide; however, it produces significant amounts of waste annually. The biorefinery concept and the recovery of bio-based materials from agro-industrial residues, including citrus processing waste, are emphasized in the European Green Deal, reflecting the EU's commitment to fostering circularity. Biotreatment of citrus processing waste, including bioconversion into biomethane, biohydrogen, bioethanol and biodiesel, has been applied to valorize biomass for energy recovery. It can also be composted into a valuable soil conditioners and fertilizers, while raw and fermented citrus residues may exhibit phytoprotective activity. Citrus-derived residues can be converted into materials such as nanoparticles with adsorptive capacity for heavy metals and recalcitrant organic pollutants, and materials with antimicrobial properties against various microbial pathogens, or the potential to remove antibiotic-resistance genes (ARGs) from wastewater. Indeed, citrus residues are an ideal source of industrial biomolecules, like pectin, and the recovery of bioactive compounds with added value in food processing industry. Citrus processing waste can also serve as a source for isolating specialized microbial starter cultures or as a substrate for the growth of bioplastic-producing microorganisms. Solid-state fermentation of citrus residues can enhance the production of hydrolytic enzymes, with applications in food and environmental technology, as well as in animal feed. Certain fermented products also exhibit antioxidant properties. Citrus processing waste may be used as alternative feedstuff that potentially improves the oxidative stability and quality of animal products.

摘要

柑橘加工业是全球一个具有重要经济意义的农业产业部门;然而,它每年都会产生大量废弃物。生物精炼概念以及从农业工业残渣(包括柑橘加工废弃物)中回收生物基材料,在《欧洲绿色协议》中得到强调,这反映了欧盟对促进循环利用的承诺。对柑橘加工废弃物进行生物处理,包括将其生物转化为生物甲烷、生物氢气、生物乙醇和生物柴油,已被用于使生物质增值以实现能量回收。它还可以被堆肥制成有价值的土壤改良剂和肥料,而未加工和发酵的柑橘残渣可能具有植物保护活性。柑橘衍生的残渣可以转化为具有吸附重金属和难降解有机污染物能力的纳米颗粒等材料,以及对各种微生物病原体具有抗菌特性或有从废水中去除抗生素抗性基因(ARGs)潜力的材料。事实上,柑橘残渣是工业生物分子(如果胶)的理想来源,也是在食品加工业中回收具有附加值的生物活性化合物的理想来源。柑橘加工废弃物还可以作为分离特殊微生物发酵剂培养物的来源,或作为生产生物塑料的微生物生长的底物。柑橘残渣的固态发酵可以提高水解酶的产量,这些水解酶可应用于食品和环境技术以及动物饲料中。某些发酵产品还具有抗氧化特性。柑橘加工废弃物可以用作替代饲料,有可能提高动物产品的氧化稳定性和质量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c45b/12388687/6e6f3bf1cff5/microorganisms-13-01891-g001.jpg

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