Mahato Neelima, Sharma Kavita, Sinha Mukty, Baral Ek Raj, Koteswararao Rakoti, Dhyani Archana, Hwan Cho Moo, Cho Sunghun
School of Chemical Engineering, Yeungnam University, Gyeongsan 38541, Republic of Korea.
Department of Chemistry, Idaho State University, Pocatello 83209, ID, USA.
J Adv Res. 2020 Jan 21;23:61-82. doi: 10.1016/j.jare.2020.01.007. eCollection 2020 May.
Citrus waste includes peels, pulp and membrane residue and seeds, constituting approximately 40-60% of the whole fruit. This amount exceeds ~110-120 million tons annually worldwide. Recent investigations have been focused on developing newer techniques to explore various applications of the chemicals obtained from the citrus wastes. The organic acids obtained from citrus waste can be utilized in developing biodegradable polymers and functional materials for food processing, chemical and pharmaceutical industries. The peel microstructures have been investigated to create bio-inspired materials. The peel residue can be processed to produce fibers and fabrics, 3D printed materials, carbon nanodots for bio-imaging, energy storage materials and nanostructured materials for various applications so as to leave no waste at all. The article reviews recent advances in scientific investigations to produce valuable products from citrus wastes and possibilities of innovating future materials and promote zero remaining waste for a cleaner environment for future generation.
柑橘类废弃物包括果皮、果肉、膜残渣和种子,约占整个果实的40%-60%。全球范围内,这一数量每年超过1.1亿至1.2亿吨。最近的研究集中在开发更新技术,以探索从柑橘类废弃物中提取的化学物质的各种应用。从柑橘类废弃物中获得的有机酸可用于开发可生物降解的聚合物以及用于食品加工、化工和制药行业的功能材料。人们对果皮微观结构进行了研究,以制造受生物启发的材料。果皮残渣可以加工成纤维和织物、3D打印材料、用于生物成像的碳纳米点、储能材料以及用于各种应用的纳米结构材料,从而实现零废弃物排放。本文综述了利用柑橘类废弃物生产有价值产品的科学研究最新进展,以及创新未来材料、推动零残留废弃物以实现为子孙后代创造更清洁环境的可能性。