龚新怀, 李明春, 辛梅华, 赵瑨云, 赵晓杰, 吕橄. 茶生物质填充高分子复合材料的研究进展[J]. 农业工程学报, 2020, 36(18): 283-291. DOI: 10.11975/j.issn.1002-6819.2020.18.033
    引用本文: 龚新怀, 李明春, 辛梅华, 赵瑨云, 赵晓杰, 吕橄. 茶生物质填充高分子复合材料的研究进展[J]. 农业工程学报, 2020, 36(18): 283-291. DOI: 10.11975/j.issn.1002-6819.2020.18.033
    Gong Xinhuai, Li Mingchun, Xin Meihua, Zhao Jinyun, Zhao Xiaojie, Lyu Gan. Research progress of polymer composites filled with tea biomass[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2020, 36(18): 283-291. DOI: 10.11975/j.issn.1002-6819.2020.18.033
    Citation: Gong Xinhuai, Li Mingchun, Xin Meihua, Zhao Jinyun, Zhao Xiaojie, Lyu Gan. Research progress of polymer composites filled with tea biomass[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2020, 36(18): 283-291. DOI: 10.11975/j.issn.1002-6819.2020.18.033

    茶生物质填充高分子复合材料的研究进展

    Research progress of polymer composites filled with tea biomass

    • 摘要: 茶叶在种植、生产、加工及消费环节中会产生大量的茶剩余物,茶生物质呈中空多孔隙结构,富含纤维素、木质素、半纤维素及茶多酚、茶多糖等多种活性成分,在农牧业、医疗健康、食品、环境治理及复合板材领域具有广泛应用前景,尤其是茶生物质/高分子复合材料的研究与应用得到快速和广泛发展。该文首先概述了茶生物质资源特点及其化学组成,然后综述了茶生物质填充不同高分子复合材料的研究进展,并介绍了茶生物质填充高分子复合材料在刨花板、仿木材料、吸声材料、制浆造纸、环境治理及功能食品中的应用研究现状。并指出今后须加强:1)茶生物质中多种组分的综合化、集成化利用研究;2)茶生物质木塑复合材料在阻燃、电学、热学及抗菌除臭等性能研究;3)茶生物质填充高分子复合材料在旅游、养生、装修等领域的应用基础研究;4)茶生物质生化成分变化对茶食品口味、外观及保健功能的影响机制研究。

       

      Abstract: Abstract: The researches and applications of biomass materials have always been the interest of people, due to the advantages of low-cost, non pollution, regeneration and so on. Tea biomass is the general name of waste dominated during the cultivation, processing, deep processing and consumption processes of tea. The tea biomass includes 1)dead-wood, fallen leaves, pruning branches and leaves, seed shells and other tea residues produced during tea cultivation; 2)fannings, thick stems, old stems and tea ash produced during tea processing; 3)tea residues and tea oil cakes produced during deep processing of tea beverage, instant tea, tea polyphenols and tea oil; 4)tea leaves after drinking of tea. A large number of tea residues are produced during the process of planting, production, processing and consumption of tea. China is the biggest producer and consumer of tea all over the world. The cultivation area and yield of tea of China were more than 2.9×106 hm2 and 2.6×106 t in 2019, respectively, which accounts for 60% and 50% of the world's area harvested and yield of tea. The worldwide consumption of tea is about 6 million tons annually, and the amount of tea biomass produced during the tea industry reached up to 5×106 t per pear merely in china, most of which were treated as agricultural waste, resulting in both environmental pollution and enormous natural resource waste. Therefore, the research and application of tea waste would be great benefit to the environment management and developpment of tea industry. The tea biomass resources showed a hollow porous structure and were rich in cellulose, lignin, hemicellulose, tea polyphenols, theanine and other useful components. Traditionally, the tea biomass were mainly used as raw materials to extract active components, plant growth fertilizers, animal feeds and environmental adsorption materials. It has extensive application potential in agriculture and animal husbandry, health care, food processing, environmental protection and composited materials. With the developpment of research focused on the tea biomass, the composites prepared by the combination of tea biomass with polymers have been developped rapidly and widely in recent years because of their excellent processing and application performance, and have became the most important part of tea biomass based materials. In order to clarify the current research status of the tea biomss/polymer composites, this paper introduced the characteristics and chemical composition of the tea biomass resources first, and then the advances in research of tea biomass filled different polymers composites were recommended, and the progress of application in particleboard, wood-plastic materials, sound-absorbing materials, rubber based composites, pulp and paper making, wastewater treatment and functional food of polymer composites filled with tea biomass were also overviewed. In addition, the future research of tea biomass resources are pointed out, which includes 1)developing comprehensive and integrated utilization technology of tea biomass; 2)exploiting the research in flame retardant, electrical, thermal, antibacterial and deodorizing properties of the tea biomass filled resin materials; 3)enhancing the application research in tourism, health preservation, decoration and other fields of the tea biomass filled polymer composites; 4)studying the influence and mechanism of the biochemical components changes of tea biomass on the taste, appearance and health performances of the tea functional foods.

       

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