Department of Food Science and Technology, G. B. Pant University of Agriculture and Technology, Pantnagar 263 145, Uttarakhand, India.
Department of Food Engineering and Technology, Sant Longowal Institute of Engineering and Technology, 148 106, Punjab, India.
Bioresour Technol. 2022 Feb;346:126409. doi: 10.1016/j.biortech.2021.126409. Epub 2021 Nov 25.
Spent tea leaves (STL) are generated after the extraction of liquor from processed tea leaves and are regarded as an underutilized waste. STL are rich in essential amino acids, ω-6 and ω-3 fatty acids, alkaloids (theobromine and caffeine), polyphenols (catechin, theaflavins and rutin) and minerals (Ca, P, K, Mg, Mn) that could be utilized for the production of industrially important products. Vermicomposting, anaerobic digestion, silage preparation and fermentation are currently used as low cost methods for the bioconversion of STL to a usable form. Structural, morphological and chemical modification of STL after suitable bioconversion enables its application in the development of biopolymers, biofuels, catechin derivatives, biochar, absorbents for dye, and for removal of Cd, Hg, Cr(IV), As(V) and aspirin. This review discusses the composition, characterization, bioconversion and value added product generation from STL while highlighting prospective applications of STL in developing battery electrodes, nanocatalysts, insulation materials and edible bioactive peptides.
废茶叶(STL)是在提取茶叶中的液体后产生的,被视为未充分利用的废物。STL 富含必需氨基酸、ω-6 和 ω-3 脂肪酸、生物碱(可可碱和咖啡因)、多酚(儿茶素、茶黄素和芦丁)和矿物质(Ca、P、K、Mg、Mn),可用于生产工业上重要的产品。目前,蚯蚓堆肥、厌氧消化、青贮准备和发酵被用作将 STL 生物转化为可用形式的低成本方法。STL 在经过适当的生物转化后进行结构、形态和化学修饰,使其能够应用于生物聚合物、生物燃料、儿茶素衍生物、生物炭、染料吸附剂以及去除 Cd、Hg、Cr(IV)、As(V)和阿司匹林的开发。本文讨论了 STL 的组成、特性、生物转化和增值产品的生成,同时强调了 STL 在开发电池电极、纳米催化剂、绝缘材料和可食用生物活性肽方面的潜在应用。