可再生能源
生物炭
生物量(生态学)
废物管理
环境科学
厌氧消化
附加值
生物能源
燃烧热
山茶
环境友好型
生物燃料
制浆造纸工业
生物技术
热解
化学
甲烷
工程类
农学
生物
宏观经济学
有机化学
经济
电气工程
燃烧
植物
生态学
作者
Prangan Duarah,Dibyajyoti Haldar,Reeta Rani Singhania,Cheng-Di Dong,Anil Kumar Patel,Mihir Kumar Purkait
标识
DOI:10.1080/07388551.2022.2157701
摘要
As the demand for tea (Camellia sinensis) has grown across the world, the amount of biomass waste that has been produced during the harvesting process has also increased. Tea consumption was estimated at about 6.3 million tonnes in 2020 and is anticipated to reach 7.4 million tonnes by 2025. The generation of tea waste (TW) after use has also increased concurrently with rising tea consumption. TW includes clipped stems, wasted tea leaves, and buds. Many TW-derived products have proven benefits in various applications, including energy generation, energy storage, wastewater treatment, and pharmaceuticals. TW is widely used in environmental and energy-related applications. Energy recovery from low- and medium-calorific value fuels may be accomplished in a highly efficient manner using pyrolysis, anaerobic digestion, and gasification. TW-made biochar and activated carbon are also promising adsorbents for use in environmental applications. Another area where TW shows promise is in the synthesis of phytochemicals. This review offers an overview of the conversion procedures for TW into value-added products. Further, the improvements in their applications for energy generation, energy storage, removal of different contaminants, and extraction of phytochemicals have been reviewed. A comprehensive assessment of the sustainable use of TWs as environmentally acceptable renewable resources is compiled in this review.
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