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生物质的水热转化用于碳量子点和生物燃料的联产。

Hydrothermal conversion of biomass for co-production of carbon quantum dots and biofuels.

作者信息

Baishya Nilotpal, Bora Neelam, Athparia Mondita, Padhi Priyanka, Kataki Rupam

机构信息

Biofuel Laboratory, Department of Energy, Tezpur University, Assam, 784028, India.

出版信息

Environ Sci Pollut Res Int. 2025 Jan 3. doi: 10.1007/s11356-024-35842-x.

Abstract

Agro-processing industries generate a substantial quantity of biomass wastes. Conversion of these wastes into valuable material could be profitable considering both environmental and economic aspects. Among various biomass conversion methods, hydrothermal conversion can be used for co-production of biofuel and other valuable materials like carbon quantum dots (CQDs) and activated carbons. This study investigates the applicability of hydrothermal conversion in simultaneous production of biofuel and carbon quantum dots from biowastes obtained from flour mill. Water soluble CQDs of average size ranging between 4.67 and 4.88 nm were produced from various biowastes generated during wheat processing. Hydrochars obtained during the conversion exhibited calorific values between 12.95 and 25.94 MJ/kg. The influence of the composition of feedstock on hydrochar properties was also investigated. This study revealed that hydrothermal conversion technique could lead to the production of high-value materials along with the proper management of agro-industrial wastes, paving the way for a circular economy and bioeconomy. This would also help to mitigate environmental problems caused by open dumping and burning of the biowastes.

摘要

农产品加工业会产生大量生物质废弃物。从环境和经济两方面考虑,将这些废弃物转化为有价值的材料可能会带来收益。在各种生物质转化方法中,水热转化可用于联产生物燃料以及其他有价值的材料,如碳量子点(CQDs)和活性炭。本研究考察了水热转化法从面粉厂产生的生物废弃物中同时生产生物燃料和碳量子点的适用性。从小麦加工过程中产生的各种生物废弃物中制备出了平均尺寸在4.67至4.88纳米之间的水溶性碳量子点。转化过程中获得的水热炭的热值在12.95至25.94兆焦/千克之间。还研究了原料组成对水热炭性质的影响。该研究表明,水热转化技术能够在妥善管理农产品工业废弃物的同时生产高价值材料,为循环经济和生物经济铺平道路。这也将有助于缓解因生物废弃物露天倾倒和焚烧而造成的环境问题。

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