https://scholars.lib.ntu.edu.tw/handle/123456789/581589
標題: | Ball-milled, solvent-free Sn-functionalisation of wood waste biochar for sugar conversion in food waste valorisation | 作者: | Yang X Yu I.K.M Tsang D.C.W Budarin V.L Clark J.H Wu K.C.-W Yip A.C.K Gao B Lam S.S Ok Y.S. KEVIN CHIA-WEN WU |
關鍵字: | Ball milling; Binary alloys; Catalyst activity; Chemical contamination; Food waste; Fructose; Surface chemistry; Tin; Tin alloys; Tungsten alloys; Waste management; Annealing temperatures; Carbonaceous supports; Catalytic conversion; Critical factors; Functionalisation; Sugar conversion; Value-added chemicals; Waste management options; Catalyst supports | 公開日期: | 2020 | 卷: | 268 | 起(迄)頁: | 122300 | 來源出版物: | Journal of Cleaner Production | 摘要: | The use of biomass wastes for biochar production is a promising waste management option, and biochars can be potentially applied in the food waste recycling industry to produce value-added chemicals. In this study, an advanced Sn-functionalised biochar catalyst was synthesised via a novel solvent-free ball milling protocol to facilitate the isomerisation of glucose to fructose. Raw wood biomass (W) and its derived biochars pyrolysed at low (LB, 400 °C) and high (HB, 750 °C) temperatures were investigated as catalyst supports. The interactions between Sn and the carbonaceous supports were related to the surface chemistry of the catalysts. The raw W had a functional group-enriched surface, which provided more active sites for anchoring Sn, resulting in higher metal loading on the support compared to LB and HB. The annealing temperature was another critical factor determining the amount and speciation of loaded Sn. Catalytic conversion experiments indicated that SnW annealed at 750 °C exhibited the best fructose yield (12.8 mol%) and selectivity (20.2 mol%) at 160 °C for 20 min. The catalytic activity was mainly determined by the quantity and nature of active Sn sites. This study elucidated the roles of the carbon support and its surface chemistry for synthesising biochar-supported catalysts, highlighting a simple and green approach for designing effective solid catalysts for sustainable biorefineries. ? 2020 Elsevier Ltd |
URI: | https://www.scopus.com/inward/record.uri?eid=2-s2.0-85085270776&doi=10.1016%2fj.jclepro.2020.122300&partnerID=40&md5=e9a45576f40fa983b62d06f622eae7ec https://scholars.lib.ntu.edu.tw/handle/123456789/581589 |
ISSN: | 09596526 | DOI: | 10.1016/j.jclepro.2020.122300 | SDG/關鍵字: | Ball milling; Binary alloys; Catalyst activity; Chemical contamination; Food waste; Fructose; Surface chemistry; Tin; Tin alloys; Tungsten alloys; Waste management; Annealing temperatures; Carbonaceous supports; Catalytic conversion; Critical factors; Functionalisation; Sugar conversion; Value-added chemicals; Waste management options; Catalyst supports |
顯示於: | 化學工程學系 |
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