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Titlebook: A Study on Catalytic Conversion of Non-Food Biomass into Chemicals; Fusion of Chemical S Mizuho Yabushita Book 2016 Springer Science+Busine

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發(fā)表于 2025-3-21 19:01:01 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱A Study on Catalytic Conversion of Non-Food Biomass into Chemicals
期刊簡稱Fusion of Chemical S
影響因子2023Mizuho Yabushita
視頻videohttp://file.papertrans.cn/143/142321/142321.mp4
發(fā)行地址Nominated by Hokkaido.University as an outstanding Ph.D. thesis.efficient catalytic systems for biomass conversion that are attractive in the.future of the chemical industry as well as sustainable soc
學科分類Springer Theses
圖書封面Titlebook: A Study on Catalytic Conversion of Non-Food Biomass into Chemicals; Fusion of Chemical S Mizuho Yabushita Book 2016 Springer Science+Busine
影響因子.The topic of this thesis is catalytic conversion ofnon-food, abundant, and renewable biomass such as cellulose and chitin tochemicals. In biorefinery, chemical transformation of polymers to valuablecompounds has attracted worldwide interest for building sustainable societies.First, the current situation of this hot research area has been summarized wellin the general introduction of the thesis, which helps readers to becomefamiliar with this topic. Next, the author explains high-yielding production ofglucose from cellulose by using an alkali-activated carbon as a catalyst,resulting in a yield of glucose as high as 88%, which is one of the highestyields ever reported. The characterization of carbon materials has indicatedthat weak acid sites on the catalyst promote the reaction, which is markedlydifferent from reported catalytic systems that require strong acids. Inaddition, the first catalytic transformation of chitin with retention of .N.-acetyl groups has been developed. Thecombination of mechanocatalytic hydrolysis and thermal solvolysis enables theproduction of .N.-acetylated monomers ingood yields of up to 70%. The catalytic systems demonstrated in this thesis areunique in th
Pindex Book 2016
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Jason Michael Lukasik,Sam A. Beares for adsorption process of cellulosic molecules, and this function also enhances the possibility to hydrolyze the substrate. Finally, the author proposes reaction mechanism for cellulose hydrolysis by carbon catalyst.
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https://doi.org/10.1007/978-3-319-98479-7er dehydration of 1,4-sorbitan is inhibited in the presence of sorbitol. Furthermore, a reaction mechanism is proposed, based on detailed product identification. The dehydration proceeds through an S.2 mechanism; that is, the reaction occurs at C1 of sorbitol attacked by OH of secondary C4.
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A Study on Catalytic Conversion of Non-Food Biomass into ChemicalsFusion of Chemical S
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Front MatterBars Anomalies, Unitarity and Renormalizatior................... 133 Paul H. Frampton Charm Particle Production by Neutrinos.................... 139 N.P. Samios 34 Techniques to Search for Proton Instability to 10 Years. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 157 . . . .
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General Introduction,ified for HEAs which have entirely different compositions from conventional alloys. The most distinguished effects in HEAs are high-entropy, severe lattice distortion, sluggish diffusion, and cocktail effects. This chapter will present and discuss the corresponding subjects of physical metallurgy ba
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