Literature DB >> 30569863

Catalytic Conversion of Biorenewable Sugar Feedstocks into Market Chemicals.

Gary Diamond1, Alfred Hagemeyer1,2, Vince Murphy1, Valery Sokolovskii1,2.   

Abstract

The transformation of low cost sugar feedstocks into market chemicals and monomers for existing or novel high performance polymers by chemical catalysis is reviewed. Emphasis is given to industrially relevant, continuous flow, trickle bed processes. Since long-term catalyst stability under hydrothermal conditions is an important issue to be addressed in liquid phase catalysis using carbohydrate feedstocks, we will primarily discuss the results of catalytic performance for prolonged times on stream. In particular, the selective aerobic oxidation of glucose to glucaric acid and the subsequent selective hydrogenation to adipic acid is reviewed. Hydroxymethylfurfural (HMF), which is readily available from fructose, can be upgraded by oxidation to furan dicarboxylic acid (FDCA) or by consecutive reduction and hydrogenolysis to hexanetriol (HTO) followed by hydrogenolysis to biobased hexanediol (HDO). Direct amination of HDO yields biobased hexamethylene diamine (HMDA). Aerobic oxidation of HDO represents an alternative route to biobased adipic acid. HMDA and adipic acid are the monomers required for the production of nylon- 6,6, a major polymer for engineering and fibre applications. Copyright© Bentham Science Publishers; For any queries, please email at epub@benthamscience.net.

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Keywords:  Hydrogenolysis; adipiczzm321990acid; aerobic oxidation; chemical catalysis; glucaric acid; hydrothermal conditions; polymer.

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Year:  2018        PMID: 30569863     DOI: 10.2174/1386207322666181219155050

Source DB:  PubMed          Journal:  Comb Chem High Throughput Screen        ISSN: 1386-2073            Impact factor:   1.339


  1 in total

Review 1.  Recent Progress in Adipic Acid Synthesis Over Heterogeneous Catalysts.

Authors:  Wenjuan Yan; Guangyu Zhang; Jinyao Wang; Mengyuan Liu; Yu Sun; Ziqi Zhou; Wenxiang Zhang; Shuxia Zhang; Xiaoqiang Xu; Jian Shen; Xin Jin
Journal:  Front Chem       Date:  2020-03-31       Impact factor: 5.221

  1 in total

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