Efficient lipid production from herbal extraction residue hydrolysate by the oleaginous yeast Cutaneotrichosporon oleaginosum for biodiesel production

被引:0
作者
Chuying Zhang
Yanan Wang
Duanbin Tan
Yi Liu
Lingling Li
Wenting Zhou
Zhiwei Gong
机构
[1] Wuhan University of Science and Technology,School of Chemistry and Chemical Engineering
[2] State Key Laboratory Breeding Base of Dao-Di Herbs,HuBei Province Key Laboratory of Coal Conversion and New Carbon Materials
[3] National Resource Center for Chinese Materia Medica,undefined
[4] China Academy of Chinese Medical Sciences,undefined
[5] Wuhan University of Science and Technology,undefined
来源
Biomass Conversion and Biorefinery | 2024年 / 14卷
关键词
Herbal extraction residues; Fed-batch hydrolysis; Dilute acid pretreatment; Microbial lipid; Biodiesel;
D O I
暂无
中图分类号
学科分类号
摘要
Tremendous amounts of herbal extraction residues (HERs) derived from the traditional Chinese herb medicine industry are routinely generated annually. However, HERs are generally treated by landfill or incineration, resulting in a great waste of resources and serious environmental issues. Here, the residue of the production of Xuanmai Ganjie Capsule (XGCR) was described for lipid production. Part of the sugar polymers (44.0%) contained in the raw XGCR could be directly hydrolyzed using a fed-batch hydrolysis process at 54% solids loading. More interestingly, sugar yield approached the theoretical maximal value when the residue was pretreated by 1% (w/w) dilute sulfuric acid before enzymatic hydrolysis. Cutaneotrichosporon oleaginosum exhibited high oleaginicity with lipid titer, content, and yield of 8.5 g/L, 40.7%, and 80.2 g/kg of residue supplied, respectively. The fatty acid profiles and the prediction of biodiesel parameters indicated the microbial lipid prepared from the XGCR was a suitable feedstock for biodiesel industry. This study strongly supported that the XGCR-to-lipid route can be a promising way for turning HERs into treasure.
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页码:8681 / 8692
页数:11
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共 213 条
  • [1] Gebremariam SN(2018)Economics of biodiesel production: review Energy Convers Manag 168 74-84
  • [2] Marchetti JM(2012)Review of biodiesel composition, properties, and specifications Renew Sust Energy Rev 16 143-169
  • [3] Hoekman SK(2014)Oleaginous yeasts for biodiesel: current and future trends in biology and production Biotechnol Adv 32 1336-1360
  • [4] Broch A(2019)Oleaginous yeasts for sustainable lipid production—from biodiesel to surf boards, a wide range of “green” applications Appl Microbiol Biotechnol 103 3651-3667
  • [5] Robbins C(2017)From low-cost substrates to single cell oils synthesized by oleaginous yeasts Bioresour Technol 245 1507-1519
  • [6] Ceniceros E(2020)Fed-batch enzymatic hydrolysis of alkaline organosolv-pretreated corn stover facilitating high concentrations and yields of fermentable sugars for microbial lipid production Biotechnol Biofuels 13 13-401
  • [7] Natarajan M(2020)Cost, energy and GHG emission assessment for microbial biodiesel production through valorization of municipal sludge and crude glycerol Bioresour Technol 297 122404-54
  • [8] Sitepu IR(2017)Efficient bioconversion of high-content volatile fatty acids into microbial lipids by Bioresour Technol 239 394-855
  • [9] Garay LA(2015) ATCC 20509 Trends Biotechnol 33 43-807
  • [10] Sestric R(2016)Microbial lipid-based lignocellulosic biorefinery: feasibility and challenges Renew Sust Energy Rev 62 836-891