综述与专题评论

高粱秸秆生物炼制研究进展

  • 李敏 ,
  • 邹伟 ,
  • 寇慧 ,
  • 曹雅淇
展开
  • (四川轻化工大学 生物工程学院,四川 宜宾,644005)
第一作者:硕士研究生(邹伟副教授为通信作者,E-mail:weizou1985@163.com)

收稿日期: 2022-09-01

  修回日期: 2022-10-25

  网络出版日期: 2023-12-08

基金资助

固态酿造四川省院士(专家)工作站项目(2017YSGZZ03);四川轻化工大学专业学位研究生课程案例库建设项目(KA202007);四川轻化工大学大学生创新创业训练计划项目(S202010622085)

Research progress on biorefinery of sorghum straw

  • LI Min ,
  • ZOU Wei ,
  • KOU Hui ,
  • CAO Yaqi
Expand
  • (College of Bioengineering, Sichuan University of Science & Engineering, Yibin 644005,China)

Received date: 2022-09-01

  Revised date: 2022-10-25

  Online published: 2023-12-08

摘要

高粱秸秆拥有巨大的开发潜能。高粱秸秆利用生物炼制技术转化为生物能源、化工产品等,可促进秸秆的高值化利用,有效缓解环境污染问题,实现低碳可持续发展。文章综述了高粱秸秆生物炼制相关研究进展,主要包括基于碳水化合物、纤维素/半纤维素、木质素和全组分的生物炼制模式,并对当前高粱秸秆生物炼制加工过程中存在的问题进行了分析和探讨。

本文引用格式

李敏 , 邹伟 , 寇慧 , 曹雅淇 . 高粱秸秆生物炼制研究进展[J]. 食品与发酵工业, 2023 , 49(21) : 358 -366 . DOI: 10.13995/j.cnki.11-1802/ts.033509

Abstract

Sorghum straw has great development potential. Sorghum straw can be converted to bioenergy and chemical products by biorefinery technologies, which can promote the high-value utilization of the straw, effectively alleviate environmental pollution and achieve low-carbon sustainable development. The article reviews the research progress of sorghum straw biorefinery, including biorefinery models based on carbohydrates, cellulose, hemicellulose, lignin, and full components. The problems existing in the current biorefinery processes are also analyzed and discussed.

参考文献

[1] 韩冰, 李纪红, 李十中, 等.甜高粱茎秆保存方法与优化研究[J].太阳能学报, 2012, 33(10):1719-1723.
HAN B, LI J H, LI S Z, et al.Research on sweet sorghum stalks storage technologies for fuel ethanol production[J].Acta Energiae Solaris Sinica, 2012, 33(10):1719-1723.
[2] 王艳秋, 朱翠云, 卢峰, 等.甜高粱的用途及其发展前景[J].杂粮作物, 2004, 24(1):55-56.
WANG Y Q, ZHU C Y, LU F, et al.Application and development prospect of sweet sorghum[J].Horticulture & Seed, 2004, 24(1):55-56.
[3] 李云斌, 张衍.农作物秸秆综合利用的重要性及对策[J].现代农业研究, 2021, 27(7):20-21.
LI Y B, ZHANG Y.Importance and countermeasures of comprehensive utilization of crop straw[J].Modern Agriculture Research, 2021, 27(7):20-21.
[4] 李冀新, 赵志永, 武冬梅, 等.甜高粱秸秆主要营养成分含量及分布研究[J].食品工业科技, 2012, 33(4):400-401;409.
LI J X, ZHAO Z Y, WU D M, et al.The main nutrient content and distribution of sweet sorghum stalks[J].Science and Technology of Food Industry, 2012, 33(4):400-401;409.
[5] 张子晨, 宋元达.木质纤维素材料综合利用生物技术研究进展[J].广东农业科学, 2021, 48(1):150-159.
ZHANG Z C, SONG Y D.Research progress of biotechnology for comprehensive utilization of lignocellulosic materials[J].Guangdong Agricultural Sciences, 2021, 48(1):150-159.
[6] 谭天伟, 俞建良, 张栩.生物炼制技术研究新进展[J].化工进展, 2011, 30(1):117-125.
TAN T W, YU J L, ZHANG X.Advance in biorefinery technology[J].Chemical Industry and Engineering Progress, 2011, 30(1):117-125.
[7] 傅新凯, 周子轩, 季泽涛, 等.秸秆类生物质预处理技术研究进展[J].山东化工, 2020, 49(1):36-38.
FU X K, ZHOU Z X, JI Z T, et al.Research progress on pretreatment technology of straw biomass[J].Shandong Chemical Industry, 2020, 49(1):36-38.
[8] 张毅, 张宏, 刘云云, 等.纤维素燃料乙醇预处理技术研究进展[J].可再生能源, 2021, 39(2):148-155.
ZHANG Y, ZHANG H, LIU Y Y, et al.Research progress of cellulosic fuel ethanol pretreatment technology[J].Renewable Energy Resources, 2021, 39(2):148-155.
[9] 张强. 干法生物炼制技术生产高浓度纤维素乙醇的同步糖化与共发酵研究[D].上海:华东理工大学, 2017.
ZHANG Q.Study on simultaneous saccharification and co-fermentation of high concentration cellulose ethanol produced by dry biorefinery technology[D].Shanghai:East China University of Science and Technology, 2017.
[10] SUN S H, ZHANG Y Y, YANG Z Y, et al.Improving the biodegradability of rice straw by electrochemical pretreatment[J].Fuel, 2022, 330:125701.
[11] WU D, QU F T, LI D, et al.Effect of Fenton pretreatment and bacterial inoculation on cellulose-degrading genes and fungal communities during rice straw composting[J].Science of the Total Environment, 2022, 806:151376.
[12] XIE J X, CHENG Z, ZHU S Y, et al.Lewis base enhanced neutral deep eutectic solvent pretreatment for enzymatic hydrolysis of corn straw and lignin characterization[J].Renewable Energy, 2022, 188:320-328.
[13] 陈朝儒, 王智, 马强, 等.甜高粱茎汁及茎渣同步糖化发酵工艺优化[J].农业工程学报, 2016, 32(3):253-258.
CHEN C R, WANG Z, MA Q, et al.Optimization of ethanol production from bagasse and juice of sweet sorghum stem by simultaneous saccharification and fermentation[J].Transactions of the Chinese Society of Agricultural Engineering, 2016, 32(3):253-258.
[14] 潘宗瑾, 王海洋, 杨华, 等.甜高粱盐甜1号秸秆榨汁发酵制取乙醇[J].大麦与谷类科学, 2020, 37(5):48-51.
PAN Z J, WANG H Y, YANG H, et al.Ethanol production from sweet sorghum Yantian No.1 straw by juice fermentation[J].Barley and Cereal Sciences, 2020, 37(5):48-51.
[15] 杨巧洁. 利用毕赤酵母M1发酵甜高粱秸秆纤维素生产乙醇条件的优化[D].银川:北方民族大学, 2018.
YANG Q J.Optimization of ethanol production from sweet sorghum straw cellulose by Pichia pastoris M1[D].Yinchuan:North Minzu University, 2018.
[16] CHENG M H, SUN L, JIN Y S, et al.Production of xylose enriched hydrolysate from bioenergy sorghum and its conversion to β-carotene using an engineered Saccharomyces cerevisiae[J].Bioresource Technology, 2020, 308:123275.
[17] AHMAD F B, KALAM M A, ZHANG Z Y, et al.Sustainable production of furan-based oxygenated fuel additives from pentose-rich biomass residues[J].Energy Conversion and Management:X, 2022, 14:100222.
[18] 王勇. 以廉价生物质生产L-乳酸新方法研究[D].北京:北京化工大学, 2017.
WANG Y.Study on new method of producing L-lactic acid from cheap biomass[D].Beijing:Beijing University of Chemical Technology, 2017.
[19] 梅晓岩, 刘荣厚, 曹卫星.甜高粱茎秆固态发酵制取燃料乙醇中试项目能耗分析[J].农业工程学报, 2012, 28(4):194-198.
MEI X Y, LIU R H, CAO W X.Energy consumption analysis on pilot-scale plant of fuel ethanol production from sweet sorghum stalk by solid state fermentation[J].Transactions of the Chinese Society of Agricultural Engineering, 2012, 28(4):194-198.
[20] 罗春良.Clostridium thermocellumThermoanaerobacterium thermosaccharolyticum利用甜高粱秸秆产纤维素乙醇性能研究[D].银川:北方民族大学,2016.
LUO C L.The performance of Clostridium thermocellum and Thermoanaerobacterium thermosaccharolyticum using sweet sorghum bagasse to produce cellulosic ethanol[J].Yinchuan:North Minzu University, 2016.
[21] 程意峰, 李世杰, 黄金鹏, 等.利用甜高粱秸秆汁发酵生产丁醇、丙酮[J].农业工程学报, 2008, 24(10):177-180.
CHENG Y F, LI S J, HUANG J P, et al.Production of acetone and butanol by fermentation of sweet sorghum stalk juice[J].Transactions of the Chinese Society of Agricultural Engineering, 2008, 24(10):177-180.
[22] JAFARI Y, AMIRI H, KARIMI K.Acetone pretreatment for improvement of acetone, butanol, and ethanol production from sweet sorghum bagasse[J].Applied Energy, 2016, 168:216-225.
[23] VEZA I, MUHAMAD SAID M F, LATIFF Z A.Recent advances in butanol production by acetone-butanol-ethanol (ABE) fermentation[J].Biomass and Bioenergy, 2021, 144:105919.
[24] ISLAM M S, ZHANG C, SUI K Y, et al.Coproduction of hydrogen and volatile fatty acid via thermophilic fermentation of sweet sorghum stalk from co-culture of Clostridium thermocellum and Clostridium thermosaccharolyticum[J].International Journal of Hydrogen Energy, 2017, 42(2):830-837.
[25] ISLAM M S, ZHANG Z J, QU S B, et al.Coproduction of hydrogen and volatile fatty acids via integrated two-step fermentation of sweet sorghum stalks by alkaline and enzymatic treatment[J].Biomass and Bioenergy, 2021, 145:105923.
[26] 曹燕篆, 苏婉, 樊文华, 等.菌群预处理对高粱秸秆乙醇-甲烷联合转化效率的影响[J].农业环境科学学报, 2022, 41(3):631-638.
CAO Y Z, SU W, FAN W H, et al.Effects of microbial pretreatment on ethanol-methane co-conversion efficiency of sorghum straw[J].Journal of Agro-Environment Science, 2022, 41(3):631-638.
[27] PASTERIS A M, HEIERMANN M, THEUERL S, et al.Multi-advantageous sorghum as feedstock for biogas production:A comparison between single-stage and two-stage anaerobic digestion systems[J].Journal of Cleaner Production, 2022, 358:131985.
[28] LOLASI F, AMIRI H, ALI ASADOLLAHI M, et al.Using sweet sorghum bagasse for production of amylases required for its grain hydrolysis via a biorefinery platform[J].Industrial Crops and Products, 2018, 125:473-481.
[29] ZHOU X, XU Y.Integrative process for sugarcane bagasse biorefinery to co-produce xylooligosaccharides and gluconic acid[J].Bioresource Technology, 2019, 282:81-87.
[30] AI B L, LI W Q, WOOMER J, et al.Natural deep eutectic solvent mediated extrusion for continuous high-solid pretreatment of lignocellulosic biomass[J].Green Chemistry, 2020, 22(19):6372-6383.
[31] WANG W, LEE D J.Lignocellulosic biomass pretreatment by deep eutectic solvents on lignin extraction and saccharification enhancement:A review[J].Bioresource Technology, 2021, 339:125587.
[32] XUE B L, YANG Y, ZHU M Q, et al.Lewis acid-catalyzed biphasic 2-methyltetrahydrofuran/H2O pretreatment of lignocelluloses to enhance cellulose enzymatic hydrolysis and lignin valorization[J].Bioresource Technology, 2018, 270:55-61.
[33] CHEN Z, BAI X L, LUSI A, et al.One-pot selective conversion of lignocellulosic biomass into furfural and co-products using aqueous choline chloride/methyl isobutyl ketone biphasic solvent system[J].Bioresource Technology, 2019, 289:121708.
[34] POWELL J M, 刘树琴, 张在群.高粱秸秆中的营养和碳水化合物分布[J].国外农学-杂粮作物, 1992, 12(6):30-32.
POWELL J M, LIU S Q, ZHANG Z Q.Distribution of nutrients and carbohydrates in sorghum straw[J].Horticulture & Seed, 1992, 12(6):30-32.
[35] 韩冰,王莉,李十中.甜高粱茎秆保存方法研究[C].全国农村清洁能源与低碳技术学术研讨会论文集,2011:287-292.
HAN B, WANG L, LI S Z.Study on preservation method of sweet sorghum stalk[C].Proceeding of National Rural Clean Energy and Low Carbon Technology Symposium,2011:287-292.
[36] 赵志永. 甜高粱液态发酵制备燃料乙醇的研究[D].石河子:石河子大学, 2009.
ZHAO Z Y.Study on producing fuel alcohol from sweet sorghum by liquid-state fermentation[D].Shihezi:Shihezi University, 2009.
[37] 刘健, 叶凯, 陈美珍, 等.甜高粱秸秆发酵菌种的诱变育种及其固态发酵工艺的研究[J].酿酒科技, 2011(6):28-31.
LIU J, YE K, CHEN M Z, et al.Study on mutation breeding of fermenting strains for sweet sorghum stalk & its solid fermentation techniques[J].Liquor-Making Science & Technology, 2011(6):28-31.
[38] 韩冰, 王莉, 李十中, 等.先进固体发酵技术(ASSF)生产甜高粱乙醇[J].生物工程学报, 2010, 26(7):966-973.
HAN B, WANG L, LI S Z, et al.Ethanol production from sweet sorghum stalks by advanced solid state fermentation (ASSF) technology[J].Chinese Journal of Biotechnology, 2010, 26(7):966-973.
[39] 王二强, 耿欣, 李十中, 等.甜高粱秆分批固态发酵制乙醇动力学研究[J].食品与发酵工业, 2009, 35(10):1-4.
WANG E Q, GENG X, LI S Z, et al.Kinetics study on solid state batch fermentation of sweet sorghum stalks to produce ethanol[J].Food and Fermentation Industries, 2009, 35(10):1-4.
[40] YU J L, ZHANG T, ZHONG J, et al.Biorefinery of sweet sorghum stem[J].Biotechnology Advances, 2012, 30(4):811-816.
[41] 陈朝儒. 利用酵母重组技术提高作物秸秆乙醇发酵的研究[D].杨凌:西北农林科技大学, 2016.
CHEN C R.Study on improving ethanol fermentation of crop straw by yeast recombination technology[D].Yangling:Northwest A & F University, 2016.
[42] 关向文, 仉磊, 李十中.固态发酵过程中的混合研究[J].生物产业技术, 2018(3):63-72.
GUAN X W, ZHANG L, LI S Z.Study on the mixing process in solid-state fermentation[J].Biotechnology & Business, 2018(3):63-72.
[43] APPIAH-NKANSAH N B, LI J, ROONEY W, et al.A review of sweet sorghum as a viable renewable bioenergy crop and its techno-economic analysis[J].Renewable Energy, 2019, 143:1121-1132.
[44] GÍRIO F M, FONSECA C, CARVALHEIRO F, et al.Hemicelluloses for fuel ethanol:A review[J].Bioresource Technology, 2010, 101(13):4775-4800.
[45] 任俊莉, 刘慧莹, 王孝辉, 等.木质纤维素资源化主要途径及半纤维素优先资源化利用策略[J].生物加工过程, 2020, 18(1):1-12.
REN J L, LIU H Y, WANG X H, et al.Various approaches of lignocellulose utilization and strategies for hemicellulose-preferred lignocellulose biorefinery[J].Chinese Journal of Bioprocess Engineering, 2020, 18(1):1-12.
[46] 韩昫身. 木质纤维素生物质的水溶性组分生物炼制应用与纳米纤维素制备[D].上海:华东理工大学, 2019.
HAN X S.Biorefining application of water-soluble components of lignocellulosic biomass and preparation of nanocellulose[D].Shanghai:East China University of Science and Technology, 2019.
[47] RODIONOVA M V, BOZIEVA A M, ZHARMUKHAMEDOV S K, et al.A comprehensive review on lignocellulosic biomass biorefinery for sustainable biofuel production[J].International Journal of Hydrogen Energy, 2022, 47(3):1481-1498.
[48] 叶科丽, 唐艳军, 傅丹宁, 等.纤维素水解制备葡萄糖的研究进展[J].中国造纸学报, 2020, 35(2):81-88.
YE K L, TANG Y J, FU D N, et al.Research progress in preparation of glucose by hydrolysis of cellulose[J].Transactions of China Pulp and Paper, 2020, 35(2):81-88.
[49] DROSOS A, BOURA K, DIMA A, et al.A cell-factory model of Saccharomyces cerevisiae based on bacterial cellulose without GMO for consolidated bioprocessing of starch[J].Food and Bioproducts Processing, 2021, 128:202-214.
[50] 曹月乔, 张国良, 王菲菲.纤维素生物质生产燃料乙醇的研究进展[J].淮阴工学院学报, 2014, 23(1):46-51.
CAO Y Q, ZHANG G L, WANG F F.Research progress on technological processes of fuel ethanol production from cellulosic biomass[J].Journal of Huaiyin Institute of Technology, 2014, 23(1):46-51.
[51] 徐丽丽, 沈煜, 鲍晓明.酿酒酵母纤维素乙醇统合加工(CBP)的策略及研究进展[J].生物工程学报, 2010, 26(7):870-879.
XU L L, SHEN Y, BAO X M.Progress and strategies on bioethanol production from lignocellulose by consolidated bioprocessing (CBP) using Saccharomyces cerevisiae[J].Chinese Journal of Biotechnology, 2010, 26(7):870-879.
[52] 黄俊, 梁士劼.利用联合生物加工生产纤维素乙醇的研究进展[J].江苏农业科学, 2021, 49(2):18-23.
HUANG J, LIANG S J.Research progress of cellulose ethanol production by combined biological processing[J].Jiangsu Agricultural Sciences, 2021, 49(2):18-23.
[53] 许从峰, 张方政, 张伟, 等.合成微生物群落用于木质纤维素生物质转化的研究进展[J].微生物学通报, 2020, 47(10):3431-3441.
XU C F, ZHANG F Z, ZHANG W, et al.Synthetic microbial consortia for lignocellulosic biomass conversion[J].Microbiology China, 2020, 47(10):3431-3441.
[54] PHANDUANG O, LUNPROM S, SALAKKAM A, et al.Improvement in energy recovery from Chlorella sp.biomass by integrated dark-photo biohydrogen production and dark fermentation-anaerobic digestion processes[J].International Journal of Hydrogen Energy, 2019, 44(43):23899-23911.
[55] 苏会波. 生物质暗发酵和光发酵耦合产氢的机理研究[D].杭州:浙江大学, 2011.
SU H B.Hydrogen production from biomass by combination of dark and photo fermentation[D].Hangzhou:Zhejiang University, 2011.
[56] VALDEZ-VAZQUEZ I, CASTILLO-RUBIO L G, PÉREZ-RANGEL M, et al.Enhanced hydrogen production from lignocellulosic substrates via bioaugmentation with Clostridium strains[J].Industrial Crops and Products, 2019, 137:105-111.
[57] DAHUNSI S O, ADESULU-DAHUNSI A T, OSUEKE C O, et al.Biogas generation from Sorghum bicolor stalk:Effect of pretreatment methods and economic feasibility[J].Energy Reports, 2019, 5:584-593.
[58] YU Q, LIU R H, LI K, et al.A review of crop straw pretreatment methods for biogas production by anaerobic digestion in China[J].Renewable and Sustainable Energy Reviews, 2019, 107:51-58.
[59] DENG W P, FENG Y C, FU J, et al.Catalytic conversion of lignocellulosic biomass into chemicals and fuels[J].Green Energy & Environment, 2023, 8(1):10-114.
[60] JING Y X, GUO Y, XIA Q N, et al.Catalytic production of value-added chemicals and liquid fuels from lignocellulosic biomass[J].Chem, 2019, 5(10):2520-2546.
[61] SAVY D, COZZOLINO V.Novel fertilising products from lignin and its derivatives to enhance plant development and increase the sustainability of crop production[J].Journal of Cleaner Production, 2022, 366:132832.
[62] SETHUPATHY S, MURILLO MORALES G, GAO L, et al.Lignin valorization:Status, challenges and opportunities[J].Bioresource Technology, 2022, 347:126696.
[63] PARK G W, GONG G, JOO J C, et al.Recent progress and challenges in biological degradation and biotechnological valorization of lignin as an emerging source of bioenergy:A state-of-the-art review[J].Renewable and Sustainable Energy Reviews, 2022, 157:112025.
[64] HUANG D L, LI R J, XU P, et al.The cornerstone of realizing lignin value-addition:Exploiting the native structure and properties of lignin by extraction methods[J].Chemical Engineering Journal, 2020, 402:126237.
[65] SHARMA V, TSAI M L, CHEN C W, et al.Deep eutectic solvents as promising pretreatment agents for sustainable lignocellulosic biorefineries:A review[J].Bioresource Technology, 2022, 360:127631.
[66] 张思莹, 陈彦, 刘志华, 等.生物炼制过程中木质素高值转化研究进展[J].生物工程学报, 2021, 37(9):3108-3128.
ZHANG S Y, CHEN Y, LIU Z H, et al.Advances in lignin valorization from a biorefinery concept[J].Chinese Journal of Biotechnology, 2021, 37(9):3108-3128.
[67] 梁丛颖, 林璐.环境微生物介导的木质素代谢及其资源化利用研究进展[J].微生物学通报, 2020, 47(10):3380-3392.
LIANG C Y, LIN L.Environmental microorganisms driven lignin biodegradation and their roles in lignin utilization[J].Microbiology China, 2020, 47(10):3380-3392.
[68] 伍兰萍. 关于循环农业的农作物秸秆资源化利用模式探讨[J].山西农经, 2022(1):134-136.
WU L P.Discussion on the utilization mode of crop straw resources in circular agriculture[J].Shanxi Agricultural Economy, 2022(1):134-136.
文章导航

/