梁翠谊
发布时间:2026年04月09日 18:08 来源: 阅读数:

所属院系:william英国中文 材料化学系

*联系方式liangcy0512@163.com; 19938281@qq.com

通讯地址:广东省广州市williamhill英国(白云校区)何鸿燊楼A414C

*个人简述:

梁翠谊,博士,副研究员,硕士生导师。主要从事农林生物质木质纤维类高效解聚与转化基础应用研究,特别是是木质纤维素高效预处理过程、纤维素降解混菌定向诱导合成,以及纤维素降解核心酶与辅助酶智能复配、复合酶与复合添加剂协同强化纤维素酶解等过程机制分析具备丰富的研究经验和清晰明确的认识。着力开发纤维素降解高效菌种选育及酶系复配与优化、农业益生菌剂构建与高效利用、废水/有机固废生物降解除臭菌剂构建与应用技术体系

主持国家自然科学基金、国家重点研发计划、战略性科技创新合作、广东省重点研发计划、广州市科技计划等项目课题10项;作为研究骨干参加完成了国家支撑计划、国家重点研发计划、863项目、国家自然科学基金及广东省科技计划项目多项。发表SCI/EI论文50余篇,其中在Chemical Engineering JournalBioresource TechnologyJournal of Cleaner ProductionRenewable Energy等高水平期刊以第一作者和通讯作者身份发表论文20余篇,授权发明专利20余件,参编中英文著作4部,协助指导博士、硕士研究生10余名。科研成果获省部级科技进步二等奖1项,行业学会一等奖1项;工作业绩获工藤青年三等奖2次,获优秀职工称号2次。

教育背景

2018.09-2021.06中国科学院大学生物化工,博士;

2014.03-2017.12华南理工大学生物工程,硕士

2005.09-2009.06广东药科大学生物技术与生物制药,学士

工作经历

2026.04-至今,williamhill英国,william英国中文,副研究员

2023.05-2026.03中国科学院广州能源研究所副研究员

2014.01-2023.05中国科学院广州能源研究所助理研究员

2009.07-2013.12中国科学院广州能源研究所研究实习员

*主要研究方向:

(1) 农林生物质生化转化及高值化利用(木质纤维素预处理、纤维素降解核心酶复配、低聚功能糖、高值化功能材料等)

(2) 农业益生菌剂设计与高效利用研究;

(3) 废水/有机固废生物降解除臭菌剂构建与应用等研究

近五年来主持和参与的主要科研项目:

(1) 国家重点研发计划子课题2022YFB4201902-2林木原料半纤维素清洁抽提技术2022-122026-1145万元主持

(2) 战略性科技创新合作子任务2022YFE0207100-02综纤维素酶解糖化构建C5-C6糖平台2022-112025-10100万元主持

(3) 青年科学基金项目(C类)[原青年科学基金项目]52006227β-葡萄糖苷酶与复合添加剂耦合的纤维素水解传质强化过程机制研究2021-01-012023-12-3124万元,主持;

(4) 国家重点研发计划子课题2019YFB1503802-1,纤维素酶系定向复配及优化,2019-122022-12140.4万元,主持;

(5) 广东省重点领域研发计划项目子课题,2019B110209003,易腐垃圾生物转化过程恶臭气体控制技术,2019-102022-0940万元,主持;

(6) 广州市科技计划青年博士“启航”项目,2025A04J4315,复合微生物耦合表面活性剂协同解构林木纤维素及酶解增效机制研究,2025-01-012026-12-315万元,主持;

(7) 国家自然科学基金国际(地区)合作与交流项目,22361132543,木质纤维素定向拆解转化为化学品的过程调控,2024-01-012026-12-31150万元,参与。

代表性学术论文:

(1) Haochen Du, Cuiyi Liang*, Shijun Liu, Xuesong Tan, Yang Chen, Shiyou Xing, Yu Zhang, Wei Liu, Wen Wang, Xin Shi, Zhongming Wang, Wei Qi*. Insight into poplar fractionation enhancement via an eco-manufacturing process using sulfonated magnetic polystyrene solid acid and biphasic solvent. Chemical Engineering Journal, 2026, 535: 175317.

(2) Cuiyi Liang, Yu Long, Wen Wang, Yu Zhang, Shiyou Xing, Zhongxia Chen, Wei Qi*. Correlation and synergy between fungal secretome cellulolytic enzyme cocktails and commercial cellulase for woody biomass degradation. Renewable Energy, 2025, 240: 122158.

(3) Chun Xiang, Cuiyi Liang* , Wen Wang, Yu Zhang, Shiyou Xing, Xuesong Tan, Wei Liu, Baiquan Zeng*, Wei Qi*. Enhanced fractionation of woody biomass and efficient valorization via ternary acid-organic solvent system. Journal of Environmental Chemical Engineering, 2025, 13: 117141.

(4) Yuhang Sun#, Cuiyi Liang#, Wei Qi, Qiong Wang, Lichuan Zhan, Jiayao Tong, Jingjing Jiang, Zhitong Yao*. One-pot catalytic hydrolysis of sugarcane bagasse into furfural using a pressurized phosphoric acid/acetone/water system. Biomass and Bioenergy, 2024, 185: 107242.

(5) Cuiyi Liang, Qiong Wang, Wen Wang, C.S.K Lin, Yunzi Hu, Wei Qi*. Enhancement of an efficient enzyme cocktail from Penicillium consortium on biodegradation of pretreated poplar. Chemical Engineering Journal, 2023, 452: 139352.

(6) Wei Qi, Qifa Feng, Wen Wang, Yu Zhang, Yunzi Hu, Usama Shakeel, Lin Xiao, Lan Wang, Hongzhang Chen, Cuiyi Liang*. Combination of surfactants and enzyme cocktails for enhancing woody biomass saccharification and bioethanol production from lab-scale to pilot-scale. Bioresource Technology, 2023, 384: 129343.

(7) Yu Long, Cuiyi Liang*, Yang Chen, Qing Wang, Wen Wang, Yunzi Hu, Usama Shakeel, Baiquan Zeng*, Wei Qi*. Comparative study of wet and dry properties on enzymatic hydrolysis efficiency of poplar with various combined-pretreatment. Industrial Crops & Products, 2023, 204: 117277

(8) Qiong Wang, Longjun Chang, Wen Wang, Yunzi Hu, Jun Yue, Zhongming Wang, Cuiyi Liang* and Wei Qi*. Simultaneous saccharification of hemicellulose and cellulose of corncob in a one-pot system using catalysis of carbon based solid acid from lignosulfonate. RSC Advance, 2023, 13: 28542-28549.

(9) Wen Wang, Mengxuan Zhang, Shijun Liu, Qiong Wang, Yunzi Hu, Cuiyi Liang*, YunYun Liu, Hui Liu, Wei Qi, Wastes recycling of non-sterile cellulosic ethanol production from low-temperature pilot-scale enzymatic saccharification of alkali-treated sugarcane bagasse. Journal of Cleaner Production, 2022, 374: 134019.

(10) Cuiyi Liang, Qifa Feng, Si Lu, Qiong Wang, Yunzi Hu, Zhongming Wang, Wen Wang and Wei Qi. Synergistic Enhancement Effect of Compound Additive of Organic Alcohols and Biosurfactant on Enzymatic Hydrolysis of Lignocellulose. Fermentation, 2022, 8: 725.

(11) Zihan Xu, Cuiyi Liang*, Wen Wang, Qiong Wang, Wei Qi*, Zhongming Wang, Zhenhong Yuan. Optimization of solid state fermentation of mixed-culture of Penicillium consortium for cellulase and lytic polysaccharide monooxygenases production. Journal of Biobased Materials and Bioenergy, 2021, 15(2): 180-187.

(12) Cuiyi Liang, Zihan Xu, Qiong Wang, Wen Wang, Huijuan Xu, Ying Guo, Wei Qi*, Zhongming Wang. Improving β-glucosidase and xylanase production in a combination of waste substrate from domestic wastewater treatment system and agriculture residues. Bioresource Technology, 2020, 318: 124019.

(13) Cuiyi Liang, Jingliang Xu, Huijuan Xu, Wei Qi*, Yu Zhang, Wen Luo, Xiaoyan Chen, Zhongming Wang, Zhenhong Yuan. Gene cloning and characterization of an organic solvent-stimulated β-glucosidase and its application for the co-production of ethanol and succinic acid. Cellulose, 2019, 26: 8237-8248.

授权发明专利:

(1) 梁翠谊,亓伟,王闻,徐孜晗,王琼,王忠铭. 一株草酸青霉菌XZH-2及其应用发明专利,ZL202110419980.9.

(2) 梁翠谊,亓伟,王琼,徐孜晗,王闻,王忠铭. 一株桔青霉菌(Penicillium citrinumXZH-16及其应用发明专利,ZL202110418557.7.

(3) Zhenhong Yuan, Cuiyi Liang, Jingliang Xu, Xiaoyan Chen, Xinshu Zhuang, Yu Zhang, Ying Guo, Weizheng Zhou. Thermophilic Ethanol-Resistant-Glucosidase and Encoding Gene and Application Thereof, 美国专利,US9890371B2.

(4) 梁翠谊,许敬亮,袁振宏,庄新姝,徐惠娟,张 . 高产嗜温耐醇β-葡萄糖苷酶的肉座菌及其应用,发明专利,ZL 2011 1 0417104.9.

(5) 袁振宏,梁翠谊,许敬亮,庄新姝,徐惠娟,张宇,亓伟. 产嗜温耐乙醇β-葡萄糖苷酶的绿色木霉W2及其应用,发明专利,ZL 2010 1 0577713.6.

主要荣誉:

(1) 高耐受纤维素酶创制与应用,2025年河南省科技进步二等奖(排名第二);

(2) 农林生物质全组分梯级生-化炼制关键技术及应用,2025年中国可再生能源学会科技进步一等奖(排名第四)

(3) 秸秆制糖生产生物质燃料或化学品,2022年第二届率先杯未来技术创新大赛深圳赛区提名奖(排名第三)

著作信息:

(1) Microbial Energy Conversion, De Gruyter, Chapter 3, Microbial Biomass Pretreatment and Hydrolysis, ISBN 9783110428377

(2) 《纤维素酶工程》9产纤维素酶微生物及纤维素酶类化学工业出版社,ISBN9787122371355

(3) 《环境与能源微生物》,9,生物质原料的微生物转化,科学出版社,ISBN9787030622280

(4) 《能源微生物学》,第2章,淀粉酶,化工出版社,ISBN9787122133335