
導師寄語
周建剛,博士,副教授。
一、個人簡介
77779193永利官网省部共建國家重點實驗室徐衛林院士團隊骨幹成員。2001年畢業于華中師範大學生物化學系獲理學學士學位,2004年畢業于華中師範大學大學生物化學系獲理學碩士學位,2009年畢業于中國科學院獲遺傳學學博士學位。2011年12月-2014年05月在南京工業大學化學工程與技術學科從事博士後研究工作。2015年09月-2016年09月在美國德州農工大學生物醫學工程專業作訪問學者。先後擔任過本科生《生物化學》,《酶工程》等課程的教學。曾作為主要參加者參與國家自然科學基金(No.31700110),主持中國博士後科學基金會面上資助(No. 2013M541656)和湖北省教育廳基金(No. 20111605)和(No. 20141602)。研究方向為環境微生物學、生物材料。主要從事微生物菌種篩選,染料廢水處理,微生物代謝機理與細菌纖維素等研究,近10年以通訊作者在《Chem Eng J》,《Carbohydr Polym》,《Bioresource Technology》等重要期刊發表SCI論文20篇,授權發明專利4項。兼任多篇SCI雜志《Green Chem》,《Int J Biol Macromol》等審稿人。
二、研究領域
1.廢棄紡織品的生物高值化利用;
2.紡織廢水的生物無害化處理;
3.細菌纖維素複合材料結構、成型與性能。
三、代表性論文(20)
[1] H. Lu, S. Sun, J. Sun, X. Peng, N. Li, M. Wajid Ullah, Y. Zhang, L. Chen,J. Zhou*, Sustainable production of flocculant-containing bacterial cellulose composite for removal of PET nano-plastics, Chem Eng J.469 (2023) 143848. (一區)
[2]J. Zhou, J. Sun, M. Ullah, Q. Wang, Y. Zhang, G. Cao, L. Chen, M.W. Ullah, S. Sun, Polyethylene terephthalate hydrolysate increased bacterial cellulose production, Carbohydr Polym 300 (2023) 120301. (一區)
[3]J. Zhou,F. Gu, G. Cao, W. Xu, S. Sun, Y. Zhang, Sequential fermentation strategy improves microbial conversion of waste jasmine flower to bacterial cellulose with antibacterial properties, Ind Crops Prod 185 (2022) 115147. (一區)
[4]J. Zhou, Y. Chen, Y. Zhang, M.W. Ullah, W. Xu, Biotransformation of nylon-6, 6 hydrolysate to bacterial cellulose, Green Chem 23(19) (2021) 7805-7815. (一區)
[5] H. Zhao, Y. Zheng, Z. Wang, W. Xie,J. Zhou*, Preparation of a bacterial flocculant by using caprolactam as a sole substrate and its application in amoxicillin removal, J Environ Manage 294 (2021) 113026.(二區)
[6] Y. Zhang, Y. Chen, G. Cao, X. Ma,J. Zhou*, W. Xu, Bacterial cellulose production from terylene ammonia hydrolysate by Taonella mepensis WT-6, Int J Biol Macromol 166 (2021) 251-258.(二區)
[7] S. Chen, Y. Zheng, C. Han, H. Liu, Y. Chen,J. Zhou*, S. Su, Production of a bioflocculant using old polyester fibre as a fermentation feedstock and its use in treatment of polyester alkali-peeling wastewater, J Environ Chem Eng 9(4) (2021) 105455.(二區)
[8] X. Qi, Y. Zheng, N. Tang,J. Zhou*, S. Sun, Bioconversion of citrus peel wastes into bioflocculants and their application in the removal of microcystins, Sci Total Environ 715 (2020) 136885.(二區)
[9] C. Zhong, S. Sun, D. Zhang,J. Zhou*, Production of a bioflocculant from ramie biodegumming wastewater using a biomass-degrading strain and its application in the treatment of pulping wastewater, Chemosphere 253 (2020) 126727.(二區)
[10] H. Zhao, Y. Zheng, S. Zhou, L. Liu,J. Zhou*, S. Sun, Characteristics of methane and bioflocculant production by Methanosarcina spelaei RK-23, Int J Hydrogen Energy 45(20) (2020) 11569-11576.(二區)
[11] S. Chen, S. Sun, C. Zhong, T. Wang, Y. Zhang,J. Zhou*, Bioconversion of lignocellulose and simultaneous production of cellulase, ligninase and bioflocculants by Alcaligenes faecalis-X3, Process Biochemistry 90 (2020) 58-65.(三區)
[12] C. Zhong, G. Cao, K. Rong, Z. Xia, T. Peng, H. Chen,J. Zhou*, Characterization of a microbial polysaccharide-based bioflocculant and its anti-inflammatory and pro-coagulant activity, Colloids Surf B Biointerfaces 161 (2018) 636-644.(二區)
[13] H. Zhao, G. Cao, H. Chen, H. Li,J. Zhou*, Evaluation of hemocompatibility and hemostasis of a bioflocculant, Colloids Surf B Biointerfaces 159 (2017) 712-719.(二區)
[14] H. Zhao, C. Zhong, H. Chen, J. Yao, L. Tan, Y. Zhang,J. Zhou*, Production of bioflocculants prepared from formaldehyde wastewater for the potential removal of arsenic, J Environ Manage 172 (2016) 71-6.(二區)
[15] H. Chen, C. Zhong, H. Berkhouse, Y. Zhang, Y. Lv, W. Lu, Y. Yang,J. Zhou*, Removal of cadmium by bioflocculant produced by Stenotrophomonas maltophilia using phenol-containing wastewater, Chemosphere 155 (2016) 163-169.(二區)
[16] C. Zhong, H.Chen, G. Cao, J. Wang,J. Zhou*, Bioflocculant production by Haloplanus vescus and its application in acid brilliant scarlet yellow/red removal, Water Sci Technol 73(4) (2016) 707-15.(四區)
[17] G. Cao, Y. Zhang, L. Chen, J. Liu, K. Mao, K. Li,J. Zhou*, Production of a bioflocculant from methanol wastewater and its application in arsenite removal, Chemosphere 141 (2015) 274-81.(二區)
[18] C. Zhong, A. Xu, B. Wang, X. Yang, W. Hong, B. Yang, C. Chen, H. Liu,J. Zhou*, Production of a value added compound from the H-acid waste water-Bioflocculants by Klebsiella pneumoniae, Colloids Surf B Biointerfaces 122 (2014) 583-590.(二區)
[19] C. Zhong, A. Xu, L. Chen, X. Yang, B. Yang, W. Hong, K. Mao, B. Wang,J. Zhou*, Production of a bioflocculant from chromotropic acid waste water and its application in steroid estrogen removal, Colloids Surf B Biointerfaces 122 (2014) 729-737.(二區)
[20] H. Zhao, H. Liu,J. Zhou*, Characterization of a bioflocculant MBF-5 by Klebsiella pneumoniae and its application in Acanthamoeba cysts removal, Bioresour Technol 137 (2013) 226-32.(一區)
四、授權專利
(1)周建剛、陳毅晖、劉可帥、唐嘉苧、周燊、劉浏、徐衛林,利用廢舊滌綸織物制備細菌纖維素的方法,2022/02/25,中國發明專利,授權,ZL20201 0345277.3。
(2)周建剛、陳毅晖、劉可帥、周燊、劉浏、唐嘉苧、徐衛林,一種木醋杆菌培養基以及利用其制備細菌纖維素的方法,2022/06/21,中國發明專利,授權,ZL202010716612.6。
(3)周建剛、谷楓、馬曉雨、陳毅輝、徐衛林,一種用茉莉花培養生産細菌纖維素的方法,2022/10/14,中國發明專利,授權,ZL202110911112.2。
(4)周建剛、陳毅晖、陳憶、韓晨陽、劉昊群,一種細菌纖維素紗線的制造方法及裝置,2022/10/21,中國發明專利,授權,ZL202110284593.9。