CIESC Journal ›› 2018, Vol. 69 ›› Issue (10): 4139-4147.DOI: 10.11949/j.issn.0438-1157.20180488
Previous Articles Next Articles
LI Lixin1,2, LIU Wanmeng1,2, MA Fang2
Received:
2018-05-09
Revised:
2018-06-28
Online:
2018-10-05
Published:
2018-10-05
Supported by:
supported by the National Natural Science Foundation of China (51678222, 51408200, 51478140) and the Open Project of State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology(ES201803).
李立欣1,2, 刘婉萌1,2, 马放2
通讯作者:
马放
基金资助:
国家自然科学基金项目(51678222,51408200,51478140);哈尔滨工业大学城市水资源与水环境国家重点实验室开放基金项目(ES201803)。
CLC Number:
LI Lixin, LIU Wanmeng, MA Fang. Research advances in compound bioflocculant[J]. CIESC Journal, 2018, 69(10): 4139-4147.
李立欣, 刘婉萌, 马放. 复合型微生物絮凝剂研究进展[J]. 化工学报, 2018, 69(10): 4139-4147.
Add to citation manager EndNote|Ris|BibTeX
URL: https://hgxb.cip.com.cn/EN/10.11949/j.issn.0438-1157.20180488
[1] | 李和平. 微生物絮凝剂[J]. 重庆环境科学, 2000, 22(2):18-21. LI H P. Microbial flocculant[J]. Chongqing Environmental Science, 2000, 22(2):18-21. |
[2] | 甘光奉, 甘莉. 高分子絮凝剂研究的进展[J]. 工业水处理, 1999, 19(2):6-7. GAN G F, GAN L. The progress of the researches on high polymeric flocculants[J]. Industrial Water Treatment, 1999, 19(2):6-7. |
[3] | NAKAMURA J. Purification and chemical analysis of microbial cell flocculant produced by Aspergillus sojae AJ 7002[J]. Agric. Bio. Chem., 1976, 40(3):619-624. |
[4] | KURANE R, KAZUKI T, KIYOSHI T, et al. Culture condition for production of microbial flocculant by Rhodococcus erythropolis[J]. Agri. Bio. Chem., 1986, 50(9):2309-2313. |
[5] | 皮姗姗, 李昂, 魏薇, 等. 微生物絮凝剂在水污染控制中的应用研究进展[J]. 中国给水排水, 2017, 33(16):27-31. PI S S, LI A, WEI W, et al. Research progress on application of microbial flocculants in water pollution control[J]. China Water & Wastewater, 2017, 33(16):27-31. |
[6] | Sathiyanarayanan G, Kiran G S, Selvin J. Synthesis of silver nanoparticles by polysaccharide bioflocculant produced from marine Bacillus subtilis MSBN17[J]. Colloids and Surfaces B:Biointerfaces, 2013, 102:13-20. |
[7] | Zhong C Y, Cao G, Rong K, et al. Characterization of a microbial polysaccharide-based bioflocculant and its anti-inflammatory and pro-coagulant activity[J]. Colloids and Surfaces B:Biointerfaces, 2018, 161:636-644. |
[8] | Nakamura J, Miyashiro S, Hirose Y. Screening, isolation, and some properties of microbial cell flocculants[J]. Agric. Bio. Chem., 1976, 40(2):377-383. |
[9] | 方明中. 复合型微生物絮凝剂制备及絮凝性能的研究[D]. 广州:广东工业大学, 2008. FANG M Z. Studies on the production and flocculation characteristics of complex bioflocculant[D]. Guangzhou:Guangdong University of Technology, 2008. |
[10] | 朱艳彬, 马放, 杨基先, 等. 絮凝剂复配与复合型絮凝剂研究[J]. 哈尔滨工业大学学报, 2010, 42(8):1254-1258. ZHU Y B, MA F, YANG J X, et al. Combination effect of flocculants for water treatment and development of compound flocculants[J]. Journal of Harbin Institute of Technology, 2010, 42(8):1254-1258. |
[11] | WANG L L, CHEN Z L, YANG J X, et al. Pb(Ⅱ) biosorption by compound bioflocculant:performance and mechanism[J]. Desalination and Water Treatment, 2015, 53:421-429. |
[12] | 马放, 刘俊良, 李淑更, 等. 复合型微生物絮凝剂的开发[J]. 中国给水排水, 2003, 19(4):1-4. MA F, LIU J L, LI S G, et al. Development of complex microbial flocculant[J]. China Water & Wastewater, 2003, 19(4):1-4. |
[13] | 马放, 朱艳彬, 任南琪. 复合型生物絮凝剂:200610010369.6[P]. 2007. MA F, ZHU Y B, REN N Q. Compound biological flocculant:200610010369.6[P]. 2007. |
[14] | 马放, 杨基先, 王爱杰, 等. 复合型微生物絮凝剂[M]. 北京:科学出版社, 2013. MA F, YANG J X, WANG A J, et al. Compound Microbial Flocculant[M]. Beijing:Science Press, 2013. |
[15] | KURANE R, MATSUYAMA H. Production of a bioflocculant by mixed culture[J]. Bioscience, Biotechnology and Biochemistry, 1994, 58(9):1589-94. |
[16] | 朱艳彬, 冯旻, 杨基先, 等. 复合型生物絮凝剂产生菌筛选及絮凝机理研究[J]. 哈尔滨工业大学学报, 2004, 36(6):759-762. ZHU Y B, FENG M, YANG J X, et al. Screening of complex bioflocculant producing bacterium and their flocculating mechanism[J]. Journal of Harbin Institute of Technology, 2004, 36(6):759-762. |
[17] | 李立欣. 基于松花江水源水絮凝沉淀工艺的微生物絮凝剂净水效能研究[D]. 哈尔滨:哈尔滨工业大学, 2015. LI L X. Research on water purification efficiency of bioflocculant based on the flocculation sedimentation process for Songhua river source water treatment[D]. Harbin:Harbin Institute of Technology, 2015. |
[18] | WANG L L, MA F, QU Y Y, et al. Characterization of a compound bioflocculant produced by mixed culture of Rhizobium radiobacter F2 and Bacillus sphaeicus F6[J]. World J. Microbiol. Biotechnol., 2011, 27:2559-2565. |
[19] | 赵东风, 刘洁, 张云波, 等. 复合型微生物絮凝剂的絮凝条件优化[J]. 工业水处理, 2010, 30(4):66-68. ZHAO D F, LIU J, ZHANG Y B, et al. Optimization of the flocculanting conditions of compound microbial flocculant[J]. Industrial Water Treatment, 2010, 30(4):66-68. |
[20] | 林松. 食品加工废水培养复合型生物絮凝剂产生菌及培养条件优化研究[D]. 成都:四川大学, 2006. LIN S. Study on complex bio-flocculant producing bacteria domesticated by food processing wastewater and optimal conditions[D]. Chengdu:Sichuan University, 2006. |
[21] | 王军秀. 复合菌群产微生物絮凝剂在处理制革废水中的应用[D]. 济南:山东轻工业学院, 2009. WANG J X. Application of compound microorganism producing MBF in treating leather water[D]. Jinan:Shandong Institute of Light Industry, 2009. |
[22] | 王丽丽, 王向东, 田哲. 复合型生物絮凝剂MFHJ4的制备及其对印染废水絮凝性能的研究[J]. 水处理技术, 2010, 36(6):100-103. WANG L L, WANG X D, TIAN Z. Preparation of compound bioflocculant MFHJ4 and its flocculation capability to printing and dyeing wastewater[J]. Technology of Water Treatment, 2010, 36(6):100-103. |
[23] | 王伊娜, 王向东, 张望, 等. 制酒废水培养复合型生物絮凝剂产生菌的研究[J]. 中国给水排水, 2007, 23(1):38-42. WANG Y N, WANG X D, ZHANG W, et al. Study on culture of compound bioflocculant-producing bacteria by distillery wastewater[J]. China Water & Wastewater, 2007, 23(1):38-42. |
[24] | LI L X, FENG L Y, MA F, et al. Flocculating properties and production of the compound bioflocculant by Rhizobium radiobacter F2 and Bacillus sphaeicus F6[J]. Journal of Harbin Institute of Technology(New Series), 2015, 22(4):20-26. |
[25] | LI L X, XING J, MA F, et al. Introduction of compound bioflocculant and its application in water treatment[J]. Advance Journal of Food Science and Technology, 2015, 9(9):695-700. |
[26] | 张玉玲, 姚军, 赵晓波. 复合型微生物絮凝剂产生菌YL3的优化条件[J]. 吉林大学学报(地球科学版), 2008, 38(5):864-868. ZHANG Y L, YAO J, ZHAO X B. Optimum conditions of compound bioflocculant producing bacterium YL3[J]. Journal of Jilin University(Earth Science Edition), 2008, 38(5):864-868. |
[27] | 王雪. 生物絮凝剂混菌发酵条件优化及动力学分析[D]. 哈尔滨:哈尔滨工业大学, 2009. WANG X. Optimum fermentation condition and kinetics for bioflocculant by mixed strains[D]. Harbin:Harbin Institute of Technology, 2009. |
[28] | 李剑, 王曙光, 高宝玉, 等. 利用乳品废水生产微生物絮凝剂及其应用研究[J]. 环境工程, 2004, 22(6):93-94. LI J, WANG S G, GAO B Y, et al. Study of a bioflocculant by dairy wastewater and its application[J]. Environmental Engineering, 2004, 22(6):93-94. |
[29] | 周旭, 黄丽萍, 王竞. 利用鱼粉废水生产生物絮凝剂及其性能研究[J]. 应用与环境生物学报, 2003, 9(4):436-438. ZHOU X, HUANG L P, WANG J. Production and properties of bioflocculant by Pseudomonas sp. GX4-1 using fish meal wastewater[J]. Chin. J. Appl. Environ. Biol., 2003, 9(4):436-438. |
[30] | ZHANG F, JIANG W J, WANG X D, et al. A new complex bioflocculant produced by mix-strains in alcohol wastewater and the characteristics of the bioflocculant[J]. Fresenius Environmental Bulletin, 2011, 20(9):2238-2245. |
[31] | 芦艳, 乔福珍, 孟丽丽. 啤酒废水培养复合型生物絮凝剂产生菌的研究[J]. 水处理技术, 2010, 36(5):31-33. LU Y, QIAO F Z, MENG L L. Study on the culture of complex bioflocculant producing bacterium in brewery wastewater[J]. Technology of Water Treatment, 2010, 36(5):31-33. |
[32] | 任宏洋, 王新惠, 刘达玉. 复合菌利用酱油废液制备生物絮凝剂及其絮凝特性分析[J]. 中国环境科学, 2010, 30(8):1050-1055. REN H Y, WANG X H, LIU D Y. Production and properties of bio-flocculant by Aspergillus sojae and Pichia membranifaciens cultured in soy sauce waste[J]. China Environmental Science, 2010, 30(8):1050-1055. |
[33] | 李大鹏, 马放, 侯宁. 味精废水资源化制备复合型生物絮凝剂[J]. 湖南大学学报(自然科学版), 2009, 36(9):78-82. LI D P, MA F, HOU N. Preparation of compound bio-flocculants by using waste zymotic fluid of glutamic acid fermentation as substrate[J]. Journal of Hunan University(Natural Sciences), 2009, 36(9):78-82. |
[34] | PU S Y, QIN L L, CHE J P, et al. Preparation and application of a novel bioflocculant by two strains of Rhizopus sp. using potato starch wastewater as nutrilite[J]. Bioresource Technology, 2014, 162:184-191. |
[35] | 任敦建, 宋汕柯, 李红阳, 等. 利用木薯淀粉酒精废水培养复合型生物絮凝产生菌条件优化及其应用研究[J]. 广东农业科学, 2013, 10:97-100. REN D J, SONG S K, LI H Y, et al. Study on bioflocculant produced by composite bacteria using cassava alcohol wastewater[J]. Agricultural Science in Guangdong, 2013, 10:97-100. |
[36] | 马放, 张惠文, 李大鹏, 等. 以稻草秸秆为底物制取复合型生物絮凝剂的研究[J]. 中国环境科学, 2009, 29(2):196-200. MA F, ZHANG H W, LI D P, et al. Compound bioflocculant produced by using rice straw as substrate[J]. China Environmental Science, 2009, 29(2):196-200. |
[37] | 于涛. 复合生物絮凝剂的分离纯化及对亚甲基蓝脱色效果研究[D]. 哈尔滨:黑龙江大学, 2011. YU T. Separation and purification of compound bioflocculant and study on the decolorization effect of methylene blue[D]. Harbin:Heilongjiang University, 2011. |
[38] | 杨莹, 闫鹤, 李芬, 等. 复合型生物絮凝剂的培育及其活性组分分析[J]. 功能材料, 2012, 43(9):1189-1192. YANG Y, YAN H, LI F, et al. The culture of compound bioflocculant and the analysis of its activated components[J]. Journal of Functional Materials, 2012, 43(9):1189-1192. |
[39] | 马放, 张金凤, 远立江, 等. 复合型生物絮凝剂成分分析及其絮凝机理的研究[J]. 环境科学学报, 2005, 25(11):1491-1496. MA F, ZHANG J F, YUAN L J, et al. Flocculating mechanism and ingredient analysis of compound bioflocculant[J]. Acta Scientiae Circumstantiae, 2005, 25(11):1491-1496. |
[40] | MA F, WANG W. Study on preliminary extraction and purification of compound bioflocculant[C]//Proceedings of Information Technology and Environmental System Sciences, 2008:763-768. |
[41] | MA F, WANG B, YANG J X. Security evaluation of compounded microbial flocculant[J]. Journal of Harbin Institute of Technology, 2004, 11(1):38-42. |
[42] | 王博. 复合型生物絮凝剂的絮凝效能研究及安全性评价[D]. 哈尔滨:哈尔滨工业大学, 2004. WANG B. Study on flocculating efficiency of compound biological flocculant and safety evaluation[D]. Harbin:Harbin Institute of Technology, 2004. |
[43] | 马放, 冯旻, 李淑更, 等. 复合型微生物絮凝剂的絮凝作用[J]. 黑龙江科技学院学报, 2004, 14(3):140-144. MA F, FENG M, LI S G, et al. Research for flocculation effect of combined microbial flocculation agent[J]. Journal of Heilongjiang Institute of Science & Technology, 2004, 14(3):140-144. |
[44] | 李立欣, 马放, 刘彦军. 复合型生物絮凝剂处理低温低浊水[J]. 黑龙江科技学院学报, 2012, (2):107-110. LI L X, MA F, LIU Y J. Treatment of low temperature and low turbidity water by compound bioflocculant[J]. Journal of Heilongjiang Institute of Science & Technology, 2012, (2):107-110. |
[45] | LI L X, MA F, ZUO H M. Production of a novel bioflocculant and its flocculation performance in aluminum removal[J]. Bioengineered, 2016, 7(2):98-105. |
[46] | 郭琇, 孙洪伟. 新型复合型生物絮凝剂的制备与应用研究[J]. 生物工艺, 2010, 20(5):85-87. GUO X, SUN H W. Manufacture and research on the new compound microbial flocculant[J]. Biotechnology, 2010, 20(5):85-87. |
[47] | 王琴, 王辉, 马放, 等. 复合型生物絮凝剂的应用研究[J]. 工业水处理, 2007, 27(4):68-71. WANG Q, WANG H, MA F, et al. Research on application of compound bioflocculant[J]. Industrial Water Treatment, 2007, 27(4):68-71. |
[48] | 张玉玲, 张兰英, 姚军, 等. 高效复合型微生物絮凝剂研究[J]. 哈尔滨工业大学学报, 2008, 40(9):1481-1484. ZHANG Y L, ZHANG L Y, YAO J, et al. High-efficient compound microbial flocculant[J]. Journal of Harbin Institute of Technology, 2008, 40(9):1481-1484. |
[49] | 郑丽娜. 复合型生物絮凝剂絮凝特性及絮体分形特征研究[D]. 哈尔滨:哈尔滨工业大学, 2007. ZHENG L N. Evaluation of the flocculating and fractal characteristics of compound biological flocculants[D]. Harbin:Harbin Institute of Technology, 2007. |
[50] | 王琴. 复合型生物絮凝剂的絮凝机理与生产工艺研究[D]. 哈尔滨:哈尔滨工业大学, 2005. WANG Q. Study on flocculation mechanism and production process of compound bioflocculant[D]. Harbin:Harbin Institute of Technology, 2005. |
[51] | 姬秀娟, 蒋文举, 张帆, 等. 复合型微生物絮凝剂XJBF-1的性能及应用研究[J]. 中国给水排水, 2010, 26(11):74-76. JI X J, JIANG W J, ZHANG F, et al. Performance and application of compound microbial flocculant XJBF-1[J]. China Water & Wastewater, 2010, 26(11):74-76. |
[52] | HUANG X, BO X W, ZHAO Y X, et al. Effects of compound bioflocculant on coagulation performance and floc properties for dye removal[J]. Bioresource Technology, 2014, 165:116-121. |
[53] | HUANG X, GAO B Y, YUE Q Y, et al. Compound bioflocculant used as a coagulation aid in synthetic dye wastewater treatment:the effect of solution pH[J]. Separation and Purification Technology, 2015, 154:108-114 |
[54] | 杨艳超. 高分子多糖复合生物絮凝剂在选煤厂煤泥水处理中的应用[J]. 煤炭加工与综合利用, 2015, (3):14-15. YANG Y C. Application of high molecule multiglucoside compound bioflocculant in treating slime water of coal preparation plant[J]. Coal Processing & Comprehensive Utilization, 2015, (3):14-15. |
[55] | 王丽丽. 复合型生物絮凝剂的结构和絮凝特性分析及去除重金属离子的研究[D]. 哈尔滨:哈尔滨工业大学, 2011. WANG L L. Study on structure, flocculation properties and removal for heavy metals of compound bioflocculant[D]. Harbin:Harbin Institute of Technology, 2011. |
[56] | 靳慧霞, 马放, 孟路, 等. 复合型微生物絮凝剂与化学絮凝剂的复配及其应用[J]. 化工进展, 2006, 25(1):105-109. JIN H X, MA F, MENG L, et al. Screening on complexation and application of compound microbial flocculant and chemical flocculant[J]. Chemical Industry and Engineering Progress, 2006, 25(1):105-109. |
[57] | 马放, 高宝玉, 胡勇有, 等. 生物复合絮凝剂的开发与应用[M]. 北京:科学出版社, 2017. MA F, GAO B Y, HU Y Y, et al. Development and Application of Biological Compound Flocculant[M]. Beijing:Science Press, 2017. |
[58] | HUANG X, SUN S L, GAO B Y, et al. Coagulation behavior and floc properties of compound bioflocculant-polyaluminum chloride dual-coagulants and polymeric aluminum in low temperature surface water treatment[J]. Journal of Environmental Sciences, 2015, 30:215-222. |
[59] | HUANG X, GAO B Y, YUE Q Y, et al. Effect of dosing sequence and raw water pH on coagulation performance and flocs properties using dual-coagulation of polyaluminum chloride and compound bioflocculant in low temperature surface water treatment[J]. Chemical Engineering Journal, 2013, 229:477-483. |
[60] | 姚力, 信欣, 羊依金, 等. 新型复合型生物絮凝剂处理印染废水[J]. 工业水处理, 2014, 34(8):65-68. YAO L, XIN X, YANG Y J, et al. Treatment of printing and dyeing wastewater by a new type of composite bioflocculant[J]. Industrial Water Treatment, 2014, 34(8):65-68. |
[61] | 金超. 复合型生物絮凝剂强化混凝的效能研究[D]. 哈尔滨:哈尔滨工业大学, 2009. JIN C. Study on the effectiveness of strengthening coagulation of compound bioflocculant[D]. Harbin:Harbin Institute of Technology, 2009. |
[62] | 马放, 李大鹏, 郑丽娜, 等. 复合型生物絮凝剂与聚合氯化铝铁复配处理高藻水[J]. 中国给水排水, 2008, 24(3):39-41. MA F, LI D P, ZHENG L N, et al. Combination of compound bio-flocculant and PAFC for treatment of algae-laden water[J]. China Water & Wastewater, 2008, 24(3):39-41. |
[63] | 孟路, 杨基先, 马放, 等. 复合型生物絮凝剂处理低温低浊水影响因素[J]. 哈尔滨工业大学学报, 2009, 41(8):42-45. MENG L, YANG J X, MA F, et al. Influence factors in treatment of low temperature and low turbidity water by compound bioflocculant[D]. Harbin:Harbin Institute of Technology, 2009, 41(8):42-45. |
[64] | 孟路, 杨基先, 马放, 等. 复合型生物絮凝剂去除低浊水源水中铝的研究[J]. 南京理工大学学报(自然科学版), 2009, 33(4):543-547. MENG L, YANG J X, MA F, et al. Removal of aluminum by compound bioflocculant from low turbidity source water[J]. Journal of Nanjing University of Science and Technology(Natural Science), 2009, 33(4):543-547. |
[65] | 马放, 李立欣, 杨基先, 等. 一种用于处理低温低浊水的复合絮凝剂及其制备方法:104591410A[P]. 2015. MA F, LI L X, YANG J X, et al. The invention relates to a composite flocculating agent for treating low-temperature and low-turbidity water and a preparation method thereof:104591410A[P]. 2015. |
[66] | BO X W, GAO B Y, PENG N N, et al. Effect of dosing sequence and solution pH on floc properties of the compound bioflocculant-aluminum sulfate dual-coagulant in kaolin-humic acid solution treatment[J/OL]. Bioresour. Technol., 2011, (22). http://dx.doi,org/10.1016/j.biortech, 2011.11.029. |
[67] | BO X W, GAO B Y, PENG N N, et al. Coagulation performance and floc properties of compound bioflocculant-aluminum sulfate dual-coagulant in treating kaolin-humic acid solution[J]. Chemical Engineering Journal, 2011, 173:400-406. |
[68] | 科学技术部. "十二五"生物技术发展规划[R]. 2011. Ministry of Science and Technology. "12th five-year plan" for development of biotechnology[R]. 2011. |
[69] | 科学技术部. "十三五"生物技术创新专项规划[R]. 2017. Ministry of Science and Technology. "13th five-year plan" special planning of biological technology innovation[R]. 2017. |
[1] | Xin YANG, Wen WANG, Kai XU, Fanhua MA. Simulation analysis of temperature characteristics of the high-pressure hydrogen refueling process [J]. CIESC Journal, 2023, 74(S1): 280-286. |
[2] | Song HE, Qiaomai LIU, Guangshuo XIE, Simin WANG, Juan XIAO. Two-phase flow simulation and surrogate-assisted optimization of gas film drag reduction in high-concentration coal-water slurry pipeline [J]. CIESC Journal, 2023, 74(9): 3766-3774. |
[3] | Baiyu YANG, Yue KOU, Juntao JIANG, Yali ZHAN, Qinghong WANG, Chunmao CHEN. Chemical conversion of dissolved organic matter in petrochemical spent caustic along a wet air oxidation pretreatment process [J]. CIESC Journal, 2023, 74(9): 3912-3920. |
[4] | Guoze CHEN, Dong WEI, Qian GUO, Zhiping XIANG. Optimal power point optimization method for aluminum-air batteries under load tracking condition [J]. CIESC Journal, 2023, 74(8): 3533-3542. |
[5] | Wenzhu LIU, Heming YUN, Baoxue WANG, Mingzhe HU, Chonglong ZHONG. Research on topology optimization of microchannel based on field synergy and entransy dissipation [J]. CIESC Journal, 2023, 74(8): 3329-3341. |
[6] | Lei XING, Chunyu MIAO, Minghu JIANG, Lixin ZHAO, Xinya LI. Optimal design and performance analysis of downhole micro gas-liquid hydrocyclone [J]. CIESC Journal, 2023, 74(8): 3394-3406. |
[7] | Xin YANG, Xiao PENG, Kairu XUE, Mengwei SU, Yan WU. Preparation of molecularly imprinted-TiO2 and its properties of photoelectrocatalytic degradation of solubilized PHE [J]. CIESC Journal, 2023, 74(8): 3564-3571. |
[8] | Manzheng ZHANG, Meng XIAO, Peiwei YAN, Zheng MIAO, Jinliang XU, Xianbing JI. Working fluid screening and thermodynamic optimization of hazardous waste incineration coupled organic Rankine cycle system [J]. CIESC Journal, 2023, 74(8): 3502-3512. |
[9] | Chengying ZHU, Zhenlei WANG. Operation optimization of ethylene cracking furnace based on improved deep reinforcement learning algorithm [J]. CIESC Journal, 2023, 74(8): 3429-3437. |
[10] | Wentao WU, Liangyong CHU, Lingjie ZHANG, Weimin TAN, Liming SHEN, Ningzhong BAO. High-efficient preparation of cardanol-based self-healing microcapsules [J]. CIESC Journal, 2023, 74(7): 3103-3115. |
[11] | Xiaoling TANG, Jiarui WANG, Xuanye ZHU, Renchao ZHENG. Biosynthesis of chiral epichlorohydrin by halohydrin dehalogenase based on Pickering emulsion system [J]. CIESC Journal, 2023, 74(7): 2926-2934. |
[12] | Yanmei ZHANG, Tao YUAN, Jiang LI, Yajie LIU, Zhanxue SUN. Study on the construction of high-efficient SRB mixed microflora and its performance under acid stress [J]. CIESC Journal, 2023, 74(6): 2599-2610. |
[13] | Chunlei ZHAO, Liang GUO, Cong GAO, Wei SONG, Jing WU, Jia LIU, Liming LIU, Xiulai CHEN. Metabolic engineering of Escherichia coli for chondroitin production [J]. CIESC Journal, 2023, 74(5): 2111-2122. |
[14] | Zedong WANG, Zhiping SHI, Liyan LIU. Numerical simulation and optimization of acoustic streaming considering inhomogeneous bubble cloud dissipation in rectangular reactor [J]. CIESC Journal, 2023, 74(5): 1965-1973. |
[15] | Xiaoyong GAO, Fuyu HUANG, Wanpeng ZHENG, Diao PENG, Yixu YANG, Dexian HUANG. Scheduling optimization of refinery and chemical production process considering the safety and stability of scheduling operation [J]. CIESC Journal, 2023, 74(4): 1619-1629. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||