剩余污泥微生物发酵合成微生物油脂制备生物柴油技术研究
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Enhancement of lipid production by fermentation of waste activated sludge for synthesis of biodiesel
  • 作者:杨高翔 ; 陈锐 ; 沈子恒 ; 王一涵 ; 刘佳楠 ; 沈怡 ; 黄翔峰 ; 刘佳
  • 英文作者:YANG Gaoxiang;CHEN Rui;SHEN Ziheng;WANG Yihan;LIU Jianan;SHEN Yi;HUANG Xiangfeng;LIU Jia;State Key Laboratory of Pollution Control and Resource Reuse,Ministry of Education Key Laboratory of Yangtze River Water Environment,College of Environmental Science and Engineering,Tongji University;
  • 关键词:剩余污泥 ; 生物柴油 ; 微生物油脂 ; 含糖废水
  • 英文关键词:waste activated sludge;;biodiesel;;microbial lipids;;sacchariferous wastewater
  • 中文刊名:HJXX
  • 英文刊名:Acta Scientiae Circumstantiae
  • 机构:同济大学环境科学与工程学院污染控制与资源化研究国家重点实验室长江水环境教育部重点实验室;
  • 出版日期:2017-02-14 10:28
  • 出版单位:环境科学学报
  • 年:2017
  • 期:v.37
  • 基金:国家自然科学基金(No.51678428);; 国家科技支撑计划(No.2014BAC31B01)~~
  • 语种:中文;
  • 页:HJXX201708013
  • 页数:7
  • CN:08
  • ISSN:11-1843/X
  • 分类号:106-112
摘要
提高剩余污泥微生物发酵合成微生物油脂的含量是促进剩余污泥制备生物柴油技术的重要研究方向.本研究首先比较了B&D法、二甲亚砜-甲醇法和酸热法对剩余污泥微生物油脂提取率的影响.结果发现,酸热法提取得到的微生物油脂含量最高,进一步甲酯化合成的生物柴油产率最高达到2.1%.通过控制发酵过程pH和调节初始C/N,可以提高剩余污泥微生物发酵合成可酯化油脂的含量,在pH=4、C/N=100条件下发酵合成的微生物油脂甲酯化得到的生物柴油产量和产率可提高至1.81 g·L~(-1)和13.06%.在此基础上重点比较了4种模拟含糖废水对剩余污泥微生物发酵合成油脂的影响.结果表明,木糖为碳源时合成的微生物油脂进一步甲酯化为生物柴油的产量和产率显著高于乳糖、蔗糖和葡萄糖,分别达到3.90 g·L~(-1)和24.55%.研究表明,以剩余污泥微生物为菌源,采用木糖等含糖废水为培养基,通过控制发酵条件可以强化剩余污泥微生物合成可酯化的微生物油脂含量,进而提高生物柴油产量.
        It is essential to enhance the yield of saponifiable lipid produced by microorganisms from waste activated sludge(WAS) aiming to improve the industrilization of biodiesel production.In this study,three commonly used lipid extraction methods were compared on their efficiency in lipid extraction.Compared with the other two methods,acid-heating extraction exhibited higher extraction efficiency of lipid,and produced higher biodiesel content at 2.1%.It was efficient to increase the content of saponifiable lipid by controlling pH during fermentation process and adjusting the initial C/N of the media.Under the condition of pH=4 and C/N=100,the biodiesel yield and biodiesel content increased to 1.81 g·L~(-1) and 13.06%,respectively.Based on the results,four model sacchariferous wastewaters were used as carbon source to compare their effect on saponifiable lipid accumulation of microorganisms from WAS.Results show that the highest biodiesel yield(3.90 g·L~(-1)) and content(24.55%) were achieved when xylose was used as carbon source,followed by lactose,sucrose and glucose.This study suggests that it is feasible to use sacchariferous wastewater as media to cultivate the microorganisms of WAS under controlled fermentation conditions to enhance the saponifiable lipid,which can be synthesized for biodiesel.
引文
Bligh E G,Dyer W J.1959.A rapid method of total lipid extraction and purification[J].Canadian Journal of Biochemistry and Physiology,37(8):911-917
    陈秀,袁银男,王利平,等.2010.脂肪酸甲酯结构对生物柴油低温流动性的影响[J].江苏大学学报(自然科学版),31(1):31-34,39
    Dufreche S,Hernandez R,French T,et al.2007.Extraction of lipids from municipal wastewater plant microorganisms for production of biodiesel[J].Journal of the American Oil Chemists Society,84(2):181-187
    Lourinho G,Brito P.2015.Advanced biodiesel production technologies:novel developments[J].Reviews in Environmental Science and BioTechnology,14(2):287-316
    李植峰,张玲,沈晓京,等.2011.四种真菌油脂提取方法的比较研究[J].微生物学通报,28(6):72-75
    Mondala A,Liang K,Toghiani H,et al.2009.Biodiesel production by in situ transesterification of municipal primary and secondary sludge[J].Bioresource Technology,100(3):1203-1210
    Mondala A,Hernandez R,French T,et al.2012.Enhanced lipid and biodiesel production from glucose-fed activated sludge:Kinetics and microbial community analysis[J].Aiche Journal,58(4):1279-1290
    Mondala A,Hernandez R,Holmes W,et al.2013.Enhanced microbial oi production by activated sludge microorganisms via co-fermentation o glucose and xylose[J].Aiche Journal,59(11):4036-4044
    Mondala A,Hernandez R,French T,et al.2015.Enhanced microbial oi production by activated sludge microorganisms from sugarcane bagass hydrolyzate[J].Renewable Energy,78:114-118
    Navia R,Mittelbach M.2012.Could sewage sludge be considered a sourc of waste lipids for biodiesel production?[J]Waste Management&Research,30(9):873-874
    Pinzi S,Leiva-Candia D,Lopez Garcia I,et al.2014.Latest trends in feedstocks for biodiesel production[J].Biofuels Bioproducts&Biorefining-Biofpr,8(1):126-143
    Revellame E,Hernandez R,French W,et al.2011.Production of biodiese from wet activated sludge[J].Journal of Chemical Technology and Biotechnology,86(1):61-68
    Sawangkeaw R,Ngamprasertsith S.2013.A review of lipid-based biomasses as feedstocks for biofuels production[J].Renewable&Sustainable Energy Reviews,25:97-108
    Siddiquee M N,Rohani S.2011.Lipid extraction and biodiesel production from municipal sewage sludges:A review[J].Renewable&Sustainable Energy Reviews,15(2):1067-1072
    Sun Q,Li A,Li M,et al.2015.Effect of p H on biodiesel production and the microbial structure of glucose-fed activated sludge[J]International Biodeterioration&Biodegradation,104:224-230
    Upadhyaya K L,Mondala A,Hernandez R,et al.2013.Biocrud production by activated sludge microbial cultures using pulp and paper wastewaters as fermentation substrate[J].Environmenta Technology,34(13/14):2171-2178
    王怡,白小娟,艾怡霏,等.2014a.城市污水处理厂污泥制取生物柴油的试验研究[J].中国给水排水,30(1):14-17
    王怡,冯莎,赵景婵,等.2014b.高碳氮比下生物污泥增脂制取生物柴油的研究[J].中国给水排水,30(23):24-28
NGLC 2004-2010.National Geological Library of China All Rights Reserved.
Add:29 Xueyuan Rd,Haidian District,Beijing,PRC. Mail Add: 8324 mailbox 100083
For exchange or info please contact us via email.