概述了微藻生物能源技术中的微藻规模化培养的研究现状,从藻种筛选、代谢机理、培养条件和光生物反应器几个不同的角度阐述了影响微藻规模化培养的因素,为微藻生物能源的发展及光生物反应器的研发提供建议与思路.
参考文献
[1] | Amaro H M;Guedes A C;Malcata F X .[J].Applied Energy,2011,88:3402. |
[2] | 闵恩泽,姚志龙.近年生物柴油产业的发展--特色、困境和对策[J].化学进展,2007(07):1050-1059. |
[3] | Apt K E;Behrens P W .[J].Journal of Phycology,1999,35:215. |
[4] | Rodolfi L;Zittelli G C;Bassi N;Padovani G Biondi N Bonini G Tredici M R .[J].Biotechnology and Bioengineering,2008,102:100. |
[5] | Brennan L;Owende P .[J].Renewable & Sustainable Energy Reviews,2010,14:557. |
[6] | 杨苏,陈朝银,赵声兰,牛耀辉,李立.滇池蓝藻资源综合利用的研究进展[J].云南化工,2006(03):49-53. |
[7] | 王军,杨素玲,丛威,蔡昭铃.营养条件对产烃葡萄藻生长的影响[J].过程工程学报,2003(02):141-145. |
[8] | de-Bashan LE;Antoun H;Bashan Y .Cultivation factors and population size control the uptake of nitrogen by the microalgae Chlorella vulgaris when interacting with the microalgae growth-promoting bacterium Azospirillum brasilense[J].FEMS Microbiology Ecology,2005(2):197-203. |
[9] | 文锦,孙远,李宝硕,朱瑞雪,蒋云江,温皓程,张永奎.产油微藻自养培养条件调控[J].微生物学通报,2010(12):1721-1726. |
[10] | Perez-Garcia O;Escalante F M E;de-Bashan L E;Bashan Y .[J].Water Research,2011,45:11. |
[11] | Chen G Q;Jiang Y;Chen F .[J].Food Chemistry,2007,104:1580. |
[12] | 宋东辉,侯李君,施定基.生物柴油原料资源高油脂微藻的开发利用[J].生物工程学报,2008(03):341-348. |
[13] | Andersen R A;Kawachi M.Traditional Microalgae Isolation Techniques[A].Burlington:Elsevier Academic Press,2005:83. |
[14] | Li YQ;Horsman M;Wang B;Wu N;Lan CQ .Effects of nitrogen sources on cell growth and lipid accumulation of green alga Neochloris oleoabundans[J].Applied Microbiology and Biotechnology,2008(4):629-636. |
[15] | Khozin-Goldberg I;Cohen Z .The effect of phosphate starvation on the lipid and fatty acid composition of the fresh water eustigmatophyte Monodus subterraneus[J].Phytochemistry,2006(7):696-701. |
[16] | Lynn S G;Kilham S S;Kreeger D A;Interlandi S J .[J].Journal of Phycology,2000,36:510. |
[17] | Rao A R;Dayananda C;Sarada R;Shamala T R Ravishankar G A .[J].Biorescource Technol,2007,98:560. |
[18] | 姚茹,程丽华,徐新华,张林,陈欢林.微藻的高油脂化技术研究进展[J].化学进展,2010(06):1221-1232. |
[19] | 朱顺妮,王忠铭,尚常花,周卫征,杨康,袁振宏.微藻脂肪合成与代谢调控[J].化学进展,2011(10):2169-2176. |
[20] | Arabolaza A;Rodriguez E;Altabe S;Alvarez H;Gramajo H .Multiple pathways for triacylglycerol biosynthesis in Streptomyces coelicolor[J].Applied and Environmental Microbiology,2008(9):2573-2582. |
[21] | Dahlqvist A;Stahl U;Lenman M;Banas A Lee M Sandager L Ronne H Stymne S .[J].Proceedings of the National Academy of Sciences(USA),2000,97:6487. |
[22] | Riekhof WR;Sears BB;Benning C .Annotation of genes involved in glycerolipid biosynthesis in Chlamydomonas reinhardtii: Discovery of the betaine lipid synthase BTA1(Cr)[J].Eukaryotic cell,2005(2):242-252. |
[23] | National Algal Biofuels Technology Roadmap[M].U.S.Department of Energy,Energy Efficiency and Renewable Energy,2010 |
[24] | Rabbani S.;Beyer P.;Von Lintig J.;Hugueney P.;Kleinig H. .Induced beta-carotene synthesis driven by triacylglycerol deposition inthe unicellular alga Dunaliella bardawil[J].Plant physiology,1998(4):1239-1248. |
[25] | Zhekisheva M;Boussiba S;Khozin-Goldberg I;Zarka A;Cohen Z .Accumulation of oleic acid in Haematococcus pluvialis (Chlorophyceae) under nitrogen starvation or high light is correlated with that of astaxanthin esters[J].Journal of phycology,2002(2):325-331. |
[26] | Chen, M.;Tang, H.;Ma, H.;Holland, T.C.;Ng, K.Y.S.;Salley, S.O. .Effect of nutrients on growth and lipid accumulation in the green algae Dunaliella tertiolecta[J].Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies,2011(2):1649-1655. |
[27] | 冯国栋,程丽华,徐新华,张林,陈欢林.微藻高油脂化基因工程研究策略[J].化学进展,2012(07):1413-1426. |
[28] | Eriksen N T;Geest T;Iversen J J L .[J].Journal of Applied Phycology,1996,8:345. |
[29] | Cheng L H;Zhang L;Chen H L;Gao C .[J].Separation and Purification Technology,2006,50:324. |
[30] | Chen GQ;Chen F .Growing phototrophic cells without light[J].Biotechnology Letters,2006(9):607-616. |
[31] | 欧阳峥嵘,温小斌,耿亚红,梅洪,胡鸿钧,张桂艳,李夜光.光照强度、温度、pH、盐度对小球藻(Chlorella)光合作用的影响[J].武汉植物学研究,2010(01):49-55. |
[32] | 梁英,麦康森,孙世春,于道德.硝酸钠浓度对三角褐指藻(Phaeodactylum tricornutum)MACC/B226生长及脂肪酸组成的影响[J].海洋科学,2002(05):48-51. |
[33] | Solovchenko A. E.;Khozin-Goldberg I.;Didi-Cohen S.;Cohen Z.;Merzlyak M. N. .Effects of light intensity and nitrogen starvation on growth, total fatty acids and arachidonic acid in the green microalga Parietochloris incisa[J].Journal of Applied Phycology,2008(3):245-251. |
[34] | Rohá(c)ek K;Barták M .[J].Photosynthetica,1999,37:339. |
[35] | 华汝成.单细胞藻类的培养与利用[M].北京:中国农业出版社,1986 |
[36] | Janssen M;Slenders P;Tramper J;Mur L R Wijffels R .[J].Enzyme and Microbial Technology,2001,29:298. |
[37] | 从威;苏贞峰;薛升长;杨成砚 .[P].CN Patent 101 899 385 A,2010. |
[38] | 从威;张庆华;薛升长 .[P].CN Patent 102 260 629A,2011. |
[39] | 殷志强.中国可再生能源发展战略研究丛书-太阳能卷[M].北京:中国电力出版社,2008 |
[40] | Zhang Ch;Zou J Zh .[J].Oceanologica et Limnologia Sinica,1997,28:599. |
[41] | Li B;Ou L J;Lü S H .[J].Marine Environmental Science,2009,28:264. |
[42] | 丁彦聪,高群,刘家尧,衣艳君,刘建国,林伟.环境因子对小球藻生长的影响及高产油培养条件的优化[J].生态学报,2011(18):5307-5315. |
[43] | Wang L Zh;Wen H Ch;Zou Y;Zhou W W Xie T H Zhang Y K .[J].Microbiology,2010,37:336. |
[44] | 尹翠玲,梁英,张秋丰.氮浓度对球等鞭金藻3011和8701叶绿素荧光特性及生长的影响[J].水产科学,2008(01):27-31. |
[45] | Kolber Z;Zehr J;Falkowski P .[J].Plant Physiology,1988,88:923. |
[46] | Evans C T;Scragg A H;Ratledge C .[J].European Journal of Biochemistry,1983,132:609. |
[47] | 李英,吕颂辉,徐宁,谢隆初.东海原甲藻对不同磷源的利用特征[J].生态科学,2005(04):314-317,321. |
[48] | 文世勇,赵冬至,赵玲,杨建洪,张丰收,王林,高树刚,孙东.赤潮藻类的氮磷比耐受性响应模型[J].大连海事大学学报,2009(01):118-122. |
[49] | 吴垠;孙建明;孙培海;张德明 .[J].水产学报,2004,28:742. |
[50] | 王国栋,张丽莉,吴垠,孙建明.补充CO2对光生物反应器培养新月菱形藻的影响[J].水生态学杂志,2008(06):35-38. |
[51] | 张其德;卢从明;冯丽洁;林世青 匡廷云 白克智 .[J].植物学报,1996,38:77. |
[52] | Chiu, S.-Y.;Kao, C.-Y.;Huang, T.-T.;Lin, C.-J.;Ong, S.-C.;Chen, C.-D.;Chang, J.-S.;Lin, C.-S. .Microalgal biomass production and on-site bioremediation of carbon dioxide, nitrogen oxide and sulfur dioxide from flue gas using Chlorella sp. cultures[J].Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies,2011(19):9135-9142. |
[53] | 杨波,储昭升,金相灿,阎峰,曾清如.CO2/pH对三种藻生长及光合作用的影响[J].中国环境科学,2007(01):54-57. |
[54] | 朱明,张学成,茅云翔.醋酸对海链藻生长的影响[J].中国海洋大学学报(自然科学版),2005(03):499-502,506. |
[55] | 刘晶;张嗣良 .[J].生物工程学报,2000,16(02):119. |
[56] | 王琴,区子弁,柳建良.藻类光生物反应器的研究与应用进展[J].广东农业科学,2011(05):180-181,193. |
[57] | Sheehan J;Dunahay T;Benemann J;Roessler P .[Z].National Renewable Energy Lab.,Golden,CO.:United States,1998. |
[58] | Ugwu C U;Ogbonna J C;Tanaka H .[J].Process Biochemistry,2005,40:3406. |
[59] | Hsieh C H;Wu W T .[J].Biochemical Engineering Journal,2009,46:300. |
[60] | 李兴武,李元广,沈国敏,杨东.普通小球藻异养-光自养串联培养的培养基[J].过程工程学报,2006(02):277-280. |
[61] | 丛威;刘明;鲍亦璐 .[P].CN Patent 101948740A,2011. |
[62] | Chisti Y .Biodiesel from microalgae[J].Biotechnology Advances: An International Review Journal,2007(3):294-306. |
[63] | Scragg AH;Illman AM;Carden A;Shales SW .Growth of microalgae with increased calorific values in a tubular bioreactor[J].Biomass & Bioenergy,2002(1):67-73. |
[64] | Travieso L;Hall D O;Rao K K;Benítez F Sánchez E Borja R .[J].International Biodeterioration and Biodegradation,2001,47:151. |
[65] | Hulatt, C.J.;Thomas, D.N. .Energy efficiency of an outdoor microalgal photobioreactor sited at mid-temperate latitude[J].Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies,2011(12):6687-6695. |
[66] | Hulatt, C.J.;Thomas, D.N. .Productivity, carbon dioxide uptake and net energy return of microalgal bubble column photobioreactors[J].Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies,2011(10):5775-5787. |
[67] | Yoon, J.H.;Choi, S.S.;Park, T.H. .The cultivation of Anabaena variabilis in a bubble column operating under bubbly and slug flows[J].Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies,2012(1):430-436. |
[68] | Jacob-Lopes E;Scoparo C H G;Lacerda L M C F;Franco T T .[J].Chemical Engineering Progress,2009,48:306. |
[69] | Rasoul-Amini S;Montazeri-Najafabady N;Mobasher M A;Hoseini-Alhashemi S Ghasemi Y .[J].Applied Energy,2011,88:3354. |
[70] | Feng, P.;Deng, Z.;Hu, Z.;Fan, L. .Lipid accumulation and growth of Chlorella zofingiensis in flat plate photobioreactors outdoors[J].Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies,2011(22):10577-10584. |
[71] | Richmond A;Cheng-Wu Z .Optimization of a flat plate glass reactor for mass production ofNannochloropsis sp outdoors[J].Journal of Biotechnology,2001(3):259-269. |
[72] | Doucha J.;Livansky K. .Outdoor open thin-layer microalgal photobioreactor: potential productivity[J].Journal of Applied Phycology,2009(1):111-117. |
[73] | 展望,桑敏,李爱芬,张成武.不同光径对两株土壤绿藻生长及脂类积累的影响[J].可再生能源,2010(03):67-71. |
[74] | 缪锦来;王波;阚光锋;丁燏 姜英辉 侯旭光 李光友 .[J].海洋科学,2005,29:2. |
[75] | Borowitzka MA. .Commercial production of microalgae: ponds, tanks, tubes and fermenters[J].Journal of Biotechnology,1999(1/3):313-321. |
[76] | Alías C B;López M C G M;Fernández F G A;Sevilla J M F Sánchez J L G Grima E M .[J].Biotechnology and Bioengineering,2004,87:723. |
[77] | Chae SR;Hwang EJ;Shin HS .Single cell protein production of Euglena gracilis and carbon dioxide fixation in an innovative photo-bioreactor[J].Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies,2006(2):322-329. |
[78] | Hu Q;Guterman H;Richmond A .A FLAT INCLINED MODULAR PHOTOBIOREACTOR FOR OUTDOOR MASS CULTIVATION OF PHOTOAUTOTROPHS[J].Biotechnology and Bioengineering,1996(1):51-60. |
[79] | Hu Q;Faiman D;Richmond A .[J].Journal of Fermentation and Bioengineering,1998,85:230. |
[80] | Sierra E;Acién F G;Fernández J M;García J L González C Molina E .[J].Chemical Engineering Journal,2008,138:136. |
[81] | Doucha J;Lívansk(y) K .[P].US Patent 5 981 271,1999. |
[82] | Doucha J;Livansky K Doucha J;Livansky K .Productivity, CO sub(2)/O sub(2) exchange and hydraulics in outdoor open high density microalgal (Chlorella sp.) photobioreactors operated in a Middle and Southern European climate[J].Journal of Applied Phycology,2006(6):811-826. |
[83] | 荣峻峰;黄绪耕;周旭华 .[P].CN Patent 101 870 950 A,2010. |
[84] | Gorny R;Mason J P;Hilton G;Schwarz P .[P].WO Patent 2011/034 567A2,2011. |
[85] | 韩春梅;杨建强;陈红涛;张涵,刘敏胜 .[P].CN Patent 101 735 948 A,2010. |
[86] | 刘天中;张维;陈昱;彭小伟,陈晓琳 .[P].CN Patent 102 206 570 A,2010. |
[87] | Sato T;Yamada D;Hirabayashi S .[J].Energy Conversion and Management,2010,51:1196. |
[88] | Slegers P M;Wijffels R H;van Straten G;van Boxtel A J B .[J].Applied Energy,2011,88:3342. |
[89] | 邱春天,林涛,张秋林,徐海迪,陈耀强,龚茂初.改性ZrO2-MnO2基整体式催化剂上NH3选择性催化还原NO[J].催化学报,2011(07):1227-1233. |
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