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Applied Chemistry for Engineering, Vol.32, No.5, 487-496, October, 2021
미세조류 탈지세포잔류물의 미생물 배양 및 바이오에너지 생산으로의 재활용
Recycling of Lipid-extracted Algae Cell Residue for Microorganisms Cultivation and Bioenergy Production
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Microalgae is one of the promising biodiesel feedstock with high growth rates compared to those of terrestrial oil crops. Despite its numerous advantages, biodiesel production from microalgae needs to reduce energy demand and material costs further to go to commercialization. During solvent extraction of microalgal lipids, lipid-extracted algae (LEA) cell residue is generated as an organic solid waste, about 80-85% of original algal biomass, and requires an appropriate recycling or economic disposal. The resulting LEA still contains significant amount of carbohydrates, proteins, N, P, and other micronutrients. This review will focus on recent advancement in the utilization of LEA as: (i) utilization as nutrients or carbon sources for microalgae and other organisms, (ii) anaerobic digestion to produce biogas or co-fermentation to produce CH4 and H2, and (iii) conversion to other forms of biofuel through thermochemical degradation processes. Possible mutual benefits in the integration of microalgae cultivation-biodiesel production-resulting LEA with anaerobic digestion and thermochemical conversion are also discussed.
Keywords:Lipid-extracted algae (LEA);Bioenergy;Mixo/heterotrophic culture;Anaerobic digestion;Thermochemical conversion
- Ferreira AF, Ribeiro LA, Batista AP, Marques PASS, Nobre BP, Palavra AMF, da Silva PP, Gouveia L, Silva C, Bioresour. Technol., 138, 235 (2013)
- Quinn JC, Hanif A, Sharvelle S, Bradley TH, Bioresour. Technol., 171, 37 (2014)
- Posada JA, Brentner LB, Ramirez A, Patel MK, Algal Res., 17, 113 (2016)
- Collotta M, Champagne P, Mabee W, Tomasoni G, Alberti M, Life Cycle Assessment of Energy Systems and Sustainable Energy Technologies. Green Energy and Technology (2019).
- Saranya G, Ramachandra TV, Energy Conv. Manag., 8, 100065 (2020)
- Gentili FG, Bioresour. Technol., 169, 27 (2014)
- Cheah WY, Show PL, Chang JS, Ling TC, Juan JC, Bioresour. Technol., 184, 190 (2015)
- Fernandez-Linares LC, Barajas CG, Paramo ED, Corona JAB, Bioresour. Technol., 244, 400 (2017)
- Aslam A, Thomas-Hall SR, Mughal TA, Schenk PM, Bioresour. Technol., 233, 271 (2017)
- Santos FM, Pires JCM, Bioresour. Technol., 267, 725 (2018)
- Bohutskyi P, Chow S, Ketter B, Betenbaugh MJ, Bouwer EJ, Appl. Energy, 154, 718 (2015)
- Silva CEDF, Bertucco A, Process Biochem., 51(11), 1833 (2016)
- Azizi K, Moraveji MK, Najafabadi HA, Renew. Sust. Energ. Rev., 82, 3046 (2018)
- Gonzalez-Gonzalez LM, Correa DF, Ryan S, Jensen PD, Pratt S, Schenk PM, Renew. Sust. Energ. Rev., 82, 1137 (2018)
- Wang X, Sheng L, Yang X, Bioresour. Technol., 229, 119 (2018)
- Desjardins SM, Laamanen CA, Basiliko N, Scott JA, Environ. Rev., 28(3), 325 (2030)
- Lee K, Kim G, Minh DN, Development of Marine Microalgal Biofuel Production Technology (PJT20025), Ministry of Oceans and Fisheries, Korea (2019).
- Jankowska E, Sahu AK, Oleskowicz-Popiel P, Renew. Sust. Energ. Rev., 75, 692 (2017)
- Park JH, Yoon JJ, Park HD, Lim DJ, Kim SH, Bioresour. Technol., 113, 78 (2012)
- Abomohra A, Eladel H, El-Esawi M, Wang S, Wang Q, He ZX, Feng YQ, Shang H, Hanelt D, Bioresour. Technol., 249, 992 (2018)
- Guldhe A, Kumari S, Ramanna L, Ramsundar P, Singh P, Rawat I, Bux F, J. Environ. Manag., 203, 299 (2017)
- Mishra S, Mohanty K, Bioresour. Technol., 273, 177 (2019)
- Sforza E, Barbera E, Girotto F, Cossu R, Bertucco A, Biochem. Eng. J., 121, 138 (2017)
- Yang ZM, Guo RB, Xu XH, Fan XL, Li XP, Int. J. Hydrog. Energy, 35(18), 9618 (2010)
- Ghimire A, Kumar G, Sivagurunathan P, Shobana S, Saratale GD, Kim HW, Luongo V, Esposito G, Munoz R, Bioresour. Technol., 241, 525 (2017)
- Kim DH, Kang S, Yun YM, Int. J. Hydrog. Energy, 44(4), 2266 (2019)
- Bui HH, Tran KQ, Chen WH, Bioresour. Technol., 199, 362 (2015)
- Ji X, Liu B, Chen G, Ma W, J. Anal. Appl. Pyrolysis, 116, 231 (2015)
- Benavente V, Gentili SLFG, Jansson S, Chem. Eng. J., 428, 129559 (2022)
- Maurya R, Paliwal C, Chokshi K, Pancha I, Ghosh T, Satpati GG, Pal R, Ghosh A, Mishra S, Bioresour. Technol., 207, 197 (2016)
- Zhang B, Ogden K, Algal Res., 39, 101434 (2019)
- Maurya R, Paliwal C, Ghosh T, Pancha I, Chokshi K, Mitra M, Ghosh A, Mishra S, Bioresour. Technol., 214, 787 (2016)
- Tejido-Nunez Y, Aymerich E, Sancho L, Refardt D, Ecol. Eng., 136, 1 (2019)
- Talukder MMR, Das P, Wu J, Biochem. Eng. J., 68, 109 (2012)
- Pancha I, Chokshi K, Maurya R, Bhattacharya S, Bachani P, Mishra S, Bioresour. Technol., 204, 9 (2016)
- Knoshaug EP, Mohagheghi A, Nagle NJ, Stickel JJ, Green Chem., 20, 457 (2018)
- Mirsiaghi M, Bioconversion of Lipid-extracted Algal Biomass into Ethanol (2016).
- Alzate ME, Munoz R, Rogalla F, Fdz-Polanco F, Perez-Elvira SI, Chem. Eng. J., 243, 405 (2014)
- Ansari FA, Shriwastav A, Gupta SK, Rawat I, Guldhe A, Bux F, Bioresour. Technol., 179, 559 (2015)
- Rashid N, Rehman MSU, Han JI, Biochem. Eng. J., 75, 101 (2013)
- Rizwan M, Mujtaba G, Memon SA, Lee K, Rashid N, Renew. Sust. Energ. Rev., 92, 394 (2018)
- Praveenkumar R, Kim B, Choi E, Lee K, Park JY, Lee JS, Lee YC, Oh YK, Bioresour. Technol., 171, 500 (2014)
- Wang L, Chen LD, Wu S, Ye JF, Bioresour. Technol., 278, 175 (2019)
- Dang NM, Lee K, Biotechnol. Bioprocess Eng., 23, 406 (2018)
- Rosch C, Skarka J, Wegerer N, Bioresour. Technol., 107, 191 (2012)
- Dang NM, Lee K, Appl. Chem. Eng., 29(1), 1 (2018)
- Farooq W, Suh WI, Park MS, Yang JW, Bioresour. Technol., 184, 73 (2015)
- Dang NM, Lee K, J. Ind. Eng. Chem., 59, 297 (2018)
- Zheng HL, Gao Z, Yin FW, Ji XJ, Huang H, Bioresour. Technol., 117, 1 (2012)
- Zheng HL, Gao Z, Yin FW, Ji XJ, Huang H, Bioresour. Technol., 126, 24 (2012)
- Ma XC, Zheng HL, Huang H, Liu YH, Ruan R, Appl. Biochem. Biotechnol., 174(4), 1631 (2014)
- Zheng HL, Ma XC, Gao Z, Wan YQ, Min M, Zhou WG, Li Y, Liu YH, Huang H, Chen P, Ruan R, Appl. Biochem. Biotechnol., 177(3), 662 (2015)
- Moon M, Kim CW, Farooq W, Suh WI, Shrivastav A, Park MS, Mishra SK, Yang JW, Bioresour. Technol., 163, 180 (2014)
- Arora N, Patel A, Pruthi PA, Pruthi V, Appl. Biochem. Biotechnol., 180(8), 1534 (2016)
- Lowrey J, Armenta RE, Brooks MS, Bioresour. Technol., 209, 333 (2016)
- Jain P, Arora N, Mehtani J, Pruthi V, Majumder CB, Bioresour. Technol., 242, 152 (2017)
- Lee OK, Kim AL, Seong DH, Lee CG, Jung YT, Lee JW, Lee EY, Bioresour. Technol., 132, 197 (2013)
- Mirsiaghi M, Reardon KF, Algal Res., 8, 145 (2015)
- Kavitha C, Ashokkumar V, Chinnasamy S, Bhaskar S, Rengasamy R, Int. J. Curr. Biotechnol., 2, 11 (2014)
- Gao MT, Shimamura T, Ishida N, Takahashi H, J. Biosci. Bioeng., 114(3), 330 (2012)
- Seo YH, Sung M, Han JI, Fuel, 141, 222 (2015)
- Cheng HH, Whang LM, Chan KC, Chung MC, Wu SH, Liu CP, Tien SY, Chen SY, Chang JS, Lee WJ, Bioresour. Technol., 184, 379 (2015)
- Gu HY, Nagle N, Pienkos PT, Posewitz MC, Bioresour. Technol., 184, 153 (2015)
- Park J, Jin HF, Lim BR, Park KY, Lee K, Bioresour. Technol., 101(22), 8649 (2010)
- Yang L, Tan X, Si B, Zhao F, Chu H, Zhou X, Zhang Y, Algal Res., 33, 399 (2018)
- Bohutskyi P, Ketter B, Chow S, Adams KJ, Betenbaugh MJ, Allnutt FCT, Bouwer EJ, Bioresour. Technol., 183, 229 (2015)
- Maurya R, Chokshi K, Ghosh T, Trivedi K, Pancha I, Kubavat D, Mishra S, Ghosh A, Front. Plant Sci., 6, 1266 (2016)
- Grzesik M, Romanowska-Duda Z, Kalaji HM, Photosynthetica, 55, 510 (2017)
- Juarez JM, Pastor ER, Sevilla JMF, Torre RM, Garcia-Encina PA, Rodriguez SB, Bioresour. Technol., 257, 30 (2018)
- Bryant HL, Gogichaishvili I, Anderson D, Richardson JW, Sawyer J, Wickersham T, Drewery ML, Algal Res., 1, 185 (2012)
- Gupta S, Gupta S, Mansha, Sharma S, J. Algal Biomass Util., 3, 1 (2012)
- Rothlisberger-Lewis KL, Foster JL, Hons FM, Geoderma, 262, 140 (2016)
- Barbera E, Sforza E, Kumar S, Morosinotto T, Bertucco A, Bioresour. Technol., 207, 59 (2016)
- Barbera E, Sforza E, Musolino V, Kumar S, Bertucco A, Chem. Eng. Res. Des., 132, 785 (2018)
- Johnson EA, Liu Z, Salmon E, Hatcher P, Advanced Biofuels and Bioproducts, pp. 695-705, Springer, New York (2013).
- Wang KG, Brown RC, Homsy S, Martinez L, Sidhu SS, Bioresour. Technol., 127, 494 (2013)
- Chang YM, Tsai WT, Li MH, Bioresour. Technol., 77, 184 (2015)
- Chang YM, Tsai WT, Li MH, J. Anal. Appl. Pyrolysis, 111, 88 (2015)
- Francavilla M, Kamaterou P, Intini S, Monteleone M, Zabaniotou A, Algal Res., 11, 184 (2015)
- Chiaramonti D, Prussi M, Buffi M, Rizzo AM, Pari L, Appl. Energy, 185, 963 (2017)