Microalgae-assisted green bioremediation of food-processing wastewater: A sustainable approach toward a circular economy concept

被引:16
作者
Najar-Almanzor, Cesar E. [1 ]
Velasco-Iglesias, Karla D. [1 ]
Nunez-Ramos, Regina [1 ]
Uribe-Velazquez, Tlalli [1 ]
Solis-Banuelos, Minerva [1 ]
Fuentes-Carrasco, Oscar J. [1 ]
Chairez, Isaac [1 ,2 ]
Garcia-Cayuela, Tomas
Carrillo-Nieves, Danay [1 ]
机构
[1] Tecnol Monterrey, Escuela Ingn & Ciencias, Av Gen Ramon Corona 2514, Zapopan 45201, Jal, Mexico
[2] Tecnol Monterrey, Inst Adv Mat Sustainable Mfg, Av Gen Ramon Corona 2514, Zapopan 45201, Jal, Mexico
关键词
Microalgae; Biorefinery; Food-processing wastewater; Circular economy; CHEESE WHEY; ANABAENA-VARIABILIS; CHLORELLA-VULGARIS; BIOETHANOL PRODUCTION; SCENEDESMUS-OBLIQUUS; SPIRULINA-PLATENSIS; ARTHROSPIRA-MAXIMA; TEQUILA VINASSES; HEALTH-BENEFITS; AMINO-ACIDS;
D O I
10.1016/j.jenvman.2023.118774
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Wastewater disposal is a major environmental issue that pollutes water, causing eutrophication, habitat destruction, and economic impact. In Mexico, food-processing effluents pose a huge environmental threat due to their excessive nutrient content and their large volume discharged every year. Some of the most harmful residues are tequila vinasses, nejayote, and cheese whey. Each liter of tequila generates 13-15 L of vinasses, each kilogram of cheese produces approximately 9 kg of cheese whey, and each kilogram of nixtamalized maize results in the production of 2.5-3.3 L of nejayote. A promising strategy to reduce the contamination derived from wastewater is through microalgae-based wastewater treatment. Microalgae have a high adaptability to hostile environments and they can feed on the nutrients in the effluents to grow. Moreover, to increase the viability, profitability, and value of wastewater treatments, a microalgae biorefinery could be proposed. This review will focus on the circular bioeconomy scheme focused on the simultaneous food-processing wastewater treatment and its use to grow microalgae biomass to produce added-value compounds. This strategy allows for the revalorization of wastewater, decreases contamination of water sources, and produces valuable compounds that promote human health such as phycobiliproteins, carotenoids, omega-3 fatty acids, exopolysaccharides, mycosporine-like amino acids, and as a source of clean energy: biodiesel, biogas, and bioethanol.
引用
收藏
页数:14
相关论文
共 145 条
[1]   Microalgae-based wastewater treatment: Mechanisms, challenges, recent advances, and future prospects [J].
Abdelfattah, Abdallah ;
Ali, Sameh Samir ;
Ramadan, Hassan ;
El-Aswar, Eslam Ibrahim ;
Eltawab, Reham ;
Ho, Shih-Hsin ;
Elsamahy, Tamer ;
Li, Shengnan ;
El-Sheekh, Mostafa M. ;
Schagerl, Michael ;
Kornaros, Michael ;
Sun, Jianzhong .
ENVIRONMENTAL SCIENCE AND ECOTECHNOLOGY, 2023, 13
[2]   Decoupling a novel Trichormus variabilis-Synechocystis sp. interaction to boost phycoremediation [J].
Abedi, Sepideh ;
Astaraei, Fatemeh Razi ;
Ghobadian, Barat ;
Tavakoli, Omid ;
Jalili, Hassan ;
Greenwell, H. Christopher ;
Cummins, Ian ;
Chivasa, Stephen .
SCIENTIFIC REPORTS, 2019, 9 (1)
[3]   Effect of light level and salinity on the composition and accumulation of free and ester-type carotenoids in the aerial microalga Scenedesmus sp (Chlorophyceae) [J].
Aburai, Nobuhiro ;
Sumida, Daichi ;
Abe, Katsuya .
ALGAL RESEARCH-BIOMASS BIOFUELS AND BIOPRODUCTS, 2015, 8 :30-36
[4]   Microalgal biofactories: a promising approach towards sustainable omega-3 fatty acid production [J].
Adarme-Vega, T. Catalina ;
Lim, David K. Y. ;
Timmins, Matthew ;
Vernen, Felicitas ;
Li, Yan ;
Schenk, Peer M. .
MICROBIAL CELL FACTORIES, 2012, 11
[5]   Effect of hydrolysis time and acid concentration on bioethanol production of microalga Scenedesmus sp. [J].
Agustini, N. W. S. ;
Hidhayati, N. ;
Wibisono, S. A. .
INTERNATIONAL SYMPOSIUM ON BIOREMEDIATION, BIOMATERIAL, REVEGETATION, AND CONSERVATION, 2019, 308
[6]   Progress and challenges of contaminate removal from wastewater using microalgae biomass [J].
Ahmed, Shams Forruque ;
Mofijur, M. ;
Parisa, Tahlil Ahmed ;
Islam, Nafisa ;
Kusumo, F. ;
Inayat, Abrar ;
Van Giang Le ;
Badruddin, Irfan Anjum ;
Khan, T. M. Yunus ;
Ong, Hwai Chyuan .
CHEMOSPHERE, 2022, 286
[7]   Bioaccessibility of carotenoids (β-carotene and lutein) from intact and disrupted microalgae (Chlamydomonas reinhardtii) [J].
Akepach, Patchaniya ;
Ribeiro-Filho, Normando ;
Wattanakul, Jutarat ;
Darwish, Randa ;
Gedi, Mohamed A. ;
Gray, David A. .
LWT-FOOD SCIENCE AND TECHNOLOGY, 2022, 160
[8]   Recent advances in wastewater microalgae-based biofuels production: A state-of-the-art review [J].
Ali, Sameh Samir ;
Mastropetros, Savvas Giannis ;
Schagerl, Michael ;
Sakarika, Myrsini ;
Elsamahy, Tamer ;
El-Sheekh, Mostafa ;
Sun, Jianzhong ;
Kornaros, Michael .
ENERGY REPORTS, 2022, 8 :13253-13280
[9]  
[Anonymous], 2015, Biores Commun
[10]  
Antonio E, 2015, JOURNAL OF ADVANCES IN BIOTECHNOLOGY, V5, P659, DOI [10.24297/jbt.v5i2.1574, 10.24297/jbt.v5i2.1574, DOI 10.24297/JBT.V5I2.1574]