Microalgae growth rate multivariable mathematical model for biomass production

被引:4
|
作者
Martinez-Ruiz, Manuel [1 ]
Vazquez, Karina [2 ]
Losoya, Liliana [2 ]
Gonzalez, Susana [2 ]
Robledo-Padilla, Felipe [3 ]
Aquines, Osvaldo [3 ]
Iqbal, Hafiz M. N. [1 ]
Parra-Saldivar, Roberto [1 ]
机构
[1] Tecnol Monterrey, Sch Engn & Sci, Monterrey 64849, Mexico
[2] Univ Monterrey, Dept Biomed Engn, Av Morones Prieto 4500, San Pedro Garza Garcia 66238, NL, Mexico
[3] Univ Monterrey, Dept Phys & Math, Av Morones Prieto 4500, San Pedro Garza Garcia 66238, NL, Mexico
关键词
Ultraviolet (UV); Microalgae; Health; Environment; Sunscreen; Amino acid; SCENEDESMUS-OBLIQUUS; WASTE-WATER; LIGHT INTENSITIES; FRESH-WATER; CULTIVATION; PHOTOBIOREACTORS; PERFORMANCE;
D O I
10.1016/j.heliyon.2022.e12540
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Background: The use of microalgae has been emerging as a potential technology to reduce greenhouse gases and bioremediate polluted water and produce high-value products as pigments, phytohormones, biofuels, and bioactive compounds. The improvement in biomass production is a priority to make the technology implementation profitable in every application mentioned before.Methods: The present study was conducted to explore the use of microalgae from genus Chlorella and Tetradesmus for the generation of substances of interest with UV absorption capacity. A mathematical model was developed for both microalgae to characterize the production of microalgae biomass considering the effects of light intensity, temperature, and nutrient con-sumption. The model was programmed in MATLAB software, where the three parameters were incorporated into a single specific growth rate equation.Results: It was found that the optimal environmental conditions for each genus (Chlorella T=36 degrees C, and I < 787 mu mol/m2s; Tetradesmus T=23 degrees C and I < 150 mu mol/m2s), as well as the optimal specific growth rate depending on the personalized values of the three parameters.Conclussion: This work could be used in the production of microalgae biomass for the design and development of topical applications to replace commercial options based on compounds that compromise health and have a harmful impact on the environment.
引用
收藏
页数:11
相关论文
共 50 条
  • [41] Effect of microwave on biomass growth and oxygen production of microalgae Chlorella pyrenoidosa cultured in real wastewater
    He, Zhongqi
    Qu, Yuntian
    Jin, Wenbiao
    Zhou, Xu
    Han, Wei
    Song, Kang
    Gao, Shuhong
    Chen, Yidi
    Yin, Shiyu
    Jiang, Guangming
    Process Safety and Environmental Protection, 2022, 161 : 22 - 33
  • [42] IS THE GROWTH RATE HYPOTHESIS APPLICABLE TO MICROALGAE?
    Flynn, Kevin J.
    Raven, John A.
    Rees, T. Alwyn V.
    Finkel, Zoe
    Quigg, Antonietta
    Beardall, John
    JOURNAL OF PHYCOLOGY, 2010, 46 (01) : 1 - 12
  • [43] Effect of microwave on biomass growth and oxygen production of microalgae Chlorella pyrenoidosa cultured in real wastewater
    He, Zhongqi
    Qu, Yuntian
    Jin, Wenbiao
    Zhou, Xu
    Han, Wei
    Song, Kang
    Gao, Shuhong
    Chen, Yidi
    Yin, Shiyu
    Jiang, Guangming
    PROCESS SAFETY AND ENVIRONMENTAL PROTECTION, 2022, 161 : 22 - 33
  • [44] A time-space model for the growth of microalgae biofilms for biofuel production
    Polizzi, B.
    Bernard, O.
    Ribot, M.
    JOURNAL OF THEORETICAL BIOLOGY, 2017, 432 : 55 - 79
  • [45] A MATHEMATICAL APPROACH FOR THE ESTIMATION OF BIOMASS PRODUCTION-RATE IN SOLID-STATE FERMENTATION
    RODRIGUEZ, LJA
    SASTRE, L
    ECHEVARRIA, J
    DELGADO, G
    BECHSTEDT, W
    ACTA BIOTECHNOLOGICA, 1988, 8 (04): : 307 - 310
  • [46] Multivariable Model Predictive Control to Control Bio-H2 Production from Biomass
    Adjisetya, Muhammad
    Wahid, Abdul
    CHEMENGINEERING, 2023, 7 (01)
  • [47] Use of microalgae biomass for production of granular nitrogen biofertilizers
    Slinksiene, Rasa
    Sendzikiene, Egle
    Mikolaitiene, Austeja
    Makareviciene, Violeta
    Paleckiene, Rasa
    Ragauskaite, Dovile
    GREEN CHEMISTRY LETTERS AND REVIEWS, 2022, 15 (02) : 415 - 425
  • [48] A Mathematical Model For Pyrolysis Of Biomass
    Fernando, Niranjan
    Amin, Muhammad
    Narayana, Mahinsasa
    Jayawickrama, Thamali
    Asadullah
    Jayasena, Sanath
    2015 Moratuwa Engineering Research Conference (MERCon), 2015, : 6 - 11
  • [49] Use of agricultural surpluses for production of biomass by marine microalgae
    Fabregas, J
    Morales, ED
    Polanco, N
    Patino, M
    Otero, A
    Tobar, JF
    WORLD JOURNAL OF MICROBIOLOGY & BIOTECHNOLOGY, 1996, 12 (01): : 47 - 49
  • [50] Sustainable Production of Monoraphidium Microalgae Biomass as a Source of Bioenergy
    Hawrot-Paw, Malgorzata
    Koniuszy, Adam
    Galczynska, Malgorzata
    ENERGIES, 2020, 13 (22)