Inhibition mechanism and biological recycling utilization of microalgae culture aging solution

被引:5
作者
Han, Xiaoyue [1 ]
Li, Pengcheng [1 ]
Wang, Dantong [1 ]
Wang, Min [2 ]
Song, Chunfeng [1 ]
机构
[1] Tianjin Univ, Sch Environm Sci & Engn, Tianjin Key Lab Indoor Air Environm Qual Control, 92 Weijin Rd, Tianjin, Peoples R China
[2] Collaborat Innovat Ctr Wetland Conservat & Green D, Hengshui, Peoples R China
来源
JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING | 2023年 / 11卷 / 06期
关键词
Spirulina platensis; Chlorella vulgaris; Aging solution; Growth inhibitor; Biopurification; CHLORELLA-VULGARIS; GROWTH; WATER; PRODUCTIVITY; CULTIVATION; PERFORMANCE;
D O I
10.1016/j.jece.2023.111490
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
During the process of recovering microalgae culture media, the culture media will age and inhibit the growth of microalgae. When the culture media was reused for the third time, the maximum biomass of Spirulina platensis FACHB-439 was only 56.13% of the fresh culture media. But the inhibitors in the aging solution are not known. In this study, the growth inhibition mechanism of Spirulina platensis aging solution was clarified through the identification of target organic matter by cyclic culture experiment and ion chromatography. The results showed that the growth inhibitors in the aging solution were polysaccharides, mainly including fucose and rhamnose. Further reverse addition experiments confirmed that polysaccharide inhibitors would increase with the increase of repeated use of the culture media. By inhibiting the synthesis of photosynthetic pigments in microalgae, they could cause oxidative damage and membrane peroxidation of microalgae cells, resulting in stress on the growth of microalgae. At the same time, this study established a purification method for reusing aging solution of heterologous microalgae (Chlorella sp. L166) to obtain high lipid and high carbohydrate biomass energy. The results showed that the biomass of Chlorella sp. L166 in the first circulating aging solution of S.platensis FACHB439 increased by 25%, the carbon utilization rate reached 21.36%, the lipid content per cell increased by 1.61 times, and the carbohydrate content increased by 86.71%. This work is helpful to solve the problem that aging of culture media inhibits carbon sequestration efficiency and biomass yield of microalgae in large-scale production of microalgae. And the results of this study have achieved high utilization rate of water resource for large-scale cultivation of microalgae, which is conducive to realize the scale development of microalgae biotechnology.
引用
收藏
页数:12
相关论文
共 44 条
[1]   Mechanism of Coomassie Brilliant Blue G-250 binding to cetyltrimethylammonium bromide: An interference with the Bradford assay [J].
Aminian, Mahdi ;
Nabatchian, Fariba ;
Vaisi-Raygani, Asad ;
Torabi, Mojgan .
ANALYTICAL BIOCHEMISTRY, 2013, 434 (02) :287-291
[2]   Influence of Carbohydrate Additives on the Growth Rate of Microalgae Biomass with an Increased Carbohydrate Content [J].
Andreeva, Anna ;
Budenkova, Ekaterina ;
Babich, Olga ;
Sukhikh, Stanislav ;
Dolganyuk, Vyacheslav ;
Michaud, Philippe ;
Ivanova, Svetlana .
MARINE DRUGS, 2021, 19 (07)
[3]   Algae in wastewater treatment, mechanism, and application of biomass for production of value-added product [J].
Bhatt, Pankaj ;
Bhandari, Geeta ;
Turco, Ronald F. ;
Aminikhoei, Zahra ;
Bhatt, Kalpana ;
Simsek, Halis .
ENVIRONMENTAL POLLUTION, 2022, 309
[4]   Manipulating environmental stresses and stress tolerance of microalgae for enhanced production of lipids and value-added products-A review [J].
Chen, Bailing ;
Wan, Chun ;
Mehmood, Muhammad Aamer ;
Chang, Jo-Shu ;
Bai, Fengwu ;
Zhao, Xinqing .
BIORESOURCE TECHNOLOGY, 2017, 244 :1198-1206
[5]   Effect of medium recycling, culture depth, and mixing duration on D. salina growth [J].
Chuka-ogwude, David ;
Nafisi, Mahmoud ;
Vadiveloo, Ashiwin ;
Taher, Hanifa ;
Bahri, Parisa A. ;
Moheimani, Navid R. .
ALGAL RESEARCH-BIOMASS BIOFUELS AND BIOPRODUCTS, 2021, 60
[6]   Benchmark study on algae harvesting with backwashable submerged flat panel membranes [J].
De Baerdemaeker, Tom ;
Lemmens, Bert ;
Dotremont, Chris ;
Fret, Jorien ;
Roef, Luc ;
Goiris, Koen ;
Diels, Ludo .
BIORESOURCE TECHNOLOGY, 2013, 129 :582-591
[7]   Biologically Active Metabolites Synthesized by Microalgae [J].
de Morais, Michele Greque ;
Vaz, Bruna de Silva ;
de Morais, Etiele Greque ;
Vieira Costa, Jorge Alberto .
BIOMED RESEARCH INTERNATIONAL, 2015, 2015
[8]   Current methods to monitor microalgae-nanoparticle interaction and associated effects [J].
Deniel, Maureen ;
Errien, Nicolas ;
Daniel, Philippe ;
Caruso, Aurore ;
Lagarde, Fabienne .
AQUATIC TOXICOLOGY, 2019, 217
[9]   Influence of culture medium recycling on the performance of Arthrospira platensis cultures [J].
Depraetere, Orily ;
Pierre, Guillaume ;
Noppe, Wim ;
Vandamme, Dries ;
Foubert, Imogen ;
Michaud, Philippe ;
Muylaert, Koenraad .
ALGAL RESEARCH-BIOMASS BIOFUELS AND BIOPRODUCTS, 2015, 10 :48-54
[10]   Effect of harvesting methods on the reusability of water for cultivation of Chlorella vulgaris, its lipid productivity and biodiesel quality [J].
Farooq, Wasif ;
Moon, Myounghoon ;
Ryu, Byung-gon ;
Suh, William I. ;
Shrivastav, Anupama ;
Park, Min S. ;
Mishra, Sanjiv K. ;
Yang, Ji-Won .
ALGAL RESEARCH-BIOMASS BIOFUELS AND BIOPRODUCTS, 2015, 8 :1-7