Knowledge Agora



Similar Articles

Title A novel process for the mixotrophic production of lutein with Chlorella sorokiniana MB-1-M12 using aquaculture wastewater
ID_Doc 29773
Authors Chen, JH; Kato, Y; Matsuda, M; Chen, CY; Nagarajan, D; Hasunuma, T; Kondo, A; Dong, CD; Lee, DJ; Chang, JS
Title A novel process for the mixotrophic production of lutein with Chlorella sorokiniana MB-1-M12 using aquaculture wastewater
Year 2019
Published
Abstract In this study, microalgal cultivation was applied as a feasible strategy for treating shrimp culture wastewater (SCW) from a shrimp farm in southern Tainan. Chlorella sorokiniana MB-1-M12 was first grown on BG-11 medium with 0.5% salinity, obtaining a biomass concentration and productivity of 4.35 g/L and 1.56 g/L/d, respectively. When 80% of BG-11 nutrients were added to 75% strength SCW, lutein content and productivity increased to 5.19 mg/g and 5.55 mg/L/d, respectively. A novel operation strategy involving periodic exchange of freshwater and SCW was designed for semi-continuous cultivation of MB-1-M12 strain for optimal biomass and lutein production. The average biomass concentration, productivity, lutein content, and productivity were 3.5 g/L, 1.3 g/L/d, 3.89 mg/g and 5.0 mg/L/d, respectively. Although microalgae have been considered as an alternative natural source of lutein, this work is among the earliest reports describing lutein production from microalgae cultivated with wastewater via a circular economy concept.
PDF

Similar Articles

ID Score Article
10133 Yin, YX; Miao, XL Sustainable Lutein Production from Chlorella sorokiniana NIES-2168 by Using Aquaculture Wastewater with Two-Stage Cultivation Strategies(2024)Water, 16.0, 1
23521 Esteves, AF; Soares, SM; Salgado, EM; Boaventura, RAR; Pires, JCM Microalgal Growth in Aquaculture Effluent: Coupling Biomass Valorisation with Nutrients Removal(2022)Applied Sciences-Basel, 12, 24
2038 Leong, YK; Chang, JS Lutein biosynthesis from microalgae-Recent advances and circular economy(2023)
24643 Thoré, ESJ; Schoeters, F; De Cuyper, A; Vleugels, R; Noyens, I; Bleyen, P; Van Miert, S Waste Is the New Wealth - Recovering Resources From Poultry Wastewater for Multifunctional Microalgae Feedstock(2021)
13991 Gogonin, AV; Shchemelinina, TN; Anchugova, EM Utilization of wastewaters as a nutrient medium for the accumulation of microalgal biomass(2022)
13017 Kotoula, D; Iliopoulou, A; Irakleous-Palaiologou, E; Gatidou, G; Aloupi, M; Antonopoulou, P; Fountoulakis, MS; Stasinakis, AS Municipal wastewater treatment by combining in series microalgae Chlorella sorokiniana and macrophyte Lemna minor: Preliminary results(2020)
14489 Verma, R; Suthar, S; Chand, N; Mutiyar, PK Phycoremediation of milk processing wastewater and lipid-rich biomass production using Chlorella vulgaris under continuous batch system(2022)
24104 Zheng, HS; Wang, Y; Li, S; Wu, QL; Feng, XC; Zheng, YJ; Leong, YK; Lee, DJ; Chang, JS Lutein production by microalgae using corn starch wastewater pretreated with rapid enzymatic hydrolysis(2022)
15116 Villanova, V; Roques, JAC; Forghani, B; Shaikh, KM; Undeland, I; Spetea, C Two-phase microalgae cultivation for RAS water remediation and high-value biomass production(2023)
15289 Martelli, A; Zualet, TV; Gagliardi, MBM; Rubilar, T Phytoremediation of aquaculture effluents through the use of six marine microalgae: sustainability contributions in the sea urchin aquaculture industry in Argentina(2024)
Scroll