4.7 Article

Utilization of stagnant non-potable pond water for cultivating oleaginous microalga Chlorella minutissima for biodiesel production

期刊

RENEWABLE ENERGY
卷 126, 期 -, 页码 30-37

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.renene.2018.03.033

关键词

Microalga; Chlorella minutissima; Pond water; Lipid; Biodiesel

资金

  1. Department of Biotechnology (DBT), Govt. of India [7001-35-44]
  2. SERB-LS young scientist award from government of India (GOI)
  3. DBT-IYBA fellowship

向作者/读者索取更多资源

Utilization of waste resources to cultivate microalgae for biofuel production has the potential to improve the economics along with sustainable reuse of discarded nitrogen and phosphorous sources. The present investigation aims to cultivate an oleaginous microalga (Chlorella minutissima) in stagnant non-potable pond (SNP) water collected from different seasons (summer, winter and rainy) for biomass and lipid synthesis. The C minutissima showed enhanced biomass productivity (245 mg/L/d) and lipid content (47 %) when grown in SNP water as compared to basal media, synthetic wastewater and recycled media respectively. The adaption in the SNP media by C minutissima was attributed to an increase in cell size (similar to 2 folds) with decrease in total protein content (-2 folds) and total carbohydrate content (similar to 1 fold) respectively. The fatty acid profile indicated the presence of C16:0, C16:2, C18:0, 08:1 and C18:2 as major methyl esters in the derived biodiesel. Further, the measured biodiesel properties such as specific density (0.90 g/cm(3)), kinematic viscosity (3.24 mm(2)/s), flash point (143 degrees C), iodine value (40.14 g I-2/100 g) and acid value (3.24 mgKOH/g) abided by the ASTM D6751-02 and EN14214 standards. Therefore, such kind of SNP's have dual advantage; microalgal cultivation for biodiesel production and providing economical solution for bioremediation. (C) 2018 Elsevier Ltd. All rights reserved.

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