Utilization of Saline Water Enhances Lipid Accumulation in Green Microalgae for the Sustainable Production of Biodiesel

被引:0
作者
Maria Hasnain
Zainul Abideen
Daniel Anthony Dias
Shagufta Naz
Neelma Munir
机构
[1] Lahore College for Women University,Department of Biotechnology
[2] University of Karachi,Dr. Muhammad Ajmal Khan Institute of Sustainable Halophyte Utilization
[3] RMIT University,School of Health and Biomedical Sciences, Discipline of Laboratory Medicine
来源
BioEnergy Research | 2023年 / 16卷
关键词
Response surface methodology; Sustainability; Wastewater; Fuel properties; Salt tolerance; Fatty acids methyl esters;
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中图分类号
学科分类号
摘要
The main objective of this research was to determine the effect of salinity on growth, and production of bio-relevant molecules, from green microalgae: Oedogonium, Cladophora, Ulothrix, and Spirogyra using response surface methodology (RSM) together with central composite design (CCD). Investigated algal biomass decreased (4-–fivefold), whilst carbohydrates decreased ranging from (0.14–0.19 mg/g), proteins (28–36%), and chlorophyll by (17–50%) using a treatment 100 mM of NaCl. The reduction in carbohydrates, proteins, and pigments was accompanied with a significant increase in lipids ranging from 33 to 80% at 100 mM NaCl. Saturated fatty acids were increase from 34.3 to 49.5%, PUFAs from 12.0 to 27.9% while MUFAs decreased from 52.8 to 19.4% at 80 mM of NaCl. Biodiesel-related values including iodine value (less than 120 g I2/100 g), saponification value (161–209 mg/KOH/g), cetane number (greater than 47 except for Cladophora sp.), cold filter plugging point (− 13.84 to − 16.39 °C), density (0.86–0.88 gcm−3), kinematic viscosity (3.5–3.9 mm2/s), oxidative stability (46–382 h at 110 °C), and heating value (36 to 41 MJ/kg) were in the satisfactory ranges of biodiesel standards EN 14,214 & ASTM D6751-02. Our results indicate that the investigated green algal species can produce large lipid yields and biofuels using brackish, saline water in contrast to conventional and current systems.
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页码:1026 / 1039
页数:13
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共 163 条
  • [11] Chu H(2008)Rapid and sensitive anthrone–sulfuric acid assay in microplate format to quantify carbohydrate in biopharmaceutical products: method development and validation Biologicals 1 13437-13451
  • [12] Wang Z(2001)Chlorophylls and carotenoids: measurement and characterization by UV-VIS spectroscopy Curr Protoc Food Anal Chem 24 147-153
  • [13] Qi H(2017)Effect of salinity stress on growth, lipid productivity, fatty acid composition, and biodiesel properties in Acutodesmus obliquus and Chlorella vulgaris Environ Sci Pollut Res 243 341-348
  • [14] Biswas T(2017)Effect of salt type and concentration on the growth and lipid content of Chlorella vulgaris in synthetic saline wastewater for biofuel production Bioresour Technol 189 1491-1498
  • [15] Bhushan S(2015)Salinity induced oxidative stress enhanced biofuel production potential of microalgae Scenedesmus sp. CCNM 1077 Bioresour Technol 127 102978-64
  • [16] Prajapati SK(2019)The effect of salinity stress on the biofuel production potential of freshwater microalgae Chlorella vulgaris YH703 Biomass Bioenerg 35 56-24
  • [17] Chaudhuri SR(2014)The effects of salinity on the growth and biochemical properties of Chlamydomonas mexicana GU732420 cultivated in municipal wastewater Environ Technol 105 1-456
  • [18] Zhao Y(2018)Changes in biochemical composition and fatty acid accumulation of Nannochloropsis oculata in response to different iron concentrations Biofuels 56 449-40
  • [19] Qiao T(2021)Spatial and temporal variability of temperature, salinity and chlorophyll-a in the Magdalena River mouth, Caribbean Sea J South Am Earth Sci 13 34-599
  • [20] Gu D(2018)Application of high-salinity stress for enhancing the lipid productivity of Chlorella sorokiniana HS1 in a two-phase process J Microbiol 250 593-375