Effect of temperature on growth and fatty acids profile of the biodiesel producing microalga Scenedesmus acutus
The present study examined the effect of temperature (15, 20, 25, 30, 35 and 40 °C) on biomass, esterified fatty acids content and fatty acid productivity of Scenedesmus acutus. This work aimed to study the effect of variation in temperature on lipid productivity and fatty acid profiles of S. acutus...
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| Published in | Biotechnologie, agronomie, société et environnement Vol. 21; no. 4; pp. 233 - 239 |
|---|---|
| Main Authors | , , , |
| Format | Journal Article |
| Language | English |
| Published |
Gembloux
Les Presses Agronomiques de Gembloux
01.01.2017
Université de Liège Presses Agronomiques de Gembloux |
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| Online Access | Get full text |
| ISSN | 1370-6233 1780-4507 1780-4507 |
| DOI | 10.25518/1780-4507.15291 |
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| Abstract | The present study examined the effect of temperature (15, 20, 25, 30, 35 and 40 °C) on biomass, esterified fatty acids content and fatty acid productivity of Scenedesmus acutus. This work aimed to study the effect of variation in temperature on lipid productivity and fatty acid profiles of S. acutus as a feedstock for biodiesel production. The alga was grown under different temperatures and its biomass, as well as fatty acid content and composition, were determined. The maximum growth rate of S. acutus was achieved at 30 °C , but there was no significant difference in biomass productivity at 25 and 30 °C (0.41 and 0.42 g·l-1·d-1), respectively. The highest fatty acid content (104.1 mg·g-1 CDW) was recorded at low temperature (15 °C) and decreased with increasing temperature. As a result of high biomass production, fatty acids productivity showed the highest values (41.27 and 42.10 mg.l-1·d-1) at 25 and 30 °C, respectively. The proportion of saturated and mono-unsaturated fatty acids increased from 13.72 to 23.79% and from 11.13 to 33.10% of total fatty acids when the incubation temperature was raised from 15 to 40 °C, respectively. The increase of temperature from 15 to 40 °C decreased the poly-unsaturated fatty acids from 75.15% to 43.10% of total fatty acids, respectively. The present study concluded that incubation temperature was a critical parameter for quantitative and qualitative fatty acid compositions of S. acutus. In addition, the type and proportion of individual fatty acids, which interfere with biodiesel quality, can be modified using different incubation temperatures in order to meet the biodiesel international standards. |
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| AbstractList | The present study examined the effect of temperature (15, 20, 25, 30, 35 and 40 °C) on biomass, esterified fatty acids content and fatty acid productivity of Scenedesmus acutus. This work aimed to study the effect of variation in temperature on lipid productivity and fatty acid profiles of S. acutus as a feedstock for biodiesel production. The alga was grown under different temperatures and its biomass, as well as fatty acid content and composition, were determined. The maximum growth rate of S. acutus was achieved at 30 °C , but there was no significant difference in biomass productivity at 25 and 30 °C (0.41 and 0.42 g·l-1·d-1), respectively. The highest fatty acid content (104.1 mg·g-1 CDW) was recorded at low temperature (15 °C) and decreased with increasing temperature. As a result of high biomass production, fatty acids productivity showed the highest values (41.27 and 42.10 mg.l-1·d-1) at 25 and 30 °C, respectively. The proportion of saturated and mono-unsaturated fatty acids increased from 13.72 to 23.79% and from 11.13 to 33.10% of total fatty acids when the incubation temperature was raised from 15 to 40 °C, respectively. The increase of temperature from 15 to 40 °C decreased the poly-unsaturated fatty acids from 75.15% to 43.10% of total fatty acids, respectively. The present study concluded that incubation temperature was a critical parameter for quantitative and qualitative fatty acid compositions of S. acutus. In addition, the type and proportion of individual fatty acids, which interfere with biodiesel quality, can be modified using different incubation temperatures in order to meet the biodiesel international standards. Description of the subject. The present study examined the effect of temperature (15, 20, 25, 30, 35 and 40 °C) on biomass, esterified fatty acids content and fatty acid productivity of Scenedesmus acutus.Objectives. This work aimed to study the effect of variation in temperature on lipid productivity and fatty acid profiles of S. acutus as a feedstock for biodiesel production.Method. The alga was grown under different temperatures and its biomass, as well as fatty acid content and composition, were determined.Results. The maximum growth rate of S. acutus was achieved at 30 °C , but there was no significant difference in biomass productivity at 25 and 30 °C (0.41 and 0.42 g·l-1·d-1), respectively. The highest fatty acid content (104.1 mg·g-1 CDW) was recorded at low temperature (15 °C) and decreased with increasing temperature. As a result of high biomass production, fatty acids productivity showed the highest values (41.27 and 42.10 mg·l-1·d-1) at 25 and 30 °C, respectively. The proportion of saturated and mono-unsaturated fatty acids increased from 13.72 to 23.79% and from 11.13 to 33.10% of total fatty acids when the incubation temperature was raised from 15 to 40 °C, respectively. The increase of temperature from 15 to 40 °C decreased the poly-unsaturated fatty acids from 75.15% to 43.10% of total fatty acids, respectively. Conclusions. The present study concluded that incubation temperature was a critical parameter for quantitative and qualitative fatty acid compositions of S. acutus. In addition, the type and proportion of individual fatty acids, which interfere with biodiesel quality, can be modified using different incubation temperatures in order to meet the biodiesel international standards. Effet de la température d’incubation sur la croissance et le profil en acides gras de la microalgue Scenedesmus acutus à mettre en rapport avec une production potentielle de biodieselDescription du sujet. L'étude examine l'effet de la température d'incubation (15, 20, 25, 30, 35 et 40 °C) sur la biomasse, la productivité en acides gras de la microalgue Scenedesmus acutus, potentielle productrice de biodiesel.Objectifs. Le travail a pour objectif d'étudier l'effet d'une variation de température sur le contenu lipidique de S. acutus, la productivité lipidique et la production de biomasse de l'algue.Méthode. L'algue a été cultivée sous différentes températures de croissance et la teneur en lipides, la composition en acides gras et la biomasse de S. acutus ont été déterminés.Résultats. L'incubation de S. acutus à 30 °C donne la meilleure croissance, bien qu'il n'y ait pas de différence significative pour la production de biomasse entre 25 et 30 °C (0,41 et 0,42 g·l-1·j-1, respectivement). La plus haute teneur en acides gras (104,1 mg·g-1 CDW) a été obtenue à 15 °C et décroit lorsqu'on augmente la température. En raison de la forte production de biomasse, la productivité des acides gras a montré les valeurs les plus élevées à 25 et 30 °C (41,27 et 42,10 mg·l-1·j-1, respectivement). En ce qui concerne le profil en acides gras, les proportions d'acides gras saturés et mono-insaturés se sont accrues, tandis que celle des acides gras poly-insaturés a chuté avec l'augmentation de la température d'incubation. Les proportions d'acides gras saturés et mono-insaturés sont montées respectivement de 13,72 à 23,79 % et de 11,13 à 33,10 % dans la représentation des acides gras totaux, lorsque la température d'incubation est passée de 15 à 40 °C, tandis que pour ce même écart thermique, la proportion des acides gras poly-insaturés au sein des acides gras totaux a diminué de 75,15 % à 43,10 %.Conclusions. On peut conclure de la présente étude que la température d'incubation est un paramètre critique pour la composition quantitative et qualitative des acides gras de S. acutus. De plus, le type et la proportion de chaque acide gras sont des paramètres qui interfèrent dans la qualité du biodiesel, mais qui peuvent être modifiés par la température d'incubation de manière à rencontrer les normes internationales du biodiesel. Description of the subject. The present study examined the effect of temperature (15, 20, 25, 30, 35 and 40 °C) on biomass, esterified fatty acids content and fatty acid productivity of Scenedesmus acutus. Objectives. This work aimed to study the effect of variation in temperature on lipid productivity and fatty acid profiles of S. acutus as a feedstock for biodiesel production. Method. The alga was grown under different temperatures and its biomass, as well as fatty acid content and composition, were determined. Results. The maximum growth rate of S. acutus was achieved at 30 °C , but there was no significant difference in biomass productivity at 25 and 30 °C (0.41 and 0.42 g·l-1·d-1), respectively. The highest fatty acid content (104.1 mg·g-1 CDW) was recorded at low temperature (15 °C) and decreased with increasing temperature. As a result of high biomass production, fatty acids productivity showed the highest values (41.27 and 42.10 mg·l-1·d-1) at 25 and 30 °C, respectively. The proportion of saturated and mono-unsaturated fatty acids increased from 13.72 to 23.79% and from 11.13 to 33.10% of total fatty acids when the incubation temperature was raised from 15 to 40 °C, respectively. The increase of temperature from 15 to 40 °C decreased the poly-unsaturated fatty acids from 75.15% to 43.10% of total fatty acids, respectively. Conclusions. The present study concluded that incubation temperature was a critical parameter for quantitative and qualitative fatty acid compositions of S. acutus. In addition, the type and proportion of individual fatty acids, which interfere with biodiesel quality, can be modified using different incubation temperatures in order to meet the biodiesel international standards. |
| Author | El-Sheekh, Mostafa Abomohra, Abd El-Fatah Abou-Shanab, Reda El-Azim, Metwally Abd |
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| SubjectTerms | acide gras Algae Augmentation biodiesel Biodiesel fuels biodiésel Biofuels Biomass biomasse Chlorella vulgaris Diesel Esterification Fatty acids Growth rate International standards Low temperature Physical growth Polyunsaturated fatty acids Productivity productivité Scenedesmus Scenedesmus acutus Scenedesmus obliquus temperature Temperature effects température |
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| Title | Effect of temperature on growth and fatty acids profile of the biodiesel producing microalga Scenedesmus acutus |
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