与高脂质相关的生物柴油生产的选择性微藻菌株

Prakash Bhuyar, Mohd Hasbi Ab. Rahim, Mashitah M. Yusoff, Gaanty Pragas Maniam, Natanamurugaraj Govindan
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引用次数: 6

摘要

生物柴油已成为各国特别是建设经济的重要资产。目前,微藻因其自身的优势已成为生物柴油生产的首选原料。微藻是一种利用光作为能源的光合生物,能够自己生产食物。这些微藻还能产生一种脂质,可用于生产生物柴油。利用高脂微藻是保证生物柴油在短时间内大批量生产和节约成本的重要手段。虽然许多微藻物种已经被鉴定和分离用于生产脂质,但目前还没有共识,哪种物种提供最高的生产力。预计不同的物种在不同的水生、地理和气候条件下发挥最佳作用。因此,本实验旨在确定哪一株微藻含有高脂质,可用于转化为生物柴油。本实验有三个主要目的:分离和鉴定来自马来西亚东海岸关丹海岸的不同微藻菌株,通过酯交换将微藻中的脂质转化为生物柴油,以及估计用于生物柴油生产的微藻物种的更高脂质谱。通过脂质提取和脂质分析,发现纳米绿藻的脂质浓度更高,脂质谱也更高。因此,纳米绿藻具有较高的MUFA脂质谱,是最适合作为生物柴油原料的种。
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A selective microalgae strain for biodiesel production in relation to higher lipid profile
Biodiesel have become the important asset by the country especially to build up their economy. Currently, microalgae have been choosing as the source for production of biodiesel based on their advantages. Microalgae are a photosynthetic organism that use light as an energy source and able to produce their own food. These microalgae also produce a lipid that can be used to produce a biodiesel. Using microalgae that contain high lipid profile are very important to make sure the biodiesel can be produce in large quantity in short time and more cost saving. Although many microalgae species have been identified and isolated for lipid production, there is currently no consensus as to which species provide the highest productivity. Different species are expected to function best at different aquatic, geographical and climatic conditions. So, this experiment is conducted to identify which strain of microalgae contains high lipid profile that can be used to convert into the biodiesel. There are three main objectives that involve in this experiment which is to isolate and identify different strain of microalgae from Kuantan Coast, East Coast Peninsular Malaysia, to convert the lipid from microalgae into biodiesel through transesterification, and to estimate higher lipid profile of microalgae species for biodiesel production. Two species of green microalgae were isolated, which is Nannochloropsis sp and Coelastrum sp. Based on lipid extraction and lipid analysis, it shows that the Nannochloropsis sp. have more concentrated of lipid and higher lipid profile compared to Coelastrum sp. Hence, Nannochloropsis sp. are most suitable species that can be used as a biodiesel feedstock due to higher lipid profile of MUFA.
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