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Titlebook: Microalgae Biotechnology for Development of Biofuel and Wastewater Treatment; Md. Asraful Alam,Zhongming Wang Book 2019 Springer Nature Si

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Advanced Gene Technology and Synthetic Biology Approaches to Custom Design Microalgae for Biodiesel d to the wild-type strains. The present chapter is a comprehensive catalogue of algal omics including transcriptomics, proteomics and metabolomics studies carried out for augmenting lipid accumulation in different microalgal strains under various physiological conditions. The chapter substantiates t
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Methods for Extraction of Valuable Products from Microalgae Biomassssed. This chapter is intended as a reference of the existing methods for the researcher looking forward to study the production of metabolites by microalgae, in order to aid the selection of a suitable technique for specific metabolites.
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Different Cell Disruption and Lipid Extraction Methods from Microalgae for Biodiesel Production that have been made on the different cell disruption methods including mechanical, chemical, and biological cell disruption methods and different lipid extraction methods including conventional extraction lipid methods, green solvent-based extraction methods, and solvent-free extraction methods.
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Biodiesel, Bioethanol, and Biobutanol Production from Microalgae can be easily transformed into biodiesel or other gasoline components such as butanol. Biodiesel has been receiving globally growing consideration due to the liquid fuel needs and its potential as a biodegradable nontoxic substitute to petroleum diesel. In addition, butanol has become an attractive
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Progress and Challenges in Biodiesel Production from Microalgae Feedstockor importance because massive biomass is required for viable production of biodiesel. Closed cultivation system (photobioreactor) and open cultivation system (open raceway ponds) are emerged as a solution for mass cultivation of microalgae, but there is a need to understand the design and principle
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