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Book ChapterDOI

Microalgae in Biotechnological Application: A Commercial Approach

TLDR
The aim of this review is to summarize the commercial applications of microalgae.
Abstract
Microalgae are used as food, feed, and fodder and also used to produce a wide range of metabolites such as, proteins, carbohydrates, lipids, carotenoids, vitamins, fatty acids, sterols, etc. They are able to enhance the nutritional content of conventional food and feed preparations and hence positively affect humans and animal health including aquaculture animals. They also provide a key tool for phycoremediation of toxic metals and nanometal production. The use of microalgae in nanotechnology is a promising field of research with a green approach. The use of genetically modified algae for better production of different biotechnological compounds of interests is popular nowadays. Microalgal biomass production for sustainable biofuel production together with other high-value compounds in a cost-effective way is the major challenge of algal biotechnologists. Microalgal biotechnology is similar to conventional agriculture but has received quite a lot of attention over the last decades, because they can reach substantially higher productivities than traditional crops and can use the wastelands and the large marine ecosystem. As history has shown, research studies on microalgae have been numerous and varied, but they have not always resulted in commercial applications. The aim of this review is to summarize the commercial applications of microalgae.

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Journal ArticleDOI

Microalgae in aquafeeds for a sustainable aquaculture industry

TL;DR: This comprehensive review summarizes the most important and recent developments of microalgae use as supplement or feed additive to replace fishmeal and fish oil for use in aquaculture.
Journal ArticleDOI

Chlorella and Spirulina Microalgae as Sources of Functional Foods, Nutraceuticals, and Food Supplements; an Overview

TL;DR: An overview on Chlorella and Spirulina microalgae particularly as an alternative source of functional foods nutraceuticals and food supplements in which the following compound groups were addressed I Long Chain Polyunsaturated Fatty Acids II Phenolic Compounds III Volatile Compounds IV Sterols V Proteins Amino Acids Peptides VI Vitamins VII Polysaccharides VIII Pigments and IX Food as mentioned in this paper.
Journal ArticleDOI

Cyanobacteria as a source of biofertilizers for sustainable agriculture.

TL;DR: The methods of mass production of cyanobacterial biofertilizers and their applications in agriculture and industrial level are described.
Journal ArticleDOI

Influence of Nitrogen and Phosphorus on Microalgal Growth, Biomass, Lipid, and Fatty Acid Production: An Overview.

TL;DR: In this article, the level of nitrogen and phosphorus required for microalgae cultivation and the benefits of using these nutrients for increasing the biomass productivity of micro-algae for improved lipid and fatty acid quantities.
Journal ArticleDOI

Cyanobacterial Farming for Environment Friendly Sustainable Agriculture Practices: Innovations and Perspectives

TL;DR: In this paper, the authors provide details on different aspects of the cyanobacterial system that can help in developing sustainable agricultural practices and discuss their merits and demerits in terms of economic profitability.
References
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Journal ArticleDOI

Gold nanorod production by cyanobacteria—a green chemistry approach

TL;DR: In this paper, the first intracellular bioconversion of auric ion (Au3+) to gold nanorod by the cyanobacterium Nostoc ellipsosporum has been observed for the first time in laboratory condition.
Journal Article

Biotreatment of industrial wastewater by selected algal-bacterial consortia

TL;DR: In this article, the efficiency of algal-bacterial associations for the remediation of industrial wastewater of a pond in Samara, Russia, was investigated, and the results showed that the selected algae and bacteria formed stable consortia during the degradation of the waste, which was demonstrated for the first time for the green alga Stichococcus.
Journal ArticleDOI

Optimizing the population density in Isochrysis galbana grown outdoors in a glass column photobioreactor

TL;DR: The population density exerted a direct effect on productivity: the higher the light intensity, the more pronounced was the dependence of the output rate on the population density, variations of 10%± from the optimal density resulting in a significant decline in productivity.
Journal ArticleDOI

Spirulina industry in China: Present status and future prospects

TL;DR: The Spirulina industry in China is developing rapidly as a national strategic program as mentioned in this paper and there are more than 80 production factories, with a total annual production of more than 350 t dry powder and total production area of over 106 m2.
Journal ArticleDOI

Bioactive compound production by thermophilic and thermotolerant cyanobacteria (blue-green algae).

TL;DR: A thermotolerant species of Phormidium produced extracellular anti-microbial material during batch culture that inhibited the growth of a wide range of Gram-positive and Gram-negative heterotrophic bacteria, Candida albicans and Cladosporium resinae.
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