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The role Microalgae are superabundant unicellular photosynthetic organisms which shape the health of aquatic ecosystems by producing oxygen, capturing carbon dioxide, and forming the basis of marine
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Microalgae are superabundant unicellular photosynthetic organisms which shape the health of aquatic ecosystems by producing oxygen, capturing carbon dioxide, and forming the basis of marine food
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Mining and other anthropogenic activities can release metals and critical elements into surrounding waters, creating risks for water quality and ecosystems. Microalgae offer a promising basis for passive
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Photosynthetic organisms (microalgae and plants) are in constant interaction with their environment, responding to various abiotic pressures (temperature, nutrients, light), as well as biotic ones
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of phytohormones produced by microalgae. Activities will include microalgal cultivation and strain selection, optimization of metabolite extraction and purification methods, chromatographic analyses using HPLC and
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Essential or desirable Stage(s) assessed at A PhD in biological science or biological /bioprocess engineering. Essential Application Experience of cultivating microalgae and harvesting biomass including
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). Join us! The Antarctic seasonal sea-ice zone is rapidly changing, with consequences for the key primary producers: microalgae growing in sea-ice and water. While traditionally regarded as purely
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or more of the following topics: Cultivation of microalgae for wastewater treatment Processing of microalgal biomass into high-value bioproducts Modeling of nutrient and energy flows in controlled
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’ (MACS). Join us! The Antarctic seasonal sea-ice zone is rapidly changing, with consequences for the key primary producers: microalgae growing in sea-ice and water. While traditionally regarded as purely
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stewardship and community and stakeholder partnerships. This work is enabled by ACRD’s Marine Research Station in Ketch Harbour, NS, where microalgae, seaweeds, and other marine and freshwater organisms