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- W2034002529 abstract "The authors have investigated a conical helical tubular photobioreactor (HTP), a novel design of photobioreactorwith high photosynthetic productivity. As the conical HTP is an enclosed photobioreactor and the amount of culture medium needed can be reduced, this photobioreactor seems more effective than the open-pond or channel-type systems for maintaining the culture medium temperature at the optimum level. Also, higher photosynthetic productivity of microalgae is required, with less energy consumption for medium temperature control. The authors investigated the practical instructions for microalgal production throughout the year at various sites in terms of temperature maintenance of the culture medium. Using the culture medium temperature change with solar irradiance and ambient temperature, which was predicted using a heat balance model among three major sections of the conical HTP, annual microalgal biomass productivities were recorded in two cases, in northern and southern areas of Japan. One example is that a mesophilic strain would be used throughout the year with additional temperature control by heating or cooling, and in the other example, the combination of various strains that had different characteristics relative to temperature would be used without additional temperature control. In the former case, the expected photosynthetic productivities of microalgal biomass were almost similar because the total amount of annual solar irradiance was nearly steady in each place. In this case, the energy required for temperature control of the culture medium was larger than the biomass energy obtained by microalgal photosynthesis. On the other hand, in the latter case, because the ambient temperatures were rather different due to the climate characteristics in the two places, the photosynthetic productivity would be low in the northern area and high photosynthetic productivity was expected in the southern area. These results showed that practically higher photosynthetic production of microalgal biomass was expected to be achievable with lower operating energy consumption throughout the year using a combination of various strains that had different characteristics relative to temperature in the southern area." @default.
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- W2034002529 date "2001-06-01" @default.
- W2034002529 modified "2023-09-23" @default.
- W2034002529 title "Instruction of Microalgal Biomass Production for Practically Higher Photosynthetic Performance Using a Photobioreactor" @default.
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- W2034002529 doi "https://doi.org/10.1205/096030801750425271" @default.
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