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Article

Biomass Productivity and Photosynthetic Activity in Ulva compressa (Chlorophyta) in Raceway Photobioreactors Under Stress Conditions

by
Victor Robles-Carnero
1,*,
Rafael Sesmero
1,2 and
Felix L. Figueroa
1
1
Andalusian Institute of Biotechnology and Blue Development (IBYDA), Experimental Centre Grice Hutchinson, University of Malaga, Loma de San Julián, 2, 29004 Malaga, Spain
2
Faculty of Sciences, Department of Botany and Plant Physiology, Campus de Teatinos, University of Malaga, 20071 Malaga, Spain
*
Author to whom correspondence should be addressed.
Plants 2024, 13(21), 3038; https://doi.org/10.3390/plants13213038
Submission received: 27 September 2024 / Revised: 23 October 2024 / Accepted: 23 October 2024 / Published: 30 October 2024
(This article belongs to the Special Issue Advances in Algal Photosynthesis and Phytochemistry)

Abstract

Research in seaweed cultivation technologies aims to increase production and reduce costs, leading to more efficient and sustainable processes. In this study, we analyzed the outdoor production of Ulva compressa cultured in summertime at different stocking densities of 0.6, 0.8 and 1.0 kg Fresh weight (FW) m−2 in a raceway photobioreactor with 30 m2 surface (3000 L), and its relation to photosynthetic activity. Under the experimental conditions of high temperature (>28–30 °C) and pH > 9 in culture water, higher seaweed density resulted in lower specific growth rate. The biomass production has been related to photosynthetic activity by using in vivo chlorophyll a fluorescence. Dynamic photoinhibition was observed at noon, which was less severe in cultures with higher algal densities. However, photosynthesis recovered in the afternoon. Seaweeds that were acclimatized for a week to the conditions of 1.0 kg FW m−2 stocking density showed an increase in biomass growth and absence of photoinhibition compared to non-acclimatized thalli. In conclusion, the cultivation of U. compressa in a mid-scale raceway photobiorreactor under conditions of high irradiance and temperature and low nutrient input, exhibited the best photosynthetic performance and hence the highest growth rates for the highest culture density assayed (1.0 kg FW m−2).
Keywords: acclimatization; algal culture density; photosynthetic activity; raceway photobioreactor; Ulva compressa; stress conditions acclimatization; algal culture density; photosynthetic activity; raceway photobioreactor; Ulva compressa; stress conditions

Share and Cite

MDPI and ACS Style

Robles-Carnero, V.; Sesmero, R.; Figueroa, F.L. Biomass Productivity and Photosynthetic Activity in Ulva compressa (Chlorophyta) in Raceway Photobioreactors Under Stress Conditions. Plants 2024, 13, 3038. https://doi.org/10.3390/plants13213038

AMA Style

Robles-Carnero V, Sesmero R, Figueroa FL. Biomass Productivity and Photosynthetic Activity in Ulva compressa (Chlorophyta) in Raceway Photobioreactors Under Stress Conditions. Plants. 2024; 13(21):3038. https://doi.org/10.3390/plants13213038

Chicago/Turabian Style

Robles-Carnero, Victor, Rafael Sesmero, and Felix L. Figueroa. 2024. "Biomass Productivity and Photosynthetic Activity in Ulva compressa (Chlorophyta) in Raceway Photobioreactors Under Stress Conditions" Plants 13, no. 21: 3038. https://doi.org/10.3390/plants13213038

APA Style

Robles-Carnero, V., Sesmero, R., & Figueroa, F. L. (2024). Biomass Productivity and Photosynthetic Activity in Ulva compressa (Chlorophyta) in Raceway Photobioreactors Under Stress Conditions. Plants, 13(21), 3038. https://doi.org/10.3390/plants13213038

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