Optimizing inorganic carbon and salinity for enhanced biomass and pigment production in Colaconema formosanum: Implications for sustainable carbon sequestration and stress responses

Bioresour Technol. 2023 Nov:388:129720. doi: 10.1016/j.biortech.2023.129720. Epub 2023 Sep 9.

Abstract

This study investigates a cultivation strategy for the macroalga Colaconema formosanum by determining optimal inorganic carbon concentration and salinity for maximizing biomass and photosynthetic pigment production while also facilitating carbon sequestration. The response surface method was used with a central composite design (CCD-RSM) to determine the optimal conditions. Results showed that adding 1.2 g/L of carbon increased the specific growth rate to 18%-19% per day. The maximum amount of pigment, including phycobiliprotein and chlorophyll, was achieved by adjusting both carbon content and salinity. This strategy enables mass pigment production and offers an eco-friendly approach to carbon sequestration while reducing culture period. This study also sheds light on algal mechanisms against enriched inorganic carbon and salinity content, contributing to an enhanced understanding of these vital processes.

Keywords: Carbon Capture; Colaconema formosanum; Cultivation strategy; Photosynthesis; Response surface methodology.

MeSH terms

  • Biomass
  • Carbon Sequestration
  • Carbon*
  • Chlorophyll
  • Photosynthesis
  • Salinity*

Substances

  • Carbon
  • Chlorophyll