Evaluation of the integrated hydrothermal carbonization-algal cultivation process for enhanced nitrogen utilization in Arthrospira platensis production

Bioresour Technol. 2016 Sep:216:381-90. doi: 10.1016/j.biortech.2016.05.110. Epub 2016 May 28.

Abstract

Sustainable microalgal cultivation at commercial scale requires nitrogen recycling. This study applied hydrothermal carbonization to recover N of hot-water extracted Arthrospira platensis biomass residue into aqueous phase (AP) under different operation conditions and evaluated the N utilization, biomass yield and quality of A. platensis cultures using AP as the sole N source. With the increase of temperature at 190-210°C or reaction time of 2-3h, the N recovery rate decreased under nitrogen-repletion (+N) cultivation, while contrarily increased under nitrogen-limitation (-N) cultivation. Under +N biomass accumulation in the cultures with AP under 190°C was enhanced by 41-67% compared with that in NaNO3, and the highest protein content of 51.5%DW achieved under 200°C-2h was also 22% higher. Carbohydrate content of 71.4%DW under -N cultivation achieved under 210°C-3h was 14% higher than that in NaNO3. HTC-algal cultivation strategy under -N mode could save 60% of conventional N.

Keywords: Arthrospira platensis; Biomass quality; Hydrothermal carbonization; Microalgal cultivation; Nitrogen recycling.

MeSH terms

  • Bacteriological Techniques
  • Biomass
  • Biotechnology / methods*
  • Carbohydrate Metabolism
  • Carbon / chemistry
  • Carbon / metabolism
  • Microalgae / metabolism
  • Nitrogen / metabolism*
  • Recycling
  • Spirulina / growth & development*
  • Spirulina / metabolism*
  • Temperature

Substances

  • Carbon
  • Nitrogen