Literature DB >> 24839256

Mineral and non-carbon nutrient utilization and recovery during sequential phototrophic-heterotrophic growth of lipid-rich algae.

Pavlo Bohutskyi1, Kexin Liu, Ben A Kessler, Thomas Kula, Yongseok Hong, Edward J Bouwer, Michael J Betenbaugh, F C Thomas Allnutt.   

Abstract

A critical factor in implementing microalgal biofuels for mass production is the nutrient requirements. The n class="Chemical">current study inpan>vestigated the fate of macro- anpan>d micronpan>utrients anpan>d their availability inpan> a sequential phototrophic-heterotrophic productionpan> process for the pan> class="Chemical">lipid rich microalga Auxenochlorella protothecoides. More than 99 % (by weight) of overall process nutrients were supplied during the initial photoautotrophic stage reflecting its significantly larger volume. Under photoautotrophic growth conditions only 9-35 % of supplied Mn, S, Fe, N, Mg, and Cu and less than 5 % of P, Mo, Co, B, Zn, and Ca were consumed by the algae. The rest of these nutrients remain in the spent growth media during the culture concentration-down from an 800 L phototrophic pond to a 5 L heterotrophic fermenter. In contrast, Zn, Mo, Mn, Mg, Ca, and N were exhausted (90-99 % removal) during the first 25 h of the heterotrophic growth stage. The depletion of these key nutrients may have ultimately limited the final biomass density and/or lipid productivity achieved. Approximately 10-20 % of the total supplied S, Mn, Fe, N, and Cu and 5 % of Ca and Zn were assimilated into algal biomass. Several elements including N, P, Mn, B, Cu, Ca, Mg, S, and Fe were released back into the liquid phase by anaerobic digestion (AD) of the residual biomass after lipid extraction. The nutrients recovered from the AD effluent and remaining in the spent medium should be recycled or their initial concentration to the phototrophic stage decreased to enhance process economics and sustainability for future commercialization of algal-derived biofuels.

Entities:  

Mesh:

Substances:

Year:  2014        PMID: 24839256     DOI: 10.1007/s00253-014-5655-1

Source DB:  PubMed          Journal:  Appl Microbiol Biotechnol        ISSN: 0175-7598            Impact factor:   4.813


  1 in total

1.  Mixotrophic Microalgae Biofilm: A Novel Algae Cultivation Strategy for Improved Productivity and Cost-efficiency of Biofuel Feedstock Production.

Authors:  Javad Roostaei; Yongli Zhang; Kishore Gopalakrishnan; Alexander J Ochocki
Journal:  Sci Rep       Date:  2018-08-21       Impact factor: 4.379

  1 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.