Cultivating Ciona intestinalis to counteract marine eutrophication: Environmental assessment of a marine biomass based bioenergy and biofertilizer production system
Journal article, 2018

Eutrophication in the North and Baltic Seas is a major problem to the marine environment and the communities depending on it. To counteract this, the Swedish Marine and Water Authority suggested financial support for measures that increase the uptake of nutrients from the water by e.g. marine organisms and support for the utilisation of these organisms as value added products. In Sweden the use of biogas to replace fossil transportation fuels is widely adopted. The domestic biogas production corresponded to approx. 1.95 TWh (approx. 7010 TJ) in 2015 of which approx. 63% were upgraded for use as e.g. transportation fuel. Other uses are heat and electricity generation as well as industrial applications. To expand production, the biogas industry is searching for new substrates. In this paper the utilisation of the marine evertebrate organism Ciona intestinalis (tunicata), cultivated in the North Sea and used as feedstock for biogas and biofertilizer production is suggested and assessed. The greenhouse gas (GHG) emissions performance of the concept and it's consequences on marine eutrophication are investigated applying life cycle assessment. Results show that at full scale biogas production from C. intestinalis reduces GHG emissions by more than 65% compared to fossil transportation fuels. In addition, the results show that accounting for the system consequences of other products and services such as biofertilizer replacing mineral fertilizers and decreased marine eutrophication largely increase the environmental benefits provided by the concept. Approx. 3.7 g-N eq /MJ biogas of nitrogen are removed from the marine environment during the cultivation of C. intestinalis.

Renewable energy

Biogas

Bioenergy

Marine biomass

Eutrophication

Biofertilizer

Author

[Person 3800cdf8-ffd9-49ce-b725-0715cf48309d not found]

IVL Swedish Environmental Research Institute

[Person f4bdd61c-73fc-49c2-964b-26ff4ccd7cd7 not found]

Chalmers, Space, Earth and Environment, Physical Resource Theory

[Person dd6a2475-1bd1-4e64-acee-8cfbd948fdef not found]

N-research

[Person 0e55bc70-7ec6-4653-826c-170b040e9c2e not found]

Marine Biogas

[Person 6edc0062-fea8-4602-9daf-7ef33757d1b4 not found]

IVL Swedish Environmental Research Institute

Renewable Energy

0960-1481 (ISSN) 18790682 (eISSN)

Vol. 124 103-113

Subject Categories (SSIF 2011)

Renewable Bioenergy Research

Other Environmental Engineering

Energy Systems

DOI

10.1016/j.renene.2017.07.053

More information

Latest update

5/9/2018 1