Seaweeds for biorefinery on the Swedish west coast
Poster (konferens), 2017
For seaweeds there are other limitations, but to a large extent these relate to them not being domesticized and studied to the same extent as crops or terrestrial plants. Which means they could possibly be overcome. There are industrial processes for alginate and carrageenan already, but the variety of seaweeds gives possibility of new innovation in areas such as materials, food components and bioenergy. To be able to evaluate the potential and identify targets for cultivation as well as breeding the basic composition of a variety of seaweeds has to be known. Studies have shown great intra-species variation in composition depending on abiotic and biotic factors. Hence, suitable targets for future production of seaweed biomass could differ from place to place and not only by natural occurrence.
In this study, 22 seaweed species were collected from and around the national park of Kosterhavet in Sweden to elucidate their basic biochemical composition. Analyses included major constituents (total carbohydrates, total protein, ash and water content) and elemental composition (C, H, N, S, P and 17 heavy metals/micronutrients). From these analyses the picture becomes clear that the main problems with seaweed biomass for biorefinary is the ash (118-419 g(kg dry weight)-1) and its water content (633-875 g(kg wet weight)-1). However, the sugar content (267- 646 g(kg dry weight)-1) makes the biomass very interesting for utilization in a biotechnological process based on a sugar platform as well as materials. With this study, we hope to have lain the ground for future innovation and potential marine industries on the Swedish west coast.
biochemical composition
Seaweeds
biorefinery
metals
water content
Författare
Joakim Olsson
Chalmers, Biologi och bioteknik, Industriell bioteknik
Gunilla B. Toth
Göteborgs universitet
Eva Albers
Chalmers, Biologi och bioteknik, Industriell bioteknik
Nantes, France,
Styrkeområden
Energi
Livsvetenskaper och teknik (2010-2018)
Ämneskategorier
Kemiska processer
Annan naturresursteknik
Bioenergi