Biochars derived from wasted marine macro-algae (Saccharina japonica and Sargassum fusiforme) and their potential for heavy metal removal in aqueous solution

KM Poo, EB Son, JS Chang, X Ren, YJ Choi… - Journal of environmental …, 2018 - Elsevier
For the purpose of reusing wasted marine macro-algae generated during cultivation,
harvesting, processing and selling processes, biochars derived from Saccharina japonica
(known as kelp) and Sargassum fusiforme (known as hijikia) were characterized and their
removal capacities for Cu, Cd, and Zn in aqueous solution were assessed. Feedstocks, S.
japonica, S. fusiforme, and also pinewood sawdust as a control, were pyrolyzed at 250, 400,
500, 600 and 700° C. In evaluating heavy metal removal capacities, SJB (S. japonica …

Biochars derived from wasted marine macro-algae (Saccharina japonica and Sargassum fusiforme) and their potential for heavy metal removal in aqueous solution.

PKM Poo KyungMin, SEB Son EunBi… - 2018 - cabidigitallibrary.org
For the purpose of reusing wasted marine macro-algae generated during cultivation,
harvesting, processing and selling processes, biochars derived from Saccharina japonica
(known as kelp) and Sargassum fusiforme (known as hijikia) were characterized and their
removal capacities for Cu, Cd, and Zn in aqueous solution were assessed. Feedstocks, S.
japonica, S. fusiforme, and also pinewood sawdust as a control, were pyrolyzed at 250, 400,
500, 600 and 700° C. In evaluating heavy metal removal capacities, SJB (S. japonica …
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