Department of Chemical Engineering, University of the West Indies, St. Augustine, Trinidad, WI.
Department of Chemical Engineering, Imperial College London, London, SW72AZ, United Kingdom.
Carbohydr Polym. 2020 Oct 1;245:116419. doi: 10.1016/j.carbpol.2020.116419. Epub 2020 Jun 1.
Sargassum valorization has become increasingly important as the Caribbean region continues to struggle with the massive growth of the seaweed and its damaging effects. Sodium alginate extraction is one method where the seaweed biomass can be utilized to produce a useful biopolymer. However, current processing generally giving low yields of inferior quality, making it unattractive for commercialization. This article seeks to optimize the extraction process using a Box-Behnken Response Surface Design combined with multistage extraction to obtain higher product yield and purity, as well as giving insights, for the first time, into the physiochemical properties of the extracted alginate from Sargassum biomass. Optimum conditions were found and confirmed through validation, with a crude yield as high as 28 % after 2 stages and a purity of 92 % for purified alginate samples. Characterization of the bleached alginate through NMR studies validated with FTIR, gave an M/G ratio of 0.45 with a molecular weight of 3.14 × 10 g mol and viscosity of 14.10 cP aligned to high gelling capabilities.
马尾藻增值变得越来越重要,因为加勒比地区仍在努力应对海藻的大量生长及其破坏性影响。从海藻生物量中提取海藻酸钠是一种利用方法,可以生产出有用的生物聚合物。然而,目前的加工方法通常产量低、质量差,因此不具有商业化吸引力。本文旨在通过 Box-Behnken 响应面设计与多级提取相结合,优化提取工艺,以获得更高的产率和纯度,并首次深入了解从马尾藻生物量中提取的海藻酸钠的物理化学性质。通过验证找到了最佳条件,并得到了确认,经过 2 级提取,粗产率高达 28%,纯化后的海藻酸钠样品纯度为 92%。通过与傅里叶变换红外光谱(FTIR)相结合的 NMR 研究对漂白海藻酸钠进行了表征,得出 M/G 比为 0.45,分子量为 3.14×10 g mol,粘度为 14.10 cP,具有较高的凝胶能力。