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利用离子树脂催化剂的水热转化法从大型藻类中生产戊二酸。

Production of levulinic acid from macroalgae by hydrothermal conversion with ionic resin catalyst.

机构信息

Department of Biotechnology, School of Marine, Fisheries and Life Science, Pukyong National University, Busan 48513, Republic of Korea.

Department of Biotechnology, School of Marine, Fisheries and Life Science, Pukyong National University, Busan 48513, Republic of Korea.

出版信息

Bioresour Technol. 2024 Jun;402:130778. doi: 10.1016/j.biortech.2024.130778. Epub 2024 May 1.

Abstract

Gracilaria verrucosa is red algae (Rhodophyta) that is particularly significant because of its potential for bioenergy production as a sustainable and environmentally friendly marine bioresource. This study focuses on the production of levulinic acid from G. verrucosa using hydrothermal conversion with an ionic resin Purolite CT269DR as the catalyst. By optimization of the conversion condition, a 30.3 % (22.58 g/L) yield of levulinic acid (LA) (based on carbohydrate content) was obtained at 200 °C for 90 min with 12.5 % biomass and 50 % catalyst loading of biomass quantity. Simultaneously, formic acid yielded 14.0 % (10.42 g/L). The LA yield increased with increasing combined severity (CS) levels under tested ranges. Furthermore, the relationship between CS and LA synthesis was effectively fitted to the nonlinear sigmoidal equation. However, as the yield of sugar decreased, LA yield was linearly increased. Thus, the use of ionic resin as a heterogeneous catalyst presents significant potential for the manufacture of platform chemicals, specifically LA, through the conversion of renewable marine macroalgae.

摘要

石莼是红藻(Rhodophyta),因其作为可持续且环保的海洋生物资源在生物能源生产方面的潜力而备受关注。本研究采用 Purolite CT269DR 离子树脂作为催化剂,通过水热转化从石莼中生产乙酰丙酸。通过对转化条件进行优化,在 200°C 下反应 90 分钟,生物质用量为 12.5%,催化剂用量为生物质质量的 50%,得到了 30.3%(22.58g/L)的乙酰丙酸(LA)(基于碳水化合物含量)产率,同时生成 14.0%(10.42g/L)的甲酸。LA 产率随测试范围内组合严重度(CS)水平的增加而增加。此外,CS 与 LA 合成之间的关系可以有效地拟合到非线性 S 型方程。然而,随着糖产量的下降,LA 产量呈线性增加。因此,离子树脂作为多相催化剂在通过转化可再生海洋大型藻类制造平台化学品,特别是 LA 方面具有很大的潜力。

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