Agede Oreoluwa, Thies Mark C
Chemical and Biomolecular Engineering, Clemson University, 206 S. Palmetto Blvd, Clemson, South Carolina, 29634-0909, USA.
ChemSusChem. 2024 Jan 8;17(1):e202300989. doi: 10.1002/cssc.202300989. Epub 2023 Oct 27.
In order to effectively practice the Aqueous Lignin Purification with Hot Agents (ALPHA) process for lignin purification and fractionation, the temperatures and feed compositions where regions of liquid-liquid equilibrium (LLE) exist must be identified. To this end, pseudo-ternary phase diagrams for the lignin-acetic acid-water system were mapped out at 45-95 °C and various solvent: feed lignin mass ratios (S : F). For a given temperature, the accompanying SL (solid-liquid), SLL (solid-liquid-liquid), and one-phase regions were also located. For the first time, ALPHA using acetic acid (AcOH)-water solution was applied to a lignin recovered via the commercial LignoBoost process. In addition to determining tie-line compositions for the two regions of LLE that were discovered, the distribution of lignin and key impurities (the latter can negatively impact lignin performance for materials applications) between the two liquid phases was also measured. As a representative example, lignin isolated in the lignin-rich phase was reduced 7x in metals and 4x in polysaccharides by using ALPHA with a feed solvent composition of 50-55 % AcOH and an S : F of 6 : 1, with said lignin being obtained at a yield of 50-70 % of the feed lignin and having a molecular weight triple that of the feed.
为了有效实施用于木质素纯化和分级的热剂水相木质素纯化(ALPHA)工艺,必须确定存在液-液平衡(LLE)区域的温度和进料组成。为此,绘制了木质素-乙酸-水体系在45-95°C和各种溶剂与进料木质素质量比(S∶F)下的拟三元相图。对于给定温度,还确定了相应的固-液(SL)、固-液-液(SLL)和单相区域。首次将使用乙酸(AcOH)-水溶液的ALPHA工艺应用于通过商业LignoBoost工艺回收的木质素。除了确定所发现的两个LLE区域的系线组成外,还测量了木质素和关键杂质(后者会对材料应用中的木质素性能产生负面影响)在两个液相之间的分布。作为一个代表性例子,通过使用进料溶剂组成为50-55% AcOH且S∶F为6∶1的ALPHA工艺,富木质素相中分离出的木质素的金属含量降低了7倍,多糖含量降低了4倍,所述木质素的产率为进料木质素的50-70%,分子量为进料的三倍。