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来自桦树皮的热固性材料:一种使用绿色溶剂和工艺的整体方法。

Thermosets from Birch Bark: A Holistic Approach Using Green Solvents and Processes.

作者信息

Dodge Megan L, Goodhope Luke, Pisacane Qwin, Tang Rongmin, Harrill Sophia I, LaFrance Heather M, Lehman-Chong Alexandra M, Stanzione Joseph F, Soh Lindsay, Gordon Melissa B

机构信息

Department of Chemical and Biomolecular Engineering, Lafayette College, 740 High Street, Easton, Pennsylvania 18042, United States.

Integrative Engineering Program, Lafayette College, 740 High Street, Easton, Pennsylvania 18042, United States.

出版信息

ACS Omega. 2025 Jul 28;10(31):35207-35216. doi: 10.1021/acsomega.5c05162. eCollection 2025 Aug 12.

Abstract

Many recent efforts toward sustainable polymer development use building blocks from renewable biomass feedstocks. However, issues arising from the processes used to extract starting materials from biomass are often overlooked, despite the safety and environmental hazards associated with energy-intensive separation processes and solvent utilization. Here, we describe a holistic approach toward using green solvents and processes to synthesize polyester thermosets from birch bark, a waste product from the paper and pulp industry. Betulin, a diol with a pentacyclic ring structure, was extracted from the bark of silver birch trees via reflux boiling using green solvents available from biobased sources. Ethanol and 1:1 ethanol:ethyl acetate mixtures were effective solvents for extraction, with additional selectivity achieved via antisolvent precipitation. Betulin-rich extracts containing 62.2-81.5 wt % betulin were produced and directly used to prepare polyester thermosets using one-pot, solventless polycondensations with 100% of the starting materials available from biomass feedstocks. The polymers prepared directly from extracts had properties comparable to those synthesized from pure betulin, suggesting that additional processing steps required to achieve higher purity betulin may not be warranted. Overall, we present an approach to polyester development from betulin-rich birch bark extracts, which incorporate green chemistry and engineering principles from feedstock to product.

摘要

近期许多可持续聚合物开发的努力都使用可再生生物质原料中的结构单元。然而,尽管从生物质中提取起始原料的过程存在与能源密集型分离过程和溶剂使用相关的安全和环境危害,但这些过程中产生的问题却常常被忽视。在此,我们描述了一种整体方法,即使用绿色溶剂和工艺从桦树皮(一种造纸和纸浆工业的废料)合成聚酯热固性材料。桦木醇是一种具有五环结构的二醇,通过使用来自生物基来源的绿色溶剂回流煮沸,从白桦树的树皮中提取出来。乙醇和1:1乙醇:乙酸乙酯混合物是有效的萃取溶剂,通过反溶剂沉淀可实现额外的选择性。制备出了富含桦木醇的提取物,其桦木醇含量为62.2 - 81.5 wt%,并直接用于通过一锅无溶剂缩聚反应制备聚酯热固性材料,起始原料100%来自生物质原料。直接从提取物制备的聚合物具有与由纯桦木醇合成的聚合物相当的性能,这表明可能不需要为获得更高纯度的桦木醇而进行额外的加工步骤。总体而言,我们展示了一种从富含桦木醇的桦树皮提取物开发聚酯的方法,该方法从原料到产品都融入了绿色化学和工程原理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e043/12355430/d1aa773b3e65/ao5c05162_0001.jpg

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