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Chemicals from agricultural biomass: chemoenzymatic approach for production of vinylphenols and polyvinylphenols from phenolic acids

机译:农业生物质中的化学物质:化学酶法从酚酸生产乙烯基酚和聚乙烯酚

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摘要

A two-step chemoenzymatic process for the preparation of polyvinylphenols from phenolic acids (PAs), being abundant aromatic constituents found in agricultural biomass, was developed. In the first step, conversion of 4-hydroxycinnamic acid derivatives to the corresponding vinylphenols, mediated by a recombinant phenolic acid decarboxylase, was evaluated using a variety of bioprocessing technologies that include biphasic whole cell and cell free extract biotransformations, a combination of biocatalyst with adsorbent resins for in situ product recovery, and fixed bed reactors using immobilized whole cells. The best yield (90%) with a high space time yield of 4.83 g/l/h was the result of a combination of crude enzyme extracts of the recombinant Escherichia coli (E. coli) with water immiscible organic solvents such as toluene. In the second step, cationic and radical polymerizations were tested to produce polyvinylguaiacol (PVG) from vinyl phenols. Characterization of PVG by thermogravimetric analysis (TGA), differential scanning calorimetry (DSC) and nanoindentation test are reported here for the first time. The feasibility of the chemoenzymatic process for the production of aromatic polymers from biomass was demonstrated by the production of polymers from a mixture of ferulic acid (FA) and p-coumaric acid (pCA), obtained from alkaline hydrolysis of corn bran. Interestingly, nanoindentation tests showed that both PVG and \u201cmixed\u201d PVG polymers showed significantly higher performances than a commercial polystyrene polymer.
机译:开发了一种两步化学酶法,由酚酸(PAs)制备聚乙烯醇,聚乙烯醇是农业生物质中的丰富芳香族成分。第一步,使用多种生物处理技术评估了由重组酚酸脱羧酶介导的4-羟基肉桂酸衍生物向相应的乙烯基酚的转化,这些技术包括双相全细胞和无细胞提取物生物转化,即生物催化剂与吸附剂的组合用于原位产物回收的树脂,以及使用固定全细胞的固定床反应器。重组大肠杆菌(E. coli)的粗酶提取物与水不混溶的有机溶剂(例如甲苯)的结合,可得到具有最高时空产率4.83 g / l / h的最佳产率(90%)。在第二步中,测试了阳离子聚合和自由基聚合以从乙烯基苯酚生产聚乙烯基愈创木酚(PVG)。首次报道了通过热重分析(TGA),差示扫描量热法(DSC)和纳米压痕测试对PVG进行表征。由生物量生产芳香族聚合物的化学酶法的可行性通过由阿魏酸(FA)和对香豆酸(pCA)的混合物生产聚合物得到证明,该混合物是从玉米麸皮的碱性水解中获得的。有趣的是,纳米压痕测试表明,PVG和混合PVG聚合物均显示出比市售聚苯乙烯聚合物明显更高的性能。

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