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首页> 外文期刊>Holzforschung >Selective recovery of polyphenols from MDF process waters by adsorption on a macroporous, cross-linked pyrrolidone-based resin
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Selective recovery of polyphenols from MDF process waters by adsorption on a macroporous, cross-linked pyrrolidone-based resin

机译:通过吸附在大孔,交联的吡咯烷酮基树脂上,选择性地从MDF工艺水中回收多酚

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摘要

A scalable, fixed-bed adsorption system for the removal and selective recovery of polyphenols (lignans and stilbenes) from medium-density fiberboard (MDF) process waters was developed. Before adsorption, fibers and non-colloidal substances were removed from process water by centrifugation, while colloidal fatty and resin acids were removed by filtration through a 30-kDa cut-off membrane. Polyphenols were then isothermally adsorbed on a medium-pressure liquid chromatography (MPLC) column packed with Divergan (R) RS, a regenerable macroporous, cross-linked pyrrolidone-based [polyvinyl-polypyrrolidone (PVPP)] resin. Loading at acidic pH and subsequent gradient elution of polyphenols with methanol were monitored at 280 nm, and elution conditions for selective polyphenol recovery were optimized based on gas chromatography/mass spectrometry (GC/MS) analyses of the obtained fractions. Lignans were eluted in successive fractions containing the individual lignans in different proportions, followed by pinosylvin in a separate fraction. The capacity of the PVPP for hydroxymatairesinol (HMR) as a model lignan was determined to be 37.4 mg g(-1) at 1% breakthrough. Highly polar substances such as sugars and sugar alcohols, however, were not retained on the column and remained in the flow-through. The results revealed the benefits of PVPP for the recovery of potentially valuable polyphenols from MDF process waters while reducing carbon load and toxicity for subsequent biological treatment.
机译:开发了一种可扩展的固定床吸附系统,用于从中密度纤维板(MDF)生产用水中去除和选择性回收多酚(木脂素和对苯二酚)。吸附之前,通过离心从工艺水中除去纤维和非胶体物质,而通过30 kDa截止膜过滤除去胶体脂肪酸和树脂酸。然后将多酚等温吸附在装有Divergan(R)RS的中压液相色谱(MPLC)色谱柱上,该色谱柱是可再生的大孔,交联的吡咯烷酮基[聚乙烯基-聚吡咯烷酮(PVPP)]树脂。在280 nm处监测酸性pH上的上样量以及随后用甲醇进行多酚梯度洗脱的过程,并基于所得馏分的气相色谱/质谱(GC / MS)分析,优化了选择性多酚回收的洗脱条件。木质素先后以不同比例包含各个木脂素的洗脱液洗脱,然后以单独的馏分中的木糖醇洗脱。在1%穿透时,确定羟基丙美醇(HMR)作为模型木脂素的PVPP的容量为37.4 mg g(-1)。但是,高极性物质(例如糖和糖醇)并未保留在色谱柱上,而是保留在流通液中。结果表明,PVPP可以从中密度纤维板工艺用水中回收潜在有价值的多酚,同时减少碳负荷和毒性,可用于后续的生物处理。

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