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用于从葡萄酒中去除 3-异丁基-2-甲氧基吡嗪的磁性聚合物的制备。

Preparation of Magnetic Polymers for the Elimination of 3-Isobutyl-2-Methoxypyrazine from Wine.

机构信息

ARC Training Centre for Innovative Wine Production and School of Agriculture, Food and Wine, The University of Adelaide, Waite Campus, PMB 1, Glen Osmond SA 5064, Australia.

出版信息

Molecules. 2018 May 10;23(5):1140. doi: 10.3390/molecules23051140.

Abstract

3-Isobutyl-2-methoxypyrazine (IBMP), the most prevalent grape-derived methoxypyrazine, can contribute green bell pepper, vegetative and herbaceous aromas and flavours to wines. At elevated concentrations, this potent odorant may mask desirable fruity and floral aromas in wine and may be considered as a fault. A new remediation method for wines with elevated IBMP levels has been trialled using magnetic polymers, prepared in the same way as ordinary polymers but with the incorporation of iron oxide nanoparticles as magnetic substrates. Characterisation by Fourier transform-infrared (FTIR) spectroscopy and scanning electron microscopy (SEM) showed no difference between thermally synthesised and microwave synthesised polymers. Magnetic polymers were found to have removed over 40% of the IBMP present in spiked model wine and white wine within ten minutes. The addition of magnetic nanoparticles and microwave-induced polymerisation did not affect the adsorption properties of the polymer in model wine and the polymer could be regenerated at least five times. Both Langmuir and Freundlich isotherms were found to fit the data for both types of polymer. However, attempts to produce imprinted polymers were not achieved, as they were found not to be differentiated from non-imprinted counterparts via adsorption tests.

摘要

3-异丁基-2-甲氧基吡嗪(IBMP)是最常见的葡萄衍生甲氧基吡嗪,可为葡萄酒增添青椒、植物和草本香气和风味。在较高浓度下,这种强烈的气味可能会掩盖葡萄酒中令人愉悦的果香和花香,因此可能被视为一种缺陷。一种使用磁性聚合物修复高 IBMP 水平葡萄酒的新方法已经过试验,该方法与普通聚合物的制备方法相同,但在制备过程中加入了氧化铁纳米颗粒作为磁性基质。傅里叶变换红外(FTIR)光谱和扫描电子显微镜(SEM)的特征分析表明,热合成和微波合成聚合物之间没有区别。磁性聚合物在十分钟内从加标模型酒和白葡萄酒中去除了超过 40%的 IBMP。添加磁性纳米颗粒和微波诱导聚合不会影响模型酒中聚合物的吸附性能,聚合物至少可以再生五次。Langmuir 和 Freundlich 等温线都适用于两种类型的聚合物的数据。然而,尝试制备印迹聚合物并没有成功,因为通过吸附试验发现它们与非印迹聚合物没有区别。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da75/6099604/81b76beed224/molecules-23-01140-g001.jpg

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