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The Use of Piezosensors for Determination of Carboxylic Acids in the Intermediate Products of Edible Ethanol Production

机译:用压塞体压阻器测定食用乙醇生产中间产物中羧酸

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The reference polymers and polymers with molecular imprints of carboxylic acids (MIPs-CA)-propionic (MIP-Propionic) and butyric (MIP-Butyric) acids-were synthesized on the surface of piezoelectric sensors using aromatic compounds by the non-covalent imprinting method. A molecularly imprinted polymer (MIP) is a polymer produced through molecular imprinting, which leaves cavities in the polymer matrix with affinity for a chosen "template" target molecule. The values of the imprinting factor and selectivity coefficients were calculated to assess the ability of MIPs-CA to recognize the target molecules. It was shown that the sensors modified by the molecularly imprinted polymers exhibited high selectivity for the acid that was a template during their synthesis. The detection limits for propionic and butyric acids were 7.40 x 10(-6) and 8.81 x 10(-6) g/dm(3), respectively. Correctness of the carboxylic acid determination in model solutions was verified in the spike/recovery tests. The relative standard deviation was less than 10%. The modified piezoelectric sensors were tested in analysis of the intermediate products of edible ethanol production (distillate of fermentation mixture, epurate, bottom liquids of columns). The correctness of the determination of carboxylic acids in liquids was evaluated using an Agilent Technologies 7890B GC System. The difference in the results of acid determination between both methods (piezoelectric sensor and chromatography-mass spectrometry) did not exceed 6%. The modified piezosensors expand the potential of rapid determination of carboxylic acids in the intermediate products of ethyl alcohol production.
机译:基准聚合物和聚合物与羧酸的分子印记(MIPS-CA) - 丙(MIP-丙酸),丁酸(MIP-丁酸)酸 - 使用的芳族化合物通过非共价印迹法的压电传感器的表面上的合成。的分子印迹聚合物(MIP)是通过分子印迹,生产的聚合物,其叶子腔与用于所选择的“模板”靶分子亲和性的聚合物基质。计算了压印因子和选择性系数的值来评估的MIP-CA的识别目标分子的能力。结果表明,由分子印迹聚合物改性的传感器显示出高的选择性,这是它们的合成过程中的模板的酸。为丙酸和丁酸的检出限为7.40×10(-6)和8.81×10(-6)克/分米(3),分别。在模型的解决方案的羧酸判定的正确性在尖峰/恢复试验进行了验证。的相对标准偏差小于10%。修改后的压电传感器在食用乙醇生产(发酵混合物,湔,柱的底部液体的馏出物)的中间产物的分析进行测试。使用安捷伦科技7890B GC系统在液体羧酸的判定的正确性进行评价。在这两种方法之间的酸测定(压电传感器和色谱 - 质谱法)的结果的差值不超过6%。修改后的压电传感器扩大快速测定在乙醇生产的中间产物的羧酸的潜力。

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