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Aflatoxin Reduction in Maize by Industrial-Scale Cleaning Solutions

机译:工业规模清洁解决方案可减少玉米中的黄曲霉毒素

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摘要

Different batches of biomass/feed quality maize contaminated by aflatoxins were processed at the industrial scale (a continuous process and separate discontinuous steps) to evaluate the effect of different cleaning solutions on toxin reduction. The investigated cleaning solutions included: (i) mechanical size separation of coarse, small and broken kernels, (ii) removal of dust/fine particles through an aspiration channel, (iii) separation of kernels based on gravity and (iv) optical sorting of spatial and spectral kernel defects. Depending on the sampled fraction, dynamic or static sampling was performed according to the Commission Regulation No. 401/2006 along the entire cleaning process lines. Aflatoxin analyses of the water–slurry aggregate samples were performed according to the AOAC Official Method No. 2005.008 based on high-performance liquid chromatography and immunoaffinity column cleanup of the extracts. A significant reduction in aflatoxin content in the cleaned products, ranging from 65% to 84% with respect to the uncleaned products, was observed when continuous cleaning lines were used. Additionally, an overall aflatoxin reduction from 55% to 94% was obtained by combining results from separate cleaning steps. High levels of aflatoxins (up to 490 µg/kg) were found in the rejected fractions, with the highest levels in dust and in the rejected fractions from the aspirator and optical sorting. This study shows that a cleaning line combining both mechanical and optical sorting technologies provides an efficient solution for reducing aflatoxin contamination in maize.
机译:黄曲霉毒素污染的不同批次的生物质/饲料品质玉米以工业规模进行处理(连续过程和单独的不连续步骤),以评估不同清洁溶液对减少毒素的影响。研究的清洁解决方案包括:(i)粗粒,小粒和破碎粒的机械尺寸分离;(ii)通过抽吸通道去除灰尘/细小颗粒;(iii)基于重力的粒分离和(iv)光学分选空间和光谱核缺陷。根据采样分数,按照委员会法规401/2006的规定在整个清洗过程中进行动态或静态采样。根据高效液相色谱法和提取物的免疫亲和柱净化方法,根据AOAC官方方法2005.008号对水浆状聚集体样品中的黄曲霉毒素进行了分析。当使用连续的清洗生产线时,观察到清洗后产品中黄曲霉毒素的含量显着降低,相对于未清洗产品为65%至84%。此外,通过合并单独清洁步骤的结果,黄曲霉毒素的总体含量从55%降至94%。在拒绝的馏分中发现了高含量的黄曲霉毒素(最高490 µg / kg),在粉尘中以及吸气器和光学分选的拒绝馏分中发现的黄曲霉毒素含量最高。这项研究表明,结合了机械和光学分选技术的清洁生产线为减少玉米中的黄曲霉毒素污染提供了有效的解决方案。

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