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Intercalation technique can turn pomegranate industrial waste into a valuable by-product

机译:嵌入技术可以将石榴工业废物变为有价值的副产品

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The development of nanotechnology has led to the production of new valuable by-products in the food industry. In this way, we synthesized a new green fungicide using the impure montmorillonite (Mt) and extract of pomegranate fruit waste. In addition,we compared the Mt/pomegranate fruit peel extract (Mt/PFPE) with the Mt/ clove leaf extract (Mt/CLE) and Mt/Gallic acid (Mt/GA) composites. The mentioned composites were prepared through the simple and low-cost intercalation technique. The antifungal activity of these composites on postharvest gray mold CBotrytis cinerea) in apple fruit were tested in vitro and in vivo. XRD pattern confirmed the highly intercalation of plant extracts between interlayers of Mt nanoparticles. HPLC analysis and FTIR spectra showed that Mt nanoparticles absorbed the phenolic compounds from extract selectively. TGA analysis indicated high loading yield up to 70%. The Mt/PFPE, Mt/CLE and Mt/GA nanocomposites had 102%, 84% and 75% higher antifungal activity than single Mt nanoparticles. These findings suggest the Mt/PFPE nanocomposite as a low-cost but valuable by-product in the pomegranate juice industry.
机译:纳米技术的发展导致了食品工业中的新宝贵产品的生产。通过这种方式,我们使用不纯的蒙脱石(MT)和石榴果实垃圾提取物合成新的绿色杀菌剂。此外,我们将Mt /石榴果皮提取物(MT / PFPE)与Mt / Clove叶片提取物(Mt / Cle)和Mt / Gallic酸(Mt / Ga)复合材料进行比较。通过简单且低成本的嵌入技术制备所述复合材料。在体外和体内测试苹果果实中这些复合材料的抗真菌活性苹果果实。 XRD模式证实了MT纳米颗粒中间层之间的植物提取物的高度嵌入。 HPLC分析和FTIR光谱显示MT纳米颗粒选择性地吸收来自提取物的酚类化合物。 TGA分析表明高载率高达70%。 MT / PFPE,MT / CLE和MT / GA纳米复合材料具有比单mT纳米颗粒更高的抗真菌活性为102%,84%和75%。这些研究结果表明,石榴汁行业中,MT / PFPE纳米复合物作为低成本但有价值的副产品。

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