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Cassava Starch-Based Composite Reinforced with Coconut Mesocarpfibers: Analysis of Physicochemical Stability

机译:基于木薯淀粉的复合材料加强了椰子MesocarpFibers:物理化学稳定性分析

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In one of our previous articles, we developed a cassava starch material reinforced with coconut mesocarpfibers. Its properties have been evaluated. It appears that the behavior of the composite depends on the atmospheric conditions of exposure. The purpose of this work is to do a more in-depth physicochemical stability analysis. To do this, identical samples were exposed in different chemical environments:basic, saline, acidic anddistilled water. The mass losses are measured after 75 days of immersion in the different solutions in three cases: films without addition of lime and fibers, film with the presence of lime and without reinforcements, and finally the composite with lime and fibers. We observe that, in all cases, the loss of mass decreases with the addition of lime and fibers. However, in the basic solution, this decrease is greater (53.4%) while it remains acceptable in a saline environment (1.1%). In short, this material can be used for several applications in the field of packaging such as the preservation of dry salty products.
机译:在我们以前的一篇文章中,我们开发了一种用椰子MesocarpFibers加固的木薯淀粉材料。它的性质已被评估。似乎复合材料的行为取决于暴露的大气条件。这项工作的目的是做一个更深入的物理化学稳定性分析。为此,在不同的化学环境中暴露相同的样品:碱性,盐水,酸性余量水。在三种情况下在不同溶液中浸入不同的溶液75天后测量质量损失:薄膜没有加入石灰和纤维,薄膜存在石灰,没有增强物,最后用石灰和纤维的复合材料。我们观察到,在所有情况下,随着石灰和纤维的添加,质量损失减少。然而,在碱性溶液中,这种降低更大(53.4%),而盐环境(1.1%)仍然可接受。简而言之,这种材料可用于包装领域的几种应用,例如干燥咸产品的保存。

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