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Studies of crosslinked biopolymer structure for environmental tools in terms of the rheological measurements: part B

机译:在流变测量方面的环境工具交联生物聚合物结构的研究:B部分

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摘要

The crosslinked biopolymer structure constructed by blending different biopolymers or adding crosslink agent to biopolymers was studied. The rate of crosslink reaction was estimated with rheological measurements, such as elasticity and viscosity, glass transition temperature, crosslinking density, and gelation. Intermolecular and intramolecular association among polymer chains resulted in the formation of a complex three-dimensional (3-D) network as a single, double, or triple helix. These aggregates are progressively disrupted under an influence of applied shear forces that can be heat or pressure for a long period time. Nonetheless, such crosslinked structure exhibited the unique properties that may be found in a crosslinked structure. Therefore, such 3-D crosslinked structure can make an effective tool to stabilize such hazardous materials as heavy metals, toxic organics, and radioactive waste in a subsurface engineering system. In this study, the rate of crosslinking reaction in a biopolymer structure was fundamentally determined with the measurement of rheological properties.
机译:研究了通过混合不同的生物聚合物构成的交联生物聚合物结构或将交联剂添加到生物聚合物中。通过流变测量估计交联反应速率,例如弹性和粘度,玻璃化转变温度,交联密度和凝胶化。聚合物链中的分子间和分子内关联导致复合三维(3-D)网络的形成,为单一,双或三螺旋。在施加的剪切力的影响下,这些聚集体逐渐破坏,这在长时间可以是热或压力的施加剪切力。尽管如此,这种交联结构表现出可在交联结构中发现的独特性质。因此,这种3-D交联结构可以制备有效的工具,以使这种有害物质稳定在地下工程系统中的重金属,有毒有机物和放射性废物。在该研究中,通过测量流变性质的测量,基本上测定了生物聚合物结构中的交联反应速率。

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