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Single, binary and ternary ion exchanged zeolite as an effective bioactive filler for biomedical polymer composites

机译:单,二元和三元离子交换沸石作为生物医学聚合物复合材料的有效生物活性填料

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The preparation and modelling of single, binary and ternary ion exchanged zeolites that express antimicrobial efficiency is discussed. As experimental material A type zeolite was used and different variations of Ag, Cu and Zn ions were incorporated into the crystal structure. Antimicrobial efficiency is based on the ion concentration and ion release of the zeolite, therefore the maximum cation-exchange capacities (CEC) were determined for each of the single ions. After the determination of CEC the preparation of binary and ternary ion-exchanged zeolite samples were prepared by the mixture of silver, copper and zinc nitrate solutions and the composition of the samples was determined by atomic absorption spectroscopy (AAS). To verify the bioactive effect, the minimum inhibitory concentration (MIC) of single, binary and ternary ion-exchanged zeolite A was determined for bacteria strains.
机译:讨论了表达抗微生物效率的单一,二元和三元离子交换沸石的制备和建模。作为实验材料,使用型沸石,并将Ag,Cu和Zn离子的不同变化掺入晶体结构中。抗微生物效率基于沸石的离子浓度和离子释放,因此针对每个离子测定最大阳离子交换容量(CEC)。在CEC的测定后,通过银,铜和硝酸锌溶液的混合物制备二元和三元离子交换沸石样品的制备,并通过原子吸收光谱法(AAS)测定样品的组成。为了验证生物活性效果,针对细菌菌株测定单,二元和三元和三元离子交换沸石A的最小抑制浓度(MIC)。

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