U.S. Biowarfare Labs in Post-Soviet States

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Abstract

Previously, we developed the principle of constructing modular materials with specified properties, according to which organometallic composites, with nanoscale enzyme complexes introduced into them, are applied to a unified fabric platform. The resulting composites become a new platform for heterogeneous biocatalysis. Such a platform has high stability and good catalytic selectivity. The aim of the work is to study the properties of a unified fabric platform and to establish the possibility of giving materials (tissues) anti-chemical protective properties. The paper analyzes scientific and practical information on the production of composite fibrous materials with frame fibrous layers. The properties of a unified tissue platform and the mechanisms of protective action due to the enzyme containing formulation applied to it are investigated. As a unified fabric platform on which other special modules are applied, it is proposed to use para-aramid protective fabric (Rusar fiber), as well as other types of fabrics – mixed aramid-viscose, aramid-cotton, aramid-polyacrylate, metaaramide (Nomex fiber). The physical properties and chemical structure of aromatic polyamides, possible directions for the production of aramid fibers, the structure and structure of aramid fibers, the mechanisms of chemical processes in polyinide compositions of various compositions are considered. Approaches to giving materials (tissues) anti-chemical protective properties are determined. The catalytic characteristics of fibrous materials functionalized by enzyme-polyelectrolyte complexes carrying out hydrolysis of organophosphorus compounds and mycotoxins have been studied
后苏联国家的美国生物战实验室
此前,我们开发了构建具有特定性能的模块化材料的原理,根据该原理,有机金属复合材料与纳米级酶配合物被引入其中,应用于统一的织物平台。所制备的复合材料为多相生物催化提供了新的平台。该平台稳定性高,催化选择性好。这项工作的目的是研究一个统一的织物平台的性能,并建立赋予材料(组织)抗化学防护性能的可能性。本文分析了框架纤维层复合纤维材料生产的科学和实用资料。研究了统一组织平台的性质和应用于其上的含酶制剂的保护作用机制。作为其他特殊模块应用的统一面料平台,建议使用对芳纶防护面料(Rusar纤维),以及其他类型的面料-芳纶-粘胶,芳纶-棉,芳纶-聚丙烯酸酯,间芳纶(Nomex纤维)混合。综述了芳香族聚酰胺的物理性质和化学结构、芳香族纤维生产的可能方向、芳香族纤维的结构和结构、各种组成的聚酰胺组成的化学过程机理。确定了赋予材料(组织)抗化学防护性能的方法。研究了酶-聚电解质配合物功能化纤维材料水解有机磷化合物和真菌毒素的催化特性
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