研究用于医用吸附剂生产的多孔碳材料Sibunit™商标的特性

V. A. Likholobov, L. S. Luzyanina
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引用次数: 1

摘要

对Sibunit™商标多孔碳材料在合成过程中形成的物理化学特性进行了研究,并对其符合医学标准要求进行了评价。确定了材料的化学纯度(碳的质量分数)、最低杂质含量(硫、灰分)、堆积密度、SBET的比表面积、强度颗粒(耐磨损颗粒)满足这些要求,确定了其作为制造医用吸附剂的基础的使用前景。然而,在材料合成过程中产生的表面碱性和大量超细碳颗粒(碳尘)的存在,排除了在解决将这些特性达到所需标准的问题之前应用这种应用的可能性。给出了使不符合医疗标准要求的碳吸附剂的特性达到可接受值的众所周知的方法。对Sibunit™商标多孔碳材料在合成过程中形成的物理化学特性进行了研究,并对其符合医学标准要求进行了评价。确定了材料的化学纯度(碳的质量分数)、最低杂质含量(硫、灰分)、堆积密度、SBET的比表面积、强度颗粒(耐磨损颗粒)满足这些要求,确定了其作为制造医用吸附剂的基础的使用前景。然而,在材料合成过程中产生的表面碱性和大量超细碳颗粒(碳尘)的存在,排除了在解决将这些特性达到所需标准的问题之前应用这种应用的可能性。使不符合医疗标准要求的碳吸附剂的特性达到可接受值的众所周知的方法是……
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study characteristics of the porous carbon material Sibunit™ trademark for the production of medical sorbents
Physicochemical characteristics of porous carbon material of Sibunit™ trademark, which are formed during its synthesis, were studied, and their compliance with the requirements of medical standards was evaluated. It was established that the chemical purity of the material (mass fraction of carbon), the minimum content of impurities (sulfur, ash), bulk density, specific surface area of SBET, strength granules (resistance to abrasion granules) meet these requirements, determining the prospects of its use as a basis for the creation of medical sorbents. However, the alkaline nature of the surface, the presence of a significant amount of ultrafine carbon particles (carbon dust), generated during the material synthesis process, exclude the possibility of such an application before solving the problem of bringing these characteristics to the required standards. The well-known methods of bringing the characteristics of carbon sorbents that do not meet the requirements of medical standards to accepted values are given.Physicochemical characteristics of porous carbon material of Sibunit™ trademark, which are formed during its synthesis, were studied, and their compliance with the requirements of medical standards was evaluated. It was established that the chemical purity of the material (mass fraction of carbon), the minimum content of impurities (sulfur, ash), bulk density, specific surface area of SBET, strength granules (resistance to abrasion granules) meet these requirements, determining the prospects of its use as a basis for the creation of medical sorbents. However, the alkaline nature of the surface, the presence of a significant amount of ultrafine carbon particles (carbon dust), generated during the material synthesis process, exclude the possibility of such an application before solving the problem of bringing these characteristics to the required standards. The well-known methods of bringing the characteristics of carbon sorbents that do not meet the requirements of medical standards to accepted values are ...
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