保护呼吸器官免受氨的作用

P. E. Khoma, N. Abramova, S. Kiro, I. M. Knish
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引用次数: 1

摘要

本文通过对乌克兰MES公司和乌克兰NAS公司环境与人体保护物理化学研究所员工的研究,探讨了氨中毒对呼吸器官的保护问题。详细讨论了氨的理化性质及其毒理学特征。根据可能产生的影响的严重程度,给出了紧急卫生条例和空气中其浓度的参考水平。活性炭是最广泛用于装备呼吸器和工业防毒面具的气体吸收盒的活性炭,如果没有化学活性化合物的处理,它就没有选择性吸收氨的能力。为了提高活性炭的选择性,将d-金属盐和有机多碱酸渗透到活性炭中。颗粒炭吸附剂的替代品是离子交换纤维材料或浸渍纤维化学吸附剂(IFCS),其重量和呼吸阻力显着降低。用柠檬酸溶液浸渍,以甘油、氯化钠和乙醇为改性剂,使柠檬酸在纤维表面均匀分布,增加纤维的附着力。在接近呼吸防护设备实际运行的动态条件下,对作为“klens - k1”呼吸器吸气筒一部分的IFCS的吸气特性进行了干燥和湿润样品的研究:气体-空气混合物中NH3浓度为700 mg/m3 (35 TVL),相对湿度φ = 0 ÷ 72%,线性流量- 5.1 sm/s。结果表明,气-气混合气的湿度对氨吸附效率起决定性作用,它激活了IFCS的防护性能。经确定,所研制的IFCS样品(含40.0%柠檬酸溶液、3.3%甘油和1.0%氯化钠)所配备的吸气筒,可满足吸入空气湿度≥30%的K1级气体过滤器(氨)的规范要求。“自由”水的存在为该毒物的特定化学吸附剂提供了更完整的“激活”。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
RESPIRATORY ORGANS PROTECTION FROM THE AMMONIA ACTION
The article deals with the issues of protection of the respiratory organs from the toxic effects of ammonia, based on the research of employees of the Physical-chemical institute for environment and human protection of MES OF Ukraine and NAS of Ukraine. The physicochemical properties of ammonia and its toxicological characteristics are discussed in detail. Emergency hygienic regulations and reference levels of its concentration in the air are given, depending on the severity of possible effects. Activated carbon, the most widely used for equipping gas-absorbing cartridges of respirators and industrial gas masks, does not have the ability to selectively absorb ammonia without treatment with chemically active compounds. To enhance selectivity, activated carbon is infiltrated with d-metal salts and organic polybasic acids. An alternative to granular charcoal sorbents are ion-exchange fibrous materials or impregnated fibrous chemisorbents (IFCS), which have a significantly lower weight and breathing resistance. Impregnation was carried out with solutions of citric acid, and glycerol, sodium chloride, and ethanol were used as modifiers to achieve a uniform distribution of citric acid on the surface of the fibers and increase adhesion to them. The study of the sorption characteristics of IFCS as part of the gas-absorbing cartridge of the «Klen-K1» respirator was carried out with dry and moistened samples under dynamic conditions close to the actual operation of respiratory protection equipment: NH3 concentration in the gas-air mixture 700 mg/m3 (35 TVL), relative humidity φ = 0 ÷ 72%, linear flow rate – 5,1 sm/s. It is shown that the humidity of the gas-air mixture plays a decisive role in the efficiency of ammonia sorption, it activates the protective properties of IFCS. It has been established that gas-absorbing cartridges equipped with the developed samples of IFCS impregnated with a 40.0% solution of citric acid with the addition of 3.3% glycerol and 1.0% sodium chloride provide the normalized requirements for class K1 gas filters (ammonia) with humidity of the inhaled air ≥ 30%. The presence of «free» water provides a more complete «activation» of the specified chemisorbent for this toxicant.
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