沸石在氡吸附方面的功效:最新技术和优化方法的开发。

IF 1.1 4区 环境科学与生态学 Q4 CHEMISTRY, INORGANIC & NUCLEAR Isotopes in Environmental and Health Studies Pub Date : 2024-08-01 Epub Date: 2024-07-30 DOI:10.1080/10256016.2024.2383709
Gaetano Gagliardo, Mohamed Y Hanfi, Giuseppe La Verde, Mariagabriella Pugliese, Nicola Gargiulo, Domenico Caputo, Fabrizio Ambrosino
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引用次数: 0

摘要

氡是一种在环境中无处不在的放射性惰性气体,是地壳中 238U 和 232Th 衰变链的一部分。这种气体很容易从地下泄漏,也存在于天然建筑材料中,并迁移到室内,吸入后会成为致癌物质。研究室内氡的含量和清除方法对于评估和减轻其对公众健康的辐射风险至关重要。100 多年来,一直使用活性炭吸附去除氡。在环境条件下的氡吸附领域进展甚微;主要进展是使用具有明确三维多孔结构和抗辐射能力的沸石材料。本研究报告介绍了沸石在氡吸附方面的应用现状。此外,还提出了一种测量室内环境中氡含量的优化方法,并因此提出了去除氡的方法。基于沸石的吸附系统有可能取代活性炭成为首选材料,从而促进简单紧凑的氡吸附系统的发展。
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Efficacy of zeolites in radon adsorption: state of the art and development of an optimized approach.

Radon is a radioactive noble gas omnipresent in the environment, being part of the 238U and 232Th decay chains present in the Earth's crust. The gas can easily leak through the ground but also be present in natural construction materials and migrate into indoor places where it can be a carcinogen when inhaled. Studying the content and removal of indoor radon is crucial for the evaluation and mitigation of its radiological risks to public health. For more than 100 years, the removal by adsorption of the radon has been performed on activated charcoal. There is little progress in the field of radon adsorption at ambient conditions; the main progress is in the use of zeolite materials, having well-defined three-dimensional porous structures and radiation resistance. This study concerns a report on the state of the art of the application of zeolites in radon adsorption. Furthermore, an optimized approach for measuring the radon content in indoor environments and, consequently, its removal has been proposed. Adsorption systems based on zeolites have the potential to replace activated charcoal as a material of choice, allowing to facilitate the development of simple and compact radon adsorption systems.

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来源期刊
CiteScore
2.80
自引率
7.70%
发文量
21
审稿时长
3.0 months
期刊介绍: Isotopes in Environmental and Health Studies provides a unique platform for stable isotope studies in geological and life sciences, with emphasis on ecology. The international journal publishes original research papers, review articles, short communications, and book reviews relating to the following topics: -variations in natural isotope abundance (isotope ecology, isotope biochemistry, isotope hydrology, isotope geology) -stable isotope tracer techniques to follow the fate of certain substances in soil, water, plants, animals and in the human body -isotope effects and tracer theory linked with mathematical modelling -isotope measurement methods and equipment with respect to environmental and health research -diagnostic stable isotope application in medicine and in health studies -environmental sources of ionizing radiation and its effects on all living matter
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