Photon shielding properties of alkali- and acid-treated Philippine natural zeolite

IF 1.1 4区 地球科学 Q4 CHEMISTRY, PHYSICAL
Clay Minerals Pub Date : 2023-09-11 DOI:10.1180/clm.2023.25
Mon Bryan Z. Gili
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引用次数: 0

Abstract

Abstract The effects of chemical treatment on the radiation-shielding properties of Philippine natural zeolites were investigated using EpiXS following the EPICS2017 library. The zeolites were studied using X-ray diffraction and energy-dispersive X-ray spectroscopy. The acid treatment eliminated Fe and Ca, having a negative impact on the cross-section of the HCl-modified zeolite. The mass attenuation coefficients of the raw, NaOH- and HCl-modified zeolites at 1332 keV were 0.0545, 0.0544 and 0.0548 cm 2 g –1 , respectively. At 100–10,000 keV, the linear attenuation coefficient depends on the density and increases in the order HCl-modified > NaOH-modified > raw zeolite. In the energy range of 100–16,000 keV, the mean free path and half-value layer values are in the order of HCl-modified < NaOH-modified < raw zeolite. The raw and NaOH-modified zeolites have comparable effective atomic numbers, whereas the HCl-treated zeolite has significantly lower such values.
碱和酸处理菲律宾天然沸石的光子屏蔽性能
摘要采用EpiXS软件,研究了化学处理对菲律宾天然沸石辐射屏蔽性能的影响。用x射线衍射和能量色散x射线光谱对沸石进行了研究。酸处理消除了Fe和Ca,对盐酸改性沸石的横截面有负面影响。在1332 keV下,原料沸石、NaOH改性沸石和hcl改性沸石的质量衰减系数分别为0.0545、0.0544和0.0548 cm 2 g - 1。在100-10,000 keV范围内,线性衰减系数随密度的增大而增大。NaOH-modified祝辞原始的沸石。在100 ~ 16000 keV的能量范围内,平均自由程和半值层值依次为:hcl修饰的<NaOH-modified & lt;原始的沸石。原始沸石和氢氧化钠改性沸石的有效原子序数相当,而盐酸处理沸石的有效原子序数明显较低。
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来源期刊
Clay Minerals
Clay Minerals 地学-矿物学
CiteScore
3.00
自引率
20.00%
发文量
25
审稿时长
6 months
期刊介绍: Clay Minerals is an international journal of mineral sciences, published four times a year, including research papers about clays, clay minerals and related materials, natural or synthetic. The journal includes papers on Earth processes soil science, geology/mineralogy, chemistry/material science, colloid/surface science, applied science and technology and health/ environment topics. The journal has an international editorial board with members from fifteen countries.
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