Nunziata Felice, De Felicis Daniele, Donghi Matteo, Bemporad Edoardo, Capone Brenda, Palumbo Giancarlo, Rotter Gabriele
Consiglio Nazionale delle Ricerche, Istituto di Scienze e Tecnologie per l'Energia e la Mobilità Sostenibili (STEMS), Via Marconi 4, 80125 Napoli, Italy.
Università degli studi Roma Tre, Dipartimento di Ingegneria Civile, Informatica e delle Tecnologie Aeronautiche, Via Vito Volterra 62, 00146 Roma, Italy.
Forensic Sci Int. 2024 Feb;355:111931. doi: 10.1016/j.forsciint.2024.111931. Epub 2024 Jan 12.
Since the second half of the XX century, primer mixtures based on mercury fulminate have become a rare occurrence on small ammunition markets in Western Europe and North America. As a consequence, Hg-containing gunshot residue (GSR) particles have not been as deeply investigated as residues from lead-based primer mixtures. As a matter of fact, no mention of GSR particles from mercuric primers is made by the current ASTM standard procedure for gunshot residue analysis. However, those laboratories dealing with ammunition and firearms produced in Eastern Europe or Asia still have a forensic interest in Hg-containing GSR. In this paper, a brief description of chemical composition and inner morphology of GSR particles from three different mercuric primers is reported. Regarding composition, arguments are given to promote SbSnHg residues to Characteristic of GSR particles when mercuric primers are discharged. From a morphological point of view, presence of inner nodules and other inhomogeneities were shown in GSR particles milled in a FIB/SEM. Moreover, mercury vaporization under the electron beam was observed for a particle reduced to a lamella. Mercury evanescence in GSR was interpreted in terms of mercury segregation during particle formation and higher mobility of Hg atoms in presence of defects (vacancies) in a strained lattice.
自20世纪下半叶以来,基于雷酸汞的底火混合物在西欧和北美的小型弹药市场上已很少见。因此,含汞枪击残留物(GSR)颗粒的研究不如含铅底火混合物的残留物深入。事实上,当前用于枪击残留物分析的ASTM标准程序并未提及来自汞底火的GSR颗粒。然而,处理东欧或亚洲生产的弹药和枪支的实验室对含汞GSR仍有法医鉴定方面的兴趣。本文报告了三种不同汞底火的GSR颗粒的化学成分和内部形态的简要描述。关于成分,给出了论据以促进将锑锡汞残留物作为汞底火发射时GSR颗粒的特征。从形态学角度来看,在聚焦离子束/扫描电子显微镜(FIB/SEM)中研磨的GSR颗粒显示出内部结节和其他不均匀性。此外,对于一个被还原成薄片的颗粒,观察到其在电子束下汞的汽化现象。GSR中汞的消失被解释为颗粒形成过程中汞的偏析以及在应变晶格中存在缺陷(空位)时汞原子的更高迁移率。