ASTM E3294-23 PDF
Standard Guide for Forensic Analysis of Geological Materials by Powder X-Ray Diffraction
Standard Guide for Forensic Analysis of Geological Materials by Powder X-Ray Diffraction
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 15
- Дата публикации:
- 1 ноября 2023 г.
- Издание:
- E3294
- ICS:
- 07.140
SIGNIFICANCE AND USE 5.1 The overarching goals of the forensic analysis of geological materials include (A) identification of an unknown material (see 11.3), (B) analysis of soils, sediments, or rocks to restrict their possible geographic origins as part of a provenance analysis (see 11.4), and (C) comparison of two or more samples to assess if they could have originated from the same source or to exclude a common source based on observation of exclusionary differences (see 11.5). XRD is only one analytical method that can be applied to the evidentiary samples in service of these distinct goals. Guidance for the analysis of forensic geological materials can be found in Refs (2-4). 5.2 Within the analytical scheme of geological materials, XRD analysis is used to: identify the crystalline components within a sample; identify the crystalline components separated from a mixture, typically clay-sized material (see 8.8), or a selected particle class for which additional analysis is needed (see 8.11); or compare two or more samples based on the identified crystalline phases or diffraction patterns (see 11.5). 5.2.1 Non-destructive XRD analysis can be performed in situ on geological material adhering to a substrate (see 8.12.3). 5.2.2 The most common forensic applications of XRD to geological materials are (A) identification or confirmation of a selected phase or fraction of a sample (see 8.12), (B) identification of minerals in the clay-sized fractions of soils (see 8.8), and (C) identification of the phases of the hydrated cement component of concrete or mortar. 5.3 This guide is intended to be used with other methods of analysis (for example, polarized light microscopy, scanning electron microscopy, palynology) within a more comprehensive analytical scheme for the forensic analysis or comparison of geological materials. 5.3.1 Comprehensive criteria for forensic comparisons of geological material integrating multiple analytical methods and provenance estimations (see 11.4) are ... SCOPE 1.1 This guide covers techniques and procedures for the use of powder X-ray diffraction (XRD) in the forensic analysis of geological materials (to include soils, rocks, sediments, and materials derived from them such as concrete), to enable non-consumptive identification of solid crystalline materials present as single components or multi-component mixtures. 1.2 This guide makes recommendations for the preparation of geological materials for powder XRD analysis with adaptations for samples of limited quantity, instrumental configuration to generate high-quality XRD data, identification of crystalline materials by comparison to published diffraction data, and forensic comparison of XRD patterns from two or more samples of geological materials to support criminal investigations. 1.3 Units—The values stated in SI units are to be regarded as standard. Other units are avoided, in general, but there is a long-standing tradition of expressing X-ray wavelengths and lattice spacing in units of Ångströms (Å). One Ångström = 10–10 meter (m) = 0.1 nanometer (nm). 1.4 This standard is intended for use by competent forensic science practitioners with the requisite formal education, discipline-specific training (see Practice E2917), and demonstrated proficiency to perform forensic casework. 1.5 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety, health, and environmental practices and determine the applicability of regulatory limitations prior to use. 1.6 This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.
Abstract
Overview
ASTM E3294-23: Standard Guide for Forensic Analysis of Geological Materials by Powder X-Ray Diffraction (XRD) provides standardized guidance for forensic scientists conducting examinations of soils, rocks, sediments, and materials derived from them, including concrete and mortar. Developed by ASTM International, this guide establishes best practices for the application of powder X-ray diffraction-a non-destructive technique-to identify and compare crystalline components in geological evidence. The standard ensures chain of custody and data integrity for forensic investigations, supporting source identification, provenance analysis, and sample comparison.
Key Topics
- Forensic Goals: The guide outlines approaches to:
- Identify unknown geological materials (including soils, rocks, sediments, and derived products)
- Restrict possible geographic origins (provenance analysis)
- Compare samples to determine if they originate from a common or distinct source
- XRD Role:
- Identify crystalline phases present in casework samples, including clay-size minerals and components of construction materials
- Compare diffraction patterns for forensic comparisons
- Perform in situ, non-consumptive analysis of trace evidence on diverse substrates
- Sample Handling:
- Preparation techniques for powdered samples, including adaptations for small or scant evidentiary samples often found in forensic casework
- Use of specialized holders and reference materials to assure data quality and reproducibility
- Data Analysis:
- Procedures for collecting, processing, and interpreting XRD patterns using both manual and automated methods
- Quality assurance and method validation, in alignment with ISO/IEC 17025:2017 requirements for forensic testing laboratories
- Safety and Competence:
- Emphasizes operator safety and the need for practitioners to maintain professional training and demonstrated proficiency
- Addresses proper use of equipment and awareness of potential hazards from ionizing radiation (X-rays)
Applications
Powder X-ray diffraction, as described in ASTM E3294-23, plays a critical role in forensic geology. Typical applications include:
- Soil and Sediment Analysis: Identifying mineral composition and characteristics to associate or exclude sources in criminal investigations such as kidnapping, homicide, and property crime.
- Provenance Studies: Constraining the geographic origin of geological evidence by matching mineralogical fingerprints with known reference locations.
- Comparison of Materials: Assessing whether soil or dust found on evidence items (shoes, shovels, vehicles) is consistent with known locations or with other evidentiary samples.
- Concrete and Cement Phases: Identifying and comparing phases in hydrated cements, important in investigations involving building materials or structural failures.
- Trace Evidence: Analyzing small quantities or micro-samples while preserving material integrity for subsequent analysis.
This standard emphasizes multimodal analysis, recommending XRD in conjunction with techniques such as polarized light microscopy, scanning electron microscopy, and palynology for more robust forensic interpretations.
Related Standards
To ensure comprehensive and reliable forensic analysis, ASTM E3294-23 should be used alongside:
- ASTM C1365: Determination of Phases in Portland Cement using XRD
- ASTM D934: Identification of Crystalline Compounds in Water-Formed Deposits by X-Ray Diffraction
- ASTM E2917: Practice for Forensic Science Practitioner Training and Professional Development
- ASTM E3272: Guide for Collection of Soils and Geological Evidence for Criminal Forensic Applications
- ISO/IEC 17025:2017: General Requirements for the Competence of Testing and Calibration Laboratories
By adhering to ASTM E3294-23, forensic laboratories ensure meticulous, repeatable, and court-defensible analyses of geological materials, supporting the integrity of criminal investigations and legal proceedings.
Технические детали
- Технический комитет
- E30 - Forensic Sciences
- SKU
- ASTM E3294-23
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