ISO 20804:2022 PDF
Determination of the specific surface area of porous and particulate systems by small-angle X-ray scattering (SAXS)
Determination of the specific surface area of porous and particulate systems by small-angle X-ray scattering (SAXS)
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 22
- Дата публикации:
- 27 мая 2022 г.
- Издание:
- ISO IS 20804 edition 1 version 1
- ICS:
- 19.120
This document specifies the application of small-angle X-ray scattering (SAXS) for the determination of specific surface area. Both the mass specific surface area in the order of 1 m2g-1 to 2 000 m2g-1 and the volume specific surface areas in the range from 0,01 m2cm-3 to 1 000 m2cm-3 can be obtained. The method described is applicable to dilute and concentrated systems. NOTE: In ISO 17867:2020, the determination of the particle size by SAXS is limited to dilute systems. The determination of surfaces with SAXS is straightforward for two-phase systems only. Surface determination in systems with more than two phases is beyond the scope of this document. The term ‘surface’ refers to any interface between domains of different density (more precisely: electron density) and is not restricted to the external surface of particles. As any interfaces between areas with different electron density, not only to air or vacuum, can be probed, the method can be applied to any heterogeneous system. SAXS measures not only the specific surface area of open pores but also of inaccessible, closed pores or inclusions. NOTE: This is in contrast to gas sorption methods which are described in ISO 9277:2010. In addition to porous systems, there can be contributions of internal interfaces to the measured specific surface area of any heterogeneous compact solid system, such as between crystalline and amorphous phases, provided there is an electron density contrast. Although materials comprising micropores (pore width
Abstract
Overview
ISO 20804:2022 specifies how to determine the specific surface area of porous and particulate systems using small-angle X‑ray scattering (SAXS). The standard covers both mass specific surface area (approx. 1 to 2 000 m2·g‑1) and volume specific surface area (0.01 to 1 000 m2·cm‑3). It applies to both dilute and concentrated systems and is focused on two‑phase systems where an electron‑density contrast exists between domains. SAXS as described in ISO 20804:2022 probes any interface between domains of different electron density - including internal interfaces and closed pores - unlike gas sorption methods.
Key topics and technical requirements
- Principle and models: small‑angle scattering theory for two‑phase systems; ideal two‑phase model and assumptions (isotropy, sharp density boundaries).
- Evaluation approaches:
- K/Q (Invariant) method - suitable up to several hundred nanometres structural size.
- Absolute‑scale method - enables extension to larger structures (µm range with USAXS).
- Porod law and Porod constant: used to relate high‑q scattering to specific surface area.
- Instrumentation and setup:
- Optics, focusing, collimation and angular resolution requirements.
- Options for laboratory SAXS and synchrotron beamlines; ultra‑small‑angle X‑ray scattering (USAXS) for larger features.
- Sample preparation and handling: recommendations include degassing, thickness/density considerations, and transmission measurement.
- Data quality and calibration: requirements for absolute scaling, background correction, and documentation of measurement conditions.
- Scope and limitations:
- Applicable to hetero‑phase systems with electron density contrast; not for systems with more than two phases.
- SAXS measures both open and closed pores/inclusions. Materials with micropores (
Технические детали
- Технический комитет
- ISO/TC 24/SC 4 - Particle characterization
- SKU
- ISO 20804:2022
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