ASTM D8438/D8438M-23 PDF
Standard Test Methods for Use of Hyperspectral Sensors for Soil Nutrient Analysis of Ground Based Samples
Standard Test Methods for Use of Hyperspectral Sensors for Soil Nutrient Analysis of Ground Based Samples
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 7
- Дата публикации:
- 15 февраля 2023 г.
- Издание:
- D8438/D8438M
- ICS:
- 13.080.30
SIGNIFICANCE AND USE 5.1 Spectral analysis of soils for agricultural use is being used worldwide to obtain rapid data on soil nutrients. for the purpose of agricultural management including fertilizer application and other amendments such as pH adjustment, organic supplements, etc. Satellite, aerial, and ground-based sampling methods are being used. This test method applies to ground-based, terrestrial field applications where samples are taken from the ground, generally in the root zone. Use of these rapid remote sensing techniques allow for more detailed and economic data acquisition than older cumbersome sampling and wet chemistry testing methods used in the past by soil scientists for soil nutrient evaluations. 5.2 This test method describes procedures for sampling and testing of field soils using diffuse reflectance spectrometry using handheld portable spectrometers measuring spectra in visible and near infrared (vis-NR) using dried sieved or wet samples. There is a worldwide effort to collect spectral databases of soils. The procedures specified here follow procedures as outlined in the United Nations Food and Agricultural Organization (FAO) primer on Vis-NIR and MIR spectroscopy of soils (1)3. Other organizations such as IEEE are actively working on additional guidance documents that will be incorporated in future revisions of this test method. 5.2.1 This standard describes the procedures (Section 12) for using hyperspectral sensor data to measure moisture content as a percentage, pH, Organic Matter (OM) as a percentage, Cation Exchange Capacity (CEC) measured in 10 cmol c /kg could hold 10 cmol of Na + cations (with 1 unit of charge per cation) per kilogram of soil, but only 5 cmol Ca 2+ (2 units of charge per cation), as well as micro and macro nutrients in soils measured in PPM (parts per million)or a percentage, including, but not limited to nitrogen, phosphorous, potassium, boron, zinc, iron, sulfur, calcium, magnesium, and manganese. 5.2.2 Research has shown that t... SCOPE 1.1 This test method describes procedures for sampling and testing of soils obtained from ground-based samples using diffuse reflectance spectrometry using handheld portable spectrometers measuring spectra in visible and near infrared (vis-NR) and mid-infrared (MIR) range. The sensor can measure moisture content, PH, organic matter, Cation Exchange Capacity (CEC) as well as macro and micro elemental nutrients in parts per million (PPM) or percentage, including but not limited to nitrogen, phosphorous, potassium, zinc, iron, boron, sulfur, calcium, magnesium, and manganese. 1.2 There are two methods that can be used to perform the test. 1.2.1 Method A—The analysis is performed in the laboratory on the sample after the sample has been oven dried and sieved. 1.2.2 Method B—The analysis is performed in the field on a moist sample after homogenization. After post-processing of multiple reflectance site data using methods A and B, the moisture content can be measured, and the spectral signature is normalized for moisture content. 1.3 The limitation of this method is that the results of an individual test for elemental analysis would not be the same as exacting reference values from traditional wet chemical lab analysis used by soil scientists. Results of wet chemistry tests or tests from soil science libraries may be used to calibrate a specific site model comprised of many individual tests. Spectral data for organics has shown to be as accurate as conventional methods such as Test Methods D2974. 1.4 For soil nutrient analysis the sample is not finely ground as in typical qualitative spectral analysis as outlined in standard Practice E1252. The spectrometer is checked periodically during testing using procedures in accordance with Guide E1866 performance testing. 1.5 Moisture content is a preferred term in agricultural applications. For this standard, gravimetric water content may be measured in accordance wi...
Abstract
Overview
ASTM D8438/D8438M-23 is an international standard providing procedures and recommendations for the use of hyperspectral sensors in the analysis of soil nutrients from ground-based samples. Developed by ASTM International, this standard addresses the growing need for cost-effective, rapid, and detailed soil nutrient information using advanced diffuse reflectance spectrometry in the visible, near-infrared (Vis-NIR), and mid-infrared (MIR) spectrum. This method supports advanced agricultural management, helping users make informed decisions about fertilizer application, organic supplementation, pH adjustment, and overall soil health.
Key Topics
- Purpose: Guides sampling and testing of soils using hyperspectral sensors for rapid soil nutrient analysis, facilitating efficient agricultural management.
- Test Methods: Two primary approaches:
- Method A: Laboratory analysis of oven-dried, sieved soil samples.
- Method B: Field analysis of moist, homogenized soil samples.
- Parameters Measured:
- Moisture content
- pH
- Organic matter (OM)
- Cation exchange capacity (CEC)
- Macro and micronutrients: nitrogen, phosphorus, potassium, calcium, magnesium, manganese, sulfur, boron, zinc, and iron.
- Technological Advantages:
- Non-destructive and rapid data collection.
- High-density sampling using portable field spectrometers.
- Normalization and calibration support using existing chemical soil analysis and global spectral databases.
- Limitations:
- Results for certain nutrients may differ from wet chemistry reference lab values.
- Calibration to local conditions using reference testing is recommended to ensure reliability.
Applications
- Agricultural Management: Hyperspectral soil analysis is revolutionizing how growers, agronomists, and land managers evaluate soil health, allowing for:
- Precision fertilizer application based on real-time nutrient mapping.
- Efficient amendment planning for optimal crop performance.
- Large-scale nutrient databases to support regional and site-specific decision-making.
- Field and Laboratory Flexibility: Supports both lab-based and in-field measurements:
- In-Field Sampling (Method B) enables immediate scanning and rapid site data collection, crucial for timely farming operations.
- Lab Analysis (Method A) leverages controlled conditions to ensure consistency and calibrate field measurements.
- Regulatory and Research Use: Provides a validated framework that meets international standards, useful for compliance reporting, scientific research, and technology validation.
Related Standards
- ASTM D2216: Laboratory Determination of Water (Moisture) Content of Soil and Rock by Mass.
- ASTM D653: Terminology Relating to Soil, Rock, and Contained Fluids.
- ASTM D2974: Methods for Determining Water Content, Ash Content, and Organic Material of Peat and Other Organic Soils.
- ASTM E1252: Practice for General Techniques for Obtaining Infrared Spectra for Qualitative Analysis.
- ASTM E1866: Guide for Establishing Spectrophotometer Performance Tests.
- Referenced Guidance: United Nations FAO Vis-NIR and MIR spectroscopy of soils primer.
- Additional Guidelines: Local and regional agricultural regulations may specify minimum sample spacing and other requirements.
Conclusion
ASTM D8438/D8438M-23 delivers a robust and practical framework for integrating hyperspectral sensing into soil nutrient analysis, addressing the need for rapid, detailed, and economical data acquisition in agricultural and environmental management. Utilizing this standard supports more sustainable land use, precise nutrient management, and advances in digital soil mapping using remote sensing technologies.
Keywords: ASTM D8438, hyperspectral sensors, soil nutrient analysis, visible and near-infrared, agricultural management, field spectroscopy, soil testing, precision agriculture, soil sampling, nutrient mapping.
Технические детали
- Технический комитет
- D18 - Soil and Rock
- SKU
- ASTM D8438/D8438M-23
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