小果的生理特征及其对分散Vis/NIR反射光谱学的影响
J E Larson1, T Zuber2, T M Kon2
1Department of Plants, Soils, and Climate, Utah State University, Logan, UT 84322, USA.
Annals of botany
|June 27, 2025
概括
果的大小和叶绿素含量显著影响光反射度的测量. 了解这些生理变化对于开发精确的数字农业技术至关重要. 这项研究在富士果和蜂果中描述了这些效应.
科学领域:
- 园艺园艺 园艺园艺
- 植物生理学 植物生理学
- 遥感 遥感 遥感 遥感
背景情况:
- 数字技术越来越多地用于农业.
- 了解植物生理特征是解释光反射率数据的关键.
- 年轻的果子经历了快速的发育变化,影响了它们的光谱特性.
研究的目的:
- 为了描述"富士"和"蜜"果果的变化.
- 了解水果大小,叶绿素和三合体密度如何影响扩散光谱反射.
- 为数字农学工具的发展提供信息.
主要方法:
- 可见和近红外 (Vis/NIR) 反射频谱是在开花后20至36天收集的.
- 主要成分分析 (PCA) 和植被指数是从光谱数据计算出来的.
- 量化了三合体密度,水含量和叶绿素度;使用回归和相关性分析了关系.
主要成果:
- 水果大小是反射光谱变化的主要驱动因素 (第一个主要组成部分为86.56%).
- 较大的水果大小与和水吸收波长的反射率较低相关.
- 虽然叶绿素度随着体积的增加而下降,但叶绿素总含量增加,显示出与体积的关系比三体密度更强.
结论:
- 果实大小和总叶绿素含量是影响果小果的反射频谱的主要因素.
- 在光谱仪视野内的水果组织的数量显著影响了测量.
- 叶绿素含量的种类特定差异可能会对水果的光合作用能力产生影响.
相关概念视频
Attenuated Total Reflectance (ATR) Infrared Spectroscopy: Overview
580
Attenuated total reflectance (ATR) infrared spectroscopy is a powerful analytical technique used to study the composition of materials. It is widely employed in chemistry, materials science, forensic science, and other fields where sample characterization is required. ATR has several advantages over traditional transmission IR spectroscopy, including the requirement of little to no sample preparation and the ability to analyze a wide range of samples.
The ATR process begins by directing a beam...
The ATR process begins by directing a beam...
580
IR and UV–Vis Spectroscopy of Carboxylic Acids
4.6K
In IR spectroscopy of carboxylic acids, the C=O bond shows a characteristic band between 1710 and 1760 cm⁻¹, and the O–H bond exhibits a broad band between 2500 and 3300 cm⁻¹.
However, the stretching absorptions for the C=O bond vary depending on the structure of carboxylic acids. The C=O bond of the free carboxylic acids shows a higher stretching frequency, 1760 cm−1, while H-bonded carboxylic acids (dimers) exhibit stretching absorptions at a lower frequency,...
However, the stretching absorptions for the C=O bond vary depending on the structure of carboxylic acids. The C=O bond of the free carboxylic acids shows a higher stretching frequency, 1760 cm−1, while H-bonded carboxylic acids (dimers) exhibit stretching absorptions at a lower frequency,...
4.6K
Applications of IR Spectroscopy: Overview
1.2K
The non-destructive nature and ability to provide valuable chemical information make IR spectroscopy a versatile technique with broad applications in various scientific and industrial fields. IR spectroscopy is commonly used to identify and characterize organic and inorganic compounds. It provides information about the functional groups present in a molecule and the bonding between atoms. This helps in the structural elucidation of compounds during organic synthesis, pharmaceutical research,...
1.2K
IR Frequency Region: Fingerprint Region
1.1K
IR spectra are divided into two main regions: the diagnostic region and the fingerprint region. The diagnostic region of the spectrum lies above 1500 cm−1. The absorptions resulting from single-bond vibrations of the N–H, C–H, and O–H stretch at higher wavenumbers and appear on the left side of the spectrum. The stretching absorptions of the C≡C and C≡N occur between 2100–2300 cm−1. In contrast, those arising from stretching absorptions of the...
1.1K
Spectroscopy of Carboxylic Acid Derivatives
2.6K
Infrared spectroscopy is primarily used to determine the types of bonds and functional groups. In carboxylic acid derivatives, a typical carbonyl bond absorption is observed around 1650–1850 cm−1. For esters, the absorption is recorded at around 1740 cm−1, while acid halides show the absorption at about 1800 cm−1. Another acid derivative, the acid anhydrides, exhibit two carbonyl absorption around 1760 cm−1 and 1820 cm−1, arising from the symmetrical and...
2.6K
UV–Vis Spectroscopy of Conjugated Systems
7.4K
Organic compounds with conjugated double bonds show strong absorption features in the UV–visible region of the electromagnetic spectrum attributed to π → π* electronic excitations. Generally, a UV–vis absorption spectrum is recorded as a plot of absorbance vs wavelength. The wavelength of maximum absorbance, which manifests as a peak in the absorption spectrum, is denoted as λmax.
One of the factors influencing λmax is the extent...
One of the factors influencing λmax is the extent...
7.4K


