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相关概念视频

Phase Transitions: Melting and Freezing02:39

Phase Transitions: Melting and Freezing

Heating a crystalline solid increases the average energy of its atoms, molecules, or ions, and the solid gets hotter. At some point, the added energy becomes large enough to partially overcome the forces holding the molecules or ions of the solid in their fixed positions, and the solid begins the process of transitioning to the liquid state or melting. At this point, the temperature of the solid stops rising, despite the continual input of heat, and it remains constant until all of the solid is...
Mass Spectrum01:23

Mass Spectrum

A mass spectrum is the graphical representation of the relative abundance of the charged fragments in an analyte plotted against their mass-to-charge ratio (m/z). The plot's x-axis represents the ratio of the mass of the charged fragment to the number of charges it carries. The y axis of the plot represents the relative abundance of each charged species. The relative abundance is calculated from the signal intensity of each charged species recorded at the detector. The most intense signal (the...
Mass Spectrometry: Molecular Fragmentation Overview01:20

Mass Spectrometry: Molecular Fragmentation Overview

The ionization of a molecule into a molecular ion inside the mass spectrometer causes instability in the molecule's structure due to the loss of an electron. This eventually leads to the fragmentation or breaking of some bonds in the molecule. The fragmentation occurs predominantly at specific bonds to yield relatively stable fragments.
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Mass Spectrometry: Long-Chain Alkane Fragmentation01:18

Mass Spectrometry: Long-Chain Alkane Fragmentation

The molecular ions of linear alkanes prefer to fragment at the carbon-carbon bond away from the end of the chain since the cleavage of an inner bond creates a stable carbocation and a stable radical. Consequently, the mass signals of linear alkanes feature intense peaks in the middle of the mass-to-charge ratio plot with weaker peaks on either end. The fragmentation of each carbon-carbon bond with the release of a methyl group in each splitting leads to prominent peaks in the mass spectra...
¹³C NMR: ¹H–¹³C Decoupling01:04

¹³C NMR: ¹H–¹³C Decoupling

The probability of having two carbon-13 atoms next to each other is negligible because of the low natural abundance of carbon-13. Consequently, peak splitting due to carbon-carbon spin-spin coupling is not observed in spectra. However, protons up to three sigma bonds away split the carbon signal according to the n+1 rule, resulting in complicated spectra.
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Identification and Quantification of Decomposition Mechanisms in Lithium-Ion Batteries; Input to Heat Flow Simulation for Modeling Thermal Runaway
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在长期分解过程中释放模式的全球范围的相似性.

William Parton1, Whendee L Silver, Ingrid C Burke

  • 1Natural Resource Ecology Laboratory, Colorado State University, 200 West Lake, Campus Mail 1499, Fort Collins, CO 80523-1499, USA.

Science (New York, N.Y.)
|January 20, 2007
PubMed
概括

从分解垃圾中释放的主要由初始含量和各种生态系统的剩余质量控制. 根部以线性方式释放,除了由于高紫外线辐射而导致干旱草原的例外.

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科学领域:

  • 生态生态学 生态生态学
  • 生物地质化学生物地质化学
  • 土壤科学 土壤科学

背景情况:

  • 垃圾分解对营养循环至关重要,为陆地生态系统提供必要的矿物 (N).
  • 了解释放模式是预测生态系统生产力和土壤肥沃性的关键.

研究的目的:

  • 调查各种生物体的垃圾分解过程中净释放的主要驱动因素.
  • 确定影响不同生态系统类型中动态的因素.

主要方法:

  • 进行了一项为期10年的分解实验,涉及7个生物体的21个地点.
  • 监测了叶子垃圾和根的分解,测量了释放和剩余质量.

主要成果:

  • 从叶子垃圾中释放的净主要取决于最初的组织度和剩余质量,无论气候或土壤条件如何.
  • 在高紫外线辐射下的干旱草地显示出一个例外,释放对初始含量不敏感.
  • 根表现出线性释放与分解和最小的净固定.

结论:

  • 在分解过程中净释放的全球范围的模式是可预测的,并受到分解器生理学的约束.
  • 最初的垃圾质量和环境因素显著影响陆地生态系统中的可用性.