Javascript must be enabled to continue!
The Potential Applications of Raman Spectroscopy in Unravelling Complex Palaeowildfire Ecosystems
View through CrossRef
<p>Raman spectroscopy represents a novel methodology of characterising plant-fire interactions through geological history, with enormous potential. Applications of Raman spectroscopy to charcoal have shown that this is an effective method of understanding intensity changes across palaeofire regimes. Such analyses have relied on the determination of appropriate Raman parameters, given their relationship with temperature of formation and microstructural changes in reference charcoals. Quantitative assessments of charcoal microstructure have also been successfully applied to the assessment of carbonaceous maturation under alternate thermal regimes, such as pyroclastic volcanism. Palaeowildfire systems in association with volcanism may present a complex history of thermal maturation, given interactions between detrital charcoals and volcanogenic deposition. However, whilst palaeofire and volcanic maturation of carbonaceous material are well understood individually, their interaction has yet to be characterised. Here we present the first analysis of palaeofire charcoals derived from volcanic ignition utilising Raman spectroscopy. Our results indicate that complex interactions between volcanism and palaeofire systems may be better understood by the characterisation of charcoal microstructure, alongside palaeobotanical and ecosystem studies. Understanding the unique relationship between wildfires and volcanism, and the impact that this has on the fossil record, may better assist our understanding of wildfire systems in deep history. Further still, this highlights the potential for better understanding the socioecological impacts of modern and future wildfire systems closely associated with volcanic centres.&#160;</p>
Title: The Potential Applications of Raman Spectroscopy in Unravelling Complex Palaeowildfire Ecosystems
Description:
<p>Raman spectroscopy represents a novel methodology of characterising plant-fire interactions through geological history, with enormous potential.
Applications of Raman spectroscopy to charcoal have shown that this is an effective method of understanding intensity changes across palaeofire regimes.
Such analyses have relied on the determination of appropriate Raman parameters, given their relationship with temperature of formation and microstructural changes in reference charcoals.
Quantitative assessments of charcoal microstructure have also been successfully applied to the assessment of carbonaceous maturation under alternate thermal regimes, such as pyroclastic volcanism.
Palaeowildfire systems in association with volcanism may present a complex history of thermal maturation, given interactions between detrital charcoals and volcanogenic deposition.
However, whilst palaeofire and volcanic maturation of carbonaceous material are well understood individually, their interaction has yet to be characterised.
Here we present the first analysis of palaeofire charcoals derived from volcanic ignition utilising Raman spectroscopy.
Our results indicate that complex interactions between volcanism and palaeofire systems may be better understood by the characterisation of charcoal microstructure, alongside palaeobotanical and ecosystem studies.
Understanding the unique relationship between wildfires and volcanism, and the impact that this has on the fossil record, may better assist our understanding of wildfire systems in deep history.
Further still, this highlights the potential for better understanding the socioecological impacts of modern and future wildfire systems closely associated with volcanic centres.
&#160;</p>.
Related Results
Raman spectroscopy based on plasmon waveguide prepared with mesoporous TiO2 thin film
Raman spectroscopy based on plasmon waveguide prepared with mesoporous TiO2 thin film
Gold film (40-nm-thick) sputtered on the glass substrate was decorated by using the sol-gel copolymer templated mesoporous TiO2 thin film (275-nm-thick) to fabricate the plasmon wa...
A comprehensive assessment of palaeowildfire activity across the Danian-C2 hyperthermal event by means of Raman spectroscopy-geothermometry
A comprehensive assessment of palaeowildfire activity across the Danian-C2 hyperthermal event by means of Raman spectroscopy-geothermometry
<p>Widespread intensification in wildfire activity within recent years suggests our future alongside flammable ecosystems is one of complexity and likely severity. Un...
Raman Diffusion-Ordered Spectroscopy
Raman Diffusion-Ordered Spectroscopy
The Stokes-Einstein relation, which relates the diffusion coefficient of a molecule to its hydrodynamic radius, is commonly used to determine molecular sizes in chemical analysis m...
Innovation Ecosystems in Management: An Organizing Typology
Innovation Ecosystems in Management: An Organizing Typology
The concept of an “ecosystem” is increasingly used in management and business to describe collectives of heterogeneous, yet complementary organizations who jointly create some kind...
High‐resolutionRaman Spectroscopy of Gases
High‐resolutionRaman Spectroscopy of Gases
AbstractA review of high‐resolution Raman spectroscopy of gases, including spontaneous, incoherent Raman spectroscopy, as well as of nonlinear techniques for coherent anti‐Stokes s...
Squeezing-enhanced Raman spectroscopy
Squeezing-enhanced Raman spectroscopy
AbstractThe sensitivity of classical Raman spectroscopy methods, such as coherent anti-stokes Raman spectroscopy (CARS) or stimulated Raman spectroscopy (SRS), is ultimately limite...
Raman, polarized Raman and ultraviolet resonance Raman spectroscopy of nucleic acids and their complexes
Raman, polarized Raman and ultraviolet resonance Raman spectroscopy of nucleic acids and their complexes
Abstract
Applications of Raman spectroscopy to investigate the molecular constituents of nucleic acids were initiated in the late 1960s and soon thereafter progre...
Raman elastic geobarometry: investigating cation order in omphacitic clinopyroxenes
Raman elastic geobarometry: investigating cation order in omphacitic clinopyroxenes
Omphacitic clinopyroxenes exhibit widespread occurrence in various geological settings and rock types, making them promising candidates for Raman elastic geothermobarometry applica...

