Disappearance and alteration process of charcoal fragments in cumulative soils studied using Raman spectroscopy
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- Type
- article
- Published
- 2017-01-01
- Cited by
- 34
- References
- 75
- Access
- Open access
- OpenAlex
- https://openalex.org/W2531353156
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:132085322
Keywords
Charcoal, Soil water, Chemistry, Raman spectroscopy, Environmental chemistry
References
- Charcoal morphometry for paleoecological analysis: The effects of fuel type and transportation on morphological parameters
- Reflectance measurements and the temperature of formation of modern charcoals and implications for studies of fusain
- Hydrogen content estimation of hydrogenated amorphous carbon by visible Raman
- Microscopical Observations of Recent and Fossil Charcoal
- Towards a global assessment of pyrogenic carbon from vegetation fires
- The taphonomy of charcoal following a recent heathland fire and some implications for the interpretation of fossil charcoal deposits
- A reconsideration of the relationship between the crystallite size La of carbons determined by X-ray diffraction and Raman spectroscopy
- Black carbon-possible source of highly aromatic components of soil humic acids
- Physico-chemical and functional characteristics of soil charcoal produced at five different temperatures
- Variability in oxidative degradation of charcoal: Influence of production conditions and environmental exposure
- Hydrogen quantification in hydrogenated amorphous carbon films by infrared, Raman, and x-ray absorption near edge spectroscopies
- FERNS AND FIRES: EXPERIMENTAL CHARRING OF FERNS COMPARED TO WOOD AND IMPLICATIONS FOR PALEOBIOLOGY, PALEOECOLOGY, COAL PETROLOGY, AND ISOTOPE GEOCHEMISTRY
- Structural characterization of charcoal size-fractions from a burnt Pinus pinea forest by FT-IR, Raman and surface-enhanced Raman spectroscopies
- Do All Carbonized Charcoals Have the Same Chemical Structure? 2. A Model of the Chemical Structure of Carbonized Charcoal†
- The Pre-Quaternary history of fire
- Stability of elemental carbon in a savanna soil
- Modern and fossil charcoal: aspects of structure and diagenesis
- Preferential erosion of black carbon on steep slopes with slash and burn agriculture
- An experimental study of charcoal degradation in a boreal forest
- Soil charcoal stability over the Holocene—Response to comments by Mikael Ohlson
Cited by
- Observations of the structural changes that occur during charcoalification: implications for identifying charcoal in the fossil record
- Function of Wildfire-Deposited Pyrogenic Carbon in Terrestrial Ecosystems
- Short‐Term Changes in Physical and Chemical Properties of Soil Charcoal Support Enhanced Landscape Mobility
- Metal(loid) immobilization in soils with biochars pyrolyzed in N2 and CO2 environments.
- Effective sorption of atrazine by biochar colloids and residues derived from different pyrolysis temperatures
- Dynamic of the structural alteration of biochar in ancient Anthrosol over a long timescale by Raman spectroscopy
- Flame retardant effect of lignin/carbon nanotubes/potassium carbonate composite coatings on cotton roving
- Falkland Island peatland development processes and the pervasive presence of fire
- Characterisation of charred organic matter in micromorphological thin sections by means of Raman spectroscopy
- Sequential SEM-EDS, PLM, and MRS Microanalysis of Individual Atmospheric Particles: A Useful Tool for Assigning Emission Sources
- The applicability of Raman spectroscopy in the assessment of palaeowildfire intensity
- 2013–2014 Survey of Chars Using Raman Spectroscopy
- Insight into the carbonaceous fraction of three cultural layers of different age from the area of Verona (NE Italy)
- Assessing the carbonisation temperatures recorded by ancient charcoals for δ13C-based palaeoclimate reconstruction
- Raman Spectroscopic Study of Pyrene in Cosmic Dust Analogues: Evolution from the Gas to the Solid Phase
- Brewer’s Spent Grain Biochar: Grinding Method Matters
- Ultra-efficient catalytic degradation of malachite green dye wastewater by KMnO4-modified biochar (Mn/SRBC)
- Highly Active Ag-Cu Nanocrystal Catalyst-Coated Brewer’s Spent Grain Biochar for the Mineralization of Methyl Orange and Methylene Blue Dye Mixture
- Hydrogeomorphic Response of Charcoals During River Transits and Its Impact on the Carbon Cycle
- Reactivity of aged biochars to the degradation of adsorbed p-nitrophenol: Role of intensity and species of persistent free radicals.
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