Veerle Cnudde
Biographic Data
| ID | 164247 |
|---|---|
| NAME | Veerle Cnudde |
| GIVEN NAMES | Veerle |
| FAMILY NAME | Cnudde |
| SIGNATURE | CNUDDE V |
| AFFILIATIONS | Ghent University |
| ORCID | 0000-0002-3269-5914 |
| VERIFIED | Yes |
| TOTAL WORKS | 12 |
| TOTAL CITATIONS | 36 |
| AUTHOR COUNT | 12 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2002 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 4 |
Hydrophobic surface development on heritage stones through Paracoccus denitrificans biofilms
Water is a major factor in the deterioration of stone-built heritage. Although significant advances have been made in stone-protective treatments, persistent trade-offs remain between performance, compatibility, durability, and environmental impact. This study advances bio-based conservation by investigating whether Paracoccus denitrificans biofilms can be deliberately steered to modify stone surface properties in a controlled and sustainable man…
Hawaiian beaches as natural analogues for enhanced silicate weathering of olivine
Silicate weathering induces atmospheric CO 2 sequestration through alkalinity release, which is Earth’s prime mechanism for regulating the climate. Marine enhanced rock weathering (mERW) seeks to accelerate this process by distributing fast-weathering silicate minerals like olivine in coastal environments, thus targeting deliberate carbon dioxide removal. However, the efficiency and environmental impact of mERW remain uncertain, as experimental s…
On and off the rivers: Changes in clay sourcing and preparation strategies in the Congo Basin throughout the past two millennia
Modeling Salt Behavior with Ecos/Runsalt: Terminology, Methodology, Limitations, and Solutions
Damage to porous materials in heritage buildings caused by salt mixture crystallization is driven by the surrounding environmental conditions. To understand the crystallization behavior of a mixed salt solution as a function of changing climatic conditions (i.e., relative humidity and temperature), excluding factors such as the internal pore structure, the thermodynamic model ECOS/RUNSALT is the only freeware available that requires simple input …
Thermal Alteration of Flint: An Experimental Approach to Investigate the Effect on Material Properties
Archaeological lithic assemblages are often affected by burning, as evident from severe thermal damage on these artefacts. In this study, the thermal alteration of four different flint types was investigated by performing controlled heating experiments in laboratory setting. The resulting heat alterations were afterwards compared to heating of flint samples in campfire experiments, as these correspond better to the burning conditions present duri…
Burning flint: An experimental approach to study the effect of fire on flint tools
Dropstones in Lacustrine Sediments as a Record of Snow Avalanches—A Validation of the Proxy by Combining Satellite Imagery and Varve Chronology at Kenai Lake (South-Central Alaska)
Snow avalanches cause many fatalities every year and damage local economies worldwide. The present-day climate change affects the snowpack and, thus, the properties and frequency of snow avalanches. Reconstructing snow avalanche records can help us understand past variations in avalanche frequency and their relationship to climate change. Previous avalanche records have primarily been reconstructed using dendrochronology. Here, we investigate the…
Preliminary characterization of flint raw material used on prehistoric sites in NW Belgium
This study aims at analyzing the mineralogical, chemical, and structural characteristics of flint raw material used for the production of prehistoric stone tools in NW Belgium. Understanding these characteristics is important to recognize their value for tool making and even tool use during prehistory. Due to its formation process, flint is defined by a wide variety of internal structures, chemical variations, and impurities. Moreover, alteration…
A sealed flint knapping site from the Younger Dryas in the Scheldt valley (Belgium): Bridging the gap in human occupation at the Pleistocene–Holocene transition in W Europe
Contact sponge method: Performance of a promising tool for measuring the initial water absorption
Determination of the impregnation depth of siloxanes and ethylsilicates in porous material by neutron radiography
Relearning the meaning and practice of student teaching supervision through collaborative self-study
A sealed flint knapping site from the Younger Dryas in the Scheldt valley (Belgium): Bridging the gap in human occupation at the Pleistocene–Holocene transition in W Europe
Burning flint: An experimental approach to study the effect of fire on flint tools
Thermal Alteration of Flint: An Experimental Approach to Investigate the Effect on Material Properties
Archaeological lithic assemblages are often affected by burning, as evident from severe thermal damage on these artefacts. In this study, the thermal alteration of four different flint types was investigated by performing controlled heating experiments in laboratory setting. The resulting heat alterations were afterwards compared to heating of flint samples in campfire experiments, as these correspond better to the burning conditions present duri…
Determination of the impregnation depth of siloxanes and ethylsilicates in porous material by neutron radiography
Modeling Salt Behavior with Ecos/Runsalt: Terminology, Methodology, Limitations, and Solutions
Damage to porous materials in heritage buildings caused by salt mixture crystallization is driven by the surrounding environmental conditions. To understand the crystallization behavior of a mixed salt solution as a function of changing climatic conditions (i.e., relative humidity and temperature), excluding factors such as the internal pore structure, the thermodynamic model ECOS/RUNSALT is the only freeware available that requires simple input …
Relearning the meaning and practice of student teaching supervision through collaborative self-study
Preliminary characterization of flint raw material used on prehistoric sites in NW Belgium
This study aims at analyzing the mineralogical, chemical, and structural characteristics of flint raw material used for the production of prehistoric stone tools in NW Belgium. Understanding these characteristics is important to recognize their value for tool making and even tool use during prehistory. Due to its formation process, flint is defined by a wide variety of internal structures, chemical variations, and impurities. Moreover, alteration…
Contact sponge method: Performance of a promising tool for measuring the initial water absorption
Relearning the meaning and practice of student teaching supervision through collaborative self-study
Determination of the impregnation depth of siloxanes and ethylsilicates in porous material by neutron radiography
Contact sponge method: Performance of a promising tool for measuring the initial water absorption
A sealed flint knapping site from the Younger Dryas in the Scheldt valley (Belgium): Bridging the gap in human occupation at the Pleistocene–Holocene transition in W Europe
Preliminary characterization of flint raw material used on prehistoric sites in NW Belgium
This study aims at analyzing the mineralogical, chemical, and structural characteristics of flint raw material used for the production of prehistoric stone tools in NW Belgium. Understanding these characteristics is important to recognize their value for tool making and even tool use during prehistory. Due to its formation process, flint is defined by a wide variety of internal structures, chemical variations, and impurities. Moreover, alteration…
Dropstones in Lacustrine Sediments as a Record of Snow Avalanches—A Validation of the Proxy by Combining Satellite Imagery and Varve Chronology at Kenai Lake (South-Central Alaska)
Snow avalanches cause many fatalities every year and damage local economies worldwide. The present-day climate change affects the snowpack and, thus, the properties and frequency of snow avalanches. Reconstructing snow avalanche records can help us understand past variations in avalanche frequency and their relationship to climate change. Previous avalanche records have primarily been reconstructed using dendrochronology. Here, we investigate the…
Thermal Alteration of Flint: An Experimental Approach to Investigate the Effect on Material Properties
Archaeological lithic assemblages are often affected by burning, as evident from severe thermal damage on these artefacts. In this study, the thermal alteration of four different flint types was investigated by performing controlled heating experiments in laboratory setting. The resulting heat alterations were afterwards compared to heating of flint samples in campfire experiments, as these correspond better to the burning conditions present duri…
Burning flint: An experimental approach to study the effect of fire on flint tools
Modeling Salt Behavior with Ecos/Runsalt: Terminology, Methodology, Limitations, and Solutions
Damage to porous materials in heritage buildings caused by salt mixture crystallization is driven by the surrounding environmental conditions. To understand the crystallization behavior of a mixed salt solution as a function of changing climatic conditions (i.e., relative humidity and temperature), excluding factors such as the internal pore structure, the thermodynamic model ECOS/RUNSALT is the only freeware available that requires simple input …
Hawaiian beaches as natural analogues for enhanced silicate weathering of olivine
Silicate weathering induces atmospheric CO 2 sequestration through alkalinity release, which is Earth’s prime mechanism for regulating the climate. Marine enhanced rock weathering (mERW) seeks to accelerate this process by distributing fast-weathering silicate minerals like olivine in coastal environments, thus targeting deliberate carbon dioxide removal. However, the efficiency and environmental impact of mERW remain uncertain, as experimental s…
On and off the rivers: Changes in clay sourcing and preparation strategies in the Congo Basin throughout the past two millennia
Hydrophobic surface development on heritage stones through Paracoccus denitrificans biofilms
Water is a major factor in the deterioration of stone-built heritage. Although significant advances have been made in stone-protective treatments, persistent trade-offs remain between performance, compatibility, durability, and environmental impact. This study advances bio-based conservation by investigating whether Paracoccus denitrificans biofilms can be deliberately steered to modify stone surface properties in a controlled and sustainable man…
Geography (6 works) · Geology (6 works) · Archaeology (5 works) · Building materials and conservation (4 works) · Cultural Heritage Materials Analysis (4 works) · Engineering (4 works) · Materials Science (4 works) · Chemistry (3 works) · Composite material (3 works) · Mineralogy (3 works)