HOLOCENE TRENDS IN BIOGENIC SILICA REVEALED BY FTIR SPECTROSCOPY APPLIED TO A LAKE SEDIMENT RECORD FROM NORTHERN NORWAY

Reconstructing Holocene climate of the North Atlantic provides valuable context for evaluating broader Northern Hemisphere changes because of the region’s significant ocean and atmosphere circulation systems. One approach to reconstructing past climate change is by assessing lake productivity, which...

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Main Author: Walker, Caitlin
Format: Text
Language:unknown
Published: W&M ScholarWorks 2021
Subjects:
Online Access:https://scholarworks.wm.edu/geologyseniors/16
https://scholarworks.wm.edu/context/geologyseniors/article/1020/viewcontent/CaitlinWalker_GeologyThesis.pdf
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spelling ftwilliammarycol:oai:scholarworks.wm.edu:geologyseniors-1020 2023-06-11T04:13:51+02:00 HOLOCENE TRENDS IN BIOGENIC SILICA REVEALED BY FTIR SPECTROSCOPY APPLIED TO A LAKE SEDIMENT RECORD FROM NORTHERN NORWAY Walker, Caitlin 2021-04-01T07:00:00Z application/pdf https://scholarworks.wm.edu/geologyseniors/16 https://scholarworks.wm.edu/context/geologyseniors/article/1020/viewcontent/CaitlinWalker_GeologyThesis.pdf unknown W&M ScholarWorks https://scholarworks.wm.edu/geologyseniors/16 https://scholarworks.wm.edu/context/geologyseniors/article/1020/viewcontent/CaitlinWalker_GeologyThesis.pdf Geology Senior Theses Geology text 2021 ftwilliammarycol 2023-05-04T17:48:10Z Reconstructing Holocene climate of the North Atlantic provides valuable context for evaluating broader Northern Hemisphere changes because of the region’s significant ocean and atmosphere circulation systems. One approach to reconstructing past climate change is by assessing lake productivity, which can be linked to atmospheric temperatures or landscape dynamics. In this project, we measured fluctuations in biogenic silica (BSi) in an 11,000-year-old lake sediment core from the Lofoten Islands, Norway by Fourier-Transform Infrared Spectroscopy (FTIRS). Dried and ground samples mixed with KBr were scanned on a Thermo Scientific Nicolet iS10 FTIRS with a Praying Mantis diffuse reflectivity accessory over wavelengths 650-1300 cm^-1. The area under the absorbance curve was integrated over wavelengths 1000-1250 cm^-1, which are associated with the vibrational energy of Si-O bonds. Absorbance values were calibrated to biogenic silica using select samples processed via conventional chemical digestion techniques. Reproducibility of FTIRS-BSi was evaluated by measuring six samples ranging in BSi biweekly, which show an average standard deviation of 1- 3 in %BSi. FTIRS-BSi data show a strong relationship to data acquired using conventional methods and display significant Holocene variation. The record shows a general increasing trend of BSi abundance, ranging from 9.5% to 26.9%. Low BSi trends in the early Holocene, 11-10 ka, likely reflect low lake productivity in response to cooler conditions and early landscape development following deglaciation. Increasing values from 10-6 ka correspond with an increase in lake productivity that reflect higher insolation and warmer summer temperatures during the Holocene Thermal Optimum. The late Holocene is characterized by a steady, gradual increase in BSi, deviating from regional temperature records that show cooling. This likely indicates that late Holocene BSi-inferred lake productivity at this site is not controlled by temperatures but may be more influenced by catchment-derived ... Text Lofoten North Atlantic Northern Norway W&M ScholarWorks Lofoten Low Lake ENVELOPE(142.677,142.677,-66.993,-66.993) Norway
institution Open Polar
collection W&M ScholarWorks
op_collection_id ftwilliammarycol
language unknown
topic Geology
spellingShingle Geology
Walker, Caitlin
HOLOCENE TRENDS IN BIOGENIC SILICA REVEALED BY FTIR SPECTROSCOPY APPLIED TO A LAKE SEDIMENT RECORD FROM NORTHERN NORWAY
topic_facet Geology
description Reconstructing Holocene climate of the North Atlantic provides valuable context for evaluating broader Northern Hemisphere changes because of the region’s significant ocean and atmosphere circulation systems. One approach to reconstructing past climate change is by assessing lake productivity, which can be linked to atmospheric temperatures or landscape dynamics. In this project, we measured fluctuations in biogenic silica (BSi) in an 11,000-year-old lake sediment core from the Lofoten Islands, Norway by Fourier-Transform Infrared Spectroscopy (FTIRS). Dried and ground samples mixed with KBr were scanned on a Thermo Scientific Nicolet iS10 FTIRS with a Praying Mantis diffuse reflectivity accessory over wavelengths 650-1300 cm^-1. The area under the absorbance curve was integrated over wavelengths 1000-1250 cm^-1, which are associated with the vibrational energy of Si-O bonds. Absorbance values were calibrated to biogenic silica using select samples processed via conventional chemical digestion techniques. Reproducibility of FTIRS-BSi was evaluated by measuring six samples ranging in BSi biweekly, which show an average standard deviation of 1- 3 in %BSi. FTIRS-BSi data show a strong relationship to data acquired using conventional methods and display significant Holocene variation. The record shows a general increasing trend of BSi abundance, ranging from 9.5% to 26.9%. Low BSi trends in the early Holocene, 11-10 ka, likely reflect low lake productivity in response to cooler conditions and early landscape development following deglaciation. Increasing values from 10-6 ka correspond with an increase in lake productivity that reflect higher insolation and warmer summer temperatures during the Holocene Thermal Optimum. The late Holocene is characterized by a steady, gradual increase in BSi, deviating from regional temperature records that show cooling. This likely indicates that late Holocene BSi-inferred lake productivity at this site is not controlled by temperatures but may be more influenced by catchment-derived ...
format Text
author Walker, Caitlin
author_facet Walker, Caitlin
author_sort Walker, Caitlin
title HOLOCENE TRENDS IN BIOGENIC SILICA REVEALED BY FTIR SPECTROSCOPY APPLIED TO A LAKE SEDIMENT RECORD FROM NORTHERN NORWAY
title_short HOLOCENE TRENDS IN BIOGENIC SILICA REVEALED BY FTIR SPECTROSCOPY APPLIED TO A LAKE SEDIMENT RECORD FROM NORTHERN NORWAY
title_full HOLOCENE TRENDS IN BIOGENIC SILICA REVEALED BY FTIR SPECTROSCOPY APPLIED TO A LAKE SEDIMENT RECORD FROM NORTHERN NORWAY
title_fullStr HOLOCENE TRENDS IN BIOGENIC SILICA REVEALED BY FTIR SPECTROSCOPY APPLIED TO A LAKE SEDIMENT RECORD FROM NORTHERN NORWAY
title_full_unstemmed HOLOCENE TRENDS IN BIOGENIC SILICA REVEALED BY FTIR SPECTROSCOPY APPLIED TO A LAKE SEDIMENT RECORD FROM NORTHERN NORWAY
title_sort holocene trends in biogenic silica revealed by ftir spectroscopy applied to a lake sediment record from northern norway
publisher W&M ScholarWorks
publishDate 2021
url https://scholarworks.wm.edu/geologyseniors/16
https://scholarworks.wm.edu/context/geologyseniors/article/1020/viewcontent/CaitlinWalker_GeologyThesis.pdf
long_lat ENVELOPE(142.677,142.677,-66.993,-66.993)
geographic Lofoten
Low Lake
Norway
geographic_facet Lofoten
Low Lake
Norway
genre Lofoten
North Atlantic
Northern Norway
genre_facet Lofoten
North Atlantic
Northern Norway
op_source Geology Senior Theses
op_relation https://scholarworks.wm.edu/geologyseniors/16
https://scholarworks.wm.edu/context/geologyseniors/article/1020/viewcontent/CaitlinWalker_GeologyThesis.pdf
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