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The varved succession of Crawford Lake, Milton, Ontario, Canada as a candidate Global boundary Stratotype Section and Point for the Anthropocene series

An annually laminated succession in Crawford Lake, Ontario, Canada is proposed for the Global boundary Stratotype Section and Point (GSSP) to define the Anthropocene as a series/epoch with a base dated at 1950 CE. Varve couplets of organic matter capped by calcite precipitated each summer in alkalin...

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Autores principales: McCarthy, Francine MG, Patterson, R. Timothy, Head, Martin J, Riddick, Nicholas L, Cumming, Brian F, Hamilton, Paul B, Pisaric, Michael FJ, Gushulak, A. Cale, Leavitt, Peter R, Lafond, Krysten M, Llew-Williams, Brendan, Marshall, Matthew, Heyde, Autumn, Pilkington, Paul M, Moraal, Joshua, Boyce, Joseph I, Nasser, Nawaf A, Walsh, Carling, Garvie, Monica, Roberts, Sarah, Rose, Neil L, Cundy, Andy B, Gaca, Pawel, Milton, Andy, Hajdas, Irka, Crann, Carley A, Boom, Arnoud, Finkelstein, Sarah A, McAndrews, John H
Formato: Online Artículo Texto
Lenguaje:English
Publicado: SAGE Publications 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10226010/
https://www.ncbi.nlm.nih.gov/pubmed/37255737
http://dx.doi.org/10.1177/20530196221149281
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author McCarthy, Francine MG
Patterson, R. Timothy
Head, Martin J
Riddick, Nicholas L
Cumming, Brian F
Hamilton, Paul B
Pisaric, Michael FJ
Gushulak, A. Cale
Leavitt, Peter R
Lafond, Krysten M
Llew-Williams, Brendan
Marshall, Matthew
Heyde, Autumn
Pilkington, Paul M
Moraal, Joshua
Boyce, Joseph I
Nasser, Nawaf A
Walsh, Carling
Garvie, Monica
Roberts, Sarah
Rose, Neil L
Cundy, Andy B
Gaca, Pawel
Milton, Andy
Hajdas, Irka
Crann, Carley A
Boom, Arnoud
Finkelstein, Sarah A
McAndrews, John H
author_facet McCarthy, Francine MG
Patterson, R. Timothy
Head, Martin J
Riddick, Nicholas L
Cumming, Brian F
Hamilton, Paul B
Pisaric, Michael FJ
Gushulak, A. Cale
Leavitt, Peter R
Lafond, Krysten M
Llew-Williams, Brendan
Marshall, Matthew
Heyde, Autumn
Pilkington, Paul M
Moraal, Joshua
Boyce, Joseph I
Nasser, Nawaf A
Walsh, Carling
Garvie, Monica
Roberts, Sarah
Rose, Neil L
Cundy, Andy B
Gaca, Pawel
Milton, Andy
Hajdas, Irka
Crann, Carley A
Boom, Arnoud
Finkelstein, Sarah A
McAndrews, John H
author_sort McCarthy, Francine MG
collection PubMed
description An annually laminated succession in Crawford Lake, Ontario, Canada is proposed for the Global boundary Stratotype Section and Point (GSSP) to define the Anthropocene as a series/epoch with a base dated at 1950 CE. Varve couplets of organic matter capped by calcite precipitated each summer in alkaline surface waters reflect environmental change at global to local scales. Spheroidal carbonaceous particles and nitrogen isotopes record an increase in fossil fuel combustion in the early 1950s, coinciding with early fallout from nuclear and thermonuclear testing – (239+240)Pu and (14)C:(12)C, the latter more than compensating for the effects of old carbon in this dolomitic basin. Rapid industrial expansion in the North American Great Lakes region led to enhanced leaching of terrigenous elements by acid precipitation during the Great Acceleration, and calcite precipitation was reduced, producing thin calcite laminae around the GSSP that is marked by a sharp decline in elm pollen (Dutch Elm disease). The lack of bioturbation in well-oxygenated bottom waters, supported by the absence of fossil pigments from obligately anaerobic purple sulfur bacteria, is attributed to elevated salinities and high alkalinity below the chemocline. This aerobic depositional environment, highly unusual in a meromictic lake, inhibits the mobilization of Pu, the proposed primary stratigraphic guide for the Anthropocene.
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spelling pubmed-102260102023-05-30 The varved succession of Crawford Lake, Milton, Ontario, Canada as a candidate Global boundary Stratotype Section and Point for the Anthropocene series McCarthy, Francine MG Patterson, R. Timothy Head, Martin J Riddick, Nicholas L Cumming, Brian F Hamilton, Paul B Pisaric, Michael FJ Gushulak, A. Cale Leavitt, Peter R Lafond, Krysten M Llew-Williams, Brendan Marshall, Matthew Heyde, Autumn Pilkington, Paul M Moraal, Joshua Boyce, Joseph I Nasser, Nawaf A Walsh, Carling Garvie, Monica Roberts, Sarah Rose, Neil L Cundy, Andy B Gaca, Pawel Milton, Andy Hajdas, Irka Crann, Carley A Boom, Arnoud Finkelstein, Sarah A McAndrews, John H Anthropocene Rev Article An annually laminated succession in Crawford Lake, Ontario, Canada is proposed for the Global boundary Stratotype Section and Point (GSSP) to define the Anthropocene as a series/epoch with a base dated at 1950 CE. Varve couplets of organic matter capped by calcite precipitated each summer in alkaline surface waters reflect environmental change at global to local scales. Spheroidal carbonaceous particles and nitrogen isotopes record an increase in fossil fuel combustion in the early 1950s, coinciding with early fallout from nuclear and thermonuclear testing – (239+240)Pu and (14)C:(12)C, the latter more than compensating for the effects of old carbon in this dolomitic basin. Rapid industrial expansion in the North American Great Lakes region led to enhanced leaching of terrigenous elements by acid precipitation during the Great Acceleration, and calcite precipitation was reduced, producing thin calcite laminae around the GSSP that is marked by a sharp decline in elm pollen (Dutch Elm disease). The lack of bioturbation in well-oxygenated bottom waters, supported by the absence of fossil pigments from obligately anaerobic purple sulfur bacteria, is attributed to elevated salinities and high alkalinity below the chemocline. This aerobic depositional environment, highly unusual in a meromictic lake, inhibits the mobilization of Pu, the proposed primary stratigraphic guide for the Anthropocene. SAGE Publications 2023-02-16 2023-04 /pmc/articles/PMC10226010/ /pubmed/37255737 http://dx.doi.org/10.1177/20530196221149281 Text en © The Author(s) 2023 https://creativecommons.org/licenses/by-nc/4.0/This article is distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 License (https://creativecommons.org/licenses/by-nc/4.0/) which permits non-commercial use, reproduction and distribution of the work without further permission provided the original work is attributed as specified on the SAGE and Open Access pages (https://us.sagepub.com/en-us/nam/open-access-at-sage).
spellingShingle Article
McCarthy, Francine MG
Patterson, R. Timothy
Head, Martin J
Riddick, Nicholas L
Cumming, Brian F
Hamilton, Paul B
Pisaric, Michael FJ
Gushulak, A. Cale
Leavitt, Peter R
Lafond, Krysten M
Llew-Williams, Brendan
Marshall, Matthew
Heyde, Autumn
Pilkington, Paul M
Moraal, Joshua
Boyce, Joseph I
Nasser, Nawaf A
Walsh, Carling
Garvie, Monica
Roberts, Sarah
Rose, Neil L
Cundy, Andy B
Gaca, Pawel
Milton, Andy
Hajdas, Irka
Crann, Carley A
Boom, Arnoud
Finkelstein, Sarah A
McAndrews, John H
The varved succession of Crawford Lake, Milton, Ontario, Canada as a candidate Global boundary Stratotype Section and Point for the Anthropocene series
title The varved succession of Crawford Lake, Milton, Ontario, Canada as a candidate Global boundary Stratotype Section and Point for the Anthropocene series
title_full The varved succession of Crawford Lake, Milton, Ontario, Canada as a candidate Global boundary Stratotype Section and Point for the Anthropocene series
title_fullStr The varved succession of Crawford Lake, Milton, Ontario, Canada as a candidate Global boundary Stratotype Section and Point for the Anthropocene series
title_full_unstemmed The varved succession of Crawford Lake, Milton, Ontario, Canada as a candidate Global boundary Stratotype Section and Point for the Anthropocene series
title_short The varved succession of Crawford Lake, Milton, Ontario, Canada as a candidate Global boundary Stratotype Section and Point for the Anthropocene series
title_sort varved succession of crawford lake, milton, ontario, canada as a candidate global boundary stratotype section and point for the anthropocene series
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10226010/
https://www.ncbi.nlm.nih.gov/pubmed/37255737
http://dx.doi.org/10.1177/20530196221149281
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