Silicon isotopic fractionation in marine sponges: A new model for understanding silicon isotopic variations in sponges

The silicon (Si) isotope (δ30Si) composition of deep-sea sponges from near Antarctica, subantarctic waters (Tasmania Seamounts) and subtropical waters north of New Zealand vary widely between +0.87‰ and -3.40‰ (vs. NBS28). Depth profiles show that sp

Bibliographic Details
Main Authors: Wille, Martin, Sutton, Jill, Ellwood, Michael, Sambridge, Malcolm, Maher, William, Eggins, Stephen, Kelly, Michelle
Format: Article in Journal/Newspaper
Language:unknown
Published: Elsevier 2015
Subjects:
Online Access:http://hdl.handle.net/1885/34004
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spelling ftanucanberra:oai:digitalcollections.anu.edu.au:1885/34004 2023-05-15T13:38:43+02:00 Silicon isotopic fractionation in marine sponges: A new model for understanding silicon isotopic variations in sponges Wille, Martin Sutton, Jill Ellwood, Michael Sambridge, Malcolm Maher, William Eggins, Stephen Kelly, Michelle 2015-12-08T22:27:16Z http://hdl.handle.net/1885/34004 unknown Elsevier 0012-821X http://hdl.handle.net/1885/34004 Earth and Planetary Science Letters Journal article 2015 ftanucanberra 2015-12-21T23:25:57Z The silicon (Si) isotope (δ30Si) composition of deep-sea sponges from near Antarctica, subantarctic waters (Tasmania Seamounts) and subtropical waters north of New Zealand vary widely between +0.87‰ and -3.40‰ (vs. NBS28). Depth profiles show that sp Article in Journal/Newspaper Antarc* Antarctica Australian National University: ANU Digital Collections New Zealand
institution Open Polar
collection Australian National University: ANU Digital Collections
op_collection_id ftanucanberra
language unknown
description The silicon (Si) isotope (δ30Si) composition of deep-sea sponges from near Antarctica, subantarctic waters (Tasmania Seamounts) and subtropical waters north of New Zealand vary widely between +0.87‰ and -3.40‰ (vs. NBS28). Depth profiles show that sp
format Article in Journal/Newspaper
author Wille, Martin
Sutton, Jill
Ellwood, Michael
Sambridge, Malcolm
Maher, William
Eggins, Stephen
Kelly, Michelle
spellingShingle Wille, Martin
Sutton, Jill
Ellwood, Michael
Sambridge, Malcolm
Maher, William
Eggins, Stephen
Kelly, Michelle
Silicon isotopic fractionation in marine sponges: A new model for understanding silicon isotopic variations in sponges
author_facet Wille, Martin
Sutton, Jill
Ellwood, Michael
Sambridge, Malcolm
Maher, William
Eggins, Stephen
Kelly, Michelle
author_sort Wille, Martin
title Silicon isotopic fractionation in marine sponges: A new model for understanding silicon isotopic variations in sponges
title_short Silicon isotopic fractionation in marine sponges: A new model for understanding silicon isotopic variations in sponges
title_full Silicon isotopic fractionation in marine sponges: A new model for understanding silicon isotopic variations in sponges
title_fullStr Silicon isotopic fractionation in marine sponges: A new model for understanding silicon isotopic variations in sponges
title_full_unstemmed Silicon isotopic fractionation in marine sponges: A new model for understanding silicon isotopic variations in sponges
title_sort silicon isotopic fractionation in marine sponges: a new model for understanding silicon isotopic variations in sponges
publisher Elsevier
publishDate 2015
url http://hdl.handle.net/1885/34004
geographic New Zealand
geographic_facet New Zealand
genre Antarc*
Antarctica
genre_facet Antarc*
Antarctica
op_source Earth and Planetary Science Letters
op_relation 0012-821X
http://hdl.handle.net/1885/34004
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