CLAM age model and pollen profile of sediment core Kohuora

Fuente: PANGAEA
Enregistré dans:
Détails bibliographiques
Auteurs principaux: ACER project members, Sanchez Goñi, Maria Fernanda, Desprat, Stéphanie, Daniau, Anne-Laure, Newnham, Rewi M, Lowe, David J, Giles, HN, Alloway, Brent V
Format: Dataset Open Access
Langue:en
Publié: PANGAEA 2017
Sujets:
Accès en ligne:
Tags: Ajouter un tag
Pas de tags, Soyez le premier à ajouter un tag!
_version_ 1867168181341126656
author ACER project members
Sanchez Goñi, Maria Fernanda
Desprat, Stéphanie
Daniau, Anne-Laure
Newnham, Rewi M
Lowe, David J
Giles, HN
Alloway, Brent V
author_facet ACER project members
Sanchez Goñi, Maria Fernanda
Desprat, Stéphanie
Daniau, Anne-Laure
Newnham, Rewi M
Lowe, David J
Giles, HN
Alloway, Brent V
collection Datos científicos de ciencias marinas y ambientales
contents
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_872829
institution PANGAEA
language en
publishDate 2017
publisher PANGAEA
record_format pangaea
spellingShingle CLAM age model and pollen profile of sediment core Kohuora
ACER project members
Sanchez Goñi, Maria Fernanda
Desprat, Stéphanie
Daniau, Anne-Laure
Newnham, Rewi M
Lowe, David J
Giles, HN
Alloway, Brent V
Abrupt Climate Changes and Environmental Responses; Accumulation model; ACER; Agathis; Alectryon; Apiaceae; Aristotelia; Ascarina; Astelia; Asteraceae; Brassicaceae; Calendar age; Calendar age, maximum/old; Calendar age, minimum/young; Calocedrus; Campanulaceae; cf. Podocarpus; Chenopodiaceae; Classical age-modeling approach, CLAM (Blaauw, 2010); Collospermum; Coprosma; Cordyline; Coriaria; Counting, palynology; Cyathea dealbata-type; Cyathea smithii-type; Cyperaceae; Dacrycarpus; Dacrydium; DEPTH, sediment/rock; Dicksonia; Dodonaea; Drosera; Dysoxylum; Elaeocarpus; Empodisma; Epacridaceae; Gentiana; Gleichenia; Goodeniaceae; Griselinia; Halocarpus; Haloragis; Hebe; Hibiscus; Hoheria; Ileostylus; Isoetes; Ixerba; Knightia; Kohuora; Lagarostrobus; Laurelia; Leptospermum-type; Leucopogon fasciculatus; Litsea; Metrosideros; Muehlenbeckia; Myoporum; Myriophyllum; Myrsine; Neomyrtus; Nestegis; Nothofagus; Nothofagus menziesii; Passiflora; Peraxilla; Phormium; Phyllocladus; Phymatosorus; Pinus; Pittosporum; Plagianthus; Plantago; Poaceae; Podocarpus; Pollen indeterminata; Polypodiales; Pomaderris; Potamogeton; Pratia; Prumnopitys; Pseudopanax; Pseudowintera; Pteridium; Quintinia; Ranunculaceae; Rhopalostylis; Ripogonum; Rubus; Sample ID; Schefflera; Sphagnum; Syzygium; Tupeia; Type of age model; Typha-type; Urticaceae; Weinmannia

title CLAM age model and pollen profile of sediment core Kohuora
topic Abrupt Climate Changes and Environmental Responses; Accumulation model; ACER; Agathis; Alectryon; Apiaceae; Aristotelia; Ascarina; Astelia; Asteraceae; Brassicaceae; Calendar age; Calendar age, maximum/old; Calendar age, minimum/young; Calocedrus; Campanulaceae; cf. Podocarpus; Chenopodiaceae; Classical age-modeling approach, CLAM (Blaauw, 2010); Collospermum; Coprosma; Cordyline; Coriaria; Counting, palynology; Cyathea dealbata-type; Cyathea smithii-type; Cyperaceae; Dacrycarpus; Dacrydium; DEPTH, sediment/rock; Dicksonia; Dodonaea; Drosera; Dysoxylum; Elaeocarpus; Empodisma; Epacridaceae; Gentiana; Gleichenia; Goodeniaceae; Griselinia; Halocarpus; Haloragis; Hebe; Hibiscus; Hoheria; Ileostylus; Isoetes; Ixerba; Knightia; Kohuora; Lagarostrobus; Laurelia; Leptospermum-type; Leucopogon fasciculatus; Litsea; Metrosideros; Muehlenbeckia; Myoporum; Myriophyllum; Myrsine; Neomyrtus; Nestegis; Nothofagus; Nothofagus menziesii; Passiflora; Peraxilla; Phormium; Phyllocladus; Phymatosorus; Pinus; Pittosporum; Plagianthus; Plantago; Poaceae; Podocarpus; Pollen indeterminata; Polypodiales; Pomaderris; Potamogeton; Pratia; Prumnopitys; Pseudopanax; Pseudowintera; Pteridium; Quintinia; Ranunculaceae; Rhopalostylis; Ripogonum; Rubus; Sample ID; Schefflera; Sphagnum; Syzygium; Tupeia; Type of age model; Typha-type; Urticaceae; Weinmannia
url https://doi.org/10.1594/PANGAEA.872829