Ordination analysis in sedimentology, geochemistry and palaeoenvironment—Background, current trends and recommendations

Publication date

2021-09

Authors

Bialik, Or M.
Jarochowska, EmiliaORCID 0000-0001-8937-9405ISNI 0000000449570725
Grossowicz, Michal

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

cc_by

Abstract

Ordination is the name given to a group of methods used to analyse multiple variables without preceding hypotheses. Over the last few decades, the use of these methods in Earth science in general, and notably in analyses of sedimentary sources, has dramatically increased. However, with limited resources oriented towards Earth scientists on the topic, the application of ordination analysis is at times suboptimal and misuse by authors can occur. This text was written for researchers with little to no experience with ordination with the aim of exposing them to the utility and the pitfalls of this branch of exploratory statistics. To do so, a detailed review of three ordination methods is offered: principal component analysis, non-metric multidimensional scaling and detrended correspondence analysis. A survey of 163 publications in Earth science is presented, in which these ordination methods were used together with a summary of how, why and on what type of data ordination was used. With common mistakes outlined and misuses in those publications identified. Notably, issues were found with reproducibility, documentation, data set dimensions and transformations. Based on this survey, a recommended workflow is offered for Earth scientists who wish to apply ordination. Additionally, this article is accompanied by highly annotated R scripts for novice users to use these methods.

Keywords

clustering, DCA, dimension reduction, exploratory statistics, multivariate statistics, NMDS, PCA

Citation

Bialik, O M, Jarochowska, E & Grossowicz, M 2021, 'Ordination analysis in sedimentology, geochemistry and palaeoenvironment—Background, current trends and recommendations', The Depositional Record, vol. 7, no. 3, pp. 541-563. https://doi.org/10.1002/dep2.161