Weight-to-weight conversion factors for benthic macrofauna: recent measurements from the Baltic and the North seas
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Published:2022-01-04
Issue:1
Volume:14
Page:1-4
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ISSN:1866-3516
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Container-title:Earth System Science Data
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language:en
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Short-container-title:Earth Syst. Sci. Data
Author:
Gogina Mayya, Zettler Anja, Zettler Michael L.ORCID
Abstract
Abstract. The availability of standardised biomass data is essential
for studying population dynamics, energy flows, fisheries and food web
interactions. To make the estimates of biomass consistent, weight-to-weight
conversion factors are often used, for example to translate more widely
available measurements of wet weights into required dry weights and ash-free dry weight metrics. However, for many species and groups the
widely applicable freely available conversion factors have until now remained
very rough approximations with high degree of taxonomic generalisation. To
close up this gap, here for the first time we publish the most detailed and
statically robust list of ratios of wet weight (WW), dry weight (DW) and
ash-free dry weight (AFDW). The dataset includes over 17 000 records of
single measurements for 497 taxa. Along with aggregated calculations,
enclosed reference information with sampling dates and geographical
coordinates the dataset provides a broad opportunity for reuse and
repurposing. It empowers the future user to do targeted sub-selections of
data to best combine them with their own local data, instead of only having a
single value of conversion factor per region. The dataset can thereby be
used to quantify natural variability and uncertainty. The dataset is
available via an unrestricted repository from https://doi.org/10.12754/data-2021-0002-01 (Gogina et al., 2021).
Publisher
Copernicus GmbH
Subject
General Earth and Planetary Sciences
Reference15 articles.
1. Beisiegel, K., Darr, A., Gogina, M., and Zettler, M. L.: Benefits and shortcomings
in the employment of non-destructive benthic imagery for monitoring of
hard-bottom habitats, Mar. Pollut. Bull., 121, 5–15,
https://doi.org/10.1016/j.marpolbul.2017.04.009, 2017. 2. Brey, T., Müller-Wiegmann, C., Zittier, Z. M. C., and Hagen, W.: Body
composition in aquatic organisms – A global data bank of relationships
between mass, elemental composition and energy content, J. Sea Res., 64,
334–340, 2010. 3. Gogina M., Zettler, M. L., Vanaverbeke, J., Dannheim, J., Van Hoey, G.,
Desroy, N., Wrede, A., Reiss, H., Degraer, S., Van Lancker, V., Foveau, A.,
Braeckman, U., Fiorentino, D., Holstein, J., and Birchenough, S.:
Interregional comparison of benthic ecosystem functioning: Community
bioturbation potential in four regions along the NE Atlantic shelf, Ecol.
Indic., 110, 105945, https://doi.org/10.1016/j.ecolind.2019.105945, 2020. 4. Gogina M., Zettler, A., and Zettler, M. L.: Dataset of weight-to-weight
conversion factors for benthic macrofauna of the Baltic and the North Seas,
The Leibniz Institute for Baltic Sea Research, Warnemünde [data set], https://doi.org/10.12754/data-2021-0002-01, 2021. 5. HELCOM: Manual for Marine Monitoring in the COMBINE, Programme for
monitoring of eutrophication and its effects, Annex C-8, HELCOM, available at: https://helcom.fi/media/documents (last access: 26 April 2021), 2017.
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