Data for: Inundation depth stimulates plant-mediated CH4 emissions by increasing ecosystem carbon uptake and plant height in an estuarine wetland
- DOI
- 10.5061/dryad.3n5tb2rmr
- Published
- 2022
- Container
- Not recorded
- Publisher
- Dryad
- Open access
- yes
Credibility signals
limited evidence Score 47/100 under policy 1.0.0. This is a metadata assessment, not a judgment of the paper's conclusions.
Show all credibility signals
- cautionDOI registered: No matching Crossref record was present in this response.
- cautionDOI resolves: No matching Crossref record was present in this response.
- not scoredDirectory of Open Access Journals: No matching DOAJ record was present in this response. No allow-list match; this is not evidence of low credibility.
- not scoredMEDLINE indexed: Not checked or no result supplied; no credibility inference made.
- not scoredOpenAlex core source: Not checked or no result supplied; no credibility inference made.
- not scoredKnown publisher allow-list: Not checked or no result supplied; no credibility inference made.
- not scoredROR affiliation: Not checked or no result supplied; no credibility inference made.
- not scoredRetraction Watch retraction: No retraction notice matched this DOI in the deployed snapshot. No matching event found; coverage may be incomplete.
- not scoredRetraction Watch expression of concern: No expression of concern notice matched this DOI in the deployed snapshot. No matching event found; coverage may be incomplete.
- not scoredRetraction Watch correction: No correction notice matched this DOI in the deployed snapshot. No matching event found; coverage may be incomplete.
- not scoredRetraction Watch reinstatement: No reinstatement notice matched this DOI in the deployed snapshot. No matching event found; coverage may be incomplete.
- supportingOpen access status: Normalized open-access status: open.
- supportingPublication license: A publication license was supplied: https://creativecommons.org/publicdomain/zero/1.0/legalcode. Presence improves reuse transparency, not research validity.
- not scoredPublication version: A publication version was supplied but is not scored.
- cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty.
Cite this work
BibTeX
@article{allodium:10.5061/dryad.3n5tb2rmr,
title = {Data for: Inundation depth stimulates plant-mediated CH4 emissions by increasing ecosystem carbon uptake and plant height in an estuarine wetland},
author = {Zhao, Mingliang and Li, Peiguang and Song, Weimin and Chu, Xiaojing and Eller, Franziska and Wang, Xiaojie and Liu, Jingtao and Xiao, Leilei and Wei, Siyu and Li, Xinge and Han, Guang-Xuan},
year = {2022},
doi = {10.5061/dryad.3n5tb2rmr},
url = {https://doi.org/10.5061/dryad.3n5tb2rmr}
}RIS
TY - JOUR TI - Data for: Inundation depth stimulates plant-mediated CH4 emissions by increasing ecosystem carbon uptake and plant height in an estuarine wetland AU - Zhao, Mingliang AU - Li, Peiguang AU - Song, Weimin AU - Chu, Xiaojing AU - Eller, Franziska AU - Wang, Xiaojie AU - Liu, Jingtao AU - Xiao, Leilei AU - Wei, Siyu AU - Li, Xinge AU - Han, Guang-Xuan PY - 2022 DO - 10.5061/dryad.3n5tb2rmr UR - https://doi.org/10.5061/dryad.3n5tb2rmr ER -
APA
Mingliang, Z., Peiguang, L., Weimin, S., Xiaojing, C., Franziska, E., Xiaojie, W., Jingtao, L., Leilei, X., Siyu, W., Xinge, L., & Guang-Xuan, H. (2022). Data for: Inundation depth stimulates plant-mediated CH4 emissions by increasing ecosystem carbon uptake and plant height in an estuarine wetland. https://doi.org/10.5061/dryad.3n5tb2rmr
Source records
- datacite · retrieved 2026-09-25T19:25:50.908Z