ICOS

ICOS ATC NRT CO2 growing time series from Saclay (100.0 m)

Download
2021-02-01–2022-01-01

Deprecated data

Latest version: XlQ-JjTVcX5WNefMOldfXg_b
11676/6lxdjZ1A7G3F9w1ZimfgYz3w (link)

Automatically-produced, daily-growing (by data object deprecation) data on molar fraction of atmospheric CO2. The data starts from the last respective L2 release.

Ramonet, M., Delmotte, M. (2022). ICOS ATC NRT CO2 growing time series from Saclay (100.0 m), 2021-02-01–2022-01-01, ICOS RI, https://hdl.handle.net/11676/6lxdjZ1A7G3F9w1ZimfgYz3w
BibTex
@misc{https://hdl.handle.net/11676/6lxdjZ1A7G3F9w1ZimfgYz3w,
  author={Ramonet, Michel and Delmotte, Marc},
  title={ICOS ATC NRT CO2 growing time series from Saclay (100.0 m), 2021-02-01–2022-01-01},
  year={2022},
  url={https://hdl.handle.net/11676/6lxdjZ1A7G3F9w1ZimfgYz3w},
  publisher={Atmosphere Thematic Centre},
  copyright={http://meta.icos-cp.eu/ontologies/cpmeta/icosLicence},
  pid={11676/6lxdjZ1A7G3F9w1ZimfgYz3w}
}
RIS
TY - DATA
T1 - ICOS ATC NRT CO2 growing time series from Saclay (100.0 m), 2021-02-01–2022-01-01
ID - 11676/6lxdjZ1A7G3F9w1ZimfgYz3w
PY - 2022
UR - https://hdl.handle.net/11676/6lxdjZ1A7G3F9w1ZimfgYz3w
PB - Atmosphere Thematic Centre
AU - Ramonet, Michel
AU - Delmotte, Marc
ER - 
ICOS_ATC_NRT_SAC_2021-02-01_2022-01-01_100.0_329-395_CO2.zip
View contents
				
File Size
Loading...
116 KB (118579 bytes)
8040
1

Acquisition

2021-02-01 00:00:00
2022-01-01 23:00:00
100.0

Production

2022-01-02 11:15:37

Previewable variables

Name Value type Unit Quantity kind Preview
TIMESTAMP time instant, UTC
co2 CO2 (dry air mole fraction) µmol mol-1 portion Preview
Stdev standard deviation of gas mole fraction µmol mol-1 portion Preview
Flag quality flag
NbPoints number of points cardinal number Preview

Statistics

4
0

Submission

2022-01-02 11:15:40
2022-01-02 11:15:37

Technical information

R, U, O
zip
ea5c5d8d9d40ec6dc5f70d598a67e0633df0b1159bc78106386f0cba4330b39d
6lxdjZ1A7G3F9w1ZimfgYz3wsRWbx4EGOG8MukMws50
Lat: 48.7227, Lon: 2.142, Alt: 160.0 m
CO2 ICOS dry air mole fraction