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Dataset results
79 results for “OMPS”
OMPS-NPP L2 LP USask Ozone (O3) Vertical Profile swath daily V1.1
<p>The USask OMPS-LP L2 2D Ozone v1.1 product provides ozone profile retrievals performed at the University of Saskatchewan for the central slit of the Ozone Mapping and Profiler Suite Limb Profiler (OMPS-LP) instrument on the Suomi-NPP satellite. The two-dimensional retrieval algorithm accounts for variation in the along orbital track dimension, retrieving an entire orbit simultaneously instead of treating each image independently. Ozone is retrieved from the thermal tropopause to 59 km on a 1 km grid with a vertical resolution of approximately 2 km.</p> <p>Each granule contains data from the daylight portion of each orbit measured for a full month. Spatial coverage is global (-82 to +82 degrees latitude), and there are about 14.5 orbits per day, each has typically 160 profiles with an along orbital track sampling of 125 km. The files are written using NetCDF4.</p>
Merged SCIAMACHY-OMPS limb ozone time series
<p>This data set contains the time series of merged monthly mean ozone profiles retrieved at the University of Bremen from SCIAMACHY and OMPS-LP limb observations. The merging is performed on deseasonalized anomalies, but the data set contains also the reconstructed number density time series. The data set is longitudinally resolved, with a 5° latitude and 20° longitude resolution, and a vertical grid with 3.3 km spacing. </p>
OMPS-NPP L2 LP USask Aerosol Extinction Vertical Profile swath daily V1.1
<p>The USask OMPS-LP L2 2D Aerosol v1.1 product provides stratospheric aerosol extinction retrievals performed at the University of Saskatchewan for the central slit of the Ozone Mapping and Profiler Suite Limb Profiler (OMPS-LP) instrument on the Suomi-NPP satellite. The two-dimensional retrieval algorithm accounts for variation in the along orbital track dimension, retrieving an entire orbit simultaneously instead of treating each image independently. Stratospheric aerosol is retrieved from approximately the thermal tropopause to 30 km on a 1 km grid with a vertical resolution of approximately 2 km, and is assumed to be sulfate aerosol following a log-normal particle size distribution.</p> <p>Each granule contains data from the daylight portion of each orbit measured for a full month. Spatial coverage is global (-82 to +82 degrees latitude), and there are about 14.5 orbits per day, each has typically 160 profiles with an along orbital track sampling of 125 km. The files are written using NetCDF4.</p>
Random and systematic uncertainties for OMPS-LP ozone profiles
<p>This data set contains random and systematic uncertainties for ozone profiles retrieved at the University of Bremen from OMPS-LP observations. The uncertainties are expressed in relative values and are reported as vertical profiles (every 5 km) and as a function of latitude (5 bands, i.e., SH polar, SH mid-latitude, tropics, NH mid-latitudes, NH polar) and season. The user can associate to any OMPS-LP ozone profile the uncertainty corresponding to the appropriate latitude-season bin. The description of the uncertainties is provided in the AMT paper "Assessment of the error budget for stratospheric ozone profiles retrieved from OMPS limb scatter measurements", Arosio et al. 2022.</p>
OMP_CCS_Compendium
<p>This is a CCS compendium for environmental organic micropollutants. This compendium contains a total of 9407 experimental CCS values from 4170 organic contaminants, measured by both drift tube and traveling wave ion mobility spectrometry. After the consolidation of duplicate records, 7017 CCS values were retained.</p>
OMPS-LP ozone profiles retrieved at the University of Bremen - IUP
<p>This data set includes ozone profiles retrieved at the University of Bremen (IUP) from OMPS-LP observations. The retrieval range is 8.5 to 60.5 km. The format is harmonized according to ESA CCI guidelines. For detailed information about the retrieval and the data set, see "Retrieval of ozone profiles from OMPS limb scattering observations", Arosio, C. et al. (2018).</p>
OMPS-NPP L2 LP USask Aerosol Extinction Vertical Profile swath daily V1.2
<p>The USask OMPS-LP L2 2D Aerosol v1.2 product provides stratospheric aerosol extinction retrievals performed at the University of Saskatchewan for the central slit of the Ozone Mapping and Profiler Suite Limb Profiler (OMPS-LP) instrument on the Suomi-NPP satellite. The two-dimensional retrieval algorithm accounts for variation in the along orbital track dimension, retrieving an entire orbit simultaneously instead of treating each image independently. Stratospheric aerosol is retrieved from approximately the thermal tropopause to 30 km on a 1 km grid with a vertical resolution of approximately 2 km, and is assumed to be sulfate aerosol following a log-normal particle size distribution.</p> <p>Each file contains data from the daylight portion of each orbit measured for a full day. Spatial coverage is global (-82 to +82 degrees latitude), and there are about 14.5 orbits per day, each has typically 160 profiles with an along orbital track sampling of 125 km. The files are written using NetCDF4.</p>
Full-scale MBR coupled with PAC for the removal of 232 OMPs: operating conditions, conventional pollutants, concentration of OMPs, UHPLC-QTOF-MS analysis
<p>The spreadsheet contains data regarding the operation and performance of a full-scale MBR coupled with powdered activated carbon (PAC) added inside the reactor. This hybrid system is chosen to evaluate the removal of 232 organic micropollutants (OMPs) and the potential enhancement in the removal efficiencies with the addition of PAC at a concentration of 0.1 g/L and 0.2 g/L</p><ul><li>First worksheet contains minimum, maximum, and average concentrations of conventional pollutants (COD, BOD, SST, SSV, DOC, UV254, nitrogen compounds, phosphorous, <i>E. coli</i>) in the influent and effluent of the WWTP. Methodologies adopted are also reported.</li><li>Second worksheet reports the operating conditions of the full-scale MBR as well as information about the tubular UF membranes installed. Characteristics of the PAC purchased to perform the experiments regarding the removal of OMPs are also described.</li><li>Third worksheet reports minimum, maximum and average concentration of 232 OMPs in the influent and effluent during:<ol><li>The monitoring period considering only the MBR</li><li>The experimental periods where PAC is added and maintained at a concentration of 0.1g/L and 0.2g/L inside the MBR</li></ol></li><li>Fourth worksheet contains metadata regarding the UHPLC–QTOF–MS analysis performed to evaluate the occurrence of OMPs in the influent and effluent of the WWTP. Sampling, storage and sample preparation is described, followed to LC-ESI-tandem MS analysis. LOD and LOQ are reported.</li></ul>
Video Supplement for Himes et al. (2024): "Using neural networks for near-real-time aerosol retrievals from OMPS Limb Profiler measurements"
<p>This archive contains the video supplement for</p> <p>Using neural networks for near-real-time aerosol retrievals from OMPS Limb Profiler measurements</p> <p>by Himes et al. (2024), submitted to Atmospheric Measurement Techniques. The file contains an animation of the V2.1 and NRT average retrieved extinction coefficient between 19.5--21.5 km at 997 nm for the 2024 Ruang eruptions.</p>
Research Compendium for Himes et al. (2024): "Using neural networks for near-real-time aerosol retrievals from OMPS Limb Profiler measurements"
<p>This archive is the Reproducible Research Compendium for</p> <p>Using neural networks for near-real-time aerosol retrievals from OMPS Limb Profiler measurements</p> <p>by Himes et al. (2024), submitted to Atmospheric Measurement Techniques.</p> <p>This compendium includes all files related to MARGE associated with the manuscript.</p> <p>NN model files are split into smaller files for convenience, given their sizes. To recombine the files, do, e.g., <br> cat cnn_weights_NH-LW.h5* > cnn_weights_NH-LW.h5</p> <p>User interested in running MARGE will need to clone the GitHub repo (https://github.com/exosports/MARGE), apply the patch file to checksum fc95b3c, organize the relevant files into directories as listed in the configuration files (Zenodo does not support organizing files into directory structures) and calculate the number of training, validation, and test cases to be stored in the relevant input file specified in the configuration file. MARGE is under the Reproducible Research Software License (https://planets.ucf.edu/resources/reproducible-research/software-license/). For more details on MARGE, see the User Manual on GitHub.</p>
Immunogenicity of H. Influenzae Type b PRP-OMP Vaccines in American Indian and Alaska Native Children (the HibVax Study)
ClinicalTrials.gov study NCT04978818. IPD Sharing: NO. Countries: 1. Publications: 6.
A Phase 1b/2 Study of OMP-59R5 (Tarextumab) in Combination With Nab-Paclitaxel and Gemcitabine in Subjects With Previously Untreated Stage IV Pancreatic Cancer
ClinicalTrials.gov study NCT01647828. IPD Sharing: Not stated. Countries: 1. Publications: 1.
A Study of Carboplatin and Pemetrexed Plus Demcizumab (OMP-21M18) in Subjects With Non-Squamous Non-Small Cell Lung Cancer
ClinicalTrials.gov study NCT01189968. IPD Sharing: Not stated. Countries: 3. Publications: 1.
A Dose Escalation Study of OMP-59R5 in Subjects With Solid Tumors
ClinicalTrials.gov study NCT01277146. IPD Sharing: Not stated. Countries: 1. Publications: 1.
A Study of Vantictumab (OMP-18R5) in Combination With Paclitaxel in Locally Recurrent or Metastatic Breast Cancer
ClinicalTrials.gov study NCT01973309. IPD Sharing: Not stated. Countries: 1. Publications: 1.
A Study of OMP-313M32 in Subjects With Locally Advanced or Metastatic Solid Tumors
ClinicalTrials.gov study NCT03119428. IPD Sharing: NO. Countries: 1. Publications: 1.
A Dose Escalation Study of OMP-52M51 in Subjects With Solid Tumors
ClinicalTrials.gov study NCT01778439. IPD Sharing: Not stated. Countries: 1. Publications: 1.
A Phase 1b Study of OMP-305B83 Plus Paclitaxel in Subjects With Ovarian, Peritoneal or Fallopian Tube Cancer
ClinicalTrials.gov study NCT03030287. IPD Sharing: Not stated. Countries: 1. Publications: 1.
OMPs concentration in lab-scale AnMBR
<p>The spreadsheet contains the organic micropollutants concentrations and removal efficiencies of different contaminants: iopromide (IPM), sodium diatrizoate (DTR), sulfamethoxazole (SMX), trimethoprim (TMP), iohexol (IHX), roxithromycin (RMX), sulfadiazine (SDI), metronidazole (MTZ), ampicillin (AMP), acyclovir (ACV), triclosan (TCL), diclofenac (DCF), bezafibrate (BZF), and naproxen (NPX). <br> Those pollutants were sampled from the inlet and outlet of a 5 L lab-scale anaerobic membrane bioreactor (AnMBR). </p>
EON: A Single-arm Phase II Study of Etigilimab (OMP-313M32) in Combination With Checkpoint Inhibition (Nivolumab) in Patients With Platinum-resistant, Recurrent Epithelial Ovarian Cancer
ClinicalTrials.gov study NCT05715216. IPD Sharing: Not stated. Countries: 1. Publications: 0.
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