Wideband integrated bioaerosol sensor (WIBS) hyper-fluorescent particle number concentrations measured in the Swiss container during MOSAiC 2019/2020

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Auteurs principaux: Beck, Ivo, Moallemi, Alireza, Rolo, Margarida, Quéléver, Lauriane, Jokinen, Tuija, Laurila, Tiia, Schmale, Julia
Format: Dataset Open Access
Langue:en
Publié: PANGAEA 2023
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author Beck, Ivo
Moallemi, Alireza
Rolo, Margarida
Quéléver, Lauriane
Jokinen, Tuija
Laurila, Tiia
Schmale, Julia
author_facet Beck, Ivo
Moallemi, Alireza
Rolo, Margarida
Quéléver, Lauriane
Jokinen, Tuija
Laurila, Tiia
Schmale, Julia
collection Datos científicos de ciencias marinas y ambientales
contents These datasets contain the total particle number concentrations of hyper-fluorescent particles of sizes 0.5 to 20 μm (optical diameter). The WIBS measures the size, asymmetry and fluorescence of particles with an optical diameter of 0.5 – 20 µm. Detected particles are excited by two UV flashlamps at wavelengths of 280 and 370 nm and their emitted fluorescence is measured by two photomultipliers with bandwidths of 310 - 400 nm, and 420 - 650 nm. The WIBS counts excited particles at a maximum frequency of 125 Hz, which corresponds to a maximum concentration of 2.5*104 particles/L with a sample flow of 0.3 L/min. Excited particles were classified as fluorescent if their fluorescent intensity exceeded the background intensity by three standard deviations (3σ) and as hyper-fluorescent if the fluorescent intensity exceeded the background intensity by 9σ. Excited particles with a lower fluorescent intensity were considered to be non-fluorescent. The background fluorescence was determined by measuring the fluorescent signal in the measurement chamber in absence of particles. Background measurements were performed every 26 h. The combination of two excitation wavelengths and two detector wavebands allows the classification of fluorescent particles into seven types: A, B, C, AB, AC, BC, and ABC (Perring et al. (2015); Savage et al. (2017)). For further information about the instrumental setup, refer to Heutte et al. (Submitted).
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_961123
institution PANGAEA
language en
publishDate 2023
publisher PANGAEA
record_format pangaea
spellingShingle Wideband integrated bioaerosol sensor (WIBS) hyper-fluorescent particle number concentrations measured in the Swiss container during MOSAiC 2019/2020
Beck, Ivo
Moallemi, Alireza
Rolo, Margarida
Quéléver, Lauriane
Jokinen, Tuija
Laurila, Tiia
Schmale, Julia
aerosol; Arctic aerosol; Arctic Ocean; DATE/TIME; Event label; fluorescent aerosols; LATITUDE; LONGITUDE; MOSAiC; MOSAiC_ATMOS; MOSAiC20192020; Multidisciplinary drifting Observatory for the Study of Arctic Climate; North Greenland Sea; Particle number, hyper-fluorescent; Polarstern; PS122/1; PS122/1_1-86; PS122/2; PS122/2_14-275; PS122/3; PS122/3_28-40; PS122/4; PS122/4_43-32; PS122/5; PS122/5_58-38; WIBS; Wideband integrated bioaerosol sensor
These datasets contain the total particle number concentrations of hyper-fluorescent particles of sizes 0.5 to 20 μm (optical diameter). The WIBS measures the size, asymmetry and fluorescence of particles with an optical diameter of 0.5 – 20 µm. Detected particles are excited by two UV flashlamps at wavelengths of 280 and 370 nm and their emitted fluorescence is measured by two photomultipliers with bandwidths of 310 - 400 nm, and 420 - 650 nm. The WIBS counts excited particles at a maximum frequency of 125 Hz, which corresponds to a maximum concentration of 2.5*104 particles/L with a sample flow of 0.3 L/min. Excited particles were classified as fluorescent if their fluorescent intensity exceeded the background intensity by three standard deviations (3σ) and as hyper-fluorescent if the fluorescent intensity exceeded the background intensity by 9σ. Excited particles with a lower fluorescent intensity were considered to be non-fluorescent. The background fluorescence was determined by measuring the fluorescent signal in the measurement chamber in absence of particles. Background measurements were performed every 26 h. The combination of two excitation wavelengths and two detector wavebands allows the classification of fluorescent particles into seven types: A, B, C, AB, AC, BC, and ABC (Perring et al. (2015); Savage et al. (2017)). For further information about the instrumental setup, refer to Heutte et al. (Submitted).
title Wideband integrated bioaerosol sensor (WIBS) hyper-fluorescent particle number concentrations measured in the Swiss container during MOSAiC 2019/2020
topic aerosol; Arctic aerosol; Arctic Ocean; DATE/TIME; Event label; fluorescent aerosols; LATITUDE; LONGITUDE; MOSAiC; MOSAiC_ATMOS; MOSAiC20192020; Multidisciplinary drifting Observatory for the Study of Arctic Climate; North Greenland Sea; Particle number, hyper-fluorescent; Polarstern; PS122/1; PS122/1_1-86; PS122/2; PS122/2_14-275; PS122/3; PS122/3_28-40; PS122/4; PS122/4_43-32; PS122/5; PS122/5_58-38; WIBS; Wideband integrated bioaerosol sensor
url https://doi.org/10.1594/PANGAEA.961123