Search results for "Earthwork. Foundations"

showing 10 items of 44 documents

A study on the fragmentation of sulfuric acid and dimethylamine clusters inside an atmospheric pressure interface time-of-flight mass spectrometer

2022

Abstract. Sulfuric acid and dimethylamine vapours in the atmosphere can form molecular clusters, which participate in new particle formation events. In this work, we have produced, measured, and identified clusters of sulfuric acid and dimethylamine using an electrospray ionizer coupled with a planar-differential mobility analyser, connected to an atmospheric pressure interface time-of-flight mass spectrometer (ESI–DMA–APi-TOF MS). This set-up is suitable for evaluating the extent of fragmentation of the charged clusters inside the instrument. We evaluated the fragmentation of 11 negatively charged clusters both experimentally and using a statistical model based on quantum chemical data. Th…

Atmospheric Sciencedimethylamine clustersilmanpaine010504 meteorology & atmospheric sciencesamiinitrikkihapposulfuric acidTA715-787Environmental engineeringTA170-171pienhiukkaset010402 general chemistry01 natural sciences114 Physical sciencesAMINE0104 chemical sciencesilmakemiaklusteritatmospheric pressureEarthwork. Foundationsfragmentationhajoaminen (kemia)PARTICLE FORMATION0105 earth and related environmental sciencesNUCLEATION
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Application of an O-ring pinch device as a constant-pressure inlet (CPI) for airborne sampling

2020

We present a novel and compact design of a constant-pressure inlet (CPI) developed for use in airborne aerosol mass spectrometry. In particular, the inlet system is optimized for aerodynamic lenses commonly used in aerosol mass spectrometers, in which efficient focusing of aerosol particles into a vacuum chamber requires a precisely controlled lens pressure, typically of a few hectopascals. The CPI device can also be used in condensation particle counters (CPCs), cloud condensation nucleus counters (CCNCs), and gas-phase sampling instruments across a wide range of altitudes and inlet pressures. The constant pressure is achieved by changing the inner diameter of a properly scaled O-ring that…

Atmospheric SciencegeographyMaterials sciencegeography.geographical_feature_category010504 meteorology & atmospheric sciencesAtmospheric pressurelcsh:TA715-787lcsh:Earthwork. Foundations010401 analytical chemistryMechanicsInlet01 natural sciencesPressure sensorlcsh:Environmental engineering0104 chemical sciencesAerosolMass flow rateAerosol mass spectrometryVacuum chamberlcsh:TA170-171Body orifice0105 earth and related environmental sciencesAtmospheric Measurement Techniques
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Determination of n-alkanes, polycyclic aromatic hydrocarbons and hopanes in atmospheric aerosol: evaluation and comparison of thermal desorption GC-M…

2019

Organic aerosol (OA) constitutes a large fraction of fine particulate matter (PM) in the urban air. However, the chemical nature and sources of OA are not well constrained. Quantitative analysis of OA is essential for understanding the sources and atmospheric evolution of fine PM, which requires accurate quantification of some organic compounds (e.g., markers). In this study, two analytical approaches, i.e., thermal desorption (TD) gas chromatography mass spectrometry (GC-MS) and solvent extract (SE) GC-MS, were evaluated for the determination of n-alkanes, polycyclic aromatic hydrocarbons (PAHs) and hopanes in ambient aerosol. For the SE approach, the recovery obtained is 89.3 %–101…

Detection limitAtmospheric Science010504 meteorology & atmospheric sciencesCorrelation coefficientlcsh:TA715-787Chemistrylcsh:Earthwork. FoundationsThermal desorptionCoal combustion productsFraction (chemistry)Repeatability010501 environmental sciences01 natural scienceslcsh:Environmental engineeringAerosolEnvironmental chemistrylcsh:TA170-171Gas chromatography–mass spectrometry0105 earth and related environmental sciencesAtmospheric Measurement Techniques
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Bromine speciation in volcanic plumes: new in situ derivatization LC-MS method for the determination of gaseous hydrogen bromide by gas diffusion den…

2020

The chemical characterization of volcanic gas emissions gives insights into the interior of volcanoes. Monitoring of BrO/SO2-ratios has recently been correlated with changes in the activity of a volcano. BrO and SO2 can both be measured autonomously and simultaneously with the same instruments from a safe distance, making their ratio potentially a strong monitoring tool. However, BrO is not a primary emitted volcanic volatile and there exist still uncertainties about the formation of BrO in volcanic plumes, mostly due to the lack of analytical approaches for the accurate speciation of certain key compounds. This study describes a new method for the determination of the BrO precursor, the ga…

Detection limitAtmospheric ScienceBromine010504 meteorology & atmospheric sciencesElectrospray ionizationDiffusionTA715-787Analytical chemistrychemistry.chemical_elementEnvironmental engineeringTA170-17101 natural sciencesPlumechemistry.chemical_compoundchemistryEarthwork. FoundationsBromideGaseous diffusionDerivatization0105 earth and related environmental sciences
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Remote sensing of volcanic CO2, HF, HCl, SO2, and BrO in the downwind plume of Mt. Etna

2017

Remote sensing of the gaseous composition of non-eruptive, passively degassing volcanic plumes can be a tool to gain insight into volcano interior processes. Here, we report on a field study in September 2015 that demonstrates the feasibility of remotely measuring the volcanic enhancements of carbon dioxide (CO2), hydrogen fluoride (HF), hydrogen chloride (HCl), sulfur dioxide (SO2), and bromine monoxide (BrO) in the downwind plume of Mt. Etna using portable and rugged spectroscopic instrumentation. To this end, we operated the Fourier transform spectrometer EM27/SUN for the shortwave-infrared (SWIR) spectral range together with a co-mounted UV spectrometer on a mobile platform in direct-su…

Earth sciencesVulkanemissionenKohlendioxidlcsh:TA715-787Fernerkundung der Atmosphärelcsh:Earthwork. Foundationsddc:550lcsh:TA170-171Fernerkundunglcsh:Environmental engineering
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Comparison of aircraft measurements during GoAmazon2014/5 and ACRIDICON-CHUVA

2019

Abstract. The indirect effect of atmospheric aerosol particles on the Earth's radiation balance remains one of the most uncertain components affecting climate change throughout the industrial period. The large uncertainty is partly due to the incomplete understanding of aerosol–cloud interactions. One objective of the GoAmazon2014/5 and the ACRIDICON (Aerosol, Cloud, Precipitation, and Radiation Interactions and Dynamics of Convective Cloud Systems)-CHUVA (Cloud Processes of the Main Precipitation Systems in Brazil) projects was to understand the influence of emissions from the tropical megacity of Manaus (Brazil) on the surrounding atmospheric environment of the rainforest and to investiga…

Earth's energy budgetAtmospheric Science010504 meteorology & atmospheric sciencesParticle numberlcsh:TA715-787lcsh:Earthwork. FoundationsClimate change010501 environmental sciencesSolar irradianceAtmospheric sciences01 natural scienceslcsh:Environmental engineeringTrace gasAerosolddc:550Environmental scienceCloud condensation nucleiPrecipitationlcsh:TA170-1710105 earth and related environmental sciences
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Evaluation of the coupled high-resolution atmospheric chemistry model system MECO(n) using in situ and MAX-DOAS NO2 measurements

2021

We present high spatial resolution (up to 2.2×2.2 km2) simulations focussed over south-west Germany using the online coupled regional atmospheric chemistry model system MECO(n) (MESSy-fied ECHAM and COSMO models nested n times). Numerical simulation of nitrogen dioxide (NO2) surface volume mixing ratios (VMRs) are compared to in situ measurements from a network with 193 locations including background, traffic-adjacent and industrial stations to investigate the model's performance in simulating the spatial and temporal variability of short-lived chemical species. We show that the use of a high-resolution and up-to-date emission inventory is crucial for reproducing the spatial variability and…

Earthwork. FoundationsEmissionen Luftqualität NO2TA715-787ddc:550Environmental engineeringTA170-171
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Can turbulence within the field of view cause significant biases in radiative transfer modeling at the 183 GHz band?

2018

The hypothesis whether turbulence within the passive microwave sounders field of view can cause significant biases in radiative transfer modeling at the 183 GHz water vapor absorption band is tested. A novel method to calculate the effects of turbulence in radiative transfer modeling is presented. It is shown that the turbulent nature of water vapor in the atmosphere can be a critical component of radiative transfer modeling in this band. Radiative transfer simulations are performed comparing a uniform field with a turbulent one. These comparisons show frequency dependent biases which can be up to several kelvin in brightness temperature. These biases can match experimentally observe…

PhysicsAtmospheric Science010504 meteorology & atmospheric sciencesTurbulencelcsh:TA715-787lcsh:Earthwork. Foundations0211 other engineering and technologies02 engineering and technology01 natural sciencesClear-air turbulenceComputational physicslaw.inventionlcsh:Environmental engineeringPhysics::Fluid DynamicsTroposphereAtmospherelawBrightness temperatureRadiosondeRadiative transferlcsh:TA170-171Water vaporPhysics::Atmospheric and Oceanic Physics021101 geological & geomatics engineering0105 earth and related environmental sciencesAtmospheric Measurement Techniques
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HOLIMO II: a digital holographic instrument for ground-based in situ observations of microphysical properties of mixed-phase clouds

2013

Measurements of the microphysical properties of mixed-phase clouds with high spatial resolution are important to understand the processes inside these clouds. This work describes the design and characterization of the newly developed ground-based field instrument HOLIMO II (HOLographic Imager for Microscopic Objects II). HOLIMO II uses digital in-line holography to in situ image cloud particles in a well-defined sample volume. By an automated algorithm, two-dimensional images of single cloud particles between 6 and 250 μm in diameter are obtained and the size spectrum, the concentration and water content of clouds are calculated. By testing the sizing algorithm with monosized beads a system…

PhysicsAtmospheric ScienceField (physics)Ice crystals010504 meteorology & atmospheric sciencesbusiness.industrylcsh:TA715-787Resolution (electron density)lcsh:Earthwork. FoundationsHolographyCloud computing01 natural sciencesSizingCharacterization (materials science)law.inventionlcsh:Environmental engineering010309 opticslaw0103 physical scienceslcsh:TA170-171businessImage resolutionRemote sensing0105 earth and related environmental sciences
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Development of a Bioaerosol single particle detector (BIO IN) for the Fast Ice Nucleus CHamber FINCH

2010

Abstract. In this work we present the setup and first tests of our new BIO IN detector. This detector was constructed to classify atmospheric ice nuclei (IN) for their biological content. It is designed to be coupled to the Fast Ice Nucleus CHamber FINCH. If one particle acts as an ice nucleus, it will be at least partly covered with ice at the end of the development section of the FINCH chamber. The device combines an auto-fluorescence detector and a circular depolarization detector for simultaneous detection of biological material and discrimination between water droplets, ice crystals and non activated large aerosol particles. The excitation of biological material with UV light and analy…

PhysicsAtmospheric ScienceRange (particle radiation)Ice crystalsbusiness.industrylcsh:TA715-787Detectorlcsh:Earthwork. FoundationsParticle detectorlcsh:Environmental engineeringOpticsFast iceddc:550Ice nucleusParticleHalolcsh:TA170-171business
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