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1Academic Journal
المؤلفون: Zhou, Putian, Ganzeveld, Laurens, Taipale, Ditte, Rannik, Ullar, Rantala, Pekka, Rissanen, Matti Petteri, Chen, Dean, Boy, Michael
المساهمون: Department of Physics, Department of Forest Sciences, Micrometeorology and biogeochemical cycles
مصطلحات موضوعية: VOLATILE ORGANIC-COMPOUNDS, HENRYS LAW CONSTANTS, DRY DEPOSITION PARAMETERIZATION, GLOBAL ATMOSPHERIC BUDGET, GENERAL-CIRCULATION MODEL, SCOTS PINE FOREST, SULFURIC-ACID, TROPOSPHERIC DEGRADATION, BIDIRECTIONAL EXCHANGE, MONOTERPENE EMISSIONS, Physical sciences, Forestry
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Relation: We acknowledge the support from the Academy of Finland Centre of Excellence (project no. 307331), Maj and Tor Nessling funding, the Nordic Centre of Excellence eSTICC (project no. 57001), and the computational resources from CSC - IT Center for Science, Finland. Ditte Taipale acknowledges the support from the European Regional Development Fund (Centre of Excellence EcolChange). Matti Petteri Rissanen acknowledges the funding from the Academy of Finland (project no. 299574). Dean Chen acknowledges the China Scholarship Council (CSC) for financial support.; Zhou , P , Ganzeveld , L , Taipale , D , Rannik , U , Rantala , P , Rissanen , M P , Chen , D & Boy , M 2017 , ' Boreal forest BVOC exchange : emissions versus in-canopy sinks ' , Atmospheric Chemistry and Physics , vol. 17 , no. 23 , pp. 14309-14332 . https://doi.org/10.5194/acp-17-14309-2017; ORCID: /0000-0003-0463-8098/work/39925548; ORCID: /0000-0002-7243-0611/work/39925642; ORCID: /0000-0003-0803-7337/work/39925713; ORCID: /0000-0002-2023-2461/work/39925633; http://hdl.handle.net/10138/229859; 01421895-cb18-4027-a7f5-615e0b639100; 85037608982; 000416941000001
الاتاحة: http://hdl.handle.net/10138/229859
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2Academic Journal
المؤلفون: Stinecipher, James R., Cameron-Smith, Philip J., Blake, Nicola J., Kuai, Le, Lejeune, Bernard, Mahieu, Emmanuel, Simpson, Isobel J., Campbell, John Elliott
المساهمون: Sphères - SPHERES
المصدر: Geophysical Research Letters, 46 (24), 14912-14920 (2019-12)
مصطلحات موضوعية: carbonyl sulfide, biomass burning, atmospheric budget, atmospheric composition, long-term monitoring, atmospheric modelling, emission factor, emission ratio, trace gases, forest fire, Physical, chemical, mathematical & earth Sciences, Earth sciences & physical geography, Physique, chimie, mathématiques & sciences de la terre, Sciences de la terre & géographie physique
Relation: https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2019GL085567; urn:issn:0094-8276; urn:issn:1944-8007
URL الوصول: https://orbi.uliege.be/handle/2268/241977
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3
المؤلفون: Laurens Ganzeveld, Matti P. Rissanen, Michael Boy, Pekka Rantala, Ditte Taipale, Dean Chen, Putian Zhou, Üllar Rannik
المساهمون: Department of Physics, Department of Forest Sciences, Micrometeorology and biogeochemical cycles
المصدر: Atmospheric Chemistry and Physics 17 (2017) 23
Atmospheric Chemistry and Physics, Vol 17, Pp 14309-14332 (2017)
Atmospheric Chemistry and Physics, 17(23), 14309-14332مصطلحات موضوعية: Meteorologie en Luchtkwaliteit, Canopy, Atmospheric Science, Meteorology and Air Quality, 010504 meteorology & atmospheric sciences, Chemical transport model, Formaldehyde, GLOBAL ATMOSPHERIC BUDGET, VOLATILE ORGANIC-COMPOUNDS, SCOTS PINE FOREST, 010501 environmental sciences, 114 Physical sciences, 01 natural sciences, Chemical reaction, Sink (geography), lcsh:Chemistry, chemistry.chemical_compound, SULFURIC-ACID, MONOTERPENE EMISSIONS, DRY DEPOSITION PARAMETERIZATION, Life Science, HENRYS LAW CONSTANTS, GENERAL-CIRCULATION MODEL, Isoprene, 0105 earth and related environmental sciences, 4112 Forestry, geography, WIMEK, geography.geographical_feature_category, BIDIRECTIONAL EXCHANGE, Chemistry, Biosphere, 15. Life on land, lcsh:QC1-999, TROPOSPHERIC DEGRADATION, Deposition (aerosol physics), lcsh:QD1-999, 13. Climate action, Environmental chemistry, lcsh:Physics
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4Electronic Resource
المؤلفون: Franco, Bruno, Taraborrelli, Domenico, Schultz, Martin G.
المساهمون: BeIPD-COFUND from the University of Liège and the European Commission, sponsor, Forschungszentrum Jülich, research center
مصطلحات موضوعية: formic acid, EMAC, atmospheric budget, Physical, chemical, mathematical & earth Sciences :: Earth sciences & physical geography, Physique, chimie, mathématiques & sciences de la terre :: Sciences de la terre & géographie physique
جغرافية الموضوع: international
Relation: info:eu-repo/grantAgreement/EC/FP7/600405; Institute seminar, Mainz, Germany (28/09/2016)
URL الوصول: https://orbi.uliege.be/handle/2268/203210
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5Academic Journal
المؤلفون: Ashworth, Kirsti, Chung, Serena H., McKinney, Karena A., Liu, Ying, Munger, J. William, Martin, Scot T., Steiner, Allison L.
المساهمون: Ashworth, K (reprint author), Univ Michigan, Climate & Space Sci & Engn, Ann Arbor, MI 48109 USA., Ashworth, K (reprint author), Univ Lancaster, Lancaster Environm Ctr, Lancaster LA1 4YQ, England., Univ Michigan, Climate & Space Sci & Engn, Ann Arbor, MI 48109 USA., Washington State Univ, Dept Civil & Environm Engn, Pullman, WA 99164 USA., Harvard Univ, Dept Earth & Planetary Sci, 20 Oxford St, Cambridge, MA 02138 USA., Harvard Univ, Sch Engn & Appl Sci, Cambridge, MA 02138 USA., Univ Lancaster, Lancaster Environm Ctr, Lancaster LA1 4YQ, England., Amherst Coll, Dept Chem, Amherst, MA 01002 USA., Peking Univ, Beijing 100000, Peoples R China.
المصدر: SCI
مصطلحات موضوعية: ORGANIC-COMPOUND EMISSIONS, EDDY COVARIANCE, NITROGEN-OXIDES, FOREST CANOPY, TRACE GASES, ENVIRONMENTAL CONTROLS, STOMATAL CONDUCTANCE, ISOPRENE EMISSIONS, ATMOSPHERIC BUDGET, SEASONAL-VARIATION
Relation: ATMOSPHERIC CHEMISTRY AND PHYSICS.2016,16(24),15461-15484.; 1515948; http://hdl.handle.net/20.500.11897/458032; WOS:000391486900003
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6
المؤلفون: Jonathan E. Pleim, John T. Walker, Robin L. Dennis, Rohit Mathur
المصدر: Atmospheric Pollution Research. 1:207-214
مصطلحات موضوعية: Atmospheric Science, Atmospheric budget, Modeling, Environmental engineering, chemistry.chemical_element, Atmospheric model, STREAMS, Ammonia emission influence range, Atmospheric sciences, Pollution, Nitrogen, Atmosphere, Ammonia deposition, CMAQ, Deposition (aerosol physics), chemistry, Environmental science, Eutrophication, Waste Management and Disposal, Air quality index
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7
المؤلفون: Y. de Kluizenaar, N. Fournier, Ulrike Dragosits, Y. S. Tang, Mark A. Sutton
المساهمون: TNO Kwaliteit van Leven
المصدر: Water, Air, and Soil Pollution, 1-4, 162, 331-351
مصطلحات موضوعية: Nitrogen balance, Atmospheric chemistry, Atmospheric transport, British Isles, Air pollution, medicine.disease_cause, Atmospheric sciences, ammonia, Troposphere, Urban Development, Built Environment, comparative study, Water Science and Technology, Mathematical models, Atmospheric composition, atmospheric pollution, Ecological Modeling, article, Pollution, Nitrogen, transport kinetics, nitrogen deposition, Europe, Deposition (aerosol physics), England, Eastern Hemisphere, politics, Geosciences, Ammonium, budget, Environmental Engineering, Meteorology, Western Europe, chemistry.chemical_element, reduction, Northern Ireland, concentration process, environmental impact, Atmosphere, medicine, Environmental Chemistry, Deposition, Wales, model, Atmospheric budget, atmospheric deposition, World, United Kingdom, Scotland, chemistry, validation process, Eurasia, Environmental science, Ireland
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8
المؤلفون: A.R. van Amstel, L.H.J.M. Janssen, J.G.J. Olivier
المصدر: Environmental Science & Policy, 2, 295-314
Environmental Science & Policy 2 (1999)مصطلحات موضوعية: Emission inventories, Methane measurements, Meteorology, Geography, Planning and Development, Management, Monitoring, Policy and Law, Spatial distribution, Atmospheric sciences, Greenhouse gas, Methane, chemistry.chemical_compound, National communications, Inverse modelling, Oil and gas production, Inventory quality, Emission inventory, North sea, WIMEK, Atmospheric transport models, Atmospheric budget, Environmental Systems Analysis, chemistry, Oil production, Milieusysteemanalyse, Environmental science, Scale (map)
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9Academic Journal
المؤلفون: Aiuppa, A., Inguaggiato, S., McGonigle, A. J. S., O'Dwyer, M., Oppenheimer, C., Padgett, M. J., Rouwet, D., Valenza, M.
المساهمون: Aiuppa, A., Dipartimento Chimica e Fisica della Terra ed applicazioni, Università di Palermo, Palermo, Italy, Inguaggiato, S., Istituto Nazionale di Geofisica e Vulcanologia, Sezione Palermo, Palermo, Italia, McGonigle, A. J. S., Department of Geography, University of Cambridge, Cambridge, UK, O'Dwyer, M., Department of Physics and Astronomy, University of Glasgow, Glasgow, UK, Oppenheimer, C., Padgett, M. J., Rouwet, D., Valenza, M., #PLACEHOLDER_PARENT_METADATA_VALUE#
مصطلحات موضوعية: H2S atmospheric budget, volcanic degassing, 01. Atmosphere::01.01. Atmosphere::01.01.07. Volcanic effects, 04. Solid Earth::04.08. Volcanology::04.08.01. Gases, 04. Solid Earth::04.08. Volcanology::04.08.06. Volcano monitoring, 05. General::05.02. Data dissemination::05.02.01. Geochemical data
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Calvari (Editor), Etna, AGU Geophysical Monograph, 143, 10.1029/ 143GM09, 129-145. Allard P. (1997) Endogenous magma degassing and storage at Mount Etna. Geophys. Res. Lett, 24, 2219-2222. Allard P., Carbonelle J., Dajlevic D., Le Bronec J., Morel P., Robe M. C., Maurenas J. M., Faivre-Pierret R., Martin D., Sabroux J. C.,and Zettwoog P. (1991) Eruptive and diffuse emissions of CO2 from Mount Etna. Nature 351, 387-391. Allard P., Carbonelle J., Matrich N., Loyer H., and Zettwoog P. (1994)Sulphur output and magma degassing budget of Stromboli volcano. Nature 368, 326-330. Allard P., Aiuppa A., Loyer H., Carrot F., Gaudry A., Pinte G., Michel A., and Dongarrà G. (2000) Acid gas and metal emission rates during long-lived basalt degassing at Stromboli volcano. Geophys. Res. Lett. 27, 1207-1210. Allen A. G., Oppenheimer C., Ferm M., Baxter P. J., Horrocks L. A.,Galle B., McGonigle A. J. S., and Duffell H. J. (2002) Primary sulphate aerosol and associated emissions from Masaya Volcano, Nicaragua. J. Geophys. Res. 107-D23, doi:10.1029/2002JD002120. Ammann M. and Burtscher H. (1993) Aerosol dynamics and lightscattering properties of a volcanic plume. J. Geophys. Res. 98, 19705-19711. Andreae T. W., Andreae M. O., Bingemer H. G., and Leck C. (1993)Measurements of dymethyl sulfide and H2S over the western North Atlantic. J. Geophys. Res. 98, 23,389-23,396. Andres R. J. and Kasgnoc A. D. (1998) A time-inventory of sub-aerial volcanic sulfur emissions. J. Geophys. Res. 103, 25251-25261. Bandy A. R., Maroulis P. J., and Wilner L. A. (1982) Estimates of the fluxes of NO, SO2, H2S, CS2 and OCS from Mt. St. Helens deduced from in situ plume concentration measurements Geophys. Res. Lett. 99, 1097-1100. Bates T. S., Lamb B. K., Guenther A., Dignon J., and Stoiber R. E. (1992) Sulfur emissions to the atmosphere from natural sources. J. Atmos. Chem. 14, 315-337. Berner E. K. and Berner R. A. (1996) Global Environment: Water, Air and Geochemical Cycles. Prentice Hall Inc. Berresheim H. and Jaeschke W. (1983) The contribution of volcanoes to the global atmospheric sulfur budget. J. Geophys. Res. 88,3732-3740. Bluth G. J. S., Schnetzler C. C., Kreuger A. J., and Walter L. S. (1993)The contribution of explosive volcanism to global sulfur dioxide concentrations. Nature 366, 327-329. Bruno N., Caltabiano T., and Romano R. (1999) SO2 emissions at Mt.Etna with particular reference to the period 1993-1995. Bull. Volcanol. 60, 405-411. Bruno N., Caltabiano T., Giammanco S., and Romano R. (2001)Degassing of SO2 and CO2 at Mount Etna (Sicily) as an indicator of pre-eruptive ascent and shallow emplacement of magma. J. Volcanol. Geotherm. Res. 110, 137-153. Capasso G., Favara R., and Inguaggiato S. (1997) Chemical features and isotopic gaseous manifestation on Vulcano Island (Aeolian Island): an interpretative model of fluid circulation. Geochim. Cosmochim. Acta 61, 3425-3442. Carroll M. R. and Webster J. D. (1994) Solubilities of sulfur, noble gases, nitrogen, chlorine and fluorine in magmas. In Volatiles in Magmas (ed. M. R. Carroll and J. R. Halloway), pp. 231-279,Mineralogical Society of America. Catalbiano T. (2004) Variazioni dei flussi di SO2 nel plume dell'Etna: Relazioni con l'attività vulcanica. Proceedings of the 2004 Annual GNV Assembly, Napoli, December 20-22, 2004. Chiodini G., Cioni R., and Marini L. (1993) Reactions governing the chemistry of crater fumaroles from Vulcano Island, Italy and implications for volcanic surveillance. Appl. Geochem. 8, 357-371. Chiodini G., Cioni R., Marini L., and Panichi C. (1995) Origin of fumarolic fluids of Vulcano Island, Italy and implications for volcanic surveillance. Bull. Volcanol. 57, 99-110. Chiodini G., Frondini F., Cardellini C., Granieri D., Marini L., and Ventura G. (2001) CO2 degassing and energy release at Solfatara volcano, Campi Flegrei, Italy. J. Geophys. Res. 106, 16213-16221. Cox R. A. and Sheppard D. (1980) Reactions of OH radicals with gaseous sulphur compounds. Nature 284, 330-331. Di Liberto V., Nuccio P. M., and Paonita A. (2002) Genesis of chlorine and sulphur in fumarolic emissions at Vulcano Island (Italy): assessment of pH and redox conditions in the hydrothermal system. J. Volcanol. Geotherm. Res. 116, 137-150. Eatough D. J., Caka F. M., and Farber R. J. (1994) The conversion of SO2 to sulphate in the atmosphere. Isr. J. Chem. 34, 301-314. Edner H., Ragnarson P., Svanberg S., Wallinder E., Ferrara R., Cioni R., Raco B., and Taddeucci G. (1994) Total fluxes of sulfur dioxide from the Italian volcanoes Etna, Stromboli and Vulcano measured by differential adsorption lidar and passive differential optical adsorption spectroscopy. J. Geophys. Res. 99,8,827-838. Finnegan D. L., Kotra J. P., Hermann D. M., and Zoeller W. H. (1989)The use of 7LiOH-impregnated filters for the collection of acidic gases and analysis by instrumental neutron activation analysis. Bull. Volcanol. 51, 83-87. Francis P., Maciejewski A., Oppenheimer C., Chaffin C., and Caltabiano T. (1995) SO2:HCl ratios in the plumes from Mt. Etna and Vulcano determined by Fourier Transforms spectroscopy Geophys. Res. Lett. 22, 1717-1720. Francis P., Burton M. R., and Oppenheimer C. (1998) Remote measurements of volcanic gas compositions by solar occultation spectroscopy. Nature 396, 567-570. Galle B., Oppenheimer C., Geyer A., McGonigle A. J. S., Edmonds M.,and Horrocks L. A. (2003) A miniaturised ultraviolet spectrometer for remote sensing of SO2 fluxes: a new tool for volcano surveillance. J. Volcanol. Geotherm. Res. 119, 241-254. Garavelli A., Laviano R., and Vurro F. (1997) Sublimate deposition from hydrothermal fluids at the Fossa crater. Eur. J. Mineral. 9, 423-432. Gauthier P. J. and Le Cloarec M. F. (1998) Variability of alkali and heavy metal fluxes released by Mt. Etna volcano, Sicily, between 1991 and 1995. J. Volcanol. Geotherm. Res. 81, 311-326. Gerlach T. M. (1979) Evaluation and restoration of the 1970 volcanic gas analyses from Mount Etna, Sicily. J. Volcanol. Geotherm. Res. 6, 165-178. Gerlach T. M. (1980) Evaluation of volcanic gas analyses from Kilauea volcano. J. Volcanol. Geotherm. Res. 7, 295-317. Gerlach T. M. (1993) Oxygen buffering of Kilauea volcanic gases and the oxygen fugacity of Kilauea basalt. Geochim. Cosmochim. Acta 57, 795-814. Gerlach T. M. and Nordlie B. E. (1975) The C-O-H-S gaseous system,Part II: temperature, atomic composition and molecular equilibrium in volcanic gases. Am. J. Sci. 275, 377-394. Giammanco S., Inguaggiato S., and Valenza M. (1998) Soil and fumarole gases of Mount Etna: geochemistry and relations with volcanic activity. J. Volcanol. Geotherm. Res. 81, 297-310. Giggenbach W. F. (1975) A simple method for the collection and analysis of volcanic gas samples. Bull. Volcanol. 39, 132-145. Giggenbach W. F. (1980) Geothermal gas equilibria. Geochim. Cosmochim. Acta 44, 2021-2032. Giggenbach W. F. (1987) Redox processes governing the chemistry of fumarolic gas discharges from White Island, New Zealand. Appl. Geochem. 2, 143-161. Giggenbach W. F. (1996) Chemical composition of volcanic gases. In Monitoring and Mitigation of Volcanic Hazards (ed. R. Scarpa and R.I. Tilling), pp. 221-256. Springer Verlag. Giggenbach W. F. and Goguel R. L. (1988) Methods for the collection and analysis of geothermal and volcanic waters and gas samples. Department of Scientific and Industrial Research, Report No. CD 2387. Halmer M. M., Schmincke H.-U., and Graf H.-F. (2002) The annual volcanic gas input into the atmosphere, in particular into the stratosphere: a global data set for the past 100 years. J. Volcanol. Geotherm. Res. 115, 511-528. Hobbs P. V., Radke L. F., Eltgroth M. W., and Hegg D. A. (1981)Airborne studies of the emissions from the volcanic eruptions of Mount St. Helens Science 211, 816-818. Hobbs P. V., Tuell J. P., Hegg D. A., Radke L. F., and Eltgroth M. W. (1982) Particles and gases in the emissions from the 1980-81 eruptions of Mount St. Helens J. Geophys. Res. 87, 11062-11086. Huntingdon A. T. (1973) The collection and analysis of volcanic gases from Mount Etna. Phil. Trans. R. Soc. Lond. 274A, 119-128. Italiano F., Pecoraino G., and Nuccio P. M. (1998) Steam output from fumaroles of an active volcano: tectonic and magmatic-hydrothermal controls on the degassing system at Vulcano (Aeolian arc). J. Geophys. Res. 103, 29829-29842. Jaeschke W., Berresheim H., and Georgii H-W. (1982) Sulfur emissions from Mt. EtnaJ. Geophys. Res. 87, 7253-7261. Johnson D. A. and D. H. F. Atkins (1975) An airborne system for the sampling and analysis of sulphur dioxide and atmospheric aerosols. Atmos. Environ. 9, 825-829. Kircher B., Hirschberg M. M., and Fabian P. (1996) Small-scale chemical evolution of aircraft exhaust species at cruising altitudes. J. Geophys. Res. 101, 15169-15190. Martin D., Ardouin B., Bergametti G., Carbonelle J., Faivre-Pierret R.,Lambert G., and Le Cloarec M. F. (1986) Geochemistry of sulfur in Mt. Etna plume. J. Geophys. Res. 91, 12249-12254. Mather T. A., Allen A. G., Oppenheimer C., Pyle D. M., and McGonigle A. J. S. (2003) Size-resolved characterisation of soluble ions in the particles in the tropospheric plume of Masaya Volcano,Nicaragua: Origins and plume processing. J. Atmosph. Chem. 46,207-237. McGee K. A., Doukas M. P., and Gerlach T. M. (2001) Quiescent hydrogen sulphide and carbon dioxide degassing from Mount Baker, Washington. Geophys. Res. Lett. 28-23, 4479-4482. McGonigle A. J. S., Oppenheimer C., Galle B., Mather T. A., and Pyle D. M. (2002) Walking traverse and scanning DOAS measurements of volcanic gas emission rates. Geophys. Res. Lett. 29, doi:10.1029/2002GL015827. McGonigle A. J. S., Oppenheimer C., Galle B., Edmonds M., Caltabiano T., Salerno G., Burton M., and Mather T. A. (2003) Volcanic sulphur dioxide flux measurements at Etna, Vulcano and Stromboli obtained using an automated scanning static ultraviolet spectrometer. J. Geophys. Res. 108, doi:10.1029/2002JB002261. Métrich N. and Clocchiatti R. (1996) Sulfur abundance and its speciation in oxidized alkaline melts. Geochim. Cosmochim. Acta 60,4151-4160. Muller D. (1980) Kinetic model of atmospheric SO2 oxidation based on published data. Atmos. Environ. 14, 1067-1072. Montegrossi G., Tassi F., Vaselli O., Buccianti A., and Garofano K. (2001) Sulfur species in volcanic gases. Anal. Chem. 73, 3709-3715. Moretti R., Papale P., and Ottonello G. (2003) A model for the saturation of C-O-H-S fluids in silicate melts. In Volcanic Degassing, Special Publication 213 (ed. C. Oppenheimer et al.) pp. 81-101. Geological Society of London. Natusch D. F. S., Klonis H. B., Axelrod H. D., Teck R. J., and Lodge J. P. (1972) Sensitive method for the determination of atmospheric hydrogen sulfide. Anal. Chem. 44, 2067-2070. Nriagu J. O. (1989) A global assessment of natural sources of atmospheric trace metals. Nature 338, 47-49. Nuccio P. M. and Paonita A. (2001) Magmatic degassing of multicomponent vapors and assessment of magma depth: application to Vulcano Island (Italy). Earth Planet. Sci. Lett. 193, 467-481. Nuccio P. M., Paonita A., and Sortino F. (1999) Geochemical modeling of mixing between magmatic and hydrothermal gases: the case of Vulcano, Italy. Earth Planet. Sci. Lett. 167, 321-333. Dwyer M., Padgett M. J., McGonigle A. J. S., Oppenheimer C., and Inguaggiato S. (2003) Real time measurements of volcanic H2S/SO2 ratios by UV spectroscopy. Geophys. Res. Lett. 30, doi:10.1029/2003GL017246. Oppenheimer C. (1992) Sulphur eruptions at Volcano Pos, Costa Rica. J. of Volcanology and Geothermal Research 49, 1-21. Oppenheimer C., Francis P., and J. Stix. (1998) Depletion rates of SO2 in tropospheric volcanic plumes. Geophys. Res. Lett. 25, 2671-2674. Oppenheimer C., McGonigle A. J. S., Allard P., Wooster M. J., and Tsanev V. I. (2004) Sulfur, heat and magma budget of Erta-Ale lava lake, Ethiopia. Geology 32, 509-512. Pate J. B., Lodge J. P., and Neary M. P. (1963) The use of impregnated filters to collect traces of gases in the atmosphere. Anal. Chim. Acta 28, 341-348. Radke L. F., Hobbs P. V., and Stith J. L. (1976) Airborne measurements of gases and aerosols from volcanic vents on Mt. Baker Geophys. Res. Lett. 32, 93-96. Robock A. and Oppenheimer C. (ed.) (2003) Volcanism and the Earth's Atmosphere, AGU Geophysical Monograph, 139, doi:10.1029/139GM03. American Geophysical Union. Saltzman E. S. and Cooper D. J. (1988) Shipboard measurements of atmospheric dimethylsulfide and hydrogen sulfide in the Caribbean and Gulf of Mexico. J. Atmos. Chem. 7, 191-209. Scaillet B., Clemente B., Evans B. W., and Pischavant M. (1998)Redox control on sulfur degassing of silicic magmas. J. Geophys. Res. 103, 23,937-23,949. Seinfeld J. H. and Pandis S. N. (1998) Atmospheric Chemistry and Physics. Wiley Interscience. Sicardi L. (1955) Captazione ed analisi chimica dei gas della esalazione solfidrico-solforosa dei vulcani in fase solfatarica. Bull. Volcanol. 17, 107-112. Stoiber R. E., Malinconico L. L., and Williams S. N. (1983) Use of the correlation spectrometer at volcanos. In Forecasting Volcanic Events (ed. H. Tazieff and J-C Sabroux), pp. 425-444, Elsevier, Amsterdam. Stoiber R. E., Williams S. N., and Huebert B. (1987) Annual contribution of sulphur dioxide to the atmosphere by volcanoes. J. Volcanol. Geotherm. Res. 33, 1-8. Stumm W. and Morgan J. J. (1996) Aquatic Chemistry: Chemical Equilibria and Rates in Natural Waters. Wiley Interscience. Symonds R., Rose W. I., and Reed M. H. (1988) Contribution of Cland F-bearing gases to the atmosphere by volcanoes. Nature 334,415-418. Symonds R., Rose W. I., Bluth G. J. S., and Gerlach T. M. (1994)Volcanic-gas studies:methods, results and applications. In Volatiles in Magmas (ed. by M. 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10Academic Journal
المؤلفون: Fournier, N., Tang, Y.S., Dragosits, U., Kluizenaar, Y.de, Sutton, M.A.
المصدر: Water, Air, and Soil Pollution, 1-4, 162, 331-351
مصطلحات موضوعية: Geosciences, Ammonia, Ammonium, Deposition, England, Ireland, Scotland, Wales, Atmospheric chemistry, Atmospheric composition, Mathematical models, Atmospheric budget, Atmospheric transport, British Isles, Northern Ireland, Nitrogen, atmospheric deposition, atmospheric pollution, article, budget, comparative study, concentration process, environmental impact, model, nitrogen deposition, politics, reduction, transport kinetics, United Kingdom, validation process
Relation: uuid:848ea2c1-871f-4dc0-b5c3-d27c2cdc9e4f; 238372; http://resolver.tudelft.nl/uuid:848ea2c1-871f-4dc0-b5c3-d27c2cdc9e4f
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11
مصطلحات موضوعية: Atmospheric chemistry, Atmospheric transport, Nitrogen, British Isles, Western Europe, reduction, Northern Ireland, concentration process, ammonia, environmental impact, Urban Development, Built Environment, Deposition, comparative study, Mathematical models, Wales, model, Atmospheric budget, Atmospheric composition, Eastern Hemisphere, atmospheric deposition, atmospheric pollution, World, article, United Kingdom, transport kinetics, nitrogen deposition, Europe, England, Scotland, validation process, Eurasia, politics, Ireland, Geosciences, Ammonium, budget
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12Academic Journal
المؤلفون: Janssen, L.H.J.M., Olivier, J.G.J., van Amstel, A.R.
المصدر: Environmental Science & Policy 2 (1999) ; ISSN: 1462-9011
مصطلحات موضوعية: Atmospheric budget, Atmospheric transport models, Emission inventories, Greenhouse gas, Inventory quality, Inverse modelling, Methane, Methane measurements, National communications
وصف الملف: application/pdf
Relation: https://edepot.wur.nl/36442
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13
المؤلفون: Wolfgang Seiler, Ralf Conrad, F. Slemr
المساهمون: Publica
المصدر: Journal of Atmospheric Chemistry. 1:159-169
مصطلحات موضوعية: Hydrology, Atmospheric Science, Ammonium nitrate, Lawn, Subtropics, Nitrous oxide, equipment and supplies, N2O emission, soil, chemistry.chemical_compound, Animal science, chemistry, Soil water, Temperate climate, Urea, Environmental Chemistry, Environmental science, subtropic, atmospheric budget, nitrogen fertilizer, Morning
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14Academic Journal
المؤلفون: Seiler, W., Conrad, R., Slemr, F.
مصطلحات موضوعية: atmospheric budget, N2O emission, nitrogen fertilizer, soil, subtropic
Time: 540
Relation: Journal of atmospheric chemistry; https://publica.fraunhofer.de/handle/publica/171168