Zobrazeno 1 - 10
of 18
pro vyhledávání: '"Nikolay, Mashyanov"'
Autor:
Nikolay Mashyanov, Vladimir Obolkin, Sergey Pogarev, Vladimir Ryzhov, Sergey Sholupov, Vladimir Potemkin, Elena Molozhnikova, Tamara Khodzher
Publikováno v:
Atmosphere, Vol 12, Iss 7, p 807 (2021)
The GMOS (Global Mercury Observation System) project has the overall goal to develop a coordinated observing system to monitor mercury on a global scale. Here we present the long-term (2011–2020) air mercury monitoring data obtained at the Listvyan
Externí odkaz:
https://doaj.org/article/10a02310670c466498339be2d629257e
Autor:
Akira Yasutake, Jin Ping Cheng, Masako Kiyono, Shimpei Uraguchi, Xiaojie Liu, Kyoko Miura, Yoshiaki Yasuda, Nikolay Mashyanov
Publikováno v:
The Scientific World Journal, Vol 11, Pp 1630-1640 (2011)
A chemical factory, using a production technology of acetaldehyde with mercury catalysis, was located southeast of Qingzhen City in Guizhou Province, China. Previous research showed heavy mercury pollution through an extensive downstream area. A curr
Externí odkaz:
https://doaj.org/article/d968a67433ad4e0fb0c95f38bab34373
Publikováno v:
Applied Geochemistry. 143:105393
Mercury (Hg) in aquatic environments accumulates in sediments in several chemical forms, both inorganic and organic, which are often determined through time-consuming selective and sequential extraction procedures. Thermal desorption technique (pyrol
Autor:
Sergey Pogarev, Tamara V. Khodzher, V. A. Obolkin, S. E. Sholupov, Nikolay Mashyanov, Elena Molozhnikova, Vladimir Potemkin, Vladimir Ryzhov
Publikováno v:
Atmosphere, Vol 12, Iss 807, p 807 (2021)
Atmosphere
Volume 12
Issue 7
Atmosphere
Volume 12
Issue 7
The GMOS (Global Mercury Observation System) project has the overall goal to develop a coordinated observing system to monitor mercury on a global scale. Here we present the long-term (2011–2020) air mercury monitoring data obtained at the Listvyan
Autor:
Mineshi Sakamoto, Hirokatsu Akagi, Flemming Nielsen, Byoung-Gwon Kim, Hing Man Chan, Dang T Hung, Keisuke Uchida, Nikolay Mashyanov, Megumi Yamamoto, Nikolai Panichev, Tomoaki Watanabe, Jun Yoshinaga, Ciprian M Cirtiu, Ranny F Herwati, Matthew D. Rand, Yasunori Ito, Koichi Haraguchi, Naoki Kaneko, Hitoshi Kodamatani, Alfrida E Suoth, Milena Horvat, Akito Matsuyama, Elena G. Panova, Hiromitsu Nagasaka, Akane Yamakawa
Publikováno v:
Haraguchi, K, Sakamoto, M, Matsuyama, A, Yamamoto, M, Hung, D T, Nagasaka, H, Uchida, K, Ito, Y, Kodamantani, H, Horvat, M, Chan, H M, Rand, M, Cirtiu, C M, Kim, B-G, Nielsen, F, Yamakawa, A, Mashyanov, N, Panichev, N, Panova, E, Watanabe, T, Kaneko, N, Yoshinaga, J, Herwati, R F, Suoth, A E & Akagi, H 2020, ' Development of Human Hair Reference Material Supporting the Biomonitoring of Methylmercury ', Analytical Sciences, vol. 36, no. 5, pp. 561-567 . https://doi.org/10.2116/analsci.19SBP07
A certified reference material. NIMD-01, was developed for the analysis of mercury speciation in human hair. We collected the hair of Vietnamese males from a barbershop in Hanoi in 2016 and prepared 1200 bottles containing 3 g of sieved and blended h
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::ecac479aa04caded19be5bb466d29593
https://portal.findresearcher.sdu.dk/da/publications/6f47e2fc-a968-41e8-ae06-86ebf536fec4
https://portal.findresearcher.sdu.dk/da/publications/6f47e2fc-a968-41e8-ae06-86ebf536fec4
Shungite is a mineraloid consisting of up to 99 % of carbon. The first deposit was found near Shunga village (Karelia, Russia) within the Paleoproterozoic host rocks. Karelian shungites represent the greatest accumulations of carbon with reserves of
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::a479fb63dacb1c3a2bba8aa471ea5c5e
https://doi.org/10.5194/egusphere-egu2020-5488
https://doi.org/10.5194/egusphere-egu2020-5488
Publikováno v:
Fuel. 203:973-980
The mercury concentration in coal varies in a wide range with the world average (the Clarke value) of 100 ppb. Mercury in coal can be represented by various forms having different matrix binding energy that govern different properties and behavior bo
Autor:
Nikolay Mashyanov
Publikováno v:
E3S Web of Conferences, Vol 225, p 01009 (2021)
Mercury naturally occurs in gas and oil deposits in a wide range of concentrations covering six orders of magnitude: up to 5 mg/m3 in natural gas and up to 600 ppm (mg/kg) in crude oil. Mercury in hydrocarbons poses a number of technological and envi
Autor:
Katarina Hansson, María del Carmen Diéguez, Francesca Sprovieri, Francesco D'Amore, Xuewu Fu, Mariantonia Bencardino, Aurélien Dommergue, Carlo Barbante, Ralf Ebinghaus, Martha Ramirez Islas, X. Feng, Andreas Weigelt, Vladimir Obolkin, Hui Zhang, Xu Yang, Hélène Angot, Ulla Hageström, John Munthe, Lynwill Martin, Sara Comero, Milena Horvat, Vernon Somerset, Olivier Magand, Warren R. L. Cairns, Nicola Pirrone, Pia Spandow, Ingvar Wängberg, Flor Arcega-Cabrera, Nikolay Mashyanov, Bernd Manfred Gawlik, Patricia Elizabeth Garcia, Chavon R Walters, E.-G. Brunke, Casper Labuschagne, Jože Kotnik, Thumeka Mkololo, Fabrizio Sena, Massimiliano Vardè
Publikováno v:
Atmospheric Chemistry and Physics
Atmospheric Chemistry and Physics, 2017, 17, pp.2689-2708. ⟨10.5194/acp-17-2689-2017⟩
Atmospheric Chemistry and Physics, Vol 17, Iss 4, Pp 2689-2708 (2017)
Sprovieri, F.; Pirrone, N.; Bencardino, M.; D\'Amore, F.; Angot, H.; Barbante, C.; Brunke, E.-G.; Arcega-Cabrera, F.; Cairns, W.; Comero, S.; Del Carmen Diéguez, M.; Dommergue, A.; Ebinghaus, R.; Bin Feng, X.; Fu, X.; Elizabeth Garcia, P.; Manfred Gawlik, B.; Hageström, U.; Hansson, K.; Horvat, M.; Kotnik, J.; Labuschagne, C.; Magand, O.; Martin, L.; Mashyanov, N.; Mkololo, T.; Munthe, J.; Obolkin, V.; Ramirez Islas, M.; Sena, F.; Somerset, V.; Spandow, P.; Vardè, M.; Walters, C.; Wängberg, I.; Weigelt, A.; Yang, X.; Zhang, H.: Five-year records of mercury wet deposition flux at GMOS sites in the Northern and Southern hemispheres. In: Atmospheric Chemistry and Physics. Vol. 17 (2017) 4, 2689-2708. (DOI: /10.5194/acp-17-2689-2017)
Atmospheric chemistry and physics
17 (2017): 2689–2708. doi:10.5194/acp-17-2689-2017
info:cnr-pdr/source/autori:Sprovieri F.; Pirrone N.; Bencardino M.; D'Amore F.; Angot H.; Barbante C.; Brunke E.-G.; Arcega-Cabrera F.; Cairns W.; Comero S.; Del Carmen Dieguez M.; Dommergue A.; Ebinghaus R.; Bin Feng X.; Fu X.; Elizabeth Garcia P.; Manfred Gawlik B.; Hagestrom U.; Hansson K.; Horvat M.; Kotnik J.; Labuschagne C.; Magand O.; Martin L.; Mashyanov N.; Mkololo T.; Munthe J.; Obolkin V.; Ramirez Islas M.; Sena F.; Somerset V.; Spandow P.; Varde M.; Walters C.; Wangberg I.; Weigelt A.; Yang X.; Zhang H./titolo:Five-year records of mercury wet deposition flux at GMOS sites in the Northern and Southern hemispheres/doi:10.5194%2Facp-17-2689-2017/rivista:Atmospheric chemistry and physics (Print)/anno:2017/pagina_da:2689/pagina_a:2708/intervallo_pagine:2689–2708/volume:17
Atmospheric Chemistry and Physics, 2017, 17, pp.2689-2708. ⟨10.5194/acp-17-2689-2017⟩
Atmospheric Chemistry and Physics, Vol 17, Iss 4, Pp 2689-2708 (2017)
Sprovieri, F.; Pirrone, N.; Bencardino, M.; D\'Amore, F.; Angot, H.; Barbante, C.; Brunke, E.-G.; Arcega-Cabrera, F.; Cairns, W.; Comero, S.; Del Carmen Diéguez, M.; Dommergue, A.; Ebinghaus, R.; Bin Feng, X.; Fu, X.; Elizabeth Garcia, P.; Manfred Gawlik, B.; Hageström, U.; Hansson, K.; Horvat, M.; Kotnik, J.; Labuschagne, C.; Magand, O.; Martin, L.; Mashyanov, N.; Mkololo, T.; Munthe, J.; Obolkin, V.; Ramirez Islas, M.; Sena, F.; Somerset, V.; Spandow, P.; Vardè, M.; Walters, C.; Wängberg, I.; Weigelt, A.; Yang, X.; Zhang, H.: Five-year records of mercury wet deposition flux at GMOS sites in the Northern and Southern hemispheres. In: Atmospheric Chemistry and Physics. Vol. 17 (2017) 4, 2689-2708. (DOI: /10.5194/acp-17-2689-2017)
Atmospheric chemistry and physics
17 (2017): 2689–2708. doi:10.5194/acp-17-2689-2017
info:cnr-pdr/source/autori:Sprovieri F.; Pirrone N.; Bencardino M.; D'Amore F.; Angot H.; Barbante C.; Brunke E.-G.; Arcega-Cabrera F.; Cairns W.; Comero S.; Del Carmen Dieguez M.; Dommergue A.; Ebinghaus R.; Bin Feng X.; Fu X.; Elizabeth Garcia P.; Manfred Gawlik B.; Hagestrom U.; Hansson K.; Horvat M.; Kotnik J.; Labuschagne C.; Magand O.; Martin L.; Mashyanov N.; Mkololo T.; Munthe J.; Obolkin V.; Ramirez Islas M.; Sena F.; Somerset V.; Spandow P.; Varde M.; Walters C.; Wangberg I.; Weigelt A.; Yang X.; Zhang H./titolo:Five-year records of mercury wet deposition flux at GMOS sites in the Northern and Southern hemispheres/doi:10.5194%2Facp-17-2689-2017/rivista:Atmospheric chemistry and physics (Print)/anno:2017/pagina_da:2689/pagina_a:2708/intervallo_pagine:2689–2708/volume:17
The atmospheric deposition of mercury (Hg) occurs via several mechanisms, including dry and wet scavenging by precipitation events. In an effort to understand the atmospheric cycling and seasonal depositional characteristics of Hg, wet deposition sam
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::3410291d9f6c1114039470c2c924045e
http://hdl.handle.net/10278/3687038
http://hdl.handle.net/10278/3687038
Autor:
Nikolay Mashyanov, Olivier Magand, Nicola Pirrone, Ralf Ebinghaus, Shaojie Song, Francesco De Simone, Ramesh Ramachandran, Aurélien Dommergue, Francesca Sprovieri, Katie A. Read, Volker Matthias, Johannes Bieser, Andrei Ryjkov, Dennis Wip, Oleg Travnikov, Noelle E. Selin, Hélène Angot, X. Feng, Mariantonia Bencardino, Ashu Dastoor, Ingvar Wängberg, Francesco D'Amore, Xin Yang, María del Carmen Diéguez, Lynwill Martin, Paulo Artaxo, Christian N. Gencarelli, Fabrizio Sena, Ian M. Hedgecock
Publikováno v:
Atmospheric chemistry and physics
17 (2017): 5271–5295. doi:10.5194/acp-17-5271-2017
info:cnr-pdr/source/autori:Travnikov O.; Angot H.; Artaxo P.; Bencardino M.; Bieser J.; D'Amore F.; Dastoor A.; De Simone F.; DIeguez M.C.; Dommergue A.; Ebinghaus R.; Bin Feng X.; Gencarelli C.N.; Hedgecock I.M.; Magand O.; Martin L.; Matthias V.; Mashyanov N.; Pirrone N.; Ramachandran R.; Alana Read K.; Ryjkov A.; Selin N.E.; Sena F.; Song S.; Sprovieri F.; Wip D.; Wangberg I.; Yang X./titolo:Multi-model study of mercury dispersion in the atmosphere: Atmospheric processes and model evaluation/doi:10.5194%2Facp-17-5271-2017/rivista:Atmospheric chemistry and physics (Print)/anno:2017/pagina_da:5271/pagina_a:5295/intervallo_pagine:5271–5295/volume:17
Travnikov, O.; Angot, H.; Artaxo, P.; Bencardino, M.; Bieser, J.; D`Àmore, F.; Dastoor, A.; De Simone, F.; del Carmen Dieguez, M.; Dommergue, A.; Ebinghaus, R.; Feng, X.B.; Gencarelli, C.N.; Hedgecock, I.M.; Magand, O.; Martin, L.; Matthias, V.; Mashyanov, N.; Pirrone, N.; Ramachandran, R.; Read, K.A.; Ryjkov, A.; Selin, N.E.; Sena, F.; Song, S.; Sprovieri, F.; Wip, D.; Waengberg, I.; Yang, X.: Multi-model study of mercury dispersion in the atmosphere: Atmospheric processes and model evaluation. In: Atmospheric Chemistry and Physics : Discussions. (2016) 924. (DOI: 10.5194/acp-2016-924)
Atmospheric Chemistry and Physics
Atmospheric Chemistry and Physics, 2017, 17, pp.5271-5295. ⟨10.5194/acp-17-5271-2017⟩
Atmospheric chemistry and physics discussion (2016). doi:10.5194/acp-2016-924, 2016
info:cnr-pdr/source/autori:Oleg Travnikov1, Hélène Angot2, Paulo Artaxo3, Mariantonia Bencardino4, Johannes Bieser5, Francesco D'Amore4, Ashu Dastoor6, Francesco De Simone4, María del Carmen Diéguez7, Aurélien Dommergue2,8, Ralf Ebinghaus5, Xin Bin Feng9, Christian N. Gencarelli4, Ian M. Hedgecock4, Olivier Magand8, Lynwill Martin10, Volker Matthias5, Nikolay Mashyanov11, Nicola Pirrone12, Ramesh Ramachandran13, Katie Alana Read14, Andrei Ryjkov6, Noelle E. Selin15,16, Fabrizio Sena17, Shaojie Song15, Francesca Sprovieri4, Dennis Wip18, Ingvar Wängberg19, and Xin Yang20/titolo:Multi-model study of mercury dispersion in the atmosphere: Atmospheric processes and model evaluation/doi:10.5194%2Facp-2016-924, 2016/rivista:Atmospheric chemistry and physics discussion/anno:2016/pagina_da:/pagina_a:/intervallo_pagine:/volume
Atmospheric Chemistry and Physics, Vol 17, Iss 8, Pp 5271-5295 (2017)
Travnikov, O.; Angot, H.; Artaxo, P.; Bencardino, M.; Bieser, J.; D`Àmore, F.; Dastoor, A.; De Simone, F.; del Carmen Dieguez, M.; Dommergue, A.; Ebinghaus, R.; Feng, X.B.; Gencarelli, C.N.; Hedgecock, I.M.; Magand, O.; Martin, L.; Matthias, V.; Mashyanov, N.; Pirrone, N.; Ramachandran, R.; Read, K.A.; Ryjkov, A.; Selin, N.E.; Sena, F.; Song, S.; Sprovieri, F.; Wip, D.; Waengberg, I.; Yang, X.: Multi-model study of mercury dispersion in the atmosphere: Atmospheric processes and model evaluation. In: Atmospheric Chemistry and Physics. Vol. 17 (2017) 8, 5271-5295. (DOI: 10.5194/acp-17-5271-2017)
Copernicus Publications
CONICET Digital (CONICET)
Consejo Nacional de Investigaciones Científicas y Técnicas
instacron:CONICET
17 (2017): 5271–5295. doi:10.5194/acp-17-5271-2017
info:cnr-pdr/source/autori:Travnikov O.; Angot H.; Artaxo P.; Bencardino M.; Bieser J.; D'Amore F.; Dastoor A.; De Simone F.; DIeguez M.C.; Dommergue A.; Ebinghaus R.; Bin Feng X.; Gencarelli C.N.; Hedgecock I.M.; Magand O.; Martin L.; Matthias V.; Mashyanov N.; Pirrone N.; Ramachandran R.; Alana Read K.; Ryjkov A.; Selin N.E.; Sena F.; Song S.; Sprovieri F.; Wip D.; Wangberg I.; Yang X./titolo:Multi-model study of mercury dispersion in the atmosphere: Atmospheric processes and model evaluation/doi:10.5194%2Facp-17-5271-2017/rivista:Atmospheric chemistry and physics (Print)/anno:2017/pagina_da:5271/pagina_a:5295/intervallo_pagine:5271–5295/volume:17
Travnikov, O.; Angot, H.; Artaxo, P.; Bencardino, M.; Bieser, J.; D`Àmore, F.; Dastoor, A.; De Simone, F.; del Carmen Dieguez, M.; Dommergue, A.; Ebinghaus, R.; Feng, X.B.; Gencarelli, C.N.; Hedgecock, I.M.; Magand, O.; Martin, L.; Matthias, V.; Mashyanov, N.; Pirrone, N.; Ramachandran, R.; Read, K.A.; Ryjkov, A.; Selin, N.E.; Sena, F.; Song, S.; Sprovieri, F.; Wip, D.; Waengberg, I.; Yang, X.: Multi-model study of mercury dispersion in the atmosphere: Atmospheric processes and model evaluation. In: Atmospheric Chemistry and Physics : Discussions. (2016) 924. (DOI: 10.5194/acp-2016-924)
Atmospheric Chemistry and Physics
Atmospheric Chemistry and Physics, 2017, 17, pp.5271-5295. ⟨10.5194/acp-17-5271-2017⟩
Atmospheric chemistry and physics discussion (2016). doi:10.5194/acp-2016-924, 2016
info:cnr-pdr/source/autori:Oleg Travnikov1, Hélène Angot2, Paulo Artaxo3, Mariantonia Bencardino4, Johannes Bieser5, Francesco D'Amore4, Ashu Dastoor6, Francesco De Simone4, María del Carmen Diéguez7, Aurélien Dommergue2,8, Ralf Ebinghaus5, Xin Bin Feng9, Christian N. Gencarelli4, Ian M. Hedgecock4, Olivier Magand8, Lynwill Martin10, Volker Matthias5, Nikolay Mashyanov11, Nicola Pirrone12, Ramesh Ramachandran13, Katie Alana Read14, Andrei Ryjkov6, Noelle E. Selin15,16, Fabrizio Sena17, Shaojie Song15, Francesca Sprovieri4, Dennis Wip18, Ingvar Wängberg19, and Xin Yang20/titolo:Multi-model study of mercury dispersion in the atmosphere: Atmospheric processes and model evaluation/doi:10.5194%2Facp-2016-924, 2016/rivista:Atmospheric chemistry and physics discussion/anno:2016/pagina_da:/pagina_a:/intervallo_pagine:/volume
Atmospheric Chemistry and Physics, Vol 17, Iss 8, Pp 5271-5295 (2017)
Travnikov, O.; Angot, H.; Artaxo, P.; Bencardino, M.; Bieser, J.; D`Àmore, F.; Dastoor, A.; De Simone, F.; del Carmen Dieguez, M.; Dommergue, A.; Ebinghaus, R.; Feng, X.B.; Gencarelli, C.N.; Hedgecock, I.M.; Magand, O.; Martin, L.; Matthias, V.; Mashyanov, N.; Pirrone, N.; Ramachandran, R.; Read, K.A.; Ryjkov, A.; Selin, N.E.; Sena, F.; Song, S.; Sprovieri, F.; Wip, D.; Waengberg, I.; Yang, X.: Multi-model study of mercury dispersion in the atmosphere: Atmospheric processes and model evaluation. In: Atmospheric Chemistry and Physics. Vol. 17 (2017) 8, 5271-5295. (DOI: 10.5194/acp-17-5271-2017)
Copernicus Publications
CONICET Digital (CONICET)
Consejo Nacional de Investigaciones Científicas y Técnicas
instacron:CONICET
Current understanding of mercury (Hg) behaviour in the atmosphere contains significant gaps. Some key characteristics of Hg processes including anthropogenic and geogenic emissions, atmospheric chemistry, and air-surface exchange are still poorly kno
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::4c6c23ece0b8934120bf95add7c9dfc4
https://publications.cnr.it/doc/372754
https://publications.cnr.it/doc/372754