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Featured researches published by David Walter.


Bulletin of the American Meteorological Society | 2016

ACRIDICON–CHUVA Campaign: Studying Tropical Deep Convective Clouds and Precipitation over Amazonia Using the New German Research Aircraft HALO

Manfred Wendisch; Ulrich Pöschl; Meinrat O. Andreae; Luiz A. T. Machado; Rachel I. Albrecht; Hans Schlager; Daniel Rosenfeld; Scot T. Martin; Ahmed Abdelmonem; Armin Afchine; Alessandro C. Araújo; Paulo Artaxo; Heinfried Aufmhoff; Henrique M. J. Barbosa; Stephan Borrmann; Ramon Campos Braga; Bernhard Buchholz; Micael A. Cecchini; Anja Costa; Joachim Curtius; Maximilian Dollner; Marcel Dorf; V. Dreiling; Volker Ebert; André Ehrlich; Florian Ewald; Gilberto Fisch; Andreas Fix; Fabian Frank; Daniel Fütterer

AbstractBetween 1 September and 4 October 2014, a combined airborne and ground-based measurement campaign was conducted to study tropical deep convective clouds over the Brazilian Amazon rain forest. The new German research aircraft, High Altitude and Long Range Research Aircraft (HALO), a modified Gulfstream G550, and extensive ground-based instrumentation were deployed in and near Manaus (State of Amazonas). The campaign was part of the German–Brazilian Aerosol, Cloud, Precipitation, and Radiation Interactions and Dynamics of Convective Cloud Systems–Cloud Processes of the Main Precipitation Systems in Brazil: A Contribution to Cloud Resolving Modeling and to the GPM (Global Precipitation Measurement) (ACRIDICON– CHUVA) venture to quantify aerosol–cloud–precipitation interactions and their thermodynamic, dynamic, and radiative effects by in situ and remote sensing measurements over Amazonia. The ACRIDICON–CHUVA field observations were carried out in cooperation with the second intensive operating period...


Nature | 2016

Amazon boundary layer aerosol concentration sustained by vertical transport during rainfall

Jian Wang; Radovan Krejci; Scott E. Giangrande; Chongai Kuang; Henrique M. J. Barbosa; Joel Brito; Samara Carbone; Xuguang Chi; Jennifer M. Comstock; Florian Ditas; Jošt V. Lavrič; H. E. Manninen; Fan Mei; Daniel Moran-Zuloaga; Christopher Pöhlker; Mira L. Pöhlker; Jorge Saturno; Beat Schmid; Rodrigo Augusto Ferreira de Souza; Stephen R. Springston; Jason M. Tomlinson; Tami Toto; David Walter; Daniela Wimmer; James N. Smith; Markku Kulmala; Luiz A. T. Machado; Paulo Artaxo; Meinrat O. Andreae; Tuukka Petäjä

The nucleation of atmospheric vapours is an important source of new aerosol particles that can subsequently grow to form cloud condensation nuclei in the atmosphere. Most field studies of atmospheric aerosols over continents are influenced by atmospheric vapours of anthropogenic origin (for example, ref. 2) and, in consequence, aerosol processes in pristine, terrestrial environments remain poorly understood. The Amazon rainforest is one of the few continental regions where aerosol particles and their precursors can be studied under near-natural conditions, but the origin of small aerosol particles that grow into cloud condensation nuclei in the Amazon boundary layer remains unclear. Here we present aircraft- and ground-based measurements under clean conditions during the wet season in the central Amazon basin. We find that high concentrations of small aerosol particles (with diameters of less than 50 nanometres) in the lower free troposphere are transported from the free troposphere into the boundary layer during precipitation events by strong convective downdrafts and weaker downward motions in the trailing stratiform region. This rapid vertical transport can help to maintain the population of particles in the pristine Amazon boundary layer, and may therefore influence cloud properties and climate under natural conditions.


Atmospheric Chemistry and Physics | 2017

Black and brown carbon over central Amazonia: Long-term aerosol measurements at the ATTO site

Jorge Saturno; Bruna A. Holanda; Christopher Pöhlker; Florian Ditas; Qiaoqiao Wang; Daniel Moran-Zuloaga; Joel Brito; Samara Carbone; Yafang Cheng; Xuguang Chi; Jeannine Ditas; Thorsten Hoffmann; Isabella Hrabe de Angelis; Tobias Könemann; Jošt V. Lavrič; Nan Ma; Jing Ming; Hauke Paulsen; Mira L. Pöhlker; Luciana V. Rizzo; Patrick Schlag; Hang Su; David Walter; Stefan Wolff; Yuxuan Zhang; Paulo Artaxo; Ulrich Pöschl; Meinrat O. Andreae

The Amazon rain forest is a sensitive ecosystem experiencing the combined pressures of progressing deforestation and climate change. Its atmospheric conditions oscillate between biogenic and biomass burning (BB) dominated states. The Amazon further represents one of the few remaining continental places where the atmosphere approaches pristine conditions during occasional wet season episodes. The Amazon Tall Tower Observatory (ATTO) has been established in central Amazonia to investigate the complex interactions between the rain forest ecosystem and the atmosphere. Physical and chemical aerosol properties have been analyzed continuously since 2012. This paper provides an


Atmospheric Chemistry and Physics | 2015

The Amazon Tall Tower Observatory (ATTO): overview of pilot measurements on ecosystem ecology, meteorology, trace gases, and aerosols

Meinrat O. Andreae; Otávio Costa Acevedo; Alessandro C. Araújo; Paulo Artaxo; Cybelli G. G. Barbosa; Henrique M. J. Barbosa; Joel Brito; Samara Carbone; Xuguang Chi; B. B. L. Cintra; N. F. da Silva; Nelson L. Dias; C. Q. Dias-Júnior; Florian Ditas; Reiner Ditz; Ana F. L. Godoi; Ricardo H. M. Godoi; Martin Heimann; Thorsten Hoffmann; J. Kesselmeier; Tobias Könemann; M. L. Krüger; Jost-Valentin Lavrič; Antonio O. Manzi; A. P. Lopes; D. L. Martins; E. F. Mikhailov; Daniel Moran-Zuloaga; B. W. Nelson; A. C. Nölscher


Atmospheric Chemistry and Physics | 2016

Long-term observations of cloud condensation nuclei in the Amazon rain forest - Part 1: Aerosol size distribution, hygroscopicity, and new model parametrizations for CCN prediction

Mira L. Pöhlker; Christopher Pöhlker; Florian Ditas; Thomas Klimach; Isabella Hrabe de Angelis; Alessandro C. Araújo; Joel Brito; Samara Carbone; Yafang Cheng; Xuguang Chi; Reiner Ditz; Sachin S. Gunthe; J. Kesselmeier; Tobias Könemann; Jost-Valentin Lavrič; Scot T. Martin; E. F. Mikhailov; Daniel Moran-Zuloaga; D. Rose; Jorge Saturno; Hang Su; Ryan Thalman; David Walter; Jian Wang; Stefan Wolff; Henrique M. J. Barbosa; Paulo Artaxo; Meinrat O. Andreae; Ulrich Pöschl


Atmospheric Chemistry and Physics | 2015

The Amazon Tall Tower Observatory (ATTO): overview of first results from ecosystem ecology, meteorology, trace gas, and aerosol measurements

Meinrat O. Andreae; Otávio Costa Acevedo; Alessandro C. Araújo; Paulo Artaxo; Cybelli G. G. Barbosa; Henrique M. J. Barbosa; Joel Brito; Samara Carbone; Xuguang Chi; B. B. L. Cintra; N. F. da Silva; Nelson L. Dias; C. Q. Dias-Júnior; Florian Ditas; Reiner Ditz; Ana F. L. Godoi; Ricardo H. M. Godoi; Martin Heimann; Thorsten Hoffmann; J. Kesselmeier; Tobias Könemann; M. L. Krüger; Jost-Valentin Lavrič; Antonio O. Manzi; A. P. Lopes; D. L. Martins; E. F. Mikhailov; Daniel Moran-Zuloaga; B. W. Nelson; A. C. Nölscher


Atmospheric Chemistry and Physics | 2016

Modeling investigation of light-absorbing aerosols in the Amazon Basin during the wet season

Qiaoqiao Wang; Jorge Saturno; Xuguang Chi; David Walter; Jošt V. Lavrič; Daniel Moran-Zuloaga; Florian Ditas; Christopher Pöhlker; Joel Brito; Samara Carbone; Paulo Artaxo; Meinrat O. Andreae


Atmospheric Measurement Techniques | 2016

Comparison of different aethalometer correction schemes and a reference multi-wavelength absorption technique for ambient aerosol data

Jorge Saturno; Christopher Pöhlker; D. Massabò; Joel Brito; Samara Carbone; Yafang Cheng; Xuguang Chi; Florian Ditas; Isabella Hrabě de Angelis; Daniel Moran-Zuloaga; Mira L. Pöhlker; Luciana V. Rizzo; David Walter; Qiaoqiao Wang; Paulo Artaxo; P. Prati; Meinrat O. Andreae


Atmospheric Chemistry and Physics | 2018

Land cover and its transformation in the backward trajectory footprint region of the Amazon Tall Tower Observatory

Christopher Pöhlker; David Walter; Hauke Paulsen; Tobias Könemann; Emilio Rodríguez-Caballero; Daniel Moran-Zuloaga; Joel Brito; Samara Carbone; Celine Degrendele; Viviane R. Després; Florian Ditas; Bruna A. Holanda; Johannes W. Kaiser; Gerhard Lammel; Jošt V. Lavrič; Jing Ming; Daniel Pickersgill; Mira L. Pöhlker; Maria Praß; Nina Ruckteschler; Jorge Saturno; Matthias Sörgel; Qiaoqiao Wang; Bettina Weber; Stefan Wolff; Paulo Artaxo; Ulrich Pöschl; Meinrat O. Andreae


Atmospheric Chemistry and Physics | 2013

CARIBIC DOAS observations of nitrous acid and formaldehyde in a large convective cloud

Klaus-Peter Heue; Hella Riede; David Walter; Carl A. M. Brenninkmeijer; Thomas Wagner; U. Frieß; U. Platt; A. Zahn; Greta Stratmann; H. Ziereis

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Paulo Artaxo

University of São Paulo

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Samara Carbone

University of São Paulo

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Joel Brito

University of São Paulo

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