Forecasting ozone daily maximum levels at Santiago, Chile H Jorquera, R Pérez, A Cipriano, A Espejo, MV Letelier, G Acuña Atmospheric Environment 32 (20), 3415-3424, 1998 | 138 | 1998 |
Receptor modeling of ambient VOC at Santiago, Chile H Jorquera, B Rappenglück Atmospheric Environment 38 (25), 4243-4263, 2004 | 135 | 2004 |
Chemical speciation and source apportionment of fine particulate matter in Santiago, Chile, 2013 AM Villalobos, F Barraza, H Jorquera, JJ Schauer Science of the Total Environment 512, 133-142, 2015 | 113 | 2015 |
Potential of particle matter dry deposition on green roofs and living walls vegetation for mitigating urban atmospheric pollution in semiarid climates M Viecco, S Vera, H Jorquera, W Bustamante, J Gironás, C Dobbs, ... Sustainability 10 (7), 2431, 2018 | 100 | 2018 |
Green roofs and green walls layouts for improved urban air quality by mitigating particulate matter M Viecco, H Jorquera, A Sharma, W Bustamante, HJS Fernando, S Vera Building and Environment 204, 108120, 2021 | 93 | 2021 |
Evaluation of receptor and chemical transport models for PM10 source apportionment CA Belis, D Pernigotti, G Pirovano, O Favez, JL Jaffrezo, J Kuenen, ... Atmospheric environment: X 5, 100053, 2020 | 82 | 2020 |
Air quality at Santiago, Chile: a box modeling approach—I. Carbon monoxide, nitrogen oxides and sulfur dioxide H Jorquera Atmospheric Environment 36 (2), 315-330, 2002 | 72 | 2002 |
Indoor PM2. 5 in an urban zone with heavy wood smoke pollution: The case of Temuco, Chile H Jorquera, F Barraza, J Heyer, G Valdivia, LN Schiappacasse, ... Environmental Pollution 236, 477-487, 2018 | 71 | 2018 |
A new methodology to assess the performance and uncertainty of source apportionment models II: The results of two European intercomparison exercises CA Belis, F Karagulian, F Amato, M Almeida, P Artaxo, DCS Beddows, ... Atmospheric Environment 123, 240-250, 2015 | 71 | 2015 |
Source apportionment of ambient PM2. 5 in Santiago, Chile: 1999 and 2004 results H Jorquera, F Barraza Science of the Total Environment 435, 418-429, 2012 | 68 | 2012 |
An urban photochemistry study in Santiago de Chile B Rappenglück, R Schmitz, M Bauerfeind, F Cereceda-Balic, D Von Baer, ... Atmospheric Environment 39 (16), 2913-2931, 2005 | 67 | 2005 |
Temporal evolution of main ambient PM2. 5 sources in Santiago, Chile, from 1998 to 2012 F Barraza, F Lambert, H Jorquera, AM Villalobos, L Gallardo Atmospheric Chemistry and Physics 17 (16), 10093-10107, 2017 | 66 | 2017 |
An intervention analysis of air quality data at Santiago, Chile H Jorquera, W Palma, J Tapia Atmospheric Environment 34 (24), 4073-4084, 2000 | 61 | 2000 |
Source apportionment of PM10 and PM2. 5 in a desert region in northern Chile H Jorquera, F Barraza Science of the Total Environment 444, 327-335, 2013 | 58 | 2013 |
Wood burning pollution in southern Chile: PM2. 5 source apportionment using CMB and molecular markers AM Villalobos, F Barraza, H Jorquera, JJ Schauer Environmental Pollution 225, 514-523, 2017 | 57 | 2017 |
Indoor PM2. 5 in Santiago, Chile, spring 2012: Source apportionment and outdoor contributions F Barraza, H Jorquera, G Valdivia, LD Montoya Atmospheric Environment 94, 692-700, 2014 | 57 | 2014 |
Air quality at Santiago, Chile: a box modeling approach II. PM2. 5, coarse and PM10 particulate matter fractions H Jorquera Atmospheric Environment 36 (2), 331-344, 2002 | 51 | 2002 |
Association of Kawasaki disease with tropospheric winds in Central Chile: is wind-borne desert dust a risk factor? H Jorquera, A Borzutzky, R Hoyos-Bachiloglu, A García Environment international 78, 32-38, 2015 | 47 | 2015 |
A hybrid representation approach for modelling complex dynamic bioprocesses J Thibault, G Acuna, R Perez-Correa, H Jorquera, P Molin, E Agosin Bioprocess Engineering 22, 547-556, 2000 | 40 | 2000 |
Air-pollution modelling in an urban area: Correlating turbulent diffusion coefficients by means of an artificial neural network approach R Perez-Roa, J Castro, H Jorquera, JR Perez-Correa, V Vesovic Atmospheric Environment 40 (1), 109-125, 2006 | 39 | 2006 |