Dr. Isidro Alberto Perez Bartolome

Professor
University of Valladolid, Spain


Highest Degree
Ph.D. in Physical Sciences from University of Valladolid, Spain

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Biography

Dr. Isidro Alberto Perez Bartolome is currently working as Associate Professor of Applied Physics at Faculty of Science University of Valladolid, Spain. He has completed his Ph.D. in Physical Sciences from same University. He successfully supervised 3 PhD and final year project. He also participated in 14 R&D projects funded through competitive calls of public or private entities, and 4 R&D non-competitive contracts, agreements or projects with public or private entities. He has published 67 research articles in journals and book chapter as well as 46 papers in national and international conferences contributed as author/co-author.

Area of Interest:

Environmental Sciences
Meteorological Studies
Pollution Research
Total Environment
Forest Meteorology

Selected Publications

  1. Pérez, I.A., M.L. Sánchez, M.Á. García, N. Pardo and B. Fernández-Duque, 2019. Influence of dataset density on CO2 and CH4 trend calculation. Air Qual. Atmos. Health, 12: 613-625.
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  2. Pérez, I.A., M.L. Sánchez, M.Á. García, N. Pardo and B. Fernández-Duque, 2019. CO2 spatio-temporal analysis in the Iberian Peninsula. Sci. Total Environ., 686: 322-331.
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  3. Pérez, I.A., M.L. Sánchez, M. García and N. Pardo, 2019. Sensitivity of CO2 and CH4 annual cycles to different meteorological variables at a rural site in Northern Spain. Adv. Meteorol., Vol. 2019. 10.1155/2019/9240568.
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  4. García, M.Á., M.L. Sánchez, A. de los Ríos, I.A. Pérez, N. Pardo and B. Fernández-Duque, 2019. Analysis of PM10 and PM2.5 concentrations in an urban atmosphere in Northern Spain. Arch. Environ. Contamin. Toxicol., 76: 331-345.
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  5. García, M.A. and I.A. Pérez, 2019. Lower atmosphere meteorology. Atmosphere, 10: 1-3.

  6. Fernández-Duque, B., I.A. Pérez, M.A. García, N. Pardo and M.L. Sánchez, 2019. Annual and seasonal cycles of CO2 and CH4 in a mediterranean spanish environment using different kernel functions. Stochastic Environ. Res. Risk Assess., 33: 915-930.

  7. Pérez, I.A., M.L. Sánchez, M.Á. García, N. Pardo and B. Fernández‐Duque, 2018. Analysis of the airflow at the centre of the upper plateau on the Iberian Peninsula and its link to CO2 and CH4 concentrations. Int. J. Climatol., 38: 2126-2137.
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  8. Pérez, I.A., M.L. Sánchez, M.Á. García, N. Pardo and B. Fernández-Duque, 2018. The influence of meteorological variables on CO2 and CH4 trends recorded at a semi-natural station. J. Environ. Manage., 209: 37-45.
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  9. Pérez, I.A., M.L. Sánchez, M.Á. García and N. Pardo, 2018. Influence of air parcel trajectories on CO2 and CH4 concentrations in the Northern plateau of the Iberian Peninsula. J. Atmos. Solar-Terrestrial Phys., 167: 58-65.
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  10. Pardo, N., M.L. Sánchez, Z. Su, I.A. Pérez and M.A. García, 2018. SCOPE model applied for rapeseed in Spain. Sci. Total Environ., 627: 417-426.
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  11. Pérez, I.A., M.L. Sánchez, M.A. García and N. Pardo, 2017. Boundaries of air mass trajectory clustering: Key points and applications. Int. J. Environ. Sci. Technol., 14: 653-662.
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  12. Perez, I.A., M.l. Snchez, M.A. Garcia and N. Pardo, 2017. Trend analysis of CO2 and CH4 recorded at a semi-natural site in the northern plateau of the Iberian Peninsula. Atmos. Environ., 151: 24-33.
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  13. Herrero-Novoa, C., I.A. Pérez, M.L. Sánchez, M.Á. García, N. Pardo and B. Fernández-Duque, 2017. Wind speed description and power density in Northern Spain. Energy, 138: 967-976.
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  14. Fernández-Duque, B., I.A. Pérez, M.L. Sánchez, M.Á. García and N. Pardo, 2017. Temporal patterns of CO2 and CH4 in a rural area in northern Spain described by a harmonic equation over 2010-2016. Sci. Total Environ., 593-594: 1-9.
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  15. Perez, I.A., M.l. Snchez, M.A. Garcia and N. Pardo, 2016. Features of the annual evolution of CO2 and CH4 in the atmosphere of a Mediterranean climate site studied using a nonparametric and a harmonic function. Atmos. Pollut. Res., 7: 1013-1021.
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  16. Garcia, M.A., M.l. Snchez, I.A. Perez, M.l. Ozores and N. Pardo, 2016. Influence of atmospheric stability and transport on CH4 concentrations in northern Spain. Sci. Total Environ., 550: 157-166.
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  17. Sanchez, M.L., N. Pardo, I.A. Perez and M. A. Garcia, 2015. GPP and maximum light use efficiency estimates using different approaches over a rotating biodiesel crop. Agric. For. Meteorol., 214–215,: 444-455.
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  18. Perez, I.A., M.l. Snchez, M.A. Garcia and N. Pardo, 2015. Daily patterns of CO2 in the lower atmosphere of a rural site. Theor. Appl. Climatol., 122: 195-205.
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  19. Perez, I.A., M.l. Snchez, M.A. Garcia and N. Pardo, 2015. Analysis of air mass trajectories in the northern plateau of the Iberian Peninsula. J. Atmos. Sol. Terr. Phys., 134: 9-21.
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  20. Perez, I.A., M.l. Snchez, M.A. Garcia and N. Pardo, 2015. An experimental relationship between airflow and carbon dioxide concentrations at a rural site. Sci. Total Environ., 533: 432-438.
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  21. Perez, I.A., F. Artuso, M. Mahmud, U. Kulshrestha, M.L. Sanchez and M.A. Garcia, 2015. Applications of air mass trajectories. Adv. Meteorol. 10.1155/2015/284213.
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  22. Perez, I.A., F. Artuso, M. Mahmud, U. Kulshrestha, M.L. Sanchez and M. Garcia, 2015. Applications of air trajectories. Adv. Meteorol. 10.1155/2015/245980.
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  23. Pardo, N., M.L. Sanchez, I.A. Perez and M. A. Garcia, 2015. Energy balance and partitioning over a rotating rapeseed crop. Agric. Water Manage, 161: 31-40.
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  24. Sanchez, M.L., M.A. Garcia, I.A. Perez and N. Pardo, 2014. CH4 continuous measurements in the upper Spanish plateau. Environ. Monit. Assess., 186: 2823-2834.
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  25. Perez, I.A., M.L. Sanchez, M.A. Garcia, M. Ozores and N. Pardo, 2014. Cluster analysis applied to CO2 concentrations at a rural site. Environ. Sci. Pollut. Res., 22: 1954-1962.
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  26. Perez, I.A., M.L. Sanchez, M.A. Garcia, M. Ozores and N. Pardo, 2014. Analysis of carbon dioxide concentration skewness at a rural site. Sci. Total Environ., 476: 158-164.
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  27. Pardo, N., M.L. Sanchez, J. Timmermans, Z. Su, I.A. Perez and M.A. Garcia, 2014. SEBS validation in a Spanish rotating crop. Agric. For. Meteorol., 195: 132-142.
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  28. Perez, I.A., M.L. Sanchez, M.A. Garcia and N. Pardo, 2013. Carbon dioxide at an unpolluted site analysed with the smoothing kernel method and skewed distributions. Sci. Total Environ., 456: 239-245.
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  29. Perez, I.A., M.L. Sanchez, M.A. Garcia and N. Pardo, 2012. Spatial analysis of CO2 concentration in an unpolluted environment in Northern Spain. J. Environ. Manage., 113: 417-425.
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  30. Perez, I.A., M.L. Sanchez, M.A. Garcia and N. Pardo, 2012. Analysis of CO2 daily cycle in the low atmosphere at a rural site. Sci. Total Environ., 431: 286-292.
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  31. Perez, I.A., M.L. Sanchez, M.A. Garcia and N. Pardo, 2012. Analysis and fit of surface CO2 concentrations at a rural site. Environ. Sci. Pollut. Res., 19: 3015-3027.
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  32. Perez, I.A., M.L. Sanchez and M.A. Garcia, 2012. CO2 dilution in the lower atmosphere from temperature and wind speed profiles. Theoret. Applied Climatol., 107: 247-253.
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  33. Garcia, M.A., M.L. Sanchez and I.A. Perez, 2012. Differences between carbon dioxide levels over suburban and rural sites in Northern Spain. Environ. Sci. Pollut. Res., 19: 432-439.
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  34. Perez, I.A., M.L. Sanchez, M.A. Garcia and V. Paredes, 2011. Relationship between CO2 at a rural site and integral measures of atmospheric stagnation, recirculation and ventilation. Naturwissenschaften, 98: 565-574.
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  35. Perez, I.A., M.L. Sanchez, M.A. Garcia and V. Paredes, 2011. Persistence analysis of CO2 concentrations recorded at a rural site in the upper Spanish plateau. Atmos. Res., 100: 45-50.
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  36. Perez, I.A., M.L. Sanchez, M.A. Garcia and V. Paredes, 2011. Directional analysis of CO2 persistence at a rural site. Sci. Total Environ., 409: 3887-3893.
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  37. Perez, I.A., M. Garcia, V. Paredes and M.L. Sanchez, 2011. Analysis of two atmospheric dispersion schemes from CO2 surface concentrations at a rural site. Q. J. R. Meteorol. Soc., 137: 394-401.
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  38. Sanchez, M.L., I.A. Perez and M.A. Garcia, 2010. Study of CO2 variability at different temporal scales recorded in a rural Spanish site. Agric. For. Meteorol., 150: 1168-1173.
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  39. Garcia, M.A., M.L. Sanchez and I.A. Perez, 2010. Synoptic weather patterns associated with carbon dioxide levels in Northern Spain. Sci. Total Environ., 408: 3411-3417.
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  40. Perez, I.A., M.L. Sanchez, M.A. Garcia and B.D. Torre, 2009. Boundary layer structure and stability classification validated with CO2 concentrations over the Northern Spanish Plateau. Annales Geophysicae, 27: 339-349.
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  41. Perez, I.A., M.L. Sanchez, M.A. Garcia and B. de Torre, 2009. Daily and annual cycle of CO2 concentration near the surface depending on boundary layer structure at a rural site in Spain. Theoret. Applied Climatol., 98: 269-277.
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  42. Perez, I.A., M.L. Sanchez, M.A. Garcia and B. de Torre, 2009. CO2 transport by urban plumes in the upper Spanish plateau. Sci. Total Environ., 407: 4934-4938.
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  43. Perez, I.A., M.L. Sanchez, M.A. Garcia and B. de Torre, 2009. A classification of CO2 concentrations based on a binary meteorological six variable system. Agric. For. Meteorol., 149: 1686-1692.
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  44. Sanchez, M.L., M.A. Garcia, I.A. Perez and B. de Torre, 2008. Evaluation of surface ozone measurements during 2000-2005 at a rural area in the upper Spanish plateau. J. Atmos. Chem., 60: 137-152.
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  45. Sanchez, M.L., B. De Torre, I.A. Perez and M.A. Garcia, 2008. CO2 exchange in a rural area of the upper Spanish plateau. Fisica Tierra, 19: 107-116.
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  46. Perez, I.A., M.L. Sanchez, M.A. Garcia and B. de Torre, 2008. Description and distribution fitting of transformed sodar wind observations. J. Atmos. Solar-Terrestrial Phys., 70: 89-100.
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  47. Perez, I.A., M.A. Garcia, M.L. Sanchez and B. de Torre, 2008. Description of atmospheric variables measured with a RASS sodar: Cycles and distribution functions. J. Wind Eng. Ind. Aerodyn., 96: 436-453.
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  48. Garcia, M.A., M.L. Sanchez, I.A. Perez and B.D. Torre, 2008. Continuous carbon dioxide measurements in a rural area in the upper Spanish plateau. J. Air Waste Manage. Assoc., 58: 940-946.
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  49. Sanchez, M.L., M.A. Garcia, I.A. Perez and B. de Torre, 2007. Ground laser remote sensing measurements of a Saharan dust outbreak in Central Spain. Influence on PM10 concentrations in the lower and upper Spanish plateaus. Chemosphere, 67: 229-239.
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  50. Sanchez, M.L., B. De Torre, M.A. Garcia and I. Perez, 2007. Ground-level ozone and ozone vertical profile measurements close to the foothills of the Guadarrama mountain range (Spain). Atmos. Environ., 41: 1302-1314.
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  51. Perez, I.A., M.L. Sanchez and M.A. Garcia, 2007. Weibull wind speed distribution: numerical considerations and use with sodar data. J. Geophys. Res.: Atmos., Vol. 112. 10.1029/2006JD008278.
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  52. Perez, I.A., M.A. Garcia, M.L. Sanchez and B. De Torre, 2007. Analysis of directional meteorological data by means of cylindrical models. Renew. Energy, 32: 459-473.
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  53. Garcia, M.A., M.L. Sanchez, B. De Torre and I.A. Perez, 2007. Characterisation of the mixing height temporal evolution by means of a laser dial system in an urban area-intercomparison results with a model application. Annales Geophysicae, 25: 2119-2124.
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  54. Perez, I.A., M.A. Garcia, M.L. Sanchez and B. de Torre, 2006. Fit of wind speed and temperature profiles in the low atmosphere from rass sodar data. J. Atmos. Solar-Terrestrial Phys., 68: 1125-1135.
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  55. Perez, I.A., M.A. Garcia, M.L. Sanchez and B. De Torre, 2006. Analysis of wind data in the low atmosphere from a RASS sodar. Annales Geophysicae, 24: 415-426.
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  56. Sanchez, M.L., M.A. Garcia, B. de Torre and I. Perez, 2005. O3 and CO2 concentrations in a rural area in central Spain. Trans. Ecol. Environ., 82: 401-410.
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  57. Sanchez, M.L., B. De Torre, M.A. Garcia and I. Perez, 2005. Ozone concentrations at a high altitude station in the Central Massif (Spain). Chemosphere, 60: 576-584.
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  58. Perez, I.A., M.A. Garcia, M.L. Sanchez and B. De Torre, 2005. Analysis and parameterisation of wind profiles in the low atmosphere. Solar Energy, 78: 809-821.
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  59. Garcia, M.A., M.L. Sanchez, I.A. Perez and B. De Torre, 2005. Ground level ozone concentrations at a rural location in Northern Spain. Sci. Total Environ., 348: 135-150.
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  60. Perez, I.A., M.A. Garcia, M.L. Sanchez and B. de Torre, 2004. Analysis of height variations of sodar-derived wind speeds in Northern Spain. J. Wind Eng. Ind. Aerodyn., 92: 875-894.
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  61. Perez, I.A., M. Garcia, M.L. Sanchez and B. de Torre, 2004. Autocorrelation analysis of meteorological data from a RASS sodar. J. Applied Meteorol., 43: 1213-1223.
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  62. Sanchez, M.L., M.I. Ozores, M.J. Lopez, R. Colle, M.A. De Torre and G.I. Perez, 2003. Soil CO2 fluxes beneath barley on the central Spanish Plateau. Agric. For. Meteorol., 118: 85-95.
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  63. Sanchez, M.L., M.I. Ozores, R. Colle, M.J. Lopez, B. De Torre, M.A. Garcia and I. Perez, 2002. Soil CO2 fluxes in cereal land use of the Spanish plateau: Influence of conventional and reduced tillage practices. Chemosphere, 47: 837-844.
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  64. Garcia, M.A., M.L. Sanchez, O. Loukfaoui, M.J. Lopez, B. de Torre, M.I. Ozores and I.A. Perez, 2002. Diffusive sampling of SO2 and NO2 concentrations in complex terrain in Castile and Leon (Spain). Adv. Air Pollut., 11: 151-160.
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  65. Sanchez, M.L., M.J. lopez, B.D. Torre, I. Perez and M.A. Garcia, 2001. CO2 Fluxes In A Spanish Forested Area. In: Transport and Chemical Transformation in the Troposphere. Midgley, P.M., et al (Eds.). Springer-Verlag Berlin Heidelberg, Germany., pp 1-4.
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  66. Sanchez, M.L., D. Pascual, C. Ramos and I. Perez, 1990. Forecasting particulate pollutant concentrations in a city from meteorological variables and regional weather patterns. Atmos. Environ. Part A. General Topics, 24: 1509-1519.
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  67. Pascual, D., M.L. Sánchez, M.C. Ramos and I. Pérez, 1989. A stochastic model to forecast lead pollutant. Il Nuovo Cimento C, 12: 415-425.
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