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dc.rights.licenseAtribución-NoComercial-CompartirIgual 4.0 Internacional
dc.contributor.advisordel Valle, Jorge Ignacio
dc.contributor.advisorLara Henao, Wilson
dc.contributor.authorVásquez Piedrahíta, Marileny
dc.date.accessioned2022-08-22T14:15:34Z
dc.date.available2022-08-22T14:15:34Z
dc.date.issued2022-07
dc.identifier.urihttps://repositorio.unal.edu.co/handle/unal/81986
dc.descriptionFotografías
dc.description.abstractTo meet international and national commitments to decrease emissions of fossil fuels, cities around the world must obtain information on their historical levels of emissions, identifying hotspots that require special attention. Direct atmospheric measurements of pollution sources are almost impossible to obtain retrospectively. However, tree rings serve as an archive of environmental information for reconstructing the temporal and spatial distribution of fossil fuel emissions in urban areas. Here, we present a novel methodology to reconstruct the spatial and temporal contribution of fossil fuels´ CO2 concentration ([CO2F]) in the urban area of Medellin, Colombia. We used a combination of dendrochronological analysis, radiocarbon measurements, and statistical modeling. We obtained annual maps of [CO2F] from 1977 to 2018 that describe changes in their spatial distribution over time. Our method was successful in identifying hotspots of emissions around industrial areas, and areas with high traffic density. It also identified temporal trends that may be related to socioeconomic and technological factors. We observed an important increase in [CO2F] during the last decade, which suggests that efforts of city officials to reduce traffic and emissions did not have a significant impact on the contribution of fossil fuels to local air. The method presented here could be of significant value for city planners and environmental’s officials from other urban areas around the world. It allows identifying hotspots of fossil fuel emissions, evaluating the impact of previous environmental policies, and planning new interventions to reduce emissions and meet commitments to decrease fossil fuel emissions.
dc.description.abstractPara cumplir los compromisos internacionales y nacionales de disminución de las emisiones de combustibles fósiles, las ciudades de todo el mundo deben obtener información sobre sus niveles históricos de emisiones; identificando los puntos calientes que requieren medidas especiales. Las mediciones atmosféricas directas de las fuentes de contaminación son casi imposibles de obtener a posteriori. Sin embargo, los anillos de crecimiento de los árboles constituyen un importante archivo de información medioambiental que puede utilizarse para reconstruir la distribución temporal y espacial de las emisiones y/o concentraciones de combustibles fósiles en las zonas urbanas. Aquí presentamos una metodología novedosa para reconstruir espacial- y temporalmente las concentraciones de CO2 asociadas con las emisiones de combustibles fósiles [CO2F] en el área urbana de Medellín, Colombia. Usamos una combinación de análisis dendrocronológicos, mediciones de radiocarbono y modelos estadísticos para obtener mapas anuales de [CO2F] para el período entre 1977 y 2018. Nuestro método fue exitoso en la identificación de puntos clave alrededor de áreas industriales y de alto tránsito vehicular. También identificó tendencias temporales que pueden estar relacionadas con factores socioeconómicos y tecnológicos. Observamos un aumento importante de [CO2F] en la última década, y los esfuerzos de las autoridades municipales para reducir el tránsito y las emisiones no parecen tener un efecto significativo en la contribución de los combustibles fósiles al aire local. El método que aquí se presenta podría ser de gran valor para que los planificadores de las ciudades y los funcionarios de medio ambiente identifiquen los puntos claves de las emisiones, evalúen el impacto de las políticas medioambientales y planifiquen nuevas estrategias para reducir las emisiones y cumplir los compromisos de disminución de las emisiones de combustibles fósiles. (Texto tomado de la fuente)
dc.description.sponsorshipMinciencias
dc.format.extentxii, 60 páginas
dc.format.mimetypeapplication/pdf
dc.language.isoeng
dc.publisherUniversidad Nacional de Colombia, Sede Medellín
dc.rights.urihttp://creativecommons.org/licenses/by-nc-sa/4.0/
dc.subject.ddc580 - Plantas
dc.titleReconstructing past fossil fuels CO2 concentrations using tree rings and radiocarbon in Medellín, Colombia
dc.typeTrabajo de grado - Maestría
dc.type.driverinfo:eu-repo/semantics/masterThesis
dc.type.versioninfo:eu-repo/semantics/acceptedVersion
dc.publisher.programMedellín - Ciencias Agrarias - Maestría en Bosques y Conservación Ambiental
dc.coverage.cityMedellín, Colombia
dc.description.degreelevelMaestría
dc.description.degreenameMagíster en Bosques y Conservación Ambiental
dc.description.researchareaDendroquímica
dc.identifier.instnameUniversidad Nacional de Colombia
dc.identifier.reponameRepositorio Institucional Universidad Nacional de Colombia
dc.identifier.repourlhttps://repositorio.unal.edu.co/
dc.publisher.departmentDepartamento de Ciencias Forestales
dc.publisher.facultyFacultad de Ciencias Agrarias
dc.publisher.placeMedellín, Colombia
dc.publisher.branchUniversidad Nacional de Colombia - Sede Medellín
dc.relation.referencesAffek H, Xu X and Eiler J 2007 Seasonal and diurnal variations of 13C18O16O in air: Initial observations from Pasadena, CA Hagit Geochim. Cosmochim. Acta 71 5033–43
dc.relation.referencesAguilera-Betti I, Lucas C, Ferrero M E and Muñoz A A 2020 A Network for Advancing Dendrochronology, Dendrochemistry and Dendrohydrology in South America Tree-Ring Res. 76 94–101
dc.relation.referencesAlberte R S, Mcclure P R and Thornber J P 1976 Photosynthesis in trees Plant Physiol. 58 341–4
dc.relation.referencesAncapichún S, De Pol-Holz R, Christie D A, Santos G M, Collado-Fabbri S, Garreaud R, Lambert F, Orfanoz-Cheuquelaf A, Rojas M, Southon J, Turnbull J C and Creasman P P 2021 Radiocarbon bomb-peak signal in tree-rings from the tropical Andes register low latitude atmospheric dynamics in the Southern Hemisphere Sci. Total Environ. 774 145126 Online: https://doi.org/10.1016/j.scitotenv.2021.145126
dc.relation.referencesBalouet J C, Oudijk G, Smith K T, Petrisor I, Grudd H and Stocklassa B 2007 Applied dendroecology and environmental forensics. Characterizing and age dating environmental releases: Fundamentals and case studies Environ. Forensics 8 1–17
dc.relation.referencesBancone C E P, Turner S D, Ivar do Sul J A and Rose N L 2020 The Paleoecology of Microplastic Contamination Front. Environ. Sci. 8 1–20
dc.relation.referencesBattipaglia G, Marzaioli F, Lubritto C, Altieri S, Strumia S, Cherubini P and Cotrufo M F 2010 Traffic pollution affects tree-ring width and isotopic composition of Pinus pinea Sci. Total Environ. 408 586–93 Online: http://dx.doi.org/10.1016/j.scitotenv.2009.09.036
dc.relation.referencesBeaudon E, Gabrielli P, Sierra-hernández M R, Wegner A and Thompson L G 2017 Central Tibetan Plateau atmospheric trace metals contamination : A 500-year record from the Puruogangri ice core Sci. Total Environ. 601–602 1349–63 Online: http://dx.doi.org/10.1016/j.scitotenv.2017.05.195
dc.relation.referencesBedoya J and Martínez E 2009 Calidad del aire en el valle de Aburrá Antioquia-Colombia Dyna 76 7–15
dc.relation.referencesBeramendi-Orosco L E, González-Hernández G, Martínez-Reyes A, Morton-Bermea O, Santos-Arévalo F J, Gómez-Martínez I and Villanueva-Díaz J 2017 Changes in CO2 emission sources in Mexico city metropolitan area deduced from radiocarbon concentrations in tree rings Radiocarbon 1–4
dc.relation.referencesBeramendi-Orosco L E, Hernández-Morales S, González-Hernandez G, Constante-Garcia V and Villanueva-Díaz J 2013a Dendrochronological potential of Fraxinus uhdei and its use as bioindicator of fossil CO2 emissions deduced from radiocarbon concentrations in tree rings Radiocarbon 55 833–40
dc.relation.referencesBeramendi-Orosco L E, Rodriguez-Estrada M ., Morton-Bermea O, Romero F, González-Hernandez G and Hernández-Alvarez E 2013b Correlations between metals in tree-rings of Prosopis julifora as indicators of sources of heavy metal contamination Appl. Geochemistry 39 78–84 Online: http://dx.doi.org/10.1016/j.apgeochem.2013.10.003
dc.relation.referencesBerg M, Thi P, Trang K, Stengel C, Buschmann J, Hung P, Dan N Van, Giger W and Stüben D 2008 Hydrological and sedimentary controls leading to arsenic contamination of groundwater in the Hanoi area , Vietnam : The impact of iron-arsenic ratios , peat , river bank deposits , and excessive groundwater abstraction Chem. Geol. 249 91–112
dc.relation.referencesBinda G, Di Iorio A and Monticelli D 2021 The what, how, why, and when of dendrochemistry: (paleo)environmental information from the chemical analysis of tree rings Sci. Total Environ. 758 143672 Online: https://doi.org/10.1016/j.scitotenv.2020.143672
dc.relation.referencesBivand R, Pebesma E J and Gómez-Rubio V 2008 Applied Spatial Data Analysis with R ed Springer Online: papers2://publication/uuid/602A78BA-C239-4615-9538-633DA46454D9
dc.relation.referencesBivand R, Rundel C, Pebesma E, Stuetz R and Hufthammer K O 2017 Package 'rgeos". Interface to Geometry Engine - Open Source ('GEOS’) 77
dc.relation.referencesBowman S 1990 Radiocarbon dating vol 1 (University of California Press)
dc.relation.referencesBrandis D 1979 Memorandum of the rate of growth of teak Indian For. 4 215–25 Online: http://www.sciencedirect.com/science/article/pii/S0160738315000444%0Ahttp://www.sciencedirect.com/science/article/pii/S0160738315000444%250Ahttp://eprints.lancs.ac.uk/48376/%255Cnhttp://dx.doi.org/10.1002/zamm.19630430112%250Ahttp://www.sciencedirect.com/
dc.relation.referencesBrandis D 1960 Report on the teak forests of Pegu, with a memorandum on the teak in the Tharawaddy forests (London: Printed by George Edward Eyre and William Spotteswoody) Online: http://www.sciencedirect.com/science/article/pii/S0160738315000444
dc.relation.referencesBrienen R J W, Schöngart J and Zuidema P A 2016 Tree rings in the tropics: insights into the ecology and climate sensitivity of tropical trees Tropical tree physiology ed S Goldstein G. (Springer) pp 439–61
dc.relation.referencesBunn A G 2008 Statistical and visual crossdating in R using the dplR library Dendrochronologia 28 251–8 Online: http://dx.doi.org/10.1016/j.dendro.2009.12.001
dc.relation.referencesBurken J G, Vroblesky D A and Balouet J C 2011 Phytoforensics, dendrochemistry, and phytoscreening: New green tools for delineating contaminants from past and present Environ. Sci. Technol. 45 6218–26
dc.relation.referencesBusch F A, Holloway-Phillips M, Stuart-Williams H and Farquhar G D 2020 Revisiting carbon isotope discrimination in C 3 plants shows respiration rules when photosynthesis is low vol 6
dc.relation.referencesCain W F 1978 Carbon-14, tree rings, and urban air pollution Environ. Int. 1 167–71
dc.relation.referencesCapano M, Marzaioli F, Sirignano C, Altieri S, Lubritto C, D’Onofrio A and Terrasi F 2010 14C AMS measurements in tree rings to estimate local fossil CO2 in Bosco Fontana forest (Mantova, Italy) Nucl. Instruments Methods Phys. Res. Sect. B Beam Interact. with Mater. Atoms 268 1113–6 Online: http://dx.doi.org/10.1016/j.nimb.2009.10.112
dc.relation.referencesCesur A, Zeren Cetin I, Abo Aisha A E S, Alrabiti O B M, Aljama A M O, Jawed A A, Cetin M, Sevik H and Ozel H B 2021 The usability of Cupressus arizonica annual rings in monitoring the changes in heavy metal concentration in air Environ. Sci. Pollut. Res. 28 35642–8
dc.relation.referencesCook E R and Kairiukstis L A 1990 Methods of dendrochronology. Applications in the Environmental Sciences (Springer Netherlands)
dc.relation.referencesCorrea M, Zuluaga C, Palacio C, Pérez J and Jiménez J 2009 Acoplamiento de la atmósfera libre con el campo de vientos locales en una región tropical de topografía compleja. Caso de estudio: valle de Aburrá, Antioquia, Colombia Dyna 76 17–27
dc.relation.referencesCoster C 1927 Zur anatomie und physiologie der zuwachszonen-und jahresringbildung in den tropen Ann. Jard. Bot. Buitenzorg 38 1–114
dc.relation.referencesCoster C H 1926 Die Buche auf dem Gipfel des Pangerango Ann. Jard. Bot. Buitenzorg 35 105–19
dc.relation.referencesCoster C H 1923 Lauberneuerung und andere periodische Lebensprozesse in dem trockenen Monsun-Gebiet OstJava’s Ann. Jard. Bot. Buitenzorg 33 117–88 Online: http://www.sciencedirect.com/science/article/pii/S0160738315000444
dc.relation.referencesCutter B E and Guyette R P 1993 Anatomical, chemical, and ecological factors affecting tree species choice in dendrochemistry studies Env. Qual 22 611–9
dc.relation.referencesD’Arcy F, Boucher É, De Moor J M, Hélie J F, Piggott R and Stix J 2019 Carbon and sulfur isotopes in tree rings as a proxy for volcanic degassing Geology 47 825–8
dc.relation.referencesDeepak M S, Sinha S K and Rao R V 2010 Tree-ring analysis of teak (Tectona grandis L . f .) from Western Ghats of India to determine drought years Emirates J. Food Agric. 22 388–97
dc.relation.referencesDjuricin S, Pataki D E and Xu X 2010 A comparison of tracer methods for quantifying CO2 sources in an urban region J. Geophys. Res. Atmos. 115 1–13
dc.relation.referencesDjuricin S, Xu X and Pataki D E 2012 The radiocarbon composition of tree rings as a tracer of local fossil fuel emissions in the Los Angeles basin : 1980 – 2008 J. Geophys. 117 1–15
dc.relation.referencesDong M, Chen W, Chen X, Xing X, Shao M, Xiong X and Luo Z 2021 Geochemical markers of the Anthropocene: Perspectives from temporal trends in pollutants Sci. Total Environ. 763 142987 Online: https://doi.org/10.1016/j.scitotenv.2020.142987
dc.relation.referencesDongarrà G and Varrica D 2002 δ13C variations in tree rings as an indication of severe changes in the urban air quality Atmos. Environ. 36 5887–96
dc.relation.referencesDouglass A 1941 Crossdating in Dendrochronology J. For. 39 825–31
dc.relation.referencesDouglass A 1909 Weather cycles in the growth of big trees Mon. Weather Rev. 37 225–37
dc.relation.referencesDurgante F 2017 Protocolo de extração de celulose e branqueamento da madeira utilizada por Durgante 2017 para datação 14 C (Manaus: nstituto Nacional de Pesquisas da Amazônia Coordenação)
dc.relation.referencesFigueira R, Sérgio C and Sousa A J 2002 Distribution of trace metals in moss biomonitors and assessment of contamination sources in Portugal Environ. Pollut. 118 118 153–63
dc.relation.referencesFilgueira J J, Franco-Lara L, Salcedo J E, Gaitan S L and Boa E R 2004 Urapan (Fraxinus udhei) dieback, a new disease associated with a phytoplasma in Colombia Plant Pathol. 53 520
dc.relation.referencesFlores J A, Solís C, Huerta A, Ortiz M E, Rodríguez-Ceja M G, Villanueva J and Chávez E 2017 Historic binnacle of 14C/12C concentration in Mexico city Phys. Procedia 90 2–9 Online: http://dx.doi.org/10.1016/j.phpro.2017.09.007
dc.relation.referencesGeiger F 1915 Anatomische Untersuchungen uÈber die Jahresringbildung von Tectona grandis. Jahrb Wiss. Bot 55 521–607 Online: http://eprints.lancs.ac.uk/48376/%5Cnhttp://dx.doi.org/10.1002/zamm.19630430112%0Ahttp://www.sciencedirect.com/science/article/pii/S0160738315000444%0Ahttp://www.ncbi.nlm.nih.gov/pubmed/25926610%5Cnhttp://www.pubmedcentral.nih.gov/articlerender.fcgi?artid
dc.relation.referencesGiraldo J A 2021 Annual tree rings in the rainiest forests of the americas (Universidad Nacional de Colombia.) Online: https://repositorio.unal.edu.co/handle/unal/80415
dc.relation.referencesGraven H, Keeling R and Rogelj J 2020 Changes to Carbon Isotopes in Atmospheric CO2 Over the Industrial Era and Into the Future Global Biogeochemical Cycles Glob. Biog 34 1–21 Online: https://doi.org/ 10.1029/2019GB006170%0AReceived
dc.relation.referencesGrubler A, Johansson T, Mundaca L, Nakicenovic, Pachauir S, Riahi K, Rogner H and Strupeit L 2012 Chapter1. Energy primer Global Energy Assessment (GEA) p 118
dc.relation.referencesGrubler A, Johansson T, Mundaca L, Nakicenovic, Pachauir S, Riahi K, Rogner H and Strupeit L 2012 Chapter1. Energy primer Global Energy Assessment (GEA) p 118
dc.relation.referencesHartig G L 1795 Anweisung Zur Taxation der Forste, Oder Zur Bestimmung Des Holzer-Trags Der Walder: Ein Beytrag Zur Hoheren Forstwissenschaft (Giessen, Darmstadt: Heyer, Stahl) Online: http://www.sciencedirect.com/science/article/pii/S0160738315000444
dc.relation.referencesHartig T 1853 Ueber die Entwickelung des Jahrringes der Holzpflanzen Bot Ztg 11 553–60
dc.relation.referencesHastenrath S 1963 Dendrochronologie in el Salvador Meteorol. Rundschan 16 110–3
dc.relation.referencesHou Y, Zhou W, Cheng P, Xiong X, Du H, Niu Z, Yu X, Fu Y and Lu X 2020 14C-AMS measurements in modern tree rings to trace local fossil fuel-derived CO2 in the greater Xi’an area, China Sci. Total Environ. 715 136669 Online: https://doi.org/10.1016/j.scitotenv.2020.136669
dc.relation.referencesHua Q, Turnbull J C, Santos G M, Rakowski A Z, Ancapichún S, De Pol-Holz R, Hammer S, Lehman S J, Levin I, Miller J B, Palmer J G and Turney C S M 2021 Atmospheric radiocarbon for the period 1950-2019 Radiocarbon 00 1–23
dc.rights.accessrightsinfo:eu-repo/semantics/openAccess
dc.subject.lembCombustibles fósiles
dc.subject.lembFossil fuels
dc.subject.lembIsótopos de carbono
dc.subject.lembCarbon - Isotopes
dc.subject.proposalCO2 fósil
dc.subject.proposalDendrocronología
dc.subject.proposalRadiocarbono
dc.subject.proposalEmisiones de combustibles fósiles
dc.subject.proposalDendrochronology
dc.subject.proposalRadiocarbon
dc.subject.proposalFossil fuels emissions
dc.subject.proposalFossil CO2
dc.title.translatedReconstrucción de las concentraciones de CO2 de combustibles fósiles usando anillos de crecimiento y radiocarbono en Medellín, Colombia
dc.type.coarhttp://purl.org/coar/resource_type/c_bdcc
dc.type.coarversionhttp://purl.org/coar/version/c_ab4af688f83e57aa
dc.type.contentText
dc.type.redcolhttp://purl.org/redcol/resource_type/TM
oaire.accessrightshttp://purl.org/coar/access_right/c_abf2
oaire.awardtitleCódigo del proyecto 39934
oaire.fundernameMax Planck Institute for Biogeochemistry
oaire.fundernameWilson Lara
dcterms.audience.professionaldevelopmentEstudiantes
dcterms.audience.professionaldevelopmentInvestigadores
dcterms.audience.professionaldevelopmentMaestros
dcterms.audience.professionaldevelopmentMedios de comunicación
dc.description.curricularareaÁrea Curricular en Bosques y Conservación Ambiental


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Atribución-NoComercial-CompartirIgual 4.0 InternacionalEsta obra está bajo licencia internacional Creative Commons Reconocimiento-NoComercial 4.0.Este documento ha sido depositado por parte de el(los) autor(es) bajo la siguiente constancia de depósito