Cite

Abrantes, J.R.C.B. and J.L.M.P. de Lima (2014): Termografia para determinação da microtopografia da superfície do solo em diferentes condições de cobertura morta (Thermography as a remote sensing tool of soil surface microtopography in the presence of mulch). Revista Brasileira de Ciências Agrárias 9, 445–453. AbrantesJ.R.C.B. de LimaJ.L.M.P. 2014 Termografia para determinação da microtopografia da superfície do solo em diferentes condições de cobertura morta (Thermography as a remote sensing tool of soil surface microtopography in the presence of mulch) Revista Brasileira de Ciências Agrárias 9 445 453 10.5039/agraria.v9i3a3602 Search in Google Scholar

Abrantes, J.R.C.B., de Lima, J.L.M.P., Prats, S.A. and J.J. Keizer (2017): Assessing soil water repellency spatial variability using a thermographic technique: An exploratory study using a small-scale laboratory soil flume. Geoderma 287, 98–104. AbrantesJ.R.C.B. de LimaJ.L.M.P. PratsS.A. KeizerJ.J. 2017 Assessing soil water repellency spatial variability using a thermographic technique: An exploratory study using a small-scale laboratory soil flume Geoderma 287 98 104 10.1016/j.geoderma.2016.08.014 Search in Google Scholar

Abrantes, J.R.C.B., de Lima, J.L.M.P., Prats, S.A. and J.J. Keizer (2016): Field assessment of soil water repellency using infrared thermography. Forum Geographic 15, 12–18. AbrantesJ.R.C.B. de LimaJ.L.M.P. PratsS.A. KeizerJ.J. 2016 Field assessment of soil water repellency using infrared thermography Forum Geographic 15 12 18 10.5775/fg.2016.019.s Search in Google Scholar

Abrantes, J.R.C.B., Moruzzi, R.B., Silveira, A. and J.L.M.P. de Lima (2018a): Comparison of thermal, salt and dye tracing to estimate shallow flow velocities: Novel triple tracer approach. Journal of Hydrology 557, 362–377. AbrantesJ.R.C.B. MoruzziR.B. SilveiraA. de LimaJ.L.M.P. 2018a Comparison of thermal, salt and dye tracing to estimate shallow flow velocities: Novel triple tracer approach Journal of Hydrology 557 362 377 10.1016/j.jhydrol.2017.12.048 Search in Google Scholar

Abrantes, J.R.C.B., Moruzzi, R.B., de Lima, J.L.M.P., Silveira, A. and A.A.A. Montenegro (2018b): Combining a thermal tracer with a transport model to estimate shallow flow velocities. Physics and Chemistry of the Earth 109, 59–69. AbrantesJ.R.C.B. MoruzziR.B. de LimaJ.L.M.P. SilveiraA. MontenegroA.A.A. 2018b Combining a thermal tracer with a transport model to estimate shallow flow velocities Physics and Chemistry of the Earth 109 59 69 10.1016/j.pce.2018.12.005 Search in Google Scholar

Albuquerque, A.W., Lombardi Neto, F. and V.S. Srinivasan (2001): Efeito do desmatamento da caatinga sobre as perdas de solo e água de um Luvissolo em Sumé (PB) (Effects of native semiarid vegetation deforestation on soil and water losses of a Haplargids in Sumé, Paraíba, Brazil). The Revista Brasileira de Ciência do Solo 25, 121–128. AlbuquerqueA.W. Lombardi NetoF. SrinivasanV.S. 2001 Efeito do desmatamento da caatinga sobre as perdas de solo e água de um Luvissolo em Sumé (PB) (Effects of native semiarid vegetation deforestation on soil and water losses of a Haplargids in Sumé, Paraíba, Brazil) The Revista Brasileira de Ciência do Solo 25 121 128 10.1590/S0100-06832001000100013 Search in Google Scholar

Brasileiro, R.S. (2009): Alternativas de desenvolvimento sustentável no semiárido nordestino: da degradação à conservação (Alternatives for sustainable development in the Brazilian Northeast semi-arid region: from degradation to conservation). Scientia Plena 5, 055401. BrasileiroR.S. 2009 Alternativas de desenvolvimento sustentável no semiárido nordestino: da degradação à conservação (Alternatives for sustainable development in the Brazilian Northeast semi-arid region: from degradation to conservation) Scientia Plena 5 055401 Search in Google Scholar

Cook, H.F., Valdes, G.S.B. and H.C. Lee (2006): Mulch effects on rainfall interception, soil physical characteristics and temperature under Zea mays L. Soil & Tillage Research 91, 227–235. CookH.F. ValdesG.S.B. LeeH.C. 2006 Mulch effects on rainfall interception, soil physical characteristics and temperature under Zea mays L. Soil & Tillage Research 91 227 235 10.1016/j.still.2005.12.007 Search in Google Scholar

de Lima, J.L.M.P. and J.R.C.B. Abrantes (2014a): Can infrared thermography be used to estimate soil surface microrelief and rill morphology? Catena 113, 314–322. de LimaJ.L.M.P. AbrantesJ.R.C.B. 2014a Can infrared thermography be used to estimate soil surface microrelief and rill morphology? Catena 113 314 322 10.1016/j.catena.2013.08.011 Search in Google Scholar

de Lima, J.L.M.P. and J.R.C.B. Abrantes (2014b): Using a thermal tracer to estimate overland and rill flow velocities. Earth Surface Processes and Landforms 39, 1293–1300. de LimaJ.L.M.P. AbrantesJ.R.C.B. 2014b Using a thermal tracer to estimate overland and rill flow velocities Earth Surface Processes and Landforms 39 1293 1300 10.1002/esp.3523 Search in Google Scholar

de Lima, J.L.M.P., Abrantes, J.R.C.B., Silva Jr., V.P., de Lima, M.I.P. and A.A.A. Montenegro (2014a): Mapping soil surface macropores using infrared thermography: Exploratory laboratory study. The Scientific World Journal 2014, 845460. de LimaJ.L.M.P. AbrantesJ.R.C.B. Silva Jr.V.P. de LimaM.I.P. MontenegroA.A.A. 2014a Mapping soil surface macropores using infrared thermography: Exploratory laboratory study The Scientific World Journal 2014 845460 10.1155/2014/845460421114925371915 Search in Google Scholar

de Lima, J.L.M.P., Abrantes, J.R.C.B., Silva, JR., V.P. and A.A.A. Montenegro (2014b): Prediction of skin surface soil permeability by infrared thermography: a soil flume experiment. Quant. Quantitative InfraRed Thermography Journal 11, 161–169. de LimaJ.L.M.P. AbrantesJ.R.C.B. SilvaV.P.JR. MontenegroA.A.A. 2014b Prediction of skin surface soil permeability by infrared thermography: a soil flume experiment Quant. Quantitative InfraRed Thermography Journal 11 161 169 10.1080/17686733.2014.945325 Search in Google Scholar

de Lima, J.L.M.P., Silva Jr., V.P., Abrantes, J.R.C.B., Montenegro, A.A.A. and M.I.P. de Lima (2014c): In situ observation of soil macropores using infrared thermography. Die Bodenkultur 64, 57–62. de LimaJ.L.M.P. Silva Jr.V.P. AbrantesJ.R.C.B. MontenegroA.A.A. de LimaM.I.P. 2014c In situ observation of soil macropores using infrared thermography Die Bodenkultur 64 57 62 10.1155/2014/845460421114925371915 Search in Google Scholar

de Lima, M.I.P., Espírito Santo, F., de Lima, J.L.M.P. and A.M. Ramos (2013): Recent precipitation variability over 67 years in mainland Portugal. Die Bodenkultur 64, 21–26. de LimaM.I.P. Espírito SantoF. de LimaJ.L.M.P. RamosA.M. 2013 Recent precipitation variability over 67 years in mainland Portugal Die Bodenkultur 64 21 26 Search in Google Scholar

de Lima, R.L.P., Abrantes, J.R.C.B., de Lima, J.L.M.P. and M.I.P. de Lima (2015): Using thermal tracers to estimate flow velocities of shallow flows: laboratory and field experiments. Journal of Hydrology and Hydromechanics 63, 255–262. de LimaR.L.P. AbrantesJ.R.C.B. de LimaJ.L.M.P. de LimaM.I.P. 2015 Using thermal tracers to estimate flow velocities of shallow flows: laboratory and field experiments Journal of Hydrology and Hydromechanics 63 255 262 10.1515/johh-2015-0028 Search in Google Scholar

Huang F., Zhan W., Ju W. and Z. Wang (2014): Improved reconstruction of soil thermal field using two-depth measurements of soil temperature. Journal of Hydrology 519, 711–719. HuangF. ZhanW. JuW. WangZ. 2014 Improved reconstruction of soil thermal field using two-depth measurements of soil temperature Journal of Hydrology 519 711 719 10.1016/j.jhydrol.2014.08.014 Search in Google Scholar

Jin, K., Cornelis, W.M., Gabriels, D., Schiettecatte, W., de Neve, S., Lu, J., Buysse, T., Wu, H., Cai, D., Jin, J. and R. Harmann (2008): Soil management effects on runoff and soil loss from field rainfall simulation. Catena 75, 191–199. JinK. CornelisW.M. GabrielsD. SchiettecatteW. de NeveS. LuJ. BuysseT. WuH. CaiD. JinJ. HarmannR. 2008 Soil management effects on runoff and soil loss from field rainfall simulation Catena 75 191 199 10.1016/j.catena.2008.06.002 Search in Google Scholar

Jordán, A., Zavala, L.M. and J. Gil (2010): Effects of mulching on soil physical properties and runoff under semi-arid conditions in Southern Spain. Catena 81, 77–85. JordánA. ZavalaL.M. GilJ. 2010 Effects of mulching on soil physical properties and runoff under semi-arid conditions in Southern Spain Catena 81 77 85 10.1016/j.catena.2010.01.007 Search in Google Scholar

Jun, F., Yu G., Quanjiu, W., Malhi, S.S. and L. Yangyang (2014): Mulching effects on water storage in soil and its depletion by alfalfa in the Loess Plateau of northwestern China, Agricultural Water Management, 138, 10–16. JunF. YuG. QuanjiuW. MalhiS.S. YangyangL. 2014 Mulching effects on water storage in soil and its depletion by alfalfa in the Loess Plateau of northwestern China Agricultural Water Management 138 10 16 10.1016/j.agwat.2014.02.018 Search in Google Scholar

Li, R., Hou, X., Jia, Z., Han, Q., Ren, X. and B. Yang (2013): Effects on soil temperature, moisture, and maize yield of cultivation with ridge and furrow mulching in the rainfed area of the Loess Plateau, China. Agricultural Water Management 116, 101–109. LiR. HouX. JiaZ. HanQ. RenX. YangB. 2013 Effects on soil temperature, moisture, and maize yield of cultivation with ridge and furrow mulching in the rainfed area of the Loess Plateau, China Agricultural Water Management 116 101 109 10.1016/j.agwat.2012.10.001 Search in Google Scholar

Montenegro, A.A.A., Abrantes, J.R.C.B., de Lima, J.L.M.P., Singh, V.P. and T.E.M. Santos (2013a): Impact of mulching on soil and water dynamics under intermittent simulated rainfall. Catena 109, 139–149. MontenegroA.A.A. AbrantesJ.R.C.B. de LimaJ.L.M.P. SinghV.P. SantosT.E.M. 2013a Impact of mulching on soil and water dynamics under intermittent simulated rainfall Catena 109 139 149 10.1016/j.catena.2013.03.018 Search in Google Scholar

Montenegro, A.A.A., de Lima, J.L.M.P., Abrantes, J.R.C.B. and T.E.M. Santos (2013b): Impact of mulching on soil and water conservation in semiarid catchment: Simulated rainfall in the Field and in the Laboratory. Die Bodenkultur 64, 79–85. MontenegroA.A.A. de LimaJ.L.M.P. AbrantesJ.R.C.B. SantosT.E.M. 2013b Impact of mulching on soil and water conservation in semiarid catchment: Simulated rainfall in the Field and in the Laboratory Die Bodenkultur 64 79 85 Search in Google Scholar

Montenegro, A.A.A. and R. Ragab (2010): Hydrological response of a Brazilian semi-arid catchment to different land use and climate change scenarios: a modelling study. Hydrological Processes 24, 2705–2723. MontenegroA.A.A. RagabR. 2010 Hydrological response of a Brazilian semi-arid catchment to different land use and climate change scenarios: a modelling study Hydrological Processes 24 2705 2723 10.1002/hyp.7825 Search in Google Scholar

Odriozola, I., Baquero-García, G., Laskurain, N.A. and A. Aldezabal (2014): Livestock grazing modifies the effect of environmental factors on soil temperature and water content in a temperate grassland. Geoderma 235–236, 347–354. OdriozolaI. Baquero-GarcíaG. LaskurainN.A. AldezabalA. 2014 Livestock grazing modifies the effect of environmental factors on soil temperature and water content in a temperate grassland Geoderma 235–236 347 354 10.1016/j.geoderma.2014.08.002 Search in Google Scholar

Oliveira, J.R., Pinto, M.F., Souza, W.J., Guerras, J.G.M. and D.F. Carvalho (2010): Erosão hídrica em um Argissolo Vermelho-Amarelo, sob diferentes padrões de chuva simulada (Water erosion in a Yellow-Red Ultisol under different patterns of simulated rain). Revista Brasileira de Engenharia Agrícola e Ambiental 14, 140–147. OliveiraJ.R. PintoM.F. SouzaW.J. GuerrasJ.G.M. CarvalhoD.F. 2010 Erosão hídrica em um Argissolo Vermelho-Amarelo, sob diferentes padrões de chuva simulada (Water erosion in a Yellow-Red Ultisol under different patterns of simulated rain) Revista Brasileira de Engenharia Agrícola e Ambiental 14 140 147 10.1590/S1415-43662010000200004 Search in Google Scholar

Ozgener, O., Ozgener, L. and J.W. Tester (2013): A practical approach to predict soil temperature variations for geothermal (ground) heat exchangers applications. International Journal of Heat and Mass Transfer 62, 473–480. OzgenerO. OzgenerL. TesterJ.W. 2013 A practical approach to predict soil temperature variations for geothermal (ground) heat exchangers applications International Journal of Heat and Mass Transfer 62 473 480 10.1016/j.ijheatmasstransfer.2013.03.031 Search in Google Scholar

Poll, C., Marhan S., Back F., Niklaus P.A. and E. Kandeler (2013): Field-scale manipulation of soil temperature and precipitation change soil CO2 flux in a temperate agricultural ecosystem. Agriculture, Ecosystems & Environment 165, 88–97. PollC. MarhanS. BackF. NiklausP.A. KandelerE. 2013 Field-scale manipulation of soil temperature and precipitation change soil CO2 flux in a temperate agricultural ecosystem Agriculture, Ecosystems & Environment 165 88 97 10.1016/j.agee.2012.12.012 Search in Google Scholar

Santos, T.E.M., Silva, D.D. and A.A.A. Montenegro (2010): Temporal variability of soil water content under different surface conditions in the semiarid region of the Pernambuco State. Revista Brasileira de Ciência do Solo 34, 1733–1741. SantosT.E.M. SilvaD.D. MontenegroA.A.A. 2010 Temporal variability of soil water content under different surface conditions in the semiarid region of the Pernambuco State Revista Brasileira de Ciência do Solo 34 1733 1741 10.1590/S0100-06832010000500025 Search in Google Scholar

Silans, A.M.B.P. and L.M. Werlang (2011): Dinâmica da umidade de um solo da Caatinga em função de sua condutividade térmica (Soil moisture dynamics of a soil in “Caatinga” as a function of the thermal conductivity). Revista Brasileira de Engenharia Agrícola e Ambiental 15, 950–958. SilansA.M.B.P. WerlangL.M. 2011 Dinâmica da umidade de um solo da Caatinga em função de sua condutividade térmica (Soil moisture dynamics of a soil in “Caatinga” as a function of the thermal conductivity) Revista Brasileira de Engenharia Agrícola e Ambiental 15 950 958 10.1590/S1415-43662011000900011 Search in Google Scholar

Tripathi, R.P. and T.P.S. Katiyar (1984): Effects of mulches on the thermal regime of soil. Soil & Tillage Research 4, 381–390. TripathiR.P. KatiyarT.P.S. 1984 Effects of mulches on the thermal regime of soil Soil & Tillage Research 4 381 390 10.1016/0167-1987(84)90037-0 Search in Google Scholar

Zhang, S., Lövdahl, L., Grip, H., Tong, Y., Yang, X. and Q. Wang (2009): Effects of mulching and catch cropping on soil temperature, soil moisture and wheat yield on the Loess Plateau of China. Soil & Tillage Research 102, 78–86. ZhangS. LövdahlL. GripH. TongY. YangX. WangQ. 2009 Effects of mulching and catch cropping on soil temperature, soil moisture and wheat yield on the Loess Plateau of China Soil & Tillage Research 102 78 86 10.1016/j.still.2008.07.019 Search in Google Scholar

Zonta, J.H., Martinez, M.A., Pruski, F.F., Silva, D.D. and M.R. Santos (2012): Efeito da aplicação sucessiva de precipitações pluviais com diferentes perfis na taxa de infiltração de água no solo (Effect of successive rainfall with different patterns on soil water infiltration rate). Revista Brasileira de Ciência do Solo 36, 377–388. ZontaJ.H. MartinezM.A. PruskiF.F. SilvaD.D. SantosM.R. 2012 Efeito da aplicação sucessiva de precipitações pluviais com diferentes perfis na taxa de infiltração de água no solo (Effect of successive rainfall with different patterns on soil water infiltration rate) Revista Brasileira de Ciência do Solo 36 377 388 10.1590/S0100-06832012000200007 Search in Google Scholar

eISSN:
2719-5430
Idioma:
Inglés
Calendario de la edición:
4 veces al año
Temas de la revista:
Life Sciences, Ecology, other