This work is licensed under the Creative Commons Attribution 4.0 International License.
Abidin H.Z., Andreas H., Gamal M., Hendrasto M., Suganda O.K., Purbawinata M.A., Meilano I., Kimata F., 2004. The deformation of Bromo Volcano (Indonesia) as detected by GPS surveys method. Journal of Global Positioning Systems 3(1–2): 16–24. DOI 10.5081/jgps.3.1.16.AbidinH.Z.AndreasH.GamalM.HendrastoM.SugandaO.K.PurbawinataM.A.MeilanoI.KimataF.2004. The deformation of Bromo Volcano (Indonesia) as detected by GPS surveys method. Journal of Global Positioning Systems3(1–2): 16–24. 10.5081/jgps.3.1.16.Open DOISearch in Google Scholar
Barr S.M., James D.E., 1990. Trace element characteristics of Upper Cenozoic basaltic rocks of Thailand, Kampuchea and Vietnam. Journal of Asian Earth Sciences 4: 233–242. DOI 10.1016/S0743-9547(05)80016-9.BarrS.M.JamesD.E.1990. Trace element characteristics of Upper Cenozoic basaltic rocks of Thailand, Kampuchea and Vietnam. Journal of Asian Earth Sciences4: 233–242. 10.1016/S0743-9547(05)80016-9.Open DOISearch in Google Scholar
Barr S.M., Macdonald A.S., 1981. Geochemistry and geochronology of late Cenozoic basalts of Southeast Asia. Geological Society of America Bulletin 92: 1069–1142. DOI 10.1130/0016-7606(1981)92<508:GAGOLC>2.0.CO;2.BarrS.M.MacdonaldA.S.1981. Geochemistry and geochronology of late Cenozoic basalts of Southeast Asia. Geological Society of America Bulletin92: 1069–1142. 10.1130/0016-7606(1981)92<508:GAGOLC>2.0.CO;2.Open DOISearch in Google Scholar
Bitschene P.R., 2015. Edutainment with basalt and volcanoes – The Rockeskyller Kopf example in the Westeifel volcanic field/Vulkaneifel European Geopark, Germany. Zeitschrift der Deutschen Gesellschaft für Geowissenschaften 166(2): 187–193. DOI 10.1127/zdgg/2015/0029.BitscheneP.R.2015. Edutainment with basalt and volcanoes – The Rockeskyller Kopf example in the Westeifel volcanic field/Vulkaneifel European Geopark, Germany. Zeitschrift der Deutschen Gesellschaft für Geowissenschaften166(2): 187–193. 10.1127/zdgg/2015/0029.Open DOISearch in Google Scholar
Bitschene P., Schueller A., 2011. Geo-education and geopark implementation in the Vulkaneifel European Geopark. GSA Field Guide 22: 29–34. DOI 10.1130/2011.0022(03).BitscheneP.SchuellerA.2011. Geo-education and geopark implementation in the Vulkaneifel European Geopark. GSA Field Guide22: 29–34. 10.1130/2011.0022(03).Open DOISearch in Google Scholar
Boonsoong A., Panjasawatwong Y., Metparsopsan K., 2011. Petrochemistry and tectonic setting of mafic volcanic rocks in the Chon Daen–Wang Pong area, Phetchabun, Thailand. Island Arc 20: 107–124. DOI 10.1111/j.1440-1738.2010.00748.x.BoonsoongA.PanjasawatwongY.MetparsopsanK.2011. Petrochemistry and tectonic setting of mafic volcanic rocks in the Chon Daen–Wang Pong area, Phetchabun, Thailand. Island Arc20: 107–124. 10.1111/j.1440-1738.2010.00748.x.Open DOISearch in Google Scholar
Brilha J., 2018. Geoheritage: Inventories and evaluation. In J. Reynard, & E. Brilha (Eds.), Geoheritage: Assessment, protection, and management (pp. 69–85). Amsterdam: Elsevier. DOI 10.1016/B978-0-12-809531-7.00004-6.BrilhaJ.2018. Geoheritage: Inventories and evaluation. InJ.ReynardE.Brilha (Eds.), Geoheritage: Assessment, protection, and management (pp. 69–85). Amsterdam: Elsevier. 10.1016/B978-0-12-809531-7.00004-6.Open DOISearch in Google Scholar
Carr B.B., Clarke A.B., Vanderkluysen L., 2016. Mechanisms of lava flow emplacement during an effusive eruption of Sinabung Volcano (Sumatra, Indonesia). Journal of Volcanology and Geothermal Research 311: 60–71. DOI10.1016/j.jvolgeores.2018.03.002.CarrB.B.ClarkeA.B.VanderkluysenL.2016. Mechanisms of lava flow emplacement during an effusive eruption of Sinabung Volcano (Sumatra, Indonesia). Journal of Volcanology and Geothermal Research311: 60–71. 10.1016/j.jvolgeores.2018.03.002.Open DOISearch in Google Scholar
Charusiri P., 1989. Lithophile metallogenic epochs of Thailand: Geological and geochronological syntheses. PhD Thesis Queen’s University, Kingston, 819.CharusiriP.1989. Lithophile metallogenic epochs of Thailand: Geological and geochronological syntheses. PhD Thesis Queen’s University, Kingston, 819.Search in Google Scholar
Charusiri P., Sutthirat C., Plathong C., Pongsapich W., 2004. Geology and petrochemistry of basaltic rocks of Khao Dradong, Burirum, NE Thailand: Implications for rock wool; potentials and tectonic setting. Journal of Scientific Research, Chulalongkorn University 29: 81–103.CharusiriP.SutthiratC.PlathongC.PongsapichW.2004. Geology and petrochemistry of basaltic rocks of Khao Dradong, Burirum, NE Thailand: Implications for rock wool; potentials and tectonic setting. Journal of Scientific Research, Chulalongkorn University29: 81–103.Search in Google Scholar
Cronin S.J., Stewart C., Zernack A.V., Brenna M., Procter J.N., Pardo N., Christenson B., Wilson T., Stewart R.B., Irwin M., 2014. Volcanic ash leachate compositions and assessment of health and agricultural hazards from 2012 hydrothermal eruptions, Tongariro, New Zealand. Journal of Volcanology and Geothermal Research 286: 233–247. DOI10.1016/j.jvolgeores.2014.07.002.CroninS.J.StewartC.ZernackA.V.BrennaM.ProcterJ.N.PardoN.ChristensonB.WilsonT.StewartR.B.IrwinM.2014. Volcanic ash leachate compositions and assessment of health and agricultural hazards from 2012 hydrothermal eruptions, Tongariro, New Zealand. Journal of Volcanology and Geothermal Research286: 233–247. 10.1016/j.jvolgeores.2014.07.002.Open DOISearch in Google Scholar
Csillag G., Korbely B., Németh K., 2004. Volcanological sites of Balaton uplands National Park as key points for a proposed geopark in western Hungary. Occasional Papers of the Geological Institute of Hungary 203: 49.CsillagG.KorbelyB.NémethK.2004. Volcanological sites of Balaton uplands National Park as key points for a proposed geopark in western Hungary. Occasional Papers of the Geological Institute of Hungary203: 49.Search in Google Scholar
DMR, 2013. Geologic map of Thailand. Department of Mineral Resources, Bangkok.DMR, 2013. Geologic map of Thailand. Department of Mineral Resources, Bangkok.Search in Google Scholar
Fearnley C.J., Bird D.K., Haynes K., McGuire W., Jolly G., 2018. Observing the volcano world. Springer, Berlin: 771. DOI 10.1007/978-3-319-44097-2.FearnleyC.J.BirdD.K.HaynesK.McGuireW.JollyG.2018. Observing the volcano world. Springer, Berlin: 771. 10.1007/978-3-319-44097-2.Open DOISearch in Google Scholar
Fearnley C., McGuire W., Davies G., Twigg J., 2012. Standardisation of the USGS volcano alert level system (VALS): Analysis and ramifications. Bulletin of Volcanology 74: 2023–2036. DOI 10.1007/s00445-012-0645-6.FearnleyC.McGuireW.DaviesG.TwiggJ.2012. Standardisation of the USGS volcano alert level system (VALS): Analysis and ramifications. Bulletin of Volcanology74: 2023–2036. 10.1007/s00445-012-0645-6.Open DOISearch in Google Scholar
Fearnley C., Winson A.E.G., Pallister J., Tilling R.I., 2017. Volcano crisis communication: challenges and solutions in the 21st century. Springer, Berlin: 3–21. DOI10.1007/11157_2017_28.FearnleyC.WinsonA.E.G.PallisterJ.TillingR.I.2017. Volcano crisis communication: challenges and solutions in the 21st century. Springer, Berlin: 3–21. 10.1007/11157_2017_28.Open DOISearch in Google Scholar
García-Cortés A., Vegas J, Carcavilla L., Díaz-Martínez E., 2018. Conceptual base and methodology of the Spanish Inventory of Sites of Geological Interest (IELIG). Retrieved from https://web.igme.es/patrimonio/des-cargas/CONCEPTUAL%20BASE%20AND%20METH-ODOLOGY%20OF%20THE%20SPANISH%20INVEN-TORY%20OF%20SITES%20OF%20GEOLOGICAL%20 INTEREST%20(IELIG).pdf.García-CortésA.VegasJCarcavillaL.Díaz-MartínezE.2018. Conceptual base and methodology of the Spanish Inventory of Sites of Geological Interest (IELIG). Retrieved from https://web.igme.es/patrimonio/des-cargas/CONCEPTUAL%20BASE%20AND%20METH-ODOLOGY%20OF%20THE%20SPANISH%20INVEN-TORY%20OF%20SITES%20OF%20GEOLOGICAL%20INTEREST%20(IELIG).pdf.Search in Google Scholar
Intasopa S., 1993. Petrology and geochronology of the volcanic rocks of the central Thailand volcanic belt. PhD Thesis University of New Brunswick, New Brunswick, 242.IntasopaS.1993. Petrology and geochronology of the volcanic rocks of the central Thailand volcanic belt. PhD Thesis University of New Brunswick, New Brunswick, 242.Search in Google Scholar
Intasopa S., Dunn T., Lambert R.S.J., 1995. Geochemistry of Cenozoic basaltic and silicic magmas in the central portion of the Loei-Phetchabun volcanic belt, Lop Buri, Thailand. Canadian Journal of Earth Sciences 32: 393–409. DOI10.1139/e95-034.IntasopaS.DunnT.LambertR.S.J.1995. Geochemistry of Cenozoic basaltic and silicic magmas in the central portion of the Loei-Phetchabun volcanic belt, Lop Buri, Thailand. Canadian Journal of Earth Sciences32: 393–409. 10.1139/e95-034.Open DOISearch in Google Scholar
Le Bas M.J., Le Maitre R.W., Streckeisen A., Zanettin B., 1986. A chemical classification of volcanic rocks based on the total alkali–silica diagram. Journal of Petrology 27: 745– 750. DOI 10.1093/petrology/27.3.745.Le BasM.J.Le MaitreR.W.StreckeisenA.ZanettinB.1986. A chemical classification of volcanic rocks based on the total alkali–silica diagram. Journal of Petrology27: 745– 750. 10.1093/petrology/27.3.745.Open DOISearch in Google Scholar
Mejía-Agüero O., Quesada-Román A., 2024. Geoheritage assessment for the geoconservation and geotourism promotion of in the Altamira sector of the La Amistad International Park, Costa Rica. Geoheritage 16: 95. DOI10.1007/s12371-024-01015-y.Mejía-AgüeroO.Quesada-RománA.2024. Geoheritage assessment for the geoconservation and geotourism promotion of in the Altamira sector of the La Amistad International Park, Costa Rica. Geoheritage16: 95. 10.1007/s12371-024-01015-y.Open DOISearch in Google Scholar
Németh K., Casadevall T., Moufti M.R., Marti J., 2017a. Volcanic geoheritage. Geoheritage 9(3): 251–254. DOI 10.1007/s12371-017-0257-9.NémethK.CasadevallT.MouftiM.R.MartiJ.2017a. Volcanic geoheritage. Geoheritage9(3): 251–254. 10.1007/s12371-017-0257-9.Open DOISearch in Google Scholar
Németh K., Moufti M.R.H., 2024. Geoheritage as an engine for development on resilient volcanic hazard programs: the geoeducation opportunity. In: Geoheritage and geodiversity of Cenozoic volcanic fields in Saudi Arabia. Geoheritage, geoparks and geotourism. Eds. Németh K., Moufti M.R.H., Springer, Cham, 165–179. DOI 10.1007/978-3-031-61217-6_6.NémethK.MouftiM.R.H.2024. Geoheritage as an engine for development on resilient volcanic hazard programs: the geoeducation opportunity. In: Geoheritage and geodiversity of Cenozoic volcanic fields in Saudi Arabia. Geoheritage, geoparks and geotourism. Eds.NémethK.MouftiM.R.H.Springer, Cham, 165–179. 10.1007/978-3-031-61217-6_6.Open DOISearch in Google Scholar
Németh K., Wu J., Sun C., Liu J., 2017b. Update on the volcanic geoheritage values of the Pliocene to Quaternary Arxan–Chaihe volcanic field, Inner Mongolia, China. Geoheritage 9: 279–297. DOI 10.1007/s12371-017-0224-5.NémethK.WuJ.SunC.LiuJ.2017b. Update on the volcanic geoheritage values of the Pliocene to Quaternary Arxan–Chaihe volcanic field, Inner Mongolia, China. Geoheritage9: 279–297. 10.1007/s12371-017-0224-5.Open DOISearch in Google Scholar
Pearce J.A., Cann J.R., 1973. Tectonic setting of basic volcanic rocks determined using trace element analyses. Earth and Planetary Science Letters 19: 290–300. DOI 10.1016/0012-821X(73)90129-5.PearceJ.A.CannJ.R.1973. Tectonic setting of basic volcanic rocks determined using trace element analyses. Earth and Planetary Science Letters19: 290–300. 10.1016/0012-821X(73)90129-5.Open DOISearch in Google Scholar
Pérez-Umaña D., Quesada-Román A., Tefogoum G.Z., 2020. Geomorphological heritage inventory of Irazú volcano, Costa Rica. International Journal of Geoheritage and Parks 8(1): 31–47. DOI 10.1016/j.ijgeo.Pérez-UmañaD.Quesada-RománA.TefogoumG.Z.2020. Geomorphological heritage inventory of Irazú volcano, Costa Rica. International Journal of Geoheritage and Parks8(1): 31–47. 10.1016/j.ijgeo.Open DOISearch in Google Scholar
Quesada-Román A., Pérez-Umaña D., 2020. Tropical paleoglacial geoheritage inventory for geotourism management of Chirripó National Park, Costa Rica. Geoheritage 12: 58. DOI 10.1007/s12371-020-00485-0.Quesada-RománA.Pérez-UmañaD.2020. Tropical paleoglacial geoheritage inventory for geotourism management of Chirripó National Park, Costa Rica. Geoheritage12: 58. 10.1007/s12371-020-00485-0.Open DOISearch in Google Scholar
Quesada-Román A., Torres-Bernhard L., Ruiz-Álvarez M.A., Rodríguez-Maradiaga M., Velázquez-Espinoza G., Espinosa-Vega C., Toral J., Rodríguez-Bolaños H., 2022. Geodiversity, geoconservation, and geotourism in Central America. Land 11(1): 48. DOI 10.3390/land11010048.Quesada-RománA.Torres-BernhardL.Ruiz-ÁlvarezM.A.Rodríguez-MaradiagaM.Velázquez-EspinozaG.Espinosa-VegaC.ToralJ.Rodríguez-BolañosH.2022. Geodiversity, geoconservation, and geotourism in Central America. Land11(1): 48. 10.3390/land11010048.Open DOISearch in Google Scholar
Quesada-Román A., Zangmo G.T., Pérez-Umaña D., 2020. Geomorphosite comparative analysis in Costa Rica and Cameroon Volcanoes. Geoheritage 12: 90. DOI 10.1007/s12371-020-00515-x.Quesada-RománA.ZangmoG.T.Pérez-UmañaD.2020. Geomorphosite comparative analysis in Costa Rica and Cameroon Volcanoes. Geoheritage12: 90. 10.1007/s12371-020-00515-x.Open DOISearch in Google Scholar
Quesada-Valverde M.E., Quesada-Román A., 2023. Worldwide trends in methods and resources promoting geoconservation, geotourism, and geoheritage. Geosciences 13: 39. DOI 10.3390/geosciences13020039.Quesada-ValverdeM.E.Quesada-RománA.2023. Worldwide trends in methods and resources promoting geoconservation, geotourism, and geoheritage. Geosciences13: 39. 10.3390/geosciences13020039.Open DOISearch in Google Scholar
Quesada-Valverde M., Quesada-Román A., 2025. Inventory and assessment of geosites to promote geotourism in Coto Brus, Costa Rica. Geomorphology 470: 109531. DOI10.1016/j.geomorph.2024.109531.Quesada-ValverdeM.Quesada-RománA.2025. Inventory and assessment of geosites to promote geotourism in Coto Brus, Costa Rica. Geomorphology470: 109531. 10.1016/j.geomorph.2024.109531.Open DOISearch in Google Scholar
Singtuen V., Anumart A., 2022. Characterisation and evaluation of columnar basalt geoheriatge in Thailand: Implication for geotourism management in post-quarrying area. Quaestiones Geographicae 41(1): 37–50. DOI 10.2478/quageo-2022-0003.SingtuenV.AnumartA.2022. Characterisation and evaluation of columnar basalt geoheriatge in Thailand: Implication for geotourism management in post-quarrying area. Quaestiones Geographicae41(1): 37–50. 10.2478/quageo-2022-0003.Open DOISearch in Google Scholar
Singtuen V., Phajan S., 2021. Petrographic and geochemical data of high alkaline basalts, Sisaket Terrain, NE Thailand. Data in Brief 39: 107540. DOI 10.1016/j.dib.2021.107540.SingtuenV.PhajanS.2021. Petrographic and geochemical data of high alkaline basalts, Sisaket Terrain, NE Thailand. Data in Brief39: 107540. 10.1016/j.dib.2021.107540.Open DOISearch in Google Scholar
Singtuen V., Phajan S., Anumart A., Phajuy B., Srijanta K., Promkotra S., 2021. Alteration of high alkaline and alkaline basaltic rocks: Parent rocks in the Lava Durian orchard, Sisaket Province, NE Thailand. Heliyon 7(12): e08619. DOI 10.1016/j.heliyon.2021.e08619.SingtuenV.PhajanS.AnumartA.PhajuyB.SrijantaK.PromkotraS.2021. Alteration of high alkaline and alkaline basaltic rocks: Parent rocks in the Lava Durian orchard, Sisaket Province, NE Thailand. Heliyon7(12): e08619. 10.1016/j.heliyon.2021.e08619.Open DOISearch in Google Scholar
Sutthirat C., Charusiri P., Farrar E., Clark A.H., 1994. New 40Ar/39Ar geochronology and characteristics of some Cenozoic basalts in Thailand. International Symposium on Stratigraphic Correlation of Southeast Asia, Bangkok: 306–321.SutthiratC.CharusiriP.FarrarE.ClarkA.H.1994. New 40Ar/39Ar geochronology and characteristics of some Cenozoic basalts in Thailand. International Symposium on Stratigraphic Correlation of Southeast Asia, Bangkok: 306–321.Search in Google Scholar
Szepesi J., Harangi S., Ésik Z., Novák T.J., 2017. Volcanic geoheritage and geotourism perspectives in Hungary: A case of a UNESCO World Heritage Site, Tokaj Wine Region Historic Cultural Landscape, Hungary. Geoheritage 9: 329–349. DOI 10.1007/s12371-016-0205-0.SzepesiJ.HarangiS.ÉsikZ.NovákT.J.2017. Volcanic geoheritage and geotourism perspectives in Hungary: A case of a UNESCO World Heritage Site, Tokaj Wine Region Historic Cultural Landscape, Hungary. Geoheritage9: 329–349. 10.1007/s12371-016-0205-0.Open DOISearch in Google Scholar
Tefogoum G.Z., Román A.Q., Umaña D.P., 2020. Geomor-phosites inventory in the Eboga Volcano (Cameroon): Contribution for geotourism promotion. Géomorphol-ogie: Relief, Processus, Environnement 26(1): 19–33. DOI10.4000/geomorphologie.14006.TefogoumG.Z.RománA.Q.UmañaD.P.2020. Geomor-phosites inventory in the Eboga Volcano (Cameroon): Contribution for geotourism promotion. Géomorphol-ogie: Relief, Processus, Environnement26(1): 19–33. 10.4000/geomorphologie.14006.Open DOISearch in Google Scholar
Winchester J.A., Floyd P.A., 1997. Geochemical discrimination of different magma series and their differentiation products using immobile elements. Chemical Geology 20: 325–343. DOI 10.1016/0009-2541(77)90057-2.WinchesterJ.A.FloydP.A.1997. Geochemical discrimination of different magma series and their differentiation products using immobile elements. Chemical Geology20: 325–343. 10.1016/0009-2541(77)90057-2.Open DOISearch in Google Scholar
Yang T., Liu F., Harmon N., Le K.P., Gu S., Xue M., 2015. Lithospheric structure beneath Indochina block from Rayleigh wave phase velocity tomography. Geophysical Journal International 200(3): 1582–1595. DOI 10.1093/gji/ggu488.YangT.LiuF.HarmonN.LeK.P.GuS.XueM.2015. Lithospheric structure beneath Indochina block from Rayleigh wave phase velocity tomography. Geophysical Journal International200(3): 1582–1595. 10.1093/gji/ggu488.Open DOISearch in Google Scholar
Yan Q., Shi X., Metcalfe I., Liu S., Xu T., Kornkanitnan N., Sirichaiseth T., Yuan L., Zhang Y., Zhang H., 2018. Hainan mantle plume produced late Cenozoic basaltic rocks in Thailand, Southeast Asia. Scientific Reports 8(1): 2640. DOI 10.1038/s41598-018-20712-7.YanQ.ShiX.MetcalfeI.LiuS.XuT.KornkanitnanN.SirichaisethT.YuanL.ZhangY.ZhangH.2018. Hainan mantle plume produced late Cenozoic basaltic rocks in Thailand, Southeast Asia. Scientific Reports8(1): 2640. 10.1038/s41598-018-20712-7.Open DOISearch in Google Scholar