In 1809 and 1810 the eruptions were about every 30 hours and up to 30 m (98 ft) high. In 1811 George Mackenzie, a geologist, first proposed that expansion of steam in a subsurface cavity explained Geysir's activity. In 1845, it reached a height of 170 m (560 ft). In 1846, research on Geysir, and Iceland sponsored by the Danish Crown, by amongst others, the German chemist Robert Bunsen, resulted in a better general explanation of the mechanism of geyser activity which contributed significantly to the more refined models used today. Measurements by Professor Bunsen in that year showed that Geysir was erupting 45–54 m (148–177 ft) high.
In 1882 an account of the first accurate survey (previous attempts were associated with instrument problems), noted that a booming sound warned or Geysir's eruptions, eruptions were about 6 hourly but often of only 5 ft (1.5 m).
The records of recent centuries show that earthquakes have tended to revive the activity of Geysir, which then subsided again in the following years. Before 1896, Geysir was almost dormant. In that year an earthquake caused eruptions to begin again, occurring several times a day, lasting up to an hour and causing spouts of up to 70–80 m (230–260 ft) in height. In 1910, it was active every 30 minutes; by 1915, the time between the eruptions was as much as six hours, and in 1916, the eruptions all but ceased. In 1935, a man-made channel was dug through the silica rim around the edge of the geyser vent. This ditch caused a lowering of the water table and a revival in activity. Gradually this channel also became clogged with silica and eruptions again became rare.
In 1981, the ditch was cleared again and eruptions could be stimulated, on special occasions, by the addition of soap. Due to environmental concerns, soap was seldom added during the 1990s. During that time, Geysir seldom erupted. When it did erupt, it was spectacular, sending boiling water sometimes up to 70 metres (230 ft) into the air. On the Icelandic National Day, authorized government geologists would force an eruption. Further earthquakes in 2000 revived the geyser, and it reached 122 meters for two days., thus becoming one of the highest known geysers in history. Waimangu Geyser in New Zealand typically erupted higher than this, up to 460 m (1,510 ft) high, but it stopped all activity around 1908. Initially, Geysir eruptions were taking place on average eight times a day. By July 2003, this activity had again decreased to around three times per day. Large eruptions after this became so rare that one in 2016 was considered newsworthy.
The 3 km2 (1.2 sq mi) in area Haukadalur volcanic system, that provides the heat, is mainly to the west of Geysir but has not been active volcanically for over 10,000 years. Geysir is on the eastern slopes of the rhyolitic Laugarfjall lava dome, but the hyaloclastite nature of the rock that the water erupts through, may be important in its fracture network. It is now known that the areas of thermal activity of the geothermal field align along microfractures that became seismologically active after the 2000 Iceland earthquakes.
Descriptions of the Great Geysir and Strokkur have been given in many travel guides to Iceland published from the 18th century onwards. Together with Þingvellir and the Gullfoss waterfall, they are part of the Golden Circle, the most famous tourist route in the country.
Until 1894, the Geysir area was owned by local farmers. In that year the area was sold to James Craig (later Lord Craigavon), a whiskey distiller from Ulster and a future Prime Minister of Northern Ireland. Initially, he erected large fences around the site and an entrance fee was charged for visitors wishing to view the geysers. The following year, he gave the area as a present to a friend, E. Craig, who dropped the entrance fees. Later Craig's nephew Hugh Rogers inherited the site. In 1935, he sold the site to film director Sigurður Jónasson who subsequently donated it to the Icelandic people in perpetuity, although full public ownership of all routes of access did not take place until 2017.
Pasvanoglu 1998, p. 285. - Pasvanoglu, S. (1998). "Geochemical study of the Geysir geothermal field in Haukadalur, S-Iceland" (PDF). In Pasvanoglu, S.; Kristmannsdóttir, H.; Björnsson, S.; Torfason, H. (eds.). Geothermal Training Programme Reports 1998. United Nations University. pp. 281–318. Retrieved 29 January 2024. https://www.researchgate.net/profile/Suzan-Pasvanoglu/publication/292227219_Geochemical_study_of_the_Geysir_geothermal_field_in_Haukadalur_S-Iceland/links/6149df7ba3df59440b9fcc59/Geochemical-study-of-the-Geysir-geothermal-field-in-Haukadalur-S-Iceland.pdf
Jones & Renaut 2021, Conclusions. - Jones, B.; Renaut, R.W. (2021). "Multifaceted incremental growth of a geyser discharge apron – Evidence from Geysir, Haukadalur, Iceland". Sedimentary Geology. 419: 105905. doi:10.1016/j.sedgeo.2021.105905. ISSN 0037-0738. https://doi.org/10.1016%2Fj.sedgeo.2021.105905
Pasvanoglu 1998, pp. 282, 285. - Pasvanoglu, S. (1998). "Geochemical study of the Geysir geothermal field in Haukadalur, S-Iceland" (PDF). In Pasvanoglu, S.; Kristmannsdóttir, H.; Björnsson, S.; Torfason, H. (eds.). Geothermal Training Programme Reports 1998. United Nations University. pp. 281–318. Retrieved 29 January 2024. https://www.researchgate.net/profile/Suzan-Pasvanoglu/publication/292227219_Geochemical_study_of_the_Geysir_geothermal_field_in_Haukadalur_S-Iceland/links/6149df7ba3df59440b9fcc59/Geochemical-study-of-the-Geysir-geothermal-field-in-Haukadalur-S-Iceland.pdf
"Geyser" . Encyclopædia Britannica. Vol. 11 (11th ed.). 1911. pp. 913–915. https://en.wikisource.org/wiki/1911_Encyclop%C3%A6dia_Britannica/Geyser
Pasvanoglu 1998, pp. 282, 285–6. - Pasvanoglu, S. (1998). "Geochemical study of the Geysir geothermal field in Haukadalur, S-Iceland" (PDF). In Pasvanoglu, S.; Kristmannsdóttir, H.; Björnsson, S.; Torfason, H. (eds.). Geothermal Training Programme Reports 1998. United Nations University. pp. 281–318. Retrieved 29 January 2024. https://www.researchgate.net/profile/Suzan-Pasvanoglu/publication/292227219_Geochemical_study_of_the_Geysir_geothermal_field_in_Haukadalur_S-Iceland/links/6149df7ba3df59440b9fcc59/Geochemical-study-of-the-Geysir-geothermal-field-in-Haukadalur-S-Iceland.pdf
Pasvanoglu 1998, p. 285. - Pasvanoglu, S. (1998). "Geochemical study of the Geysir geothermal field in Haukadalur, S-Iceland" (PDF). In Pasvanoglu, S.; Kristmannsdóttir, H.; Björnsson, S.; Torfason, H. (eds.). Geothermal Training Programme Reports 1998. United Nations University. pp. 281–318. Retrieved 29 January 2024. https://www.researchgate.net/profile/Suzan-Pasvanoglu/publication/292227219_Geochemical_study_of_the_Geysir_geothermal_field_in_Haukadalur_S-Iceland/links/6149df7ba3df59440b9fcc59/Geochemical-study-of-the-Geysir-geothermal-field-in-Haukadalur-S-Iceland.pdf
Pasvanoglu 1998, p. 282. - Pasvanoglu, S. (1998). "Geochemical study of the Geysir geothermal field in Haukadalur, S-Iceland" (PDF). In Pasvanoglu, S.; Kristmannsdóttir, H.; Björnsson, S.; Torfason, H. (eds.). Geothermal Training Programme Reports 1998. United Nations University. pp. 281–318. Retrieved 29 January 2024. https://www.researchgate.net/profile/Suzan-Pasvanoglu/publication/292227219_Geochemical_study_of_the_Geysir_geothermal_field_in_Haukadalur_S-Iceland/links/6149df7ba3df59440b9fcc59/Geochemical-study-of-the-Geysir-geothermal-field-in-Haukadalur-S-Iceland.pdf
"Geyser" . Encyclopædia Britannica. Vol. 11 (11th ed.). 1911. pp. 913–915. https://en.wikisource.org/wiki/1911_Encyclop%C3%A6dia_Britannica/Geyser
"Geysers" . Encyclopædia Britannica. Vol. X (9th ed.). 1879. pp. 556–558. https://en.wikisource.org/wiki/Encyclop%C3%A6dia_Britannica,_Ninth_Edition/Geysers
Jones & Renaut 2021, Age of Geysir. - Jones, B.; Renaut, R.W. (2021). "Multifaceted incremental growth of a geyser discharge apron – Evidence from Geysir, Haukadalur, Iceland". Sedimentary Geology. 419: 105905. doi:10.1016/j.sedgeo.2021.105905. ISSN 0037-0738. https://doi.org/10.1016%2Fj.sedgeo.2021.105905
Jones & Renaut 2021, Introduction. - Jones, B.; Renaut, R.W. (2021). "Multifaceted incremental growth of a geyser discharge apron – Evidence from Geysir, Haukadalur, Iceland". Sedimentary Geology. 419: 105905. doi:10.1016/j.sedgeo.2021.105905. ISSN 0037-0738. https://doi.org/10.1016%2Fj.sedgeo.2021.105905
Pasvanoglu 1998, p. 282. - Pasvanoglu, S. (1998). "Geochemical study of the Geysir geothermal field in Haukadalur, S-Iceland" (PDF). In Pasvanoglu, S.; Kristmannsdóttir, H.; Björnsson, S.; Torfason, H. (eds.). Geothermal Training Programme Reports 1998. United Nations University. pp. 281–318. Retrieved 29 January 2024. https://www.researchgate.net/profile/Suzan-Pasvanoglu/publication/292227219_Geochemical_study_of_the_Geysir_geothermal_field_in_Haukadalur_S-Iceland/links/6149df7ba3df59440b9fcc59/Geochemical-study-of-the-Geysir-geothermal-field-in-Haukadalur-S-Iceland.pdf
Pasvanoglu 1998, p. 282. - Pasvanoglu, S. (1998). "Geochemical study of the Geysir geothermal field in Haukadalur, S-Iceland" (PDF). In Pasvanoglu, S.; Kristmannsdóttir, H.; Björnsson, S.; Torfason, H. (eds.). Geothermal Training Programme Reports 1998. United Nations University. pp. 281–318. Retrieved 29 January 2024. https://www.researchgate.net/profile/Suzan-Pasvanoglu/publication/292227219_Geochemical_study_of_the_Geysir_geothermal_field_in_Haukadalur_S-Iceland/links/6149df7ba3df59440b9fcc59/Geochemical-study-of-the-Geysir-geothermal-field-in-Haukadalur-S-Iceland.pdf
Pasvanoglu 1998, p. 282. - Pasvanoglu, S. (1998). "Geochemical study of the Geysir geothermal field in Haukadalur, S-Iceland" (PDF). In Pasvanoglu, S.; Kristmannsdóttir, H.; Björnsson, S.; Torfason, H. (eds.). Geothermal Training Programme Reports 1998. United Nations University. pp. 281–318. Retrieved 29 January 2024. https://www.researchgate.net/profile/Suzan-Pasvanoglu/publication/292227219_Geochemical_study_of_the_Geysir_geothermal_field_in_Haukadalur_S-Iceland/links/6149df7ba3df59440b9fcc59/Geochemical-study-of-the-Geysir-geothermal-field-in-Haukadalur-S-Iceland.pdf
Jones & Renaut 2021, Introduction. - Jones, B.; Renaut, R.W. (2021). "Multifaceted incremental growth of a geyser discharge apron – Evidence from Geysir, Haukadalur, Iceland". Sedimentary Geology. 419: 105905. doi:10.1016/j.sedgeo.2021.105905. ISSN 0037-0738. https://doi.org/10.1016%2Fj.sedgeo.2021.105905
"Geyser" . Encyclopædia Britannica. Vol. 11 (11th ed.). 1911. pp. 913–915. https://en.wikisource.org/wiki/1911_Encyclop%C3%A6dia_Britannica/Geyser
Hurwitz & Manga 2017, 4.1. Subsurface Processes. - Hurwitz, S.; Manga, M. (2017). "The Fascinating and Complex Dynamics of Geyser Eruptions". Annual Review of Earth and Planetary Sciences. 45 (1): 31–59. doi:10.1146/annurev-earth-063016-015605. https://doi.org/10.1146%2Fannurev-earth-063016-015605
Pasvanoglu 1998, p. 287. - Pasvanoglu, S. (1998). "Geochemical study of the Geysir geothermal field in Haukadalur, S-Iceland" (PDF). In Pasvanoglu, S.; Kristmannsdóttir, H.; Björnsson, S.; Torfason, H. (eds.). Geothermal Training Programme Reports 1998. United Nations University. pp. 281–318. Retrieved 29 January 2024. https://www.researchgate.net/profile/Suzan-Pasvanoglu/publication/292227219_Geochemical_study_of_the_Geysir_geothermal_field_in_Haukadalur_S-Iceland/links/6149df7ba3df59440b9fcc59/Geochemical-study-of-the-Geysir-geothermal-field-in-Haukadalur-S-Iceland.pdf
"Geyser" . Encyclopædia Britannica. Vol. 11 (11th ed.). 1911. pp. 913–915. https://en.wikisource.org/wiki/1911_Encyclop%C3%A6dia_Britannica/Geyser
Peek 1882, p. 132. - Peek, C.E. (1882). "Across Iceland by the Sprengisandr Route". Proceedings of the Royal Geographical Society and Monthly Record of Geography. 4: 129–140.
Walter et al. 2020, 4.2. Implications. - Walter, T.R.; Jousset, P.; Allahbakhshi, M.; Witt, T.; Gudmundsson, M.T.; Hersir, G.P. (2020). "Underwater and drone based photogrammetry reveals structural control at Geysir geothermal field in Iceland". Journal of Volcanology and Geothermal Research. 391: 106282. Bibcode:2020JVGR..39106282W. doi:10.1016/j.jvolgeores.2018.01.010. https://ui.adsabs.harvard.edu/abs/2020JVGR..39106282W
Pasvanoglu 1998, p. 282. - Pasvanoglu, S. (1998). "Geochemical study of the Geysir geothermal field in Haukadalur, S-Iceland" (PDF). In Pasvanoglu, S.; Kristmannsdóttir, H.; Björnsson, S.; Torfason, H. (eds.). Geothermal Training Programme Reports 1998. United Nations University. pp. 281–318. Retrieved 29 January 2024. https://www.researchgate.net/profile/Suzan-Pasvanoglu/publication/292227219_Geochemical_study_of_the_Geysir_geothermal_field_in_Haukadalur_S-Iceland/links/6149df7ba3df59440b9fcc59/Geochemical-study-of-the-Geysir-geothermal-field-in-Haukadalur-S-Iceland.pdf
Pasvanoglu 1998, p. 286. - Pasvanoglu, S. (1998). "Geochemical study of the Geysir geothermal field in Haukadalur, S-Iceland" (PDF). In Pasvanoglu, S.; Kristmannsdóttir, H.; Björnsson, S.; Torfason, H. (eds.). Geothermal Training Programme Reports 1998. United Nations University. pp. 281–318. Retrieved 29 January 2024. https://www.researchgate.net/profile/Suzan-Pasvanoglu/publication/292227219_Geochemical_study_of_the_Geysir_geothermal_field_in_Haukadalur_S-Iceland/links/6149df7ba3df59440b9fcc59/Geochemical-study-of-the-Geysir-geothermal-field-in-Haukadalur-S-Iceland.pdf
Pasvanoglu 1998, p. 282. - Pasvanoglu, S. (1998). "Geochemical study of the Geysir geothermal field in Haukadalur, S-Iceland" (PDF). In Pasvanoglu, S.; Kristmannsdóttir, H.; Björnsson, S.; Torfason, H. (eds.). Geothermal Training Programme Reports 1998. United Nations University. pp. 281–318. Retrieved 29 January 2024. https://www.researchgate.net/profile/Suzan-Pasvanoglu/publication/292227219_Geochemical_study_of_the_Geysir_geothermal_field_in_Haukadalur_S-Iceland/links/6149df7ba3df59440b9fcc59/Geochemical-study-of-the-Geysir-geothermal-field-in-Haukadalur-S-Iceland.pdf
Pasvanoglu 1998, p. 282. - Pasvanoglu, S. (1998). "Geochemical study of the Geysir geothermal field in Haukadalur, S-Iceland" (PDF). In Pasvanoglu, S.; Kristmannsdóttir, H.; Björnsson, S.; Torfason, H. (eds.). Geothermal Training Programme Reports 1998. United Nations University. pp. 281–318. Retrieved 29 January 2024. https://www.researchgate.net/profile/Suzan-Pasvanoglu/publication/292227219_Geochemical_study_of_the_Geysir_geothermal_field_in_Haukadalur_S-Iceland/links/6149df7ba3df59440b9fcc59/Geochemical-study-of-the-Geysir-geothermal-field-in-Haukadalur-S-Iceland.pdf
Pasvanoglu 1998, p. 282. - Pasvanoglu, S. (1998). "Geochemical study of the Geysir geothermal field in Haukadalur, S-Iceland" (PDF). In Pasvanoglu, S.; Kristmannsdóttir, H.; Björnsson, S.; Torfason, H. (eds.). Geothermal Training Programme Reports 1998. United Nations University. pp. 281–318. Retrieved 29 January 2024. https://www.researchgate.net/profile/Suzan-Pasvanoglu/publication/292227219_Geochemical_study_of_the_Geysir_geothermal_field_in_Haukadalur_S-Iceland/links/6149df7ba3df59440b9fcc59/Geochemical-study-of-the-Geysir-geothermal-field-in-Haukadalur-S-Iceland.pdf
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Hurwitz & Manga 2017, 4.2. Surface Eruption. - Hurwitz, S.; Manga, M. (2017). "The Fascinating and Complex Dynamics of Geyser Eruptions". Annual Review of Earth and Planetary Sciences. 45 (1): 31–59. doi:10.1146/annurev-earth-063016-015605. https://doi.org/10.1146%2Fannurev-earth-063016-015605
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Jones & Renaut 2021, Introduction. - Jones, B.; Renaut, R.W. (2021). "Multifaceted incremental growth of a geyser discharge apron – Evidence from Geysir, Haukadalur, Iceland". Sedimentary Geology. 419: 105905. doi:10.1016/j.sedgeo.2021.105905. ISSN 0037-0738. https://doi.org/10.1016%2Fj.sedgeo.2021.105905
"Geyser" . Encyclopædia Britannica. Vol. 11 (11th ed.). 1911. pp. 913–915. https://en.wikisource.org/wiki/1911_Encyclop%C3%A6dia_Britannica/Geyser
Hurwitz & Manga 2017, 4.1. Subsurface Processes. - Hurwitz, S.; Manga, M. (2017). "The Fascinating and Complex Dynamics of Geyser Eruptions". Annual Review of Earth and Planetary Sciences. 45 (1): 31–59. doi:10.1146/annurev-earth-063016-015605. https://doi.org/10.1146%2Fannurev-earth-063016-015605
Hurwitz & Manga 2017, 2. Geography and Geology of Geysers. - Hurwitz, S.; Manga, M. (2017). "The Fascinating and Complex Dynamics of Geyser Eruptions". Annual Review of Earth and Planetary Sciences. 45 (1): 31–59. doi:10.1146/annurev-earth-063016-015605. https://doi.org/10.1146%2Fannurev-earth-063016-015605
Walter et al. 2020, Fig. 5.. - Walter, T.R.; Jousset, P.; Allahbakhshi, M.; Witt, T.; Gudmundsson, M.T.; Hersir, G.P. (2020). "Underwater and drone based photogrammetry reveals structural control at Geysir geothermal field in Iceland". Journal of Volcanology and Geothermal Research. 391: 106282. Bibcode:2020JVGR..39106282W. doi:10.1016/j.jvolgeores.2018.01.010. https://ui.adsabs.harvard.edu/abs/2020JVGR..39106282W
Walter et al. 2020, Fig. 5.. - Walter, T.R.; Jousset, P.; Allahbakhshi, M.; Witt, T.; Gudmundsson, M.T.; Hersir, G.P. (2020). "Underwater and drone based photogrammetry reveals structural control at Geysir geothermal field in Iceland". Journal of Volcanology and Geothermal Research. 391: 106282. Bibcode:2020JVGR..39106282W. doi:10.1016/j.jvolgeores.2018.01.010. https://ui.adsabs.harvard.edu/abs/2020JVGR..39106282W
Walter et al. 2020, 5. Conclusions. - Walter, T.R.; Jousset, P.; Allahbakhshi, M.; Witt, T.; Gudmundsson, M.T.; Hersir, G.P. (2020). "Underwater and drone based photogrammetry reveals structural control at Geysir geothermal field in Iceland". Journal of Volcanology and Geothermal Research. 391: 106282. Bibcode:2020JVGR..39106282W. doi:10.1016/j.jvolgeores.2018.01.010. https://ui.adsabs.harvard.edu/abs/2020JVGR..39106282W
Hurwitz & Manga 2017, Figure 1b. - Hurwitz, S.; Manga, M. (2017). "The Fascinating and Complex Dynamics of Geyser Eruptions". Annual Review of Earth and Planetary Sciences. 45 (1): 31–59. doi:10.1146/annurev-earth-063016-015605. https://doi.org/10.1146%2Fannurev-earth-063016-015605
Walter et al. 2020, 1. Background. - Walter, T.R.; Jousset, P.; Allahbakhshi, M.; Witt, T.; Gudmundsson, M.T.; Hersir, G.P. (2020). "Underwater and drone based photogrammetry reveals structural control at Geysir geothermal field in Iceland". Journal of Volcanology and Geothermal Research. 391: 106282. Bibcode:2020JVGR..39106282W. doi:10.1016/j.jvolgeores.2018.01.010. https://ui.adsabs.harvard.edu/abs/2020JVGR..39106282W
Pasvanoglu 1998, p. 283. - Pasvanoglu, S. (1998). "Geochemical study of the Geysir geothermal field in Haukadalur, S-Iceland" (PDF). In Pasvanoglu, S.; Kristmannsdóttir, H.; Björnsson, S.; Torfason, H. (eds.). Geothermal Training Programme Reports 1998. United Nations University. pp. 281–318. Retrieved 29 January 2024. https://www.researchgate.net/profile/Suzan-Pasvanoglu/publication/292227219_Geochemical_study_of_the_Geysir_geothermal_field_in_Haukadalur_S-Iceland/links/6149df7ba3df59440b9fcc59/Geochemical-study-of-the-Geysir-geothermal-field-in-Haukadalur-S-Iceland.pdf
Pasvanoglu 1998, pp. 282–3. - Pasvanoglu, S. (1998). "Geochemical study of the Geysir geothermal field in Haukadalur, S-Iceland" (PDF). In Pasvanoglu, S.; Kristmannsdóttir, H.; Björnsson, S.; Torfason, H. (eds.). Geothermal Training Programme Reports 1998. United Nations University. pp. 281–318. Retrieved 29 January 2024. https://www.researchgate.net/profile/Suzan-Pasvanoglu/publication/292227219_Geochemical_study_of_the_Geysir_geothermal_field_in_Haukadalur_S-Iceland/links/6149df7ba3df59440b9fcc59/Geochemical-study-of-the-Geysir-geothermal-field-in-Haukadalur-S-Iceland.pdf
Hurwitz & Manga 2017, 2. Geography and Geology of Geysers. - Hurwitz, S.; Manga, M. (2017). "The Fascinating and Complex Dynamics of Geyser Eruptions". Annual Review of Earth and Planetary Sciences. 45 (1): 31–59. doi:10.1146/annurev-earth-063016-015605. https://doi.org/10.1146%2Fannurev-earth-063016-015605
Walter et al. 2020, 1. Background, 5. Conclusions. - Walter, T.R.; Jousset, P.; Allahbakhshi, M.; Witt, T.; Gudmundsson, M.T.; Hersir, G.P. (2020). "Underwater and drone based photogrammetry reveals structural control at Geysir geothermal field in Iceland". Journal of Volcanology and Geothermal Research. 391: 106282. Bibcode:2020JVGR..39106282W. doi:10.1016/j.jvolgeores.2018.01.010. https://ui.adsabs.harvard.edu/abs/2020JVGR..39106282W
Jones & Renaut 2021, Geology setting. - Jones, B.; Renaut, R.W. (2021). "Multifaceted incremental growth of a geyser discharge apron – Evidence from Geysir, Haukadalur, Iceland". Sedimentary Geology. 419: 105905. doi:10.1016/j.sedgeo.2021.105905. ISSN 0037-0738. https://doi.org/10.1016%2Fj.sedgeo.2021.105905
Jones et al. 2007, p. 1241. - Jones, B.; Renaut, R.W.; Torfason, H.; Owen, R.B. (2007). "The geological history of Geysir, Iceland: a tephrochronological approach to the dating of sinter". Journal of the Geological Society. 164 (6): 1241–1252. doi:10.1144/0016-76492006-178. https://doi.org/10.1144%2F0016-76492006-178
Jones et al. 2007, p. 1241. - Jones, B.; Renaut, R.W.; Torfason, H.; Owen, R.B. (2007). "The geological history of Geysir, Iceland: a tephrochronological approach to the dating of sinter". Journal of the Geological Society. 164 (6): 1241–1252. doi:10.1144/0016-76492006-178. https://doi.org/10.1144%2F0016-76492006-178
Jones & Renaut 2021, Abstract. - Jones, B.; Renaut, R.W. (2021). "Multifaceted incremental growth of a geyser discharge apron – Evidence from Geysir, Haukadalur, Iceland". Sedimentary Geology. 419: 105905. doi:10.1016/j.sedgeo.2021.105905. ISSN 0037-0738. https://doi.org/10.1016%2Fj.sedgeo.2021.105905
Jones & Renaut 2021, Conclusions. - Jones, B.; Renaut, R.W. (2021). "Multifaceted incremental growth of a geyser discharge apron – Evidence from Geysir, Haukadalur, Iceland". Sedimentary Geology. 419: 105905. doi:10.1016/j.sedgeo.2021.105905. ISSN 0037-0738. https://doi.org/10.1016%2Fj.sedgeo.2021.105905
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"Historian Explains Why Icelandic Government Owns Geysir". 2 April 2014. Archived from the original on 25 September 2022. Retrieved 31 January 2024. https://web.archive.org/web/20220925025648/https://www.icelandreview.com/news/historian-explains-why-icelandic-government-owns-geysir/
"Geysir Soon To Be Bought". 25 August 2017. Archived from the original on 31 January 2024. Retrieved 31 January 2024. https://web.archive.org/web/20240131195956/https://www.icelandreview.com/news/geysir-soon-be-bought/