{"id":{"repo_id":"soton","oai_identifier":"oai:eprints.soton.ac.uk:168943"},"canonical_url":"https://search.dev.ndltd.org/etd/soton/oai:eprints.soton.ac.uk:168943","repository":{"repo_id":"soton","name":"University of Southampton","base_url":"https://eprints.soton.ac.uk/cgi/oai2"},"display":{"title":"Palynology, palynofacies and hydrocarbon potential of the Cretaceous rocks of northern Egypt","abstract":"Recent hydrocarbon exploration in the Egyptian northern Western Desert<br/>and the Gulf of Suez have revealed relatively rich hydrocarbon accumulations,<br/>mainly of gas, and demonstrates promising future prospects. In order to improve<br/>our understanding of these areas and to provide a biostratigraphic framework for the<br/>poorly-dated Lower Cretaceous successions palynological analyses were carried<br/>out on 134 ditch cutting samples from the Abu Tunis 1x drilled in the northern<br/>Western Desert, and 78 samples from the BB80-1 borehole in the Gulf of Suez area.<br/>Palynostratigraphic investigations focussed on the lower parts of the<br/>borehole successions as earlier studies have largely ignored these Cretaceous<br/>sediments. A central objective was therefore to construct a biostratigraphic scheme,<br/>for both boreholes. Analysis of the Abu Tunis 1x samples enabled the identification<br/>of eight palynozones largely defined by first occurrences of spores, gymnosperm<br/>and angiosperm pollen and dinoflagellate cysts. Three new palynostratigraphically<br/>defined age divisions are described for the lower part of the Abu Tunis 1x<br/>succession, and a more refined biostratigraphy is made for the upper part of the<br/>sequence. In contrast, the Gulf of Suez BB80-1 borehole samples proved<br/>palynologically lean and provided less information for age dating. It was only<br/>possible to define two palynozones of lower age-resolution than that for Abu Tunis<br/>1x. Spore and pollen grains recovered from both boreholes show characteristics of<br/>the Cretaceous Phytogeographic Provinces of northern Africa-northern South<br/>America. Sporomorphs of the pre-Albian Dicheiropollis/Afropollis Province were<br/>recognised from the lower part of the Abu Tunis 1x borehole and sporomorphs<br/>characteristic of Albian-Cenomanian Elaterate Province identified from both. No<br/>spore and pollen grains of the Senonian Palmae Province have been recognised<br/>due to the complete marine nature of the early Santonian sediments of the Abu<br/>Tunis 1x borehole.<br/>In order to understand the palaeoenvironmental conditions prevailing in the<br/>two boreholes during the deposition of the clastic and carbonate sediments,<br/>quantitative palynological data was combined with geophysical wireline data and<br/>cuttings lithologies. The quantitative distribution of certain terrestrial palynomorphs<br/>with known botanical affinities and palaeoenvironmental significance have been<br/>used as proxy indicators for identifying palaeoclimatic and palaeoceanographic<br/>conditions in both borehole regions.<br/>In general, the lower part of the Abu Tunis 1x succession (consisting of shale<br/>and sandstones) was deposited in deltaic settings during a regressive cycle with<br/>sediments of the upper Alam El Buieb Formation and the Alamein Formation<br/>representing the late Barremian-Aptian transgression cycle, during which shallow<br/>marine settings prevailed. Clastics of the Dahab and Kharita formations represent<br/>another regression in marine sedimentation, where fine silts and a few shale<br/>horizons of the latter formations were deposited in a delta channel system that<br/>prograded through time over prodelta sediments as a response to sea level fall.<br/>Mixed clastic and carbonate sediments of the upper Kharita and lower Bahariya<br/>represent more distal marine deposition as a response to a second minor rise in sea<br/>level, where a partially marine isolated, brackish lagoonal depositional system<br/>developed that was subjected to occasional marine incursions. Integration of the<br/>same datasets demonstrate that the upper carbonate-dominated part of the Abu<br/>Tunis 1x succession (the upper Bahariya, Abu Roash, and Khoman B formations)<br/>was deposited mainly in deeper marine settings interpreted as outer shallow marine,<br/>during a major transgressive cycle. The upper part of the BB80-1 borehole also<br/>shows this late Cretaceous marine transgression, represented by high<br/>concentrations of phytoplankton-rich carbonate sequences. The lower part of this<br/>Gulf of Suez sequence is of latest early Cretaceous age, and appears to have been<br/>deposited in a continental basin, far from source vegetation, possibly in alluvial<br/>settings, which witnessed occasional marine incursions represented by deposition of<br/>a few organic-rich marine shale intercalations that are interpreted as shallow<br/>marginal marine in origin. These environmental fluctuations are related to global<br/>sea level fluctuations and global tectonic processes, such as the breakup of<br/>Western Gondwana during the opening of the Southern Atlantic Ocean.<br/>Investigation of the hydrocarbon potential of the Abu Tunis 1x and BB8-1<br/>shows that the first borehole has source rock potential, with the second of no<br/>potential due to its organic-poor lithology. The lower part of the Abu Tunis 1x<br/>borehole represented by the Alam El Bueib Formation sediments is regarded as a<br/>non commercial gas-prone source rock; this is indicated from visual kerogen study<br/>and vitrinite reflectance investigations of its thermal maturation. A burial history<br/>reconstruction for the Abu Tunis 1x borehole sequence indicates that the lower part<br/>of the Alam El Bueib source rock entered the early stage of thermal maturation<br/>during the Oligocene and is currently at the early mature stage. By investigating the<br/>organic matter quality and conducting maturity analyses such as vitrinite reflectance<br/>studies, the overlying clastics of the Dahab, Kharita and lower Bahariya, and the<br/>carbonates of the upper Bahariya, Abu Roash and Khoman formations are shown<br/>also to contain relatively high amounts of oil-prone organic matter, but it is immature,<br/>and thus they are not active source rocks in the region of the Abu Tunis 1x borehole.<br/>The BB80-1 borehole is made of a thick organic-poor, porous sandstone unit of the<br/>Malha and lower Raha formations that are intercalated by a few organic-rich shale<br/>horizons. This sandstone lithology is regarded as having no hydrocarbon potential.","abstract_html":"Recent hydrocarbon exploration in the Egyptian northern Western Desert&lt;br/&gt;and the Gulf of Suez have revealed relatively rich hydrocarbon accumulations,&lt;br/&gt;mainly of gas, and demonstrates promising future prospects. In order to improve&lt;br/&gt;our understanding of these areas and to provide a biostratigraphic framework for the&lt;br/&gt;poorly-dated Lower Cretaceous successions palynological analyses were carried&lt;br/&gt;out on 134 ditch cutting samples from the Abu Tunis 1x drilled in the northern&lt;br/&gt;Western Desert, and 78 samples from the BB80-1 borehole in the Gulf of Suez area.&lt;br/&gt;Palynostratigraphic investigations focussed on the lower parts of the&lt;br/&gt;borehole successions as earlier studies have largely ignored these Cretaceous&lt;br/&gt;sediments. A central objective was therefore to construct a biostratigraphic scheme,&lt;br/&gt;for both boreholes. Analysis of the Abu Tunis 1x samples enabled the identification&lt;br/&gt;of eight palynozones largely defined by first occurrences of spores, gymnosperm&lt;br/&gt;and angiosperm pollen and dinoflagellate cysts. Three new palynostratigraphically&lt;br/&gt;defined age divisions are described for the lower part of the Abu Tunis 1x&lt;br/&gt;succession, and a more refined biostratigraphy is made for the upper part of the&lt;br/&gt;sequence. In contrast, the Gulf of Suez BB80-1 borehole samples proved&lt;br/&gt;palynologically lean and provided less information for age dating. It was only&lt;br/&gt;possible to define two palynozones of lower age-resolution than that for Abu Tunis&lt;br/&gt;1x. Spore and pollen grains recovered from both boreholes show characteristics of&lt;br/&gt;the Cretaceous Phytogeographic Provinces of northern Africa-northern South&lt;br/&gt;America. Sporomorphs of the pre-Albian Dicheiropollis/Afropollis Province were&lt;br/&gt;recognised from the lower part of the Abu Tunis 1x borehole and sporomorphs&lt;br/&gt;characteristic of Albian-Cenomanian Elaterate Province identified from both. No&lt;br/&gt;spore and pollen grains of the Senonian Palmae Province have been recognised&lt;br/&gt;due to the complete marine nature of the early Santonian sediments of the Abu&lt;br/&gt;Tunis 1x borehole.&lt;br/&gt;In order to understand the palaeoenvironmental conditions prevailing in the&lt;br/&gt;two boreholes during the deposition of the clastic and carbonate sediments,&lt;br/&gt;quantitative palynological data was combined with geophysical wireline data and&lt;br/&gt;cuttings lithologies. The quantitative distribution of certain terrestrial palynomorphs&lt;br/&gt;with known botanical affinities and palaeoenvironmental significance have been&lt;br/&gt;used as proxy indicators for identifying palaeoclimatic and palaeoceanographic&lt;br/&gt;conditions in both borehole regions.&lt;br/&gt;In general, the lower part of the Abu Tunis 1x succession (consisting of shale&lt;br/&gt;and sandstones) was deposited in deltaic settings during a regressive cycle with&lt;br/&gt;sediments of the upper Alam El Buieb Formation and the Alamein Formation&lt;br/&gt;representing the late Barremian-Aptian transgression cycle, during which shallow&lt;br/&gt;marine settings prevailed. Clastics of the Dahab and Kharita formations represent&lt;br/&gt;another regression in marine sedimentation, where fine silts and a few shale&lt;br/&gt;horizons of the latter formations were deposited in a delta channel system that&lt;br/&gt;prograded through time over prodelta sediments as a response to sea level fall.&lt;br/&gt;Mixed clastic and carbonate sediments of the upper Kharita and lower Bahariya&lt;br/&gt;represent more distal marine deposition as a response to a second minor rise in sea&lt;br/&gt;level, where a partially marine isolated, brackish lagoonal depositional system&lt;br/&gt;developed that was subjected to occasional marine incursions. Integration of the&lt;br/&gt;same datasets demonstrate that the upper carbonate-dominated part of the Abu&lt;br/&gt;Tunis 1x succession (the upper Bahariya, Abu Roash, and Khoman B formations)&lt;br/&gt;was deposited mainly in deeper marine settings interpreted as outer shallow marine,&lt;br/&gt;during a major transgressive cycle. The upper part of the BB80-1 borehole also&lt;br/&gt;shows this late Cretaceous marine transgression, represented by high&lt;br/&gt;concentrations of phytoplankton-rich carbonate sequences. The lower part of this&lt;br/&gt;Gulf of Suez sequence is of latest early Cretaceous age, and appears to have been&lt;br/&gt;deposited in a continental basin, far from source vegetation, possibly in alluvial&lt;br/&gt;settings, which witnessed occasional marine incursions represented by deposition of&lt;br/&gt;a few organic-rich marine shale intercalations that are interpreted as shallow&lt;br/&gt;marginal marine in origin. These environmental fluctuations are related to global&lt;br/&gt;sea level fluctuations and global tectonic processes, such as the breakup of&lt;br/&gt;Western Gondwana during the opening of the Southern Atlantic Ocean.&lt;br/&gt;Investigation of the hydrocarbon potential of the Abu Tunis 1x and BB8-1&lt;br/&gt;shows that the first borehole has source rock potential, with the second of no&lt;br/&gt;potential due to its organic-poor lithology. The lower part of the Abu Tunis 1x&lt;br/&gt;borehole represented by the Alam El Bueib Formation sediments is regarded as a&lt;br/&gt;non commercial gas-prone source rock; this is indicated from visual kerogen study&lt;br/&gt;and vitrinite reflectance investigations of its thermal maturation. A burial history&lt;br/&gt;reconstruction for the Abu Tunis 1x borehole sequence indicates that the lower part&lt;br/&gt;of the Alam El Bueib source rock entered the early stage of thermal maturation&lt;br/&gt;during the Oligocene and is currently at the early mature stage. By investigating the&lt;br/&gt;organic matter quality and conducting maturity analyses such as vitrinite reflectance&lt;br/&gt;studies, the overlying clastics of the Dahab, Kharita and lower Bahariya, and the&lt;br/&gt;carbonates of the upper Bahariya, Abu Roash and Khoman formations are shown&lt;br/&gt;also to contain relatively high amounts of oil-prone organic matter, but it is immature,&lt;br/&gt;and thus they are not active source rocks in the region of the Abu Tunis 1x borehole.&lt;br/&gt;The BB80-1 borehole is made of a thick organic-poor, porous sandstone unit of the&lt;br/&gt;Malha and lower Raha formations that are intercalated by a few organic-rich shale&lt;br/&gt;horizons. This sandstone lithology is regarded as having no hydrocarbon potential.","abstract_has_math":false,"creators":["Deaf, Amr Said"],"institution":"University of Southampton","degree_name":"Ph.D.","degree_level":"doctoral","degree_discipline":null,"degree_department":null,"school":null,"contributors":[],"advisors":[],"committee_chairs":[],"committee_members":[],"year":2009,"date_issued":"2009-12","date_published":"2009-12","updated_at":"2026-07-24T04:36:17Z","subjects":[],"languages":[],"rights":[],"rights_urls":[],"identifier_entries":[]},"links":{"outbound_url":null,"outbound_label":null,"outbound_source":null},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:creator","label":"Author","values":["Deaf, Amr Said"]}]},{"id":"academic_context","label":"Academic Context","entries":[{"key":"dc:date","label":"Dc Date","values":["2009-12"]},{"key":"dc:date.issued","label":"Date","values":["2009-12"]},{"key":"dc:publisher.department","label":"Dc Publisher Department","values":["Ocean and Earth Science (pre 2011 reorg)","School of Ocean and Earth Science"]},{"key":"dc:publisher.institution","label":"Dc Publisher Institution","values":["University of Southampton"]},{"key":"dc:relation.isreferencedby","label":"Dc Relation Isreferencedby","values":["https://eprints.soton.ac.uk/168943/"]},{"key":"dc:type","label":"Dc Type","values":["Thesis"]},{"key":"dc:type.qualificationlevel","label":"Dc Type Qualificationlevel","values":["doctoral"]},{"key":"dc:type.qualificationname","label":"Dc Type Qualificationname","values":["Ph.D."]}]},{"id":"identifiers","label":"Identifiers","entries":[{"key":"dc:identifier.uri","label":"Identifier URI","values":["https://eprints.soton.ac.uk/168943/1/Amr_Deaf_PhD_thesis.pdf"]}]},{"id":"additional","label":"Additional Metadata","entries":[{"key":"dc:description.abstract","label":"Abstract","values":["Recent hydrocarbon exploration in the Egyptian northern Western Desert<br/>and the Gulf of Suez have revealed relatively rich hydrocarbon accumulations,<br/>mainly of gas, and demonstrates promising future prospects. In order to improve<br/>our understanding of these areas and to provide a biostratigraphic framework for the<br/>poorly-dated Lower Cretaceous successions palynological analyses were carried<br/>out on 134 ditch cutting samples from the Abu Tunis 1x drilled in the northern<br/>Western Desert, and 78 samples from the BB80-1 borehole in the Gulf of Suez area.<br/>Palynostratigraphic investigations focussed on the lower parts of the<br/>borehole successions as earlier studies have largely ignored these Cretaceous<br/>sediments. A central objective was therefore to construct a biostratigraphic scheme,<br/>for both boreholes. Analysis of the Abu Tunis 1x samples enabled the identification<br/>of eight palynozones largely defined by first occurrences of spores, gymnosperm<br/>and angiosperm pollen and dinoflagellate cysts. Three new palynostratigraphically<br/>defined age divisions are described for the lower part of the Abu Tunis 1x<br/>succession, and a more refined biostratigraphy is made for the upper part of the<br/>sequence. In contrast, the Gulf of Suez BB80-1 borehole samples proved<br/>palynologically lean and provided less information for age dating. It was only<br/>possible to define two palynozones of lower age-resolution than that for Abu Tunis<br/>1x. Spore and pollen grains recovered from both boreholes show characteristics of<br/>the Cretaceous Phytogeographic Provinces of northern Africa-northern South<br/>America. Sporomorphs of the pre-Albian Dicheiropollis/Afropollis Province were<br/>recognised from the lower part of the Abu Tunis 1x borehole and sporomorphs<br/>characteristic of Albian-Cenomanian Elaterate Province identified from both. No<br/>spore and pollen grains of the Senonian Palmae Province have been recognised<br/>due to the complete marine nature of the early Santonian sediments of the Abu<br/>Tunis 1x borehole.<br/>In order to understand the palaeoenvironmental conditions prevailing in the<br/>two boreholes during the deposition of the clastic and carbonate sediments,<br/>quantitative palynological data was combined with geophysical wireline data and<br/>cuttings lithologies. The quantitative distribution of certain terrestrial palynomorphs<br/>with known botanical affinities and palaeoenvironmental significance have been<br/>used as proxy indicators for identifying palaeoclimatic and palaeoceanographic<br/>conditions in both borehole regions.<br/>In general, the lower part of the Abu Tunis 1x succession (consisting of shale<br/>and sandstones) was deposited in deltaic settings during a regressive cycle with<br/>sediments of the upper Alam El Buieb Formation and the Alamein Formation<br/>representing the late Barremian-Aptian transgression cycle, during which shallow<br/>marine settings prevailed. Clastics of the Dahab and Kharita formations represent<br/>another regression in marine sedimentation, where fine silts and a few shale<br/>horizons of the latter formations were deposited in a delta channel system that<br/>prograded through time over prodelta sediments as a response to sea level fall.<br/>Mixed clastic and carbonate sediments of the upper Kharita and lower Bahariya<br/>represent more distal marine deposition as a response to a second minor rise in sea<br/>level, where a partially marine isolated, brackish lagoonal depositional system<br/>developed that was subjected to occasional marine incursions. Integration of the<br/>same datasets demonstrate that the upper carbonate-dominated part of the Abu<br/>Tunis 1x succession (the upper Bahariya, Abu Roash, and Khoman B formations)<br/>was deposited mainly in deeper marine settings interpreted as outer shallow marine,<br/>during a major transgressive cycle. The upper part of the BB80-1 borehole also<br/>shows this late Cretaceous marine transgression, represented by high<br/>concentrations of phytoplankton-rich carbonate sequences. The lower part of this<br/>Gulf of Suez sequence is of latest early Cretaceous age, and appears to have been<br/>deposited in a continental basin, far from source vegetation, possibly in alluvial<br/>settings, which witnessed occasional marine incursions represented by deposition of<br/>a few organic-rich marine shale intercalations that are interpreted as shallow<br/>marginal marine in origin. These environmental fluctuations are related to global<br/>sea level fluctuations and global tectonic processes, such as the breakup of<br/>Western Gondwana during the opening of the Southern Atlantic Ocean.<br/>Investigation of the hydrocarbon potential of the Abu Tunis 1x and BB8-1<br/>shows that the first borehole has source rock potential, with the second of no<br/>potential due to its organic-poor lithology. The lower part of the Abu Tunis 1x<br/>borehole represented by the Alam El Bueib Formation sediments is regarded as a<br/>non commercial gas-prone source rock; this is indicated from visual kerogen study<br/>and vitrinite reflectance investigations of its thermal maturation. A burial history<br/>reconstruction for the Abu Tunis 1x borehole sequence indicates that the lower part<br/>of the Alam El Bueib source rock entered the early stage of thermal maturation<br/>during the Oligocene and is currently at the early mature stage. By investigating the<br/>organic matter quality and conducting maturity analyses such as vitrinite reflectance<br/>studies, the overlying clastics of the Dahab, Kharita and lower Bahariya, and the<br/>carbonates of the upper Bahariya, Abu Roash and Khoman formations are shown<br/>also to contain relatively high amounts of oil-prone organic matter, but it is immature,<br/>and thus they are not active source rocks in the region of the Abu Tunis 1x borehole.<br/>The BB80-1 borehole is made of a thick organic-poor, porous sandstone unit of the<br/>Malha and lower Raha formations that are intercalated by a few organic-rich shale<br/>horizons. This sandstone lithology is regarded as having no hydrocarbon potential."]},{"key":"dc:format","label":"Dc Format","values":["text"]},{"key":"dc:title","label":"Title","values":["Palynology, palynofacies and hydrocarbon potential of the Cretaceous rocks of northern Egypt"]}]}],"canonical_facts":{"dc:creator":["Deaf, Amr Said"],"dc:date":["2009-12"],"dc:date.issued":["2009-12"],"dc:description.abstract":["Recent hydrocarbon exploration in the Egyptian northern Western Desert<br/>and the Gulf of Suez have revealed relatively rich hydrocarbon accumulations,<br/>mainly of gas, and demonstrates promising future prospects. In order to improve<br/>our understanding of these areas and to provide a biostratigraphic framework for the<br/>poorly-dated Lower Cretaceous successions palynological analyses were carried<br/>out on 134 ditch cutting samples from the Abu Tunis 1x drilled in the northern<br/>Western Desert, and 78 samples from the BB80-1 borehole in the Gulf of Suez area.<br/>Palynostratigraphic investigations focussed on the lower parts of the<br/>borehole successions as earlier studies have largely ignored these Cretaceous<br/>sediments. A central objective was therefore to construct a biostratigraphic scheme,<br/>for both boreholes. Analysis of the Abu Tunis 1x samples enabled the identification<br/>of eight palynozones largely defined by first occurrences of spores, gymnosperm<br/>and angiosperm pollen and dinoflagellate cysts. Three new palynostratigraphically<br/>defined age divisions are described for the lower part of the Abu Tunis 1x<br/>succession, and a more refined biostratigraphy is made for the upper part of the<br/>sequence. In contrast, the Gulf of Suez BB80-1 borehole samples proved<br/>palynologically lean and provided less information for age dating. It was only<br/>possible to define two palynozones of lower age-resolution than that for Abu Tunis<br/>1x. Spore and pollen grains recovered from both boreholes show characteristics of<br/>the Cretaceous Phytogeographic Provinces of northern Africa-northern South<br/>America. Sporomorphs of the pre-Albian Dicheiropollis/Afropollis Province were<br/>recognised from the lower part of the Abu Tunis 1x borehole and sporomorphs<br/>characteristic of Albian-Cenomanian Elaterate Province identified from both. No<br/>spore and pollen grains of the Senonian Palmae Province have been recognised<br/>due to the complete marine nature of the early Santonian sediments of the Abu<br/>Tunis 1x borehole.<br/>In order to understand the palaeoenvironmental conditions prevailing in the<br/>two boreholes during the deposition of the clastic and carbonate sediments,<br/>quantitative palynological data was combined with geophysical wireline data and<br/>cuttings lithologies. The quantitative distribution of certain terrestrial palynomorphs<br/>with known botanical affinities and palaeoenvironmental significance have been<br/>used as proxy indicators for identifying palaeoclimatic and palaeoceanographic<br/>conditions in both borehole regions.<br/>In general, the lower part of the Abu Tunis 1x succession (consisting of shale<br/>and sandstones) was deposited in deltaic settings during a regressive cycle with<br/>sediments of the upper Alam El Buieb Formation and the Alamein Formation<br/>representing the late Barremian-Aptian transgression cycle, during which shallow<br/>marine settings prevailed. Clastics of the Dahab and Kharita formations represent<br/>another regression in marine sedimentation, where fine silts and a few shale<br/>horizons of the latter formations were deposited in a delta channel system that<br/>prograded through time over prodelta sediments as a response to sea level fall.<br/>Mixed clastic and carbonate sediments of the upper Kharita and lower Bahariya<br/>represent more distal marine deposition as a response to a second minor rise in sea<br/>level, where a partially marine isolated, brackish lagoonal depositional system<br/>developed that was subjected to occasional marine incursions. Integration of the<br/>same datasets demonstrate that the upper carbonate-dominated part of the Abu<br/>Tunis 1x succession (the upper Bahariya, Abu Roash, and Khoman B formations)<br/>was deposited mainly in deeper marine settings interpreted as outer shallow marine,<br/>during a major transgressive cycle. The upper part of the BB80-1 borehole also<br/>shows this late Cretaceous marine transgression, represented by high<br/>concentrations of phytoplankton-rich carbonate sequences. The lower part of this<br/>Gulf of Suez sequence is of latest early Cretaceous age, and appears to have been<br/>deposited in a continental basin, far from source vegetation, possibly in alluvial<br/>settings, which witnessed occasional marine incursions represented by deposition of<br/>a few organic-rich marine shale intercalations that are interpreted as shallow<br/>marginal marine in origin. These environmental fluctuations are related to global<br/>sea level fluctuations and global tectonic processes, such as the breakup of<br/>Western Gondwana during the opening of the Southern Atlantic Ocean.<br/>Investigation of the hydrocarbon potential of the Abu Tunis 1x and BB8-1<br/>shows that the first borehole has source rock potential, with the second of no<br/>potential due to its organic-poor lithology. The lower part of the Abu Tunis 1x<br/>borehole represented by the Alam El Bueib Formation sediments is regarded as a<br/>non commercial gas-prone source rock; this is indicated from visual kerogen study<br/>and vitrinite reflectance investigations of its thermal maturation. A burial history<br/>reconstruction for the Abu Tunis 1x borehole sequence indicates that the lower part<br/>of the Alam El Bueib source rock entered the early stage of thermal maturation<br/>during the Oligocene and is currently at the early mature stage. By investigating the<br/>organic matter quality and conducting maturity analyses such as vitrinite reflectance<br/>studies, the overlying clastics of the Dahab, Kharita and lower Bahariya, and the<br/>carbonates of the upper Bahariya, Abu Roash and Khoman formations are shown<br/>also to contain relatively high amounts of oil-prone organic matter, but it is immature,<br/>and thus they are not active source rocks in the region of the Abu Tunis 1x borehole.<br/>The BB80-1 borehole is made of a thick organic-poor, porous sandstone unit of the<br/>Malha and lower Raha formations that are intercalated by a few organic-rich shale<br/>horizons. This sandstone lithology is regarded as having no hydrocarbon potential."],"dc:format":["text"],"dc:identifier.uri":["https://eprints.soton.ac.uk/168943/1/Amr_Deaf_PhD_thesis.pdf"],"dc:publisher.department":["Ocean and Earth Science (pre 2011 reorg)","School of Ocean and Earth Science"],"dc:publisher.institution":["University of Southampton"],"dc:relation.isreferencedby":["https://eprints.soton.ac.uk/168943/"],"dc:title":["Palynology, palynofacies and hydrocarbon potential of the Cretaceous rocks of northern Egypt"],"dc:type":["Thesis"],"dc:type.qualificationlevel":["doctoral"],"dc:type.qualificationname":["Ph.D."]},"updated_at":"2026-07-24T04:36:17Z"}