{"id":7406,"date":"2020-09-10T12:12:17","date_gmt":"2020-09-10T12:12:17","guid":{"rendered":"https:\/\/biodentify.ai\/?p=7406"},"modified":"2020-12-24T09:00:34","modified_gmt":"2020-12-24T09:00:34","slug":"north_usa_case_study","status":"publish","type":"post","link":"https:\/\/biodentify.ai\/north_usa_case_study\/","title":{"rendered":"Bakken and Eagle Ford Shale Productivity Unravelled"},"content":{"rendered":"\n

This work was carried out in joint cooperation between two active Oil and Gas operators.<\/em><\/p>\n\n\n\n

This is our second completed pilot publication, executed just after our Argentina pilot. We\u2019re extremely excited to share these results too. This pilot was performed in the USA; Biodentify applied and blind tested patented DNA fingerprinting technology and, using advanced machine learning algorithms, accurately predicted hydrocarbon presence in the subsurface prior to drilling. <\/p>\n\n\n\n

The Eagle Ford Shale Formation of Southern Texas was chosen as both an unconventional oil and unconventional gas play, whereas the Bakken Shale Formation of North Dakota was chosen as a pure unconventional oil play. Both of these plays have seen substantial exploration and production activities over the past 15-20 years. This project delivered proof of technology in the form of a highly accurate map of subsurface hydrocarbon productivity, predicted with 85% accuracy at 200 blinded sample locations. All results are based on real data from our own fieldwork and we also ranked results, distinguishing high versus low producing wells. <\/p>\n\n\n\n

Biodentify’s patented technology is based on the response elicited in the shallow soil (<30cm) microbial population by hydrocarbons which have migrated from depth to the surface through vertical microseepage. The trace hydrocarbons released are otherwise undetectable, but the bacterial population acts as an extremely sensitive indicator. Samples are collected and analyzed for microbial DNA content leading to a characteristic fingerprint, from which final predictions can be made.<\/p>\n\n\n\n