Engineering Hydraulic Fracturing Chemical Treatment to Minimize Water Blocks: A Simulated Reservoir-on-a-Chip Approach

Author(s):  
Jihye Kim ◽  
Ahmed M. Gomaa ◽  
Scott G. Nelson ◽  
Harold G. Hudson
2021 ◽  
Vol 4 (2) ◽  

The most effective methods of well treatment, such as hydraulic fracturing, torpedoing and chemical treatment, are complicated, expensive, unsafe and unsustainable and, most importantly, insufficiently effective. We have proposed a new cost-effective, environmentally friendly and efficient well treatment technology, which has been developed over 20 years and patented many times.


2019 ◽  
Vol 3 (1) ◽  
pp. 1-14
Author(s):  
Miriam R. Aczel ◽  
Karen E. Makuch

High-volume hydraulic fracturing combined with horizontal drilling has “revolutionized” the United States’ oil and gas industry by allowing extraction of previously inaccessible oil and gas trapped in shale rock [1]. Although the United States has extracted shale gas in different states for several decades, the United Kingdom is in the early stages of developing its domestic shale gas resources, in the hopes of replicating the United States’ commercial success with the technologies [2, 3]. However, the extraction of shale gas using hydraulic fracturing and horizontal drilling poses potential risks to the environment and natural resources, human health, and communities and local livelihoods. Risks include contamination of water resources, air pollution, and induced seismic activity near shale gas operation sites. This paper examines the regulation of potential induced seismic activity in Oklahoma, USA, and Lancashire, UK, and concludes with recommendations for strengthening these protections.


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