Showing posts with label EOR_Methane. Show all posts
Showing posts with label EOR_Methane. Show all posts

Wednesday, August 28, 2019

The Irony Of It All -- August 28, 2019

Note: we've been through this before -- see this note from July 30, 2019.

The best I can do right now with this; will try to get a better link later.
https://webcache.googleusercontent.com/search?q=cache:ovRT-wBM8jgJ:https://www.netl.doe.gov/sites/default/files/netl-file/J-Sorenson-Bakken.pdf+&cd=1&hl=en&ct=clnk&gl=us
From 2017:
Oil production grew significantly from 0.2 million barrels per day (bpd) to 1.1 million bpd in the Bakken petroleum system from 2009 to 2014. A large volume of associated gas (1.6 billion cubic feet per day) has also been produced with the oil. A substantial part (10%) of this produced gas is flared off because of the low natural gas price and limited infrastructure for gathering and transporting the gas from the well sites. Such a large scale of gas flaring not only wastes energy but also emits contaminants such as SOx, NOx, and CO2 to the atmosphere. Reduction of flaring and utilization of produced gas are important steps toward sustained development of the Bakken.
The potential for recycled gas enhanced oil recovery (EOR) is being investigated as a method of reducing flaring through utilization. However, large-scale gas flooding might be difficult for the Bakken because of the difference between the low-permeability matrix and the highly conductive hydraulic and natural fracture networks, which may lead to low sweep efficiency. Instead, this research by the Energy & Environmental Research Center (EERC) has aimed to investigate, through a series of laboratory experiments and numerical simulation activities, the potential to extract oil from the tight rocks by taking advantage of diffusion-based processes.
Oil and gas produced from Bakken wells were characterized, and the reservoir formation properties were analyzed based upon core samples. A series of oil extraction experiments with varying gas (solvent) compositions were conducted. The minimum miscibility pressure (MMP) of various produced gas components and oil was measured to determine the pressure required for effective extraction.
Based on the experimental results, a well-scale model was developed to simulate the performance of recycled gas EOR.
Results showed CO2 and produced Bakken gas to be miscible with the oil in reservoir conditions (5000 psi, 230°F).
The measured MMPs for pure CO2 and ethane with typical Bakken oil samples were 2528 and 1344 psi, respectively.
The presence of methane in the gas increased MMP, but miscibility was still achievable under reservoir conditions.
CO2 and ethane enabled extraction of most oil components from the rocks during a 24-hour experimental period, but methane exhibited strong molecular selectivity for light-end components.
Simulation results showed that a single-well CO2 and methane/ethane huff ‘n’ puff operation could increase cumulative oil production as much as 50% for the multistage fractured wells in the Bakken.
The results of this study clearly showed that produced Bakken gas could be effectively used for recycled gas EOR. Implementation of EOR may have potential to compensate for the production decline of Bakken wells while reducing the quantity of flared gas.
A reader sent a note some time ago mentioning "small molecules." Note the abstract above. "Small molecules.

CO2: a small molecule. 232 pm.

CH4: a small molecule.  200 pm.

H2O: 275 pm.

N2: 370 pm.

Kinetic diameters here.

There's some irony here -- something I alluded to earlier.

The analogy: volatile Bakken crude oil shipped by CBR. What did North Dakota do? Skimmed off the propane, put it in "approved" rail tank cars, and shipped the propane in unit trains to Mexico.

Now, use that flared methane to pump even more crude oil.

Faux environmentalists must be going nuts. 

Tuesday, August 27, 2019

Liberty Resources EOR In The Bakken -- August 27, 2019

Posted earlier:
At least three EOR pilot injection projects in North Dakota, one in the Madison and two in the Bakken are being proposed, from the September, 2019, NDIC hearing dockets (the following are cases, not permits). This is one of them.
  • 27926, NDIC, McGregor-Bakken, to review the pilot injection project order authorizing Liberty Resources Management Co temporary authority to use certain wells located in sections 8/17-158-95 as injection wells for EOR pilot project, Williams County
I'm re-posting this one because a reader sent this shortly after I posted the above:
Brief follow up to the EOR test project that Liberty Resources is doing in conjunction with several other entities, including NETL (National Energy Technology Laboratory).

Following are quotes from NETL's site "netl.doe.gov/node2078' ...

Title: "Bakken Enriched Gas Enhanced EOR."

Project started Nov. 2018 ... ending (field test?) May, 2019.
Max injection rate 2 MM cfd (2 million cfd ... modest amount)
By May 7, 2019, 130 MM cubic feet injected total ... again, modest amount of "rich" gas injected into four (4) wells during six (6) injection periods.
Key Observations:

" ... ability to inject rich gas has been demonstrated ..."

" ... injected gas can be controlled and has been contained within the DSU"

"Modeling predicts incremental oil recovery may exceed 25%."

Project ends 5/31/2020.

It would appear that in the crucial "real world" setting, Liberty has successfully demonstrated that when injecting a propane and ethane enriched gas stream (along with the cheaper, less effective methane), the injections can be monitored, controlled, and contained.

The future ramifications of this are impossible to over state.

There is a short, graphic rich pdf from Liberty describing all this from last year's WBPC.
There's a bit of irony here. If I remember, I will come back to this. The Bakken is full of surprises.