Opportunity Information: Apply for DE FOA 0001543

  • The DOE-NETL in the energy sector is offering a public funding opportunity titled "Enabling Technologies for Advanced Combustion Systems" and is now available to receive applicants.
  • Interested and eligible applicants and submit their applications by referencing the CFDA number(s): 81.089.
  • This funding opportunity was created on May 18, 2016 and posted on May 18, 2016.
  • Applicants must submit their applications by Jul 18, 2016. (Agency may still review applications by suitable applicants for the remaining/unused allocated funding in 2026.)
  • Each selected applicant is eligible to receive up to $1,500,000.00 in funding.
  • The number of recipients for this funding is limited to 6 candidate(s).
  • Eligible applicants include: Unrestricted (i.e., open to any type of entity above), subject to any clarification in text field entitled Additional Information on Eligibility.
Apply for DE FOA 0001543

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Opportunity Summary:

The U.S. Department of Energy, through the National Energy Technology Laboratory (DOE-NETL), issued a discretionary funding opportunity titled "Enabling Technologies for Advanced Combustion Systems" under Funding Opportunity Number DE FOA 0001543 (CFDA 81.089). The solicitation targets applied research projects aimed at developing practical, enabling technologies that solve key technical barriers limiting the deployment or performance of advanced combustion approaches. The overall theme is advancing combustion-based energy systems by improving how combustion is carried out and integrated so that efficiency, operability, and emissions performance can be improved, with particular attention to pathways that support carbon management.

The opportunity focuses on two specific technology pathways. The first pathway is pressurized oxy-combustion, which generally involves burning fuel in an oxygen-rich environment (often with recycled flue gas) at elevated pressure. Work in this area commonly centers on overcoming the engineering and materials challenges that come with high-pressure, high-temperature operation in oxygen and CO2-rich environments, as well as on improving subsystem integration, heat transfer, corrosion resistance, oxygen delivery strategies, and overall system control. The second pathway is chemical looping combustion, a combustion approach that typically uses an oxygen carrier material (such as a metal oxide) to transfer oxygen to the fuel without direct mixing of air and fuel, which can simplify CO2 capture by producing a concentrated CO2 stream. Applied R&D needs in chemical looping often include oxygen carrier durability and reactivity, attrition resistance, reactor design and scale-up considerations, solids handling, thermal management, and stable long-duration operation. In both pathways, the intent is not basic science alone, but technology development work that can reduce risk and accelerate progress toward viable advanced combustion systems.

Awards were planned to be made as cooperative agreements, which generally means DOE expects substantial involvement during the project period (for example, participation in technical reviews, coordination on milestones, and collaboration on project direction as needed). The anticipated maximum federal funding per award (award ceiling) was $1,500,000, and DOE expected to make approximately 6 awards, indicating a competitive selection with multiple funded projects that together address a range of enabling technology gaps across the two pathways.

Eligibility was listed as unrestricted, meaning the competition was open to any type of entity, subject to any additional eligibility clarifications contained in the full announcement. Typical applicants for this kind of NETL applied research funding can include universities, private companies, national laboratories, non-profits, or consortia, as long as they meet the solicitation requirements and can execute the proposed technical scope.

Key dates for the opportunity show it was created and posted on May 18, 2016, with an application closing date of July 18, 2016 (the original and current closing dates were the same). This places the solicitation in a roughly two-month application window. Overall, the grant opportunity sought targeted, solution-oriented R&D to advance pressurized oxy-combustion and chemical looping combustion by delivering enabling technologies that address the practical obstacles to performance, reliability, and eventual deployment.

Frequently Asked Questions (FAQs)

What is the title of this funding opportunity?

The funding opportunity is titled "Enabling Technologies for Advanced Combustion Systems."

Which federal agency is offering this opportunity?

The opportunity is issued by the U.S. Department of Energy (DOE) through the National Energy Technology Laboratory (DOE-NETL).

What is the Funding Opportunity Number (FOA number)?

The Funding Opportunity Number is DE FOA 0001543.

What CFDA number is associated with this opportunity?

The CFDA number listed is 81.089.

What type of funding opportunity is this?

This is a discretionary funding opportunity focused on applied research and development (applied R&D) for enabling technologies in advanced combustion systems.

What is the main purpose or theme of the solicitation?

The main purpose is to advance combustion-based energy systems by improving how combustion is carried out and integrated so that efficiency, operability, and emissions performance can be improved, with particular attention to pathways that support carbon management.

What kinds of projects is DOE-NETL looking to fund?

DOE-NETL is targeting applied research projects that develop practical, enabling technologies to solve key technical barriers limiting the deployment or performance of advanced combustion approaches. The intent is technology development work that reduces risk and accelerates progress toward viable systems, rather than basic science alone.

Which technology pathways are specifically included?

The opportunity focuses on two pathways: (1) pressurized oxy-combustion and (2) chemical looping combustion.

What is pressurized oxy-combustion in the context of this FOA?

Pressurized oxy-combustion generally involves burning fuel in an oxygen-rich environment (often with recycled flue gas) at elevated pressure. The FOA highlights enabling work that addresses challenges associated with high-pressure, high-temperature operation in oxygen and CO2-rich environments, and improved integration and control of subsystems.

What types of enabling technology challenges are commonly addressed in pressurized oxy-combustion?

Work in this pathway commonly centers on engineering and materials challenges under high-pressure and high-temperature conditions in oxygen and CO2-rich environments, as well as subsystem integration, heat transfer, corrosion resistance, oxygen delivery strategies, and overall system control.

What is chemical looping combustion in the context of this FOA?

Chemical looping combustion typically uses an oxygen carrier material (such as a metal oxide) to transfer oxygen to the fuel without direct mixing of air and fuel, which can simplify CO2 capture by producing a concentrated CO2 stream.

What types of enabling technology challenges are commonly addressed in chemical looping combustion?

Applied R&D needs described include oxygen carrier durability and reactivity, attrition resistance, reactor design and scale-up considerations, solids handling, thermal management, and stable long-duration operation.

Does the FOA emphasize basic science or applied technology development?

The FOA emphasizes applied R&D and practical technology development intended to overcome real-world barriers and reduce deployment risk. It is not described as a basic science-only solicitation.

How does carbon management relate to the projects sought under this opportunity?

The overall theme includes particular attention to pathways that support carbon management. In particular, chemical looping is described as able to simplify CO2 capture by producing a concentrated CO2 stream, and the broader goal includes improved emissions performance.

What award instrument is DOE planning to use?

Awards were planned to be made as cooperative agreements.

What does it mean that awards are cooperative agreements?

It means DOE expects substantial involvement during the project period, such as participation in technical reviews, coordination on milestones, and collaboration on project direction as needed.

What is the maximum federal funding per award?

The anticipated maximum federal funding per award (award ceiling) was $1,500,000.

How many awards did DOE expect to make?

DOE expected to make approximately 6 awards.

Is this a competitive opportunity?

Yes. The FOA indicates DOE expected to make multiple awards (about 6) under a defined award ceiling, implying competitive selection among applicants.

Who is eligible to apply?

Eligibility was listed as unrestricted, meaning the competition was open to any type of entity, subject to any additional eligibility clarifications in the full announcement.

What types of organizations are typical applicants for NETL applied research funding?

Typical applicants can include universities, private companies, national laboratories, non-profits, or consortia, as long as they meet the solicitation requirements and can carry out the proposed technical scope.

When was this opportunity posted?

The opportunity was created and posted on May 18, 2016.

What was the application closing date?

The application closing date was July 18, 2016.

Did the closing date change from the original date?

No. The original and current closing dates were the same (July 18, 2016).

How long was the application window?

Based on the posted date (May 18, 2016) and the closing date (July 18, 2016), the solicitation had an application window of roughly two months.

What is the overall outcome DOE-NETL is trying to achieve with this FOA?

The FOA sought targeted, solution-oriented R&D to advance pressurized oxy-combustion and chemical looping combustion by delivering enabling technologies that address practical obstacles to performance, reliability, and eventual deployment.

Are projects expected to focus on system performance and operability as well as emissions?

Yes. The solicitation emphasizes improving efficiency, operability, and emissions performance through better combustion execution and system integration.

Is subsystem integration and system control within scope?

Yes. For pressurized oxy-combustion, the FOA explicitly notes improving subsystem integration, oxygen delivery strategies, and overall system control as common focus areas.

Are materials and corrosion-related challenges within scope?

Yes. The pressurized oxy-combustion pathway description includes overcoming engineering and materials challenges and improving corrosion resistance under high-pressure, high-temperature oxygen and CO2-rich environments.

Are scale-up and long-duration operation topics relevant under chemical looping?

Yes. The chemical looping pathway description highlights reactor design and scale-up considerations and the need for stable long-duration operation, among other applied R&D needs.

Will DOE be involved after award selection?

Yes. Because the awards are planned as cooperative agreements, DOE expects substantial involvement during the project period, including technical reviews and milestone coordination.

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