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Description: De‑Risking and Accelerating RNG Projects via Collaborative Delivery
De‑Risking and Accelerating RNG Projects via Collaborative Delivery

De‑Risking and Accelerating RNG Projects via Collaborative Delivery

De‑Risking and Accelerating RNG Projects via Collaborative Delivery

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Description: De‑Risking and Accelerating RNG Projects via Collaborative Delivery
De‑Risking and Accelerating RNG Projects via Collaborative Delivery
Abstract
Municipal utilities seek to monetize biogas as renewable natural gas (RNG) yet face capital constraints, technical complexity, and volatile monetization markets. Traditional design–bid–build (DBB) often fragments responsibility and delays projects that must integrate gas upgrading, interconnection, environmental attributes brokerage and long-term operations. Two case studies demonstrate how alternative delivery-Public-Private Partnerships (P3) and Energy Savings Performance Contracts (ESPC)-de-risk execution, accelerate schedules, and improve economics while aligning with utility core missions. At HRSD's Atlantic Treatment Plant (Virginia Beach), a 54 MGD wastewater facility produces ~550 scfm of biogas from thermally hydrolyzed, mesophilic digestion. Under a Design–Build–Own–Operate–Maintain (DBOOM) P3 delivery, Johnson Controls (developer–operator), Virginia Natural Gas (asset owner, interconnection operator, and gas marketer), and Mead & Hunt (Design–Build Engineer Procure Construct) will upgrade biogas to ~430 scfm of pipeline-quality RNG, replacing its usage in legacy boilers/CHP and mitigating the use of an onsite flare. HRSD avoids capital outlay, leases site and biogas rights, and projects $150,000–$800,000 in annual revenue. The project also pioneers a non-prescriptive D3/D5 RIN accounting pathway. Prescriptive guidance from EPA would have yielded ~56/44 D3/D5 split and site-specific testing (over two solids retention times with FOG feed suspended) supports ~96/4 split, anchored by a cellulosic conversion factor near 5,570 BTU HHV/lb VS-materially enhancing RIN attribute value. Manatee County's Lena Road Landfill project uses ESPC with private ownership to monetize landfill gas. As of 2025, ~1,900 scfm is captured; approximately 30% fuels a biosolids dryer at the co-located water reclamation facility and the remaining ~70% is flared. The facility is designed for up to 2,500 scfm and can produce as much as 475,000 MMBTU/year of RNG, avoiding ~24,000 metric tonnes of CO2 annually (≈5,500 passenger vehicles removed). A 20-year gas sale agreement and site lease with Johnson Controls and Nopetro Energy transfers financial and operational risk, preserves bonding capacity, and delivers revenue through a flat payment plus a share of gross sales, expected at $883k –$1.7 million per year. Measurement and verification services during operations guarantees system performance and compensation. Methodologically, alternative delivery optimizes risk and speed through (1) a risk allocation matrix assigning technology, market, operations, and financing risk to capable private & public partners; (2) integrated EPC enabling early procurement, parallel permitting, and coordinated construction sequencing-compressing timelines (illustratively 12 months EPC versus 16 months DBB) under Guaranteed Maximum Price and Key Performance Indicators (KPI) guarantees; and (3) early alignment of responsibilities for offtake, attribute marketing, and interconnection to secure revenue and project certainty. Findings confirm benefits: HRSD's DBOOM eliminates HRSD's capital, embeds uptime KPIs and lifecycle commitments, and improves RIN value via a ~96/4 D3/D5 split versus ~56/44 prescriptive. Manatee County's ESPC preserves bonding capacity, expands capture toward a 2,500 scfm design envelope, and converts flared gas into durable revenue with measurable greenhouse-gas reductions. Significance for municipalities: Alternative delivery in RNG initiatives allows municipalities to stay focused on their core mission without extending into owning and operating an energy center, which becomes a contracted service with guaranteed outcomes. Municipal utilities retain oversight and policy alignment while public & private partners manage technology integration, attribute monetization, and long-term operations. The results are faster schedules, preserved bonding capacity, and resilient performance over decades, with co-benefits in carbon reduction, circular economy, and local economic development. Practical guidance: The pathway to de-risk and accelerate RNG projects via alternative delivery methods is clear: define objectives that prioritize risk transfer, schedule, and revenue certainty; select P3/DBOOM, DBOM, or ESPC/private ownership via a risk allocation matrix; engage an integrated design–build partner; align offtake and RIN strategy early, including interconnection requirements; specify KPI guarantees for uptime and methane recovery; and implement measurement and verification to protect revenue streams. Replicable across wastewater treatment plants, landfills, and co-digestion plants, these strategies enable rapid, reliable conversion of biogas to pipeline-quality RNG with risk borne by partners optimized to manage it.
This paper was presented at WEFTEC 2026 in New Orleans, Louisiana.
Presentation time
14:30:00
14:45:00
Session time
13:30:00
15:00:00
SessionImplementing RNG: Utility Strategies in Delivery Models and Operations
Session locationErnest N. Morial Convention Center
TopicBiosolids and Residuals, Circular Water Economy, Energy Production, Conservation, and Management
TopicBiosolids and Residuals, Circular Water Economy, Energy Production, Conservation, and Management
Author(s)
Alvarez, Eider, Kontorousis, Alexis, VanVoorhis, Jeff, Sheposh, Amanda
Author(s)E. Alvarez1, A. Kontorousis1, J. VanVoorhis2, A. Sheposh4
Author affiliation(s)Johnson Controls, 1Johnson Controls, 1Mead & Hunt, 2
SourceProceedings of the Water Environment Federation
Document typeConference Paper
PublisherWater Environment Federation
Print publication date Sep 2026
DOI10.2175/193864718825160554
Volume / Issue
Content sourceWEFTEC
Copyright2026
Word count9

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Description: De‑Risking and Accelerating RNG Projects via Collaborative Delivery
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Description: De‑Risking and Accelerating RNG Projects via Collaborative Delivery
De‑Risking and Accelerating RNG Projects via Collaborative Delivery
Abstract
Municipal utilities seek to monetize biogas as renewable natural gas (RNG) yet face capital constraints, technical complexity, and volatile monetization markets. Traditional design–bid–build (DBB) often fragments responsibility and delays projects that must integrate gas upgrading, interconnection, environmental attributes brokerage and long-term operations. Two case studies demonstrate how alternative delivery-Public-Private Partnerships (P3) and Energy Savings Performance Contracts (ESPC)-de-risk execution, accelerate schedules, and improve economics while aligning with utility core missions. At HRSD's Atlantic Treatment Plant (Virginia Beach), a 54 MGD wastewater facility produces ~550 scfm of biogas from thermally hydrolyzed, mesophilic digestion. Under a Design–Build–Own–Operate–Maintain (DBOOM) P3 delivery, Johnson Controls (developer–operator), Virginia Natural Gas (asset owner, interconnection operator, and gas marketer), and Mead & Hunt (Design–Build Engineer Procure Construct) will upgrade biogas to ~430 scfm of pipeline-quality RNG, replacing its usage in legacy boilers/CHP and mitigating the use of an onsite flare. HRSD avoids capital outlay, leases site and biogas rights, and projects $150,000–$800,000 in annual revenue. The project also pioneers a non-prescriptive D3/D5 RIN accounting pathway. Prescriptive guidance from EPA would have yielded ~56/44 D3/D5 split and site-specific testing (over two solids retention times with FOG feed suspended) supports ~96/4 split, anchored by a cellulosic conversion factor near 5,570 BTU HHV/lb VS-materially enhancing RIN attribute value. Manatee County's Lena Road Landfill project uses ESPC with private ownership to monetize landfill gas. As of 2025, ~1,900 scfm is captured; approximately 30% fuels a biosolids dryer at the co-located water reclamation facility and the remaining ~70% is flared. The facility is designed for up to 2,500 scfm and can produce as much as 475,000 MMBTU/year of RNG, avoiding ~24,000 metric tonnes of CO2 annually (≈5,500 passenger vehicles removed). A 20-year gas sale agreement and site lease with Johnson Controls and Nopetro Energy transfers financial and operational risk, preserves bonding capacity, and delivers revenue through a flat payment plus a share of gross sales, expected at $883k –$1.7 million per year. Measurement and verification services during operations guarantees system performance and compensation. Methodologically, alternative delivery optimizes risk and speed through (1) a risk allocation matrix assigning technology, market, operations, and financing risk to capable private & public partners; (2) integrated EPC enabling early procurement, parallel permitting, and coordinated construction sequencing-compressing timelines (illustratively 12 months EPC versus 16 months DBB) under Guaranteed Maximum Price and Key Performance Indicators (KPI) guarantees; and (3) early alignment of responsibilities for offtake, attribute marketing, and interconnection to secure revenue and project certainty. Findings confirm benefits: HRSD's DBOOM eliminates HRSD's capital, embeds uptime KPIs and lifecycle commitments, and improves RIN value via a ~96/4 D3/D5 split versus ~56/44 prescriptive. Manatee County's ESPC preserves bonding capacity, expands capture toward a 2,500 scfm design envelope, and converts flared gas into durable revenue with measurable greenhouse-gas reductions. Significance for municipalities: Alternative delivery in RNG initiatives allows municipalities to stay focused on their core mission without extending into owning and operating an energy center, which becomes a contracted service with guaranteed outcomes. Municipal utilities retain oversight and policy alignment while public & private partners manage technology integration, attribute monetization, and long-term operations. The results are faster schedules, preserved bonding capacity, and resilient performance over decades, with co-benefits in carbon reduction, circular economy, and local economic development. Practical guidance: The pathway to de-risk and accelerate RNG projects via alternative delivery methods is clear: define objectives that prioritize risk transfer, schedule, and revenue certainty; select P3/DBOOM, DBOM, or ESPC/private ownership via a risk allocation matrix; engage an integrated design–build partner; align offtake and RIN strategy early, including interconnection requirements; specify KPI guarantees for uptime and methane recovery; and implement measurement and verification to protect revenue streams. Replicable across wastewater treatment plants, landfills, and co-digestion plants, these strategies enable rapid, reliable conversion of biogas to pipeline-quality RNG with risk borne by partners optimized to manage it.
This paper was presented at WEFTEC 2026 in New Orleans, Louisiana.
Presentation time
14:30:00
14:45:00
Session time
13:30:00
15:00:00
SessionImplementing RNG: Utility Strategies in Delivery Models and Operations
Session locationErnest N. Morial Convention Center
TopicBiosolids and Residuals, Circular Water Economy, Energy Production, Conservation, and Management
TopicBiosolids and Residuals, Circular Water Economy, Energy Production, Conservation, and Management
Author(s)
Alvarez, Eider, Kontorousis, Alexis, VanVoorhis, Jeff, Sheposh, Amanda
Author(s)E. Alvarez1, A. Kontorousis1, J. VanVoorhis2, A. Sheposh4
Author affiliation(s)Johnson Controls, 1Johnson Controls, 1Mead & Hunt, 2
SourceProceedings of the Water Environment Federation
Document typeConference Paper
PublisherWater Environment Federation
Print publication date Sep 2026
DOI10.2175/193864718825160554
Volume / Issue
Content sourceWEFTEC
Copyright2026
Word count9

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Alvarez, Eider. De‑Risking and Accelerating RNG Projects via Collaborative Delivery. Water Environment Federation, 2026. Web. 28 Sep. 2026. <https://www.accesswater.org?id=-10128389CITANCHOR>.
Alvarez, Eider. De‑Risking and Accelerating RNG Projects via Collaborative Delivery. Water Environment Federation, 2026. Accessed September 28, 2026. https://www.accesswater.org/?id=-10128389CITANCHOR.
Alvarez, Eider
De‑Risking and Accelerating RNG Projects via Collaborative Delivery
Access Water
Water Environment Federation
September 30, 2026
September 28, 2026
https://www.accesswater.org/?id=-10128389CITANCHOR