Download the Ammonia Recovery Industry Briefing

A technical briefing on OTAR® - Organics Thermal Ammonia Recovery, nitrogen removal, compliance, and cost reduction.

 

This industry briefing explains how OTAR® recovers ammonia from wastewater, reduces nitrogen discharge, cuts chemical use, and improves compliance with tightening environmental regulations. Get performance data, process diagrams, and real case studies.

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The Organics Group of Companies

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Here’s an overview of the topics included in the briefing.

The full briefing includes detailed analysis, engineering diagrams, and regulatory insights you can apply immediately.

New and stricter EPA nutrient discharge regulations and state-level emission standards are reshaping how municipal and industrial wastewater treatment facilities operate across the United States.


Utilities and industries that delay adapting face higher compliance costs, penalties, and carbon liabilities.
OTAR® is a proven, cost-effective wastewater treatment solution that reduces carbon emissions and helps facilities stay compliant while unlocking new operational efficiencies.

The Compliance Challenge

The Pressure Is On for U.S. Wastewater Operators

  • EPA enforcement of nutrient discharge limits is expanding in regions such as the Chesapeake Bay watershed, Florida, California, and the Midwest.

  • Biological nutrient removal (BNR) methods consume large amounts of energy and emit N₂O, a greenhouse gas nearly 300× more potent than CO₂.

  • Rising carbon prices and reporting requirements increase the financial burden of outdated nitrogen removal methods.

OTAR® at a Glance : A Proven Low-Carbon Solution

At Organics, we guide industries through the entire journey — from waste management to renewable energy use.
Our integrated approach ensures that every stage adds value, reduces emissions, and creates new revenue streams.

  • Thermal ammonia recovery with up to 98.5% removal efficiency.

  • Uses waste heat, avoiding costly caustic/acid chemicals.

  • Cuts carbon footprint by avoiding N₂O emissions and reducing indirect emissions from synthetic fertiliser production.

  • 25+ years of operational experience with 17 plants worldwide.

  • Reduces nitrogen removal costs by up to 60–80% compared with traditional biological methods.

  • Easy retrofit for anaerobic digester wastewater treatment and landfill leachate treatment facilities.

Choosing the Right Wastewater Treatment Technology

Compared with traditional nitrogen removal technologies, OTAR® combines cost-effectiveness, energy efficiency, and measurable carbon savings, helping facilities stay competitive and compliant under evolving U.S. regulations.

Comparison Table between OTAR® and other technology

Technology Typical Cost
(GBP/kg-N)
Chemical Use Carbon & Compliance Impact Notes / Suitability
OTAR® (Thermal Ammonia Recovery) ≈ 0.45 Uses waste heat, no caustic/acid Avoids N₂O emissions, reduces carbon footprint, supports EPA compliance Proven, modular, ideal for high-N sidestreams & landfill leachate
pH-Adjusted Thermal Stripping ≈ 1.30 Requires caustic & acid Moderate GHG reduction, higher operating costs Chemical handling and disposal required
Biological Nitrification-Denitrification (BNR) ≈ 2.95 Needs aeration & carbon source Generates N₂O (≈300× CO₂ warming), high energy demand Common but increasingly challenged by carbon rules
Anammox Biological Process ≈ 2.25 Sensitive biological process Lower energy than BNR but still emits some N₂O Limited by stability and site conditions
Technology
OTAR® (Thermal Ammonia Recovery)
Typical Cost
≈ 0.45 GBP/kg-N
Chemical Use
Uses waste heat, no caustic/acid
Carbon & Compliance Impact
Avoids N₂O emissions, reduces carbon footprint, supports EPA compliance
Notes / Suitability
Proven, modular, ideal for high-N sidestreams & landfill leachate
Technology
pH-Adjusted Thermal Stripping
Typical Cost
≈ 1.30 GBP/kg-N
Chemical Use
Requires caustic & acid
Carbon & Compliance Impact
Moderate GHG reduction, higher operating costs
Notes / Suitability
Chemical handling and disposal required
Technology
Biological Nitrification–Denitrification (BNR)
Typical Cost
≈ 2.95 GBP/kg-N
Chemical Use
Needs aeration & carbon source
Carbon & Compliance Impact
Generates N₂O (≈300× CO₂ warming), high energy demand
Notes / Suitability
Common but increasingly challenged by carbon rules
Technology
Anammox Biological Process
Typical Cost
≈ 2.25 GBP/kg-N
Chemical Use
Sensitive biological process
Carbon & Compliance Impact
Lower energy than BNR but still emits some N₂O
Notes / Suitability
Limited by stability and site conditions

Download the full version to explore technical details, performance data, and case studies.

Why Act Now

Regulatory, Financial, and Climate Pressures Are Rising

  • Tighter discharge permits and EPA compliance reporting are already impacting U.S. utilities and industries.

  • Growing demand for low-carbon wastewater treatment aligns with corporate ESG and climate targets.

  • Facilities that move early can capture carbon offsets, avoid penalties, and reduce long-term treatment costs.

    Calculator: Plan with Confidence

    Understand the business case for your wastewater treatment plant.
    Our online calculator helps you model:

    • Typical cost savings from replacing conventional methods with OTAR®

    • Reduction in chemical usage compared to standard treatment

    • Carbon-emission savings and compliance with environmental regulations

    • ROI, payback period, and sustainability impact for your operations

    Understand how OTAR® supports your business in meeting carbon emission goals and regulatory requirements.

    Download the Industry Briefing

    Discover how OTAR® helps you stay compliant, cut emissions, and reduce wastewater costs — register below to get the Industry Briefing PDF for insights on boosting compliance, carbon performance, and efficiency.

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