Technology

ARBOK-Ammonia

ARBOK-Ammonia is an advanced water treatment technology designed to extract ammonia and other pollutants from various wastewater sources — including municipal effluents, industrial discharges, and even brine water.

Overview

ARBOK-Ammonia is an advanced water treatment technology designed to extract ammonia and other pollutants from various wastewater sources — including municipal effluents, industrial discharges, and even brine water. What distinguishes ARBOK-Ammonia is its ability to transform a standard wastewater treatment task into a multi-product, resource-recovery operation. Ammonia in wastewater, often considered a problematic pollutant, is turned into an economically valuable asset: the technology produces clean water and isolates ammonia for reuse in fertilizers, chemical compounds, or green hydrogen — its four hydrogen atoms and one nitrogen atom make it a prime raw material for low-cost hydrogen generation. The system scales linearly: more installations mean more productivity, enabling decentralized and localized wastewater-to-value transformation at minimal cost and ecological footprint.

Applications

Agriculture (fertilizer production, irrigation water); urban utilities (wastewater treatment and reuse); green hydrogen production (optional extension). Particularly promising in developing regions, where high fertilizer costs limit agricultural productivity — communities gain access to clean irrigation water and local fertilizer production, all from waste streams.

Operating Principle

ARBOK-Ammonia works after standard wastewater treatment, removing residual concentrations of ammonia ranging from a few mg/L to hundreds. Through a proprietary process, it separates contaminants into a dry residue and ammonia gas or compounds, eliminating environmental risks while opening the door for industrial reuse. No reagents or consumables are required and no intensive energy inputs are needed.

Key Parameters

| Parameter | Value |

|—|—|

| Pollutant focus | Ammonia (NH₃), nitrogen compounds, residual salts, post-treatment impurities |

| Water sources | Municipal wastewater; industrial effluents; brine and mixed collectors |

| Product outputs | Clean water (irrigation and municipal services); ammonia (fertilizer or chemical production); dry waste residue |

| Inlet ammonia range | From a few mg/L to hundreds of mg/L |

| Energy consumption | Extremely low; compatible with solar and renewable sources |

| Reagents / consumables | None |

| Deployment model | 20-foot container modules, plug-and-play, 24/7 year-round |

| Staffing | Minimal; no specialized operators needed |

Architecture and Components

Fully modular system fitting into 20-foot containers; plug-and-play installation requiring no special infrastructure and no permanent buildings. Proprietary separation stage producing a dry residue and ammonia gas or compounds, plus a clean-water output stream.

Advantages

Converts a pollutant into an economically valuable asset. No reagents or consumables required; no intensive energy inputs; compatible with solar and renewable power. Fully modular and deployable anywhere; designed for 24/7 operation with no special infrastructure, no highly skilled staff, and no need for permanent buildings. Scales linearly, enabling decentralized wastewater-to-value transformation at minimal cost and ecological footprint. Optional extension to green hydrogen production.

Integrations

ARBOK-Core · ARBOK-OASIS · ARBOK-BOTTLING · TEG-BETON · Biogenic Waste Modules

Deployment & Operation

Installed downstream of standard wastewater treatment. Delivered in 20-foot container modules, plug-and-play, operating 24/7 year-round with minimal staffing and no specialized operators.

TRL

TRL 7 — Demonstrated in operational environments. The system has been tested and validated as a fully working installation under real-world conditions, showing high performance in both ammonia recovery and water purification.

Market Potential

Developing regions where high fertilizer costs limit agricultural productivity; municipal and industrial wastewater operators; green hydrogen supply chains. [количественные оценки — требует уточнения из базы]

Typical Project Economics

CAPEX и OPEX по проекту не ведём — считаются под конкретную площадку.

Risk Factors

[требует уточнения из базы]

Related Technologies

ARBOK-Core · ARBOK-OASIS · ARBOK-BOTTLING · TEG-BETON · Biogenic Waste Modules