NICHA CCUS
A Carbon Transformation Platform

Turning Industrial Emissions into Climate Solutions

Carbon Capture Innovation

NICHA CCUS: Transforming Carbon Into Opportunity

NICHA CCUS is an advanced carbon transformation platform designed to capture CO₂ directly from industrial emissions and convert it into stable carbonate ions through a pressurized alkaline solution. By enabling on-site conversion and utilization, the system reduces dependence on costly compression, transport, and underground storage.

Core Technology

NICHA CCUS combines advanced chemical engineering, fluid dynamics, and intelligent system design to deliver high-efficiency CO₂ capture and conversion. Using a proprietary low-cost alkaline solution in a closed-loop system, it minimizes chemical consumption while maximizing absorption capacity. At its core, the Self-Induced Venturi Scrubber (SIVS) enables powerful gas–liquid mixing without external energy-intensive blowers, significantly reducing operational costs. Under pressurized conditions, CO₂ is rapidly converted into stable bicarbonate and carbonate forms for long-term storage, while AI-driven monitoring continuously optimizes performance, ensuring efficiency, stability, and scalable industrial deployment.

Utilization Pathways

Ocean Restoration

Supports ocean alkalinity enhancement by increasing the ocean’s natural ability to absorb atmospheric CO₂, while also helping reduce acidification and protect marine ecosystems.

Agricultural Improvement

Strengthens soil carbon sequestration, improves nutrient retention, and supports healthier soil systems that can contribute to stronger and more productive crop yields.

Industrial Circularity

Converts captured carbon into useful materials for industrial wastewater treatment and low-carbon concrete, creating value from emissions through practical downstream applications.

Economic Advantage

NICHA CCUS is built to reduce the cost barriers of conventional carbon capture systems. By removing the need for traditional CCS transport and storage infrastructure, and by using lower-cost alkaline materials, the platform offers a more commercially viable path to carbon management.

< $40
Estimated Capture Cost per Ton CO₂
68–80%
Potential Total Cost Reduction
 

NICHA CCUS Platform

The platform focuses on turning industrial emissions into climate solutions by capturing CO from industrial sources and converting it into valuable carbonate-based resources. Through its proprietary technology, NICHA CCUS enables industries to reduce carbon emissions, lower decarbonization costs, and create new environmental value from captured carbon.

Guided by the vision “Capturing Carbon… Creating Future,” 

NICHA CCUS

Industrial Purpose

Our Mission

To redefine carbon as a resource — not a liability — by developing scalable, efficient, and economically viable solutions for industrial decarbonization.

CCUS
Core
Stable Carbonates
Industrial Value
Future Direction

Our Vision

To lead the transition toward a future where carbon capture is seamlessly integrated into industrial systems, enabling sustainable growth while reducing global emissions.

Capture Systems
Industrial Integration
Sustainable Growth
Lower Emissions
Together, our mission and vision reflect a long-term commitment to making carbon capture more practical, integrated, and economically meaningful across the industries shaping the future.
13

SDG 13: Climate Action Monitor

AS OF: MARCH 25, 2026
Atmospheric Concentration Live Calc
429.380
Global Emissions (YTD) Est. Tonnes
9,824,152,420
SDG 7.2: Renewable Share Benchmark
22.4%
OFFICIAL STATUS: This dashboard utilizes real-world 2026 environmental benchmarks. Atmospheric CO₂ concentration is based on the NOAA Mauna Loa current 2026 daily average. Year-to-Date emissions are calculated via temporal interpolation of the 42.2 Gt global carbon budget to provide real-time strategic context for CCUS deployment relevance. Powered by Realigns Inc

NICHA CCUS Selected as Top 20 Global ImpactPreneur 2026 by UNDP

NICHA CCUS has been officially selected as one of the Top 20 teams for Global ImpactPreneur 2026, a prestigious global program co-hosted with the United Nations Development Programme (UNDP). This recognition highlights the strong potential of NICHA CCUS as a scalable climate technology solution for industrial decarbonization.

The selection reflects growing international confidence in NICHA CCUS – the Carbon Transformation Platform developed by Nicha Carbon Capture Co., Ltd., which enables industries to capture CO₂ emissions and convert them into valuable carbonate solutions in real time. By eliminating the need for CO₂ transport and storage, the technology offers a low-cost, practical pathway toward achieving Net Zero targets across heavy industries.

Ocean Alkalinity Enhancement (OAE)

Controlled alkalinity enhancement strengthens the ocean’s natural capacity to absorb atmospheric CO₂, mitigating acidification while safeguarding marine ecosystems and long-term climate stability.

In coastal or offshore environments, the carbonate solution can be discharged in a controlled manner to increase ocean alkalinity. This enhances the ocean’s natural ability to absorb atmospheric CO₂ and reduces acidification, supporting marine ecosystems and long-term carbon removal.

Soil Carbon Sequestration (SCS)

Mineral-based carbon sequestration transforms agricultural soils into long-term carbon sinks, improving fertility, water retention, and crop productivity while supporting sustainable land management.

In agricultural or inland areas, the carbonate solution can be applied to soil systems where it reacts with minerals such as calcium and magnesium to form stable carbonates. This improves soil structure, enhances nutrient retention, and can significantly increase crop yield while permanently storing carbon.

Industrial Wastewater Treatment

Carbonate-driven treatment neutralizes industrial effluents and stabilizes hazardous contaminants, enabling safer water reuse and contributing to circular, environmentally responsible industrial practices.

The alkaline carbonate solution can be used to treat industrial wastewater by neutralizing acids and precipitating heavy metals and contaminants. These pollutants are converted into stable carbonate sludge, enabling safer disposal or reuse of treated water.

Low-Carbon Concrete Production

Integrating carbonate materials into construction reduces reliance on high-emission cement, delivering stronger, more durable infrastructure while significantly lowering the carbon footprint of the built environment.

Carbonate materials derived from the process can be integrated into cement and concrete production. This improves mechanical strength and durability while reducing cement usage, which is a major source of global CO₂ emissions.

Founder & Inventor

Pakorn Intathep

Mechanical engineer, 10+ yrs alkaline innovation


COO

Nattawan Intathep

Corporate structure, governance, scaling


Production Director

Yokin Charoensuk

9+ yrs alkaline‑water systems


Sr Eng Advisor

Boonlert Laothong

30 years air-treatment & emission control


Electrical Specialist

Suthirak Boonlomsup

30 yrs industrial power integration


Board Advisor

Mujtaba Arain

Serving as a strategic advisor to NICHA CCUS on Artificial Intelligence infrastructure, including intelligent solutions for CCUS, automation, and sustainable technologies.