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The Chief Executive Officer and inventor of DMCA Energy Nigeria Limited, Mr Christopher Amobi, has unveiled a new technology called the Principle of Converted Regenerative Device (PCRD). He described it as a transformative innovation capable of reshaping Nigeria’s energy landscape by providing reliable and sustainable electricity. According to Amabi, this solution is designed to deliver uninterrupted power, stimulate economic growth, and significantly reduce the nation’s dependence on fossil fuels, marking a critical game-changer in the country’s energy quest.

The announcement was made during a media briefing in Lagos, jointly organised by DMCA Energy, the Manufacturers Association of Nigeria (MAN), and the Nigerian Association of Chambers of Commerce, Industry, Mines, and Agriculture (NACCIMA). Amabi explained that the rollout of the PCRD technology is part of a long-term strategy to provide affordable, clean, and sustainable electricity across Nigeria. The primary targets are industries, commercial enterprises, government institutions, and residential clusters, with a special focus on underserved and off-grid communities.

How the PCRD Machine Works

The core innovation of the PCRD machine lies in its unique operational mechanism. It operates using a hydraulic fluid in a closed-loop system that generates force without combustion, fuel consumption, or harmful emissions. Amabi detailed that the machine is built on the principles of conversion and regeneration, in which the hydraulic fluid recycles in a self-sustaining loop. This process enables continuous energy production while eliminating the noise, pollution, and fuel dependency characteristic of conventional generators.

DMCA's PCRD unitImage source: DMCA
DMCA’s PCRD unit
Image source: DMCA

The PCRD technology is reportedly scalable and versatile, capable of generating electricity ranging from 50 kilowatts to 10,000 megawatts. This wide range makes it suitable for a diverse array of applications, from powering small businesses and manufacturing plants to serving entire estates, hospitals, data centres, universities, and state-level power projects. The technology’s flexibility positions it as a potential solution for various energy needs across different sectors of the economy.

Amabi emphasised that the PCRD technology has undergone extensive technical evaluation and validation to ensure its credibility. The machine has been in Nigeria since 2024 and has been tested and certified by the Faculty of Engineering at the University of Lagos and the Standards Organisation of Nigeria (SON). Furthermore, the Lagos State government has examined the technology and recommended independent assessments before its national rollout, adding an official layer of scrutiny to the process.

NACCIMA President Acknowledges the Technology’s Potential

The national president of NACCIMA, Dr Jani Ibrahim, acknowledged the potential of the PCRD technology, describing it as potentially transformative if independently verified and deployed at scale. He highlighted that solving Nigeria’s electricity problem would economically liberate the nation. To build public trust and encourage private-sector adoption, Ibrahim urged DMCA to subject the innovation to NACCIMA’s proof-of-concept platform, emphasising that reliable power is critical for industrial growth and achieving President Tinubu’s goal of a N1 trillion economy by 2030.

Beyond the immediate unveiling, DMCA Energy has outlined a comprehensive plan to support Nigeria’s energy transition through strategic partnerships with federal and state governments, industrial clusters, and financial institutions. The company aims to establish decentralised power hubs across key economic zones, industrial parks, and rural communities. This strategy is intended to reduce reliance on the strained national grid while simultaneously accelerating economic productivity and job creation.

In summary, DMCA Energy’s introduction of the PCRD technology presents a novel approach to power generation that claims to be emission-free, fuel-independent, and scalable. With certifications from academic and standards bodies and a call for further independent validation from industry associations, the technology’s path to market involves a dual focus on proving its efficacy and building strategic partnerships. If successful, its implementation could significantly impact Nigeria’s industrial productivity, energy access, and environmental sustainability.

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