MITWPU: Pioneering Sustainable Energy Solutions for a Greener Future
Key Ideas
- MITWPU unveils groundbreaking innovations in hydrogen and biodiesel production, aligning with India's clean energy goals and green hydrogen mission.
- The hydrogen production technique from sugarcane juice offers a sustainable and cost-effective method, potentially lowering hydrogen production costs to $1/kg.
- The biodiesel batch reactor system using agro-waste-based catalysts promises efficient and eco-friendly biodiesel production, with commercial rollout expected in six months.
- MITWPU's commitment to green energy transition is evident through its research focus on hydrogen and biodiesel technologies, aiming for commercialization within a year.
MIT World Peace University (MITWPU) has introduced two groundbreaking innovations in sustainable energy ahead of World Earth Day. The first innovation involves a unique hydrogen production technique using sugarcane juice, which operates at room temperature and utilizes microorganisms, sea water, and wastewater, significantly reducing production costs. This method not only generates green hydrogen but also converts carbon dioxide into acetic acid, promoting sustainability. Additionally, MITWPU has developed an advanced biodiesel batch reactor system powered by agro-waste-based catalysts to produce clean fuel efficiently. This system eliminates waste generation and offers a low-cost alternative, with a commercial rollout expected within six months. The university's researchers have filed patents for both the hydrogen and biodiesel technologies and are seeking funding from the Ministry of New and Renewable Energy (MNRE) for further development. MITWPU's vision includes establishing a Centre of Excellence on Green Hydrogen and conducting research on hydrogen storage using Metallo-Organic Frameworks (MOFs), emphasizing the institution's commitment to green energy transition and sustainable development. Through industry collaborations, MITWPU aims to scale up these technologies for commercialization within a year, contributing to reducing greenhouse gas emissions and promoting energy independence.
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Projects
Renewable Energy
Innovation
Research
Sustainable Energy
Clean Fuel
Technology Transfer
Green Energy Transition
Industry Collaborations
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