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Development and determination of operability margins of a 3D printed Hydrogen Burner system

Development and determination of operability margins of a 3D printed Hydrogen Burner system Subcategory (under Clean Energy): Hydrogen Technology Readiness Level (TRL): TRL 6 – Full prototype at scale Technology Outline (Process Description) A novel 3D printed burner system will be tested and optimized for improved operability margins. The burner system can switch from pure […]

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Open Cathode LT-PEM Fuel Cell

Open Cathode LT-PEM Fuel Cell Subcategory (under Clean Energy): Hydrogen Technology Readiness Level (TRL): TRL 4 – Early prototype Technology Outline (Process Description) Hydrogen utilization technology viz open cathode low temperature PEM fuel cell (OCFC) stack to provide a solution that is characterized by higher efficiency, low noise and vibrations, smaller footprint and lower emissions

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Solid Oxide Fuel Cell/Electrolyser Cell-Reversible SOFC

Solid Oxide Fuel Cell/Electrolyser Cell-Reversible SOFC Subcategory (under Clean Energy): Hydrogen Technology Readiness Level (TRL): TRL 4 – Early prototype Technology Outline (Process Description) Solid Oxide Fuel Cells (SOFC) are viewed as an emerging power generation and environmentally benign technology for securing future energy demands. The inherent advantages of high efficiency, flexibility in fuels used,

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High Capacity Green Energy Storage Device from Native Weed Biomass

High Capacity Green Energy Storage Device from Native Weed Biomass Subcategory (under Clean Energy): Cross Cutting Technology Readiness Level (TRL): TRL 4 – Early prototype Technology Outline (Process Description) The agriculture invasive weed, Parthenium hysterophorus is one of the world’s most destructive invasive species abundantly found biomass species, threatening biodiversity, food security and human health

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Design and Demonstration of Prototype Green Hydrogen Production Process in Biorefinery Platform with Net Zero Emissions

Design and Demonstration of Prototype Green Hydrogen Production Process in Biorefinery Platform with Net Zero Emissions Subcategory (under Clean Energy): Hydrogen Technology Readiness Level (TRL): TRL 5 – Large prototype Technology Outline (Process Description) The project is to develop and demonstrate an integrated, cost-effective and environmentally sustainable biorefinery process to produce green H2 (1,60,000 L/15

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Flow battery system for high altitude

Flow battery system for high altitude Subcategory (under Clean Energy): Storage Technology Readiness Level (TRL): TRL 7 – Pre-commercial demonstration Technology Outline (Process Description) The proposed project aims to develop a Vanadium Redox Flow Battery with an appropriate thermal management system to cater the energy demand in extreme cold climate. The system consists of 50

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A Method To Form A Hybrid Bipolar Supercapacitor

A Method To Form A Hybrid Bipolar Supercapacitor Subcategory (under Clean Energy): Storage Technology Readiness Level (TRL): TRL 3 – Concept needs validation Technology Outline (Process Description) Specific capacitance of supercapacitors depends considerably on the architecture of the fabricated electrode, the size of electrolyte ions, the concentration of the electrolyte ions, and the working potential

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MES/Development of Phase Change Material based Solar Thermal Energy Storage System for Combined Heating and Cooling Applications

MES/Development of Phase Change Material based Solar Thermal Energy Storage System for Combined Heating and Cooling Applications Subcategory (under Clean Energy): Cross Cutting Technology Readiness Level (TRL): TRL 4 – Early prototype Technology Outline (Process Description) This project aimed to develop a PCM-based solar thermal energy storage system for combined heating and cooling applications. This

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Hybrid Energy Storage Devices based on Multifunctional Nanocomposite Materials

Hybrid Energy Storage Devices based on Multifunctional Nanocomposite Materials Subcategory (under Clean Energy): Storage Technology Readiness Level (TRL): TRL 4 – Early prototype Technology Outline (Process Description) Design and fabrication of a sodium ion hybrid capacitor with novel pseudocapacitive layered sodium titanium oxide hydroxide Na2Ti2O4(OH)2 (Na-TOH) material as the anode and highly porous carbon material

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LiNMC and NaNMC/NFM cathode-based battery packs for e-bike

LiNMC and NaNMC/NFM cathode-based battery packs for e-bike Subcategory (under Clean Energy): Cross Cutting Technology Readiness Level (TRL): TRL 4 – Early prototype Technology Outline (Process Description) Nickel manganese and cobalt based cathode materials, known as NMC, are emerging as promising options due to their high discharge capacity compared to conventional materials for application in

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