The Road To Green Hydrogen Is Paved With Deuterium

The Road To Green Hydrogen Is Paved With Deuterium

Support CleanTechnica's work through a Substack subscription, on Patreon, or on Stripe. Help us produce all of the high-quality, original content we publish week after week despite the challenges of content-scraping AI, antisocial media, inflation, and other hurdles. Green hydrogen stakeholders in the US shed many a tear after US President Donald Trump shredded a $7 billion, Biden-era program...

Invention converts one-third of direct sunlight into hydrogen

Invention converts one-third of direct sunlight into hydrogen

Scientists in Germany have built a compact device that converted up to 31.3 percent of incoming sunlight into chemical energy stored as hydrogen during outdoor testing. Put simply, that is almost one-third of the sunlight reaching the device.The researchers say it is the highest reported solar-to-hydrogen efficiency measured under real outdoor conditions. A big step? Potentially. But the machine is...

Design and experimental validation of a smart alkaline electrolyzer-based green hydrogen generation and storage pilot system

Design and experimental validation of a smart alkaline electrolyzer-based green hydrogen generation and storage pilot system

Hydrogen is considered one of the fundamental elements in the universe, carrying energy. Hydrogen is the most abundant element in the universe, accounting for approximately 75% of its baryonic mass (and about 90% of its atoms. It is found in water, the bodies of animals, plants, humans, and birds, as well as in petroleum and its derivatives, and in coal1. Electrolysis is a modern method for obtaining...

Smart Cities World – Batteries and renewables

Smart Cities World – Batteries and renewables

The Q13a-A platform off the coast of Scheveningen, where the PosHYdon pilot is demonstrating that green hydrogen can be produced while natural gas production continuesThe Dutch PosHYdon project demonstrates that infrastructure built for the gas industry could one day be repurposed to produce and transport green hydrogen.Oh no, sadly you have viewed the maximum number of articles before we ask you to...

Quick Disconnect Hydrogen Coupler Market Growth Driven by Hydrogen Refueling Infrastructure Build-Out Through 2035 – News and Statistics

Quick Disconnect Hydrogen Coupler Market Growth Driven by Hydrogen Refueling Infrastructure Build-Out Through 2035 – News and Statistics

AbstractAccording to the latest IndexBox report on the global Quick Disconnect Hydrogen Coupler market, the market enters 2026 with broader demand fundamentals, more disciplined procurement behavior, and a more regionally diversified supply architecture.The global quick disconnect hydrogen coupler market is entering a phase of sustained expansion, with demand projected to rise at a double-digit pace...

Can white hydrogen accelerate India’s energy transition?

Can white hydrogen accelerate India’s energy transition?

The brief Can White Hydrogen Accelerate India’s Energy Transition? Assessing Potential and Pathways has been authored by Rajakumaran, Hashvitha, Karan Kothadiya, and Deepak Yadav from the Council on Energy, Environment and Water. This issue brief assesses the relevance of white hydrogen for India by examining its formation mechanisms, global developments, India’s geological potential, and...

Climate Fund Managers Closes 3M for South Africa’s Green Hydrogen Push

Climate Fund Managers Closes $183M for South Africa’s Green Hydrogen Push

Dutch investment manager Climate Fund Managers (CFM) has locked in ZAR 3 billion (about $183 million) in the opening close of its South Africa-focused hydrogen vehicle, drawing capital from the European Commission and South Africa’s Public Investment Corporation, among other backers. The raise sits under CFM’s wider Climate Investor Three blended-finance platform. Structured as the SA-H2...

New green hydrogen process to prevent 500 million tons of CO2 a year

New green hydrogen process to prevent 500 million tons of CO2 a year

Researchers in the US have recently come up with a new process that combines carbon dioxide with industrial waste to produce green hydrogen at a projected cost of less than USD 1 per kilogram (USD 0.45 per pound). The technology was developed by researchers at the Ohio State University. It uses industrial by-products including steel slag and coal ash, to capture carbon dioxide (CO2). The reactions...

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