Blog Articles

Molybdenum oxide catalyst for wastewater treatment studied by faradaic efficiency

Highlights Faradaic efficiency calculations to diversify between two and four-electron water oxidation. Molybdenum (VI) oxide as a promising catalyst towards two-electron water oxidation.

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Social Life Cycle Assessment. Survey Part 1.

Introduction. The United Nations (UN) developed the action plan ‘Transforming our world: the 2030 Agenda for Sustainable Development’ at the General Assembly on September 25,

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Green hydrogen production

Hydrogen has many ‘colours’. One of the most tempting is green, as it stands for the production of this gas using electrolysis driven by the renewable energy

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The Life Cycle Sustainability Assessment in the MacGhyver Project

Introduction Emerging technologies are expected to contribute to environmentally sustainable development. However, it is not known how emerging technologies could reduce environmental

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Towards the economy of hydrogen production

The difference between the hydrogen and fossil fuel as an energy carrier is that the former does not occur naturally in molecular form in the Earth crust or atmosphere whereas the latter

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Revolutionizing Hydrogen Production with High-Throughput Microfluidic Electrolyzer: A new paradigm

Origins of Microfluidics Microfluidics is the study and manipulation of fluids in very small channels with dimensions on the order of tens to hundreds of micrometers. George M. Whitesides,

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Abstracts

An overview of the Society’s vision for the hydrogen economy and technology, results of a Social Survey

European hydrogen energy conference 2024 (EHEC 2024), 6th to 8th March 2024, Bilbao,

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Co-production of hydrogen gas and hydrogen peroxide in single electrolysis cell using modified carbon electrodes

International Society of Electrochemistry Annual Meeting 2023, 3rd to 8th September 2023, Lyon,

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A Variable Channel Width Membraneless Bubbleless Flow Through Water Electrolyzer

13th European Symposium on Electrochemical Engineering, 26th to 29th June 2023, Toulouse,

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European Innovation Council

This project has received funding from the European Innovation Council (EIC) under grant agreement No 101069981. The EIC receives support from the European Union’s Horizon Europe Research and Innovation Programme. Neither the European Union nor the granting authority can be held responsible for them.

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