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FuelPositive Corp V.NHHH

Alternate Symbol(s):  NHHHF

FuelPositive Corporation is a Canada-based technology company. The Company provides commercially viable and sustainable clean technology solutions. The Company’s approach includes on-farm/on-site, containerized Green Ammonia production system (NH3) production system that eliminates carbon emissions from the production of Green Ammonia. It helps mitigate climate change, addressing unsustainable agricultural practices through technology and practical solutions. Its FuelPositive on-farm/onsite, containerized Green Ammonia production system is designed to produce pure, anhydrous ammonia for multiple applications, including fertilizer for farming, fuel for grain drying and internal combustion engines, a practical alternative for fuel cells and a solution for grid storage. This eliminates fluctuating supply chains and offers end-users clean fertilizer, energy and Green Ammonia supply security while eliminating carbon emissions from the production process.


TSXV:NHHH - Post by User

Comment by NSX001on Oct 26, 2021 7:35pm
141 Views
Post# 34052699

RE:Competitor

RE:CompetitorThis may also put a bit of a damper on FP plans.

IIT-G team develops a cost-effective alternative for splitting water molecules to harness hydrogen

Researchers at the Indian Institute of Technology Guwahati (IIT-G) have developed a cost-effective alternative to the Photo-Electro-Chemical (PEC) cells that split water molecules to harness hydrogen. The team is developing novel materials that can use sunlight to split water into hydrogen and oxygen. The materials are much cheaper than the currently used 'noble metals', leading to cost-effective solar-powered hydrogen generators. The team aims to pave the way to a carbon-free hydrogen economy.

The team of IIT Guwahati scientists has developed non-noble metal catalysts that are as good as the expensive metals in splitting water into PEC cells. "We have developed a ternary catalyst that comprises cobalt-tin layered-double hydroxides (LDH) and bismuth vanadate, which forms a p-n junction semiconductor with graphene bridges, and have shown that the catalyst, when used as a photoanode, is able to split water easily to produce hydrogen and oxygen," said lead researcher Dr Mohammad Qureshi, Professor, Department of Chemistry, IIT Guwahati. 

Graphene siphons the holes away from the vanadate and transports them into the cobalt-tin LDH, thus preventing their recombination with the electrons. The holes and the electrons are now available to split the water into hydrogen and oxygen.

NSX001
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