Multidimensionally Analysis

The Transition is not BINARY matter, is a Multidimensionally Analysis.

Complementary & non-Antagonist. Clean Hydrogen & Transition Allies.

INTEGRATION OF CLEAN HYDROGEN WITH CO2 CAPTURE & RECYCLE SYSTEMS.

Production of methane in the reaction of the captured CO2 with clean hydrogen. However, the CO2 storage capacity is limited. Hence CO2 Capture & storage system is not sustainable. Recycling the CO2 Capture by a combination using of natural gas, storage CO2 & clean hydrogen produced by renewables.

CO2 STORING UNDERGROWND OR SUBSEA

Capturing CO2 onshore, subsea storing more than 1000 meters below seabed. I also need to learn & investigate more about this & the Enhanced-Oil Recovery & CO2 captures storage system flooding,. Ahead, the following reference only for learning & research intention.[1]

CO2 CAPTURE SYSTEMS BLUE HYDROGEN

Less carbon emissions but higher fugitive methane emissions & a very optimistic & not proven assumption of indefinitely CO2 captured. Finally, a greater footprint than burning natural gas & diesel for heat. The blue hydrogen production using carbon capture and storage to reduce these emissions. CO2 Capture, Utilization & Storage offers a chance to scale-up mature processes. We must go deeply investigating what CCUS can do for us during the transition.

 

Multidimensionally Analysis

HYDROGEN or NATURAL GAS?

The right blender in the correct way. green hydrogen blended with natural gas would be possible with cap of 20% of clean hydrogen.

BIOGENETIC CO2 coupled with CLEAN HYDROGEN.

The result of the combustion of organic material, like BIOMASS. BIOGAS generation from the combustion of wood generated by decomposition. It is not a greenhouse gas emission, when comes from biomass sequesters carbon as it grows but, the CO2 released at the combustion, must be resequestered in the growing biomass. This needs a careful balance between the emissions & the sequestration. Combination of bio-CO2 with clean hydrogen is an opportunity for carbon neutral products like fuels like methanol & methane. Abundant water & forest is an opportunity. Side steams from forest industry could be an additional opportunity for electrolysis.

WASTE TO ENERGY

Another way for methane production from CO2 but waste incinerator is controversial, I need to investigate further. What I am fan is to push the circular economy, in the case of waste, 1) educating to manage non-recyclable residual waste to the right treatment, 2) minimizing waste incineration, 3) reducing to halve your waste. Waste is a bad design, 4) plastic to oil

ANAEROVBIC DIGESTION

Bacteria & microbial communities help us to generate biogas from biosolids, food waste, etc, to create a feedstock to produce biogas thorough Anaerobic digestion

#climateemergency #climatefinance #netzero #smartlanding #hidrogenoverde #greenhydrogen #ccus #naturalgas

by: Carlos Zygier https://www.linkedin.com/feed/update/urn:li:activity:6950460405240455168/

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