By Michael Sterner
Bioenergy is analyzed within the broader context of weather swap, strength structures and land use. A techno-economic and ecologic research of seventy eight bioenergy pathways is completed that allows you to determine the strategic position of bioenergy in destiny power platforms. For the 1st time, either conventional and glossy biomass pathways are in comparison in one evaluate, opting for the diversity of extreme greenhouse fuel aid strength of bioenergy. although, the pointed out bioenergy capability is neither adequate to stability fluctuating renewable energy nor to totally substitute fossil fuels in warmth and delivery on a world scale.
To clear up this bottleneck, new suggestions of changing renewable strength into methane are constructed. during this method, renewable strength should be saved within the usual fuel community and used briefly and spatially versatile for balancing energy, for warmth and for long-distance transportation. it may be produced anyplace the place water, air and renewable strength can be found and therefore reduce import dependence on fossil fuels. the hot process can recycle CO2 within the power process or maybe act as carbon sink together with CO2 garage: carbon sink power system.
A transformation of the worldwide strength structures is played, lowering energy-related emissions through 95%. The function of the sort of transformation in international weather defense is analyzed and a a hundred% renewable strength provide is simulated with an hourly solution for Germany. via integrating clever strength networks, warmth networks and common fuel networks, the technical feasibility of an entire renewable power offer is demonstrated.
Read or Download Bioenergy and renewable power methane in integrated 100% renewable energy systems: Limiting global warming by transforming energy systems (Erneuerbare ... /Renewable Energies and Energy Efficiency) PDF
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Bioenergy and renewable power methane in integrated 100% renewable energy systems: Limiting global warming by transforming energy systems (Erneuerbare ... /Renewable Energies and Energy Efficiency) by Michael Sterner
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