Integrated greenfield project Distributed Multigeneration DMG

Problem and implemented solution

Mineral and energy resources are limited and are rapidly depleted. The concept of distributed multigeneration on unclaimed carbon resources is proposed. Combustion of low-quality high-ash fuel is possible in an oxygen-enriched environment up to 30-40%.

Russia
Nomination

New Industry And Energy

Topic

New materials and substances

Estimated duration of implementation

10-12 years

Implementation geography

Russia, China, India, Kazakhstan, Mongolia, Pakistan, Uzbekistan, South Africa

Description of competitive advantages

1. The raw base of solid fuel for distributed multigeneration is 1000 times greater than all used fossil resources combined. 2. No waste and environmental pollution. 3. The implementation of greenfield projects with a power plant capacity of 5-10 MW simultaneously with consumers - residences, industrial and agricultural enterprises, will require relatively minimal investment and time. 4. High efficiency of fuel use due to nearby consumers, including greenhouses and electric vehicles at night, and the minimization of parasitic energy costs for fuel grinding and passive cleaning of exhaust gases. 5. Production of high value added microspherical materials.

List of awards and prizes, media articles about the organization/individual or the Practice

1. 1st place in the open competition 1996 of the Ministry of Construction of the Russian Federation for the eco-house project. 2. 1st prize in Gdansk fire 2001 in nomination "Golden Ecoenergy" for technology of fly ash processing in EMC technique. 3. 1st prize in Gdansk fire "Phoenix 2001" in the field of fly ash utilization

List of scientific works and IP connected with the Practice

1. Zyryanov VV, Zyryanov DV. Complex Processing of Pulverized Fly Ash by Dry Separation Methods. Journal of Environmental Protection 2010;1:293–301. 2. V. V. Zyryanov. Possibilities of Creating a Pure Coal Fired Power Industry Based on Nanomaterials. Thermal Engineering, 2015, Vol. 62, No. 8, pp. 577–585. 3. Zyryanov V.V. Intermediate Temperature Oxygen Selective Membrane Technology Based on δ-Bi2O3/Ag Cermet for Distributed Multigeneration in Eco-Settlements with Sustainable Development. Membrane Science International. 2022. Vol. 1. No. 2. P. 24–43.

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