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Possibilities of Energy Production from Wood

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Bioenergy-Networks Russia-Germany (BiNeRu) Basic project: Potential analysis * * Partner Russia Administration (administrations and parliaments) Science & Education ... – PowerPoint PPT presentation

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Title: Possibilities of Energy Production from Wood


1
Bioenergy-Networks Russia-Germany (BiNeRu) Basic
project Potential analysis
2
Partner
Russia
Administration (administrations and parliaments)
Science Education (universities academies)
Business (interested, competent and well engaged
companies and organisations)
3
Goal
  • Economically advantageous usage of bioenergy in
    Russia

4
Advantages of Bioenergy
  • Enhanced security of energy supplies in rural
    areas
  • Saving of long distance grids for small villages
  • Added value and jobs for rural areas
  • Cost efficient, environmental friendly and
    hygienic treatment of organic wastes
  • Production of effectual fertilisers for the
    fields
  • Climate protection, eventually additional income
    by emission reduction certificates
  • Investments by Russian and international
    investors in the partner areas
  • New fields of action with economic interest for
    russian and international companies

4
5
Methodology
  • Analysis of available biomass in the partner
    areas (kind, amount, source, advantages of
    treatment of different material chains) Focus to
    organic wastes from agriculture and forestry,
    processing industry and municipal derivation
  • Analysis of relevant needs for energy in the
    target areas Looking for possible connections to
    the existing grids for heat, electricity and gas
  • Evaluation of optimal technology (biogas,
    combustion, burning technology and plant size
    regarding logistic aspects)
  • Optimisation of logistics with regard to the
    usage of digestate as a fertiliser

5
6
Whats new?
  • Participatory approach The biomass strains,
    important to be analysed are selected together
    with the regional partners
  • Focus to organic wastes with pressure to act
  • Using biogas-technology as a cross-sectional
    technology energy-production, waste treatment
    and production of fertiliser
  • Parallel Analysis and connection of material
    chains and energy usage
  • Regarding logistics for plant supply with
    biomass and for recycling of nutrients
  • Sustainable regional planning becomes possible!

6
7
Use
  • Planning basis site Assessment for concrete
    plants can be optimised regarding technical and
    logistic aspects Added value, environmental
    protection and reliability of operation (biomass
    supply!) can be maximised
  • Regional data basis avoids double work at single
    projects
  • Regarding of energy usage and Logistics avoids
    suboptimal solutions and ruins of investion
  • Implementation of biomass strategies needs
    economically conditions
  • Learning from mistakes In Germany a lot of added
    value is given away because of suboptimised sites

7
8
  • Profitability of biomass plants

Benefit

Revenue
-
Costs
8
9
  • Revenues
  • (marketable / own usable amounts prizes/
    avoided costs)

Environmental advantages Reduction of greenhouse
gas emissions, water and landscape pollution etc.
Waste treatment, Waste water treatment, waste
transportation, hygienic optimisation
Energy electricity, heat, cold, fuel, gas,
process energy
Fertilizer, yield enhancing
9
10
  • Costs

Plant operation
Biomass logistics and production
Investment costs and overhead
Energy transport and distribution
Energy transport and distribution
10
11
  • Advantages in pictures

11
12
x
x
12
13
13
14
Thanks for your attention!
Walter.Stinner_at_dbfz.de
14
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