BIO-ECONOMY IN FINLAND - PLANNED PROJECTS
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1 BIO-ECONOMY IN FINLAND - PLANNED PROJECTS
2 The Government s energy policy goals for 2030 Renewable energy share over 50% in the 2020 s with an equity ratio of over 55% To halve the amount of imported oil To increase the share of renewables in the transport sector to 40% by 2030 To abandon coal from energy production
3 EXAMPLES OF THE LATESTS PROJECTS - INVESTMENT AID APPLICATIONS FOR RENEWABLE ENERGY AND NEW ENERGY TECHNOLOGY, applications In advanced biofuels: Envor Group, Bioenergo, North European Biotech, BioSairila, Furetan/3, Sunshine Kaidi, Scanchips, VSS Biovoima, Gasum/6, Qvidja, GFN/2, Hennan biokaasu Other: Adven, Nemusbit, Hattulan kunta, Adven, Vapo, Fortum, Liikennevirta, Eera, Lemminkäinen, Scandinavian Biopower, Woikoski, Tuuliwatti, Puhuri, Levi Northstar, Vantaan Energia, LCG Power, TEGS Finland, Elenia Lämpö, Tampereen sähkölaitos, Atria Suomi, Watrec, Lahti Energia, EPV Energia/2, ABO Wind, St1 Deep Heat, Hartola Solar, Wpd Oulaisten tuulipuisto, Hamina Solar, Rauma Solar, Lempäälän Energia, Kotka Solar, Windenergie Finnland/2, Suomi Solar
4 PROJECT EXAMPLES In the order of the development stage: North European Bio Tech Oy (NEB), Kajaani, bioethanol Metsä Fibre, Äänekoski, pulp, electricity, biogas, composites, textile fibers etc. Kaidi Finland, Kemi, biodiesel, bionaphtha Finnpulp, Kuopio, pulp, electricity Boreal Bioref, Kemijärvi, pulp products KaiCell, Kajaani surroundings, bioproducts 4
5 From sawdust to transport fuel - Cellunolix Capacity: 10 million litres of bioethanol per year St1 target is to have a capacity of 300 million litres by 2020
6 METSÄ GROUP - ÄÄNEKOSKI BIO-PRODUCT MILL 6
7 Äänekoski bio-product mill statistics 1,2 billion investment Up to jobs generated 1,3 million tonnes of pulp 6,5 million m3 of pulp wood Up in operation in 2017
8 Äänekoski bio-product mill ecosystem Metsä Group & EcoEnergy SF possible also Gasum Odorous gases Utilization Closed chemical cycle Aqvacomp 8
9 The Finnpulp mill would be the world's largest softwood pulp mill with one production line Annual pulp wood consumption would be 6.7 million m3 and production capacity 1.2 million tons of pulp In addition, the mill produces tons of tall oil and 1 TWh of bioelectricity to the national electricity grid o The amount of produced bioelectricity to the electricity market is 1 per cent of Finland's annual electricity consumption o The company will not use any fossil fuels 9
10 10
11 Develops biorefinery in Kemijärvi The owners are Kemijärvi Development, Sijoituskiila and Halla company The mill would produce softwood pulp, dissolving pulp, microcrystalline cellulose and other bioproducts Location close to Keitele group sawmill and glue laminated timber mill Would consume 2.3 million cubic metres of wood Start-up is planned in
12 KaiCell Fibers intends to build a state-of-the-art sulphate pulp mill as the core component in a bio-industrial park designed to accommodate downstream operators, who will add further value to the mill s output and benefit from available synergies such as energy. The venture strongly backed by the Kainuun Liitto (The Regional Council of Kainuu) in response to concerns by forest owners and other bio-economy stakeholders Tree alternative site Kajaani, Paltamo or Suomussalmi In order to keep the pulp mill s wood requirement in balance with what can be sourced within the region itself thus avoiding costly long-distance logistics KaiCell Fibers will not aim to join the million ton league, but instead focus on total value created at the site. Production is planned to commence by
13 Advanced biofuel refinery in Kemi by million m3 of rawmaterial annually 200 thousand metric tons of biofuel annually 75% is renewable diesel and 25% is bio-naphtha (gasoline) 13 13
14 Raw-material sourcing 2 Mm3/y ~35 % moisture content o The dryer the better Transport by wheel and trail Demand for satellite terminals and chip factories o Each with capacity for handling~ m3/y o Big investments, savings through volume Cost savings from the whole procurement chain à 20% by 2020
15 Sustainability criteria and the process set strict demands for reporting and monitoring Forest operations logistics Moisture handling Raw material sourcing Satellite terminals Moisture handling Moisture monitoring Reception wood yard Biomass handling CORE PROCESSESS interface with automation Moisture monitoring Gasification Gas cleaning FT synthesis Distilling and refining Terminals chip factories Energy and electricity oprimisation Distribution CHAIN of CUSTODY End-users Logistics
16 Example of R&D topic - Industrial integration and synergies Sawmill Collaboration in wood procurement CHP plant Saw dust heat Bark Pre-treatment Kemi bio-refinery electricity Pulp mill Lignin heat Steel mill Collaboration in wood procurement 16
17 Thank You! Matti Kymenvaara Kemi project wood sourcing and R&D
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