BIOMASS TO ENERGY AND CHEMICALS HighBio2 Project Publication

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BIOMASS TO ENERGY AND CHEMICALS HighBio2 Project Publication ( biomass-to-energy-and-chemicals-highbio2-project-publication )

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HIGHBIO2 PROJECT PUBLICATION In order to achieve moisture content below 20%, preheated air needs to be used. It requires an efficient dryer that can utilize waste heat to keep the drying costs down. For a small chip producer it often means that the drying plant will be built adjacent to a local district heating plant. Quality energy wood requires quality throughout the handling chain To achieve and maintain a sufficient supply of high-quality wood chips, the various work and management, from harvest to processing, must be carried out in a satisfactory manner. The quality of the energy wood that reaches the processing plant depends on the quality of the wood materials, as well as on the quality of work in different parts of the handling chain of the biomass. General guidelines Some general guidelines for the management of energy wood materials from harvesting to processing: ‒ Prevent the energy wood material from contamination by soil, dust, and other contaminants during harvest and transport. ‒ Remove the nutrient-rich green parts during harvest (e.g., branches, needles, and leaves). ‒ Sort the energy wood materials by quality at an early stage. ‒ Choose a good location for the natural drying and storage, where contamination can be avoided and drying can be done in the best way. ‒ Cover energy wood stacks stored for natural drying before the autumn rains. ‒ Avoid making large quantities of damp wood chips for long- term storage. Moist wood chips easily get moldy. In addition to degradation of the chips’ energy potential, mold spores easily spread into the environment. ‒ Minimize the risk of mold in damp wood chips by starting the final drying early. ‒ Protect dried energy source from precipitation by storing it under a roof. ‒ Minimize the potential for soil moisture to moisten an already dried wood material. 110

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