Sustainable Energy Opportunities: Best Practices for Alaska Tribes

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Sustainable Energy Opportunities: Best Practices for Alaska Tribes ( sustainable-energy-opportunities-best-practices-alaska-tribe )

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For more information about Biomass evaluation and installation, see page 43-45 There are several factors to consider before planning a biomass energy project of any size. Projects can range from large scale burner and boiler systems, to residential fireplaces. The first consideration is fuel supply. Is there a large enough and consistent supply of material to be burned so that the furnace can be easily and reliably supplied? As well as what the distance is to accessing these resources? Are the resources close enough to be a valuable alternative? The burning of any material produces gases and smoke that can be harmful if confined in an enclosed space and when localized regionally. This is especially important when individuals are considering using wood fired stoves in their home. The smokestacks on wood fireplaces need to be cleaned and maintained at least once per year to make sure that no build up of soot blocks the flue. Soot clogged smoke stacks not only pose an air health risk by trapping smoke and gases inside, but also increase the risk of a house fire because material in the chimney can catch on fire. This factor is also important when siting larger scale facilities so that emissions are properly managed and do not contribute to local air quality deterioration. Wood Biomass Wood has the greatest potential for biomass energy production, mostly in interior and coastal Alaska. Because of the comparatively widespread availability of wood as a fuel source and the simplicity of using it, wood has become a popular fuel source for many communities and in residential homes. Wood Chip Boilers Chip fired boilers utilize wood chips from sawmill waste, forest harvesting waste, manufacturers or wood chipped specially for the burner. A beneficial aspect of chip fired biomass systems is that they can accommodate a wide variation of chip composition, quality, and moisture content due to high incineration temperatures, producing upwards of 200,000 BTUs per hour, up to multi-millions of BTUs (For comparison, a kerosene lamp puts out 1,000 BTUs per hour.).3 3 BTU stands for “British Thermal Unit” and is a standardized measure of heat energy. Sustainable Energy Opportunities: Best Practices for Alaska Tribes Page 15

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