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Energy Values of Unprocessed Biomass, Charcoal and other Biomass Fuels and their role in Greenhouse Gas Mitigation and Energy Use

机译:未加工生物质,木炭和其他生物质燃料的能量值及其在温室气体缓解和能源使用中的作用

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The energy value of biomass depends on its carbon and hydrogen contents, its non-combustibles and the water content. For unprocessed biomass, namely wood, residues and dung, the C and H contents are more or less constant for each group of fuels on an ash-free and moisture-free basis. Using this information, a method is given to calculate the low heat values of unprocessed biomass at different moisture and ash contents. While most wood species have an ash content of about 1%, the ash content of crop residues vary according to species from about 1 to 20%. Similarly dung varies from about 20 to 30% ash. However, moisture is the most important factor when determining the available energy. Tables and graphs are given of unprocessed biomass energy at different ash and moisture contents. Charcoal is the most important processed biomass. A method to calculate the energy value of charcoal from biomass is given. The energy values of other forms of biomass are also given. Finally, the role of biomass as a renewable energy (RE) source as well as it being an important tool to capture and reduce greenhouses gases (GHG) is discussed.
机译:生物质的能量值取决于其碳和氢含量,其不可燃烧物和水含量。对于未加工的生物质,即木,残留物和粪便,C和H含量对每组燃料无污染和无湿性的基础或多或少。使用该信息,给出一种方法来计算不同水分和灰分中未加工生物质的低热值。虽然大多数木材物种的灰分含量约为1%,但作物残留物的灰分含量根据约1至20%的物种而变化。类似地粪便从约20至30%的灰烬变化。然而,水分是确定可用能量时最重要的因素。表格和图表给出了不同灰分和水分含量的未处理的生物质能量。木炭是最重要的加工生物质。给出了计算生物质的木炭能量值的方法。还给出了其他形式的生物质的能量值。最后,讨论了生物量作为可再生能源(RE)源的作用以及捕获和减少温室气体(GHG)的重要工具。

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