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Characterization of Sewage Sludge for the Thermal Conversion into Gaseous and Liquid Energy Source

机译:热转化为气态和液态能源的污泥特性

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There have been various situation changes in Korea in the field of treatment of sewage sludge. They have mainly relied on ocean dumping for the final disposal of sewage sludge because the Korea peninsula is surrounded by sea. The international movement to ban ocean dumping and its increasing pressure to find alternative ways have made Korean government and industry look for in-land treatment methods. Our research group has focused on the utilization of heat content in sewage sludge after its physical drying process. We have done basic thermogravimetric analysis, finding that there exist unique mass reduction pattern of two stages. It was considered that there are two different major organic groups of intrinsic organic matter and polymeric fraction of higher boiling point. With a fluidized bed reactor, dried sewage sludge was gasified and quickly quenched to get liquid product at temperature range of 450~500 degree C. Almost 52% of liquid product could be obtained. By another reactor with temperatures of 500 degree C or higher, more product could be converted into gaseous phase at elevated temperature and it could be treated to be utilized in gas form. Various scale of systems are considered to get basic idea of converting the organic fraction of sewage sludge into clean energy source in actual application without generating secondary environmental pollution problems and without increased installation costs.
机译:在韩国,污水污泥的处理领域发生了各种变化。他们主要依靠海洋倾倒来最终处置污水污泥,因为朝鲜半岛被大海包围。禁止海洋倾倒的国际运动及其寻找替代方法的压力越来越大,这使得韩国政府和工业界都在寻求内陆处理方法。我们的研究小组专注于污水污泥经物理干燥后的热量利用。我们完成了基本的热重分析,发现存在两个阶段的独特质量减少模式。认为存在两种不同的主要有机基团:固有有机物和较高沸点的聚合物部分。在流化床反应器中,将干燥的污水污泥气化并快速骤冷,从而在450〜500℃的温度范围内得到液体产物。几乎可以得到液体产物的52%。通过另一个温度为500摄氏度或更高的反应器,可以在高温下将更多的产品转化为气相,并且可以将其处理成气体形式使用。考虑各种规模的系统,以获得在实际应用中将污泥的有机部分转化为清洁能源的基本思想,而不会产生二次环境污染问题,也不会增加安装成本。

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