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Performance analysis of power generating sludge combustion plant and comparison against other sludge treatment technologies

机译:发电污泥燃烧装置的性能分析及与其他污泥处理技术的比较

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Expectations on wastewater sludge treatment and recovery of its energy and material contents are increasing because of the tightening legislation and the obligation to reduce environmental impacts of sludge disposal. The objective of this study was to analyze the performance of a heat and power generating sludge combustion plant from technical and economical viewpoints and to compare the studied concept to optional sludge treatment technologies. The plant performance was modeled for sewage sludge produced by approximately 200,000 inhabitants. Two plant sizes below 1000 kWe range were investigated, the smaller plant using sludge as the only fuel and the larger plant with wood chips as the additional fuel. The plants were compared with heat-only plants of similar size. The payback periods for heat-only plants are typically shorter than with the cogenerating plants because the changes in plant investment affect stronger the economy than do the revenues from selling electricity. The gate fee of sludge treatment has the strongest effect on the payback period. The selection of the plant concept (cogeneration, heat only or pure electricity generation) is, however, affected more by the local demand of heat and electricity than pure economy. The selection of the optimal technology for sludge treatment is a complicated task. The studied concept can be the optimal choice, for example, if there is no cement kiln or co-combustion possibility near the source of sludge, if there is no land enhancement demand for the digested sludge, or if the energy surplus from combustion compared to anaerobic digestion is considered more valuable than nutrient recovery possibility from digestion. If the new technology concept is found competitive, it still has to meet the challenge of acceptability from the business, social and cultural points of view.
机译:由于越来越严格的立法以及减少污泥处置对环境的影响,人们对污水污泥处理以及回收其能量和材料的期望值越来越高。这项研究的目的是从技术和经济角度分析热电联产污泥燃烧装置的性能,并将研究的概念与可选的污泥处理技术进行比较。以大约200,000名居民产生的污水污泥为模型模拟工厂性能。研究了两种规模小于1000 kWe的工厂,较小的工厂使用污泥作为唯一燃料,较大的工厂使用木屑作为额外燃料。将植物与相似大小的仅热植物进行比较。纯热电厂的投资回收期通常短于热电联产电厂,因为电厂投资的变化对经济的影响比对售电收入的影响更大。污泥处理的入门费对投资回收期的影响最大。但是,工厂概念(热电联产,仅供热或纯发电)的选择受当地供热和电力需求的影响大于纯经济。选择污泥处理的最佳技术是一项复杂的任务。所研究的概念可能是最佳选择,例如,如果污泥源附近没有水泥窑或共燃的可能性,消化后的污泥对土地的需求不大或燃烧产生的能量余厌氧消化被认为比从消化中回收营养物更有价值。如果发现新技术具有竞争力,那么它仍然必须从商业,社会和文化的角度来应对可接受性的挑战。

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