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首页> 外文期刊>Journal of Energy Technologies and Policy >Thermal Analysis of a Small-Scale Municipal Solid Waste-Fired Steam Generator: Case Study of Enugu State, Nigeria
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Thermal Analysis of a Small-Scale Municipal Solid Waste-Fired Steam Generator: Case Study of Enugu State, Nigeria

机译:小型城市生活垃圾焚烧蒸汽发生器的热分析:以尼日利亚恩努格州为例

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Thermal analysis of a small-scale municipal solid waste-fired steam generator has been presented in this work. The analysis was based on the selected design parameters: operating steam pressure of 10 bar, with fuel consumption rate of 500 Kg/h and combustion chamber which utilizes mass burn incineration using water wall furnace. The plant is designed as a possible option for thermal utilization of rural and urban wastes in Nigeria. The average daily generation of MSW was considered in order to assess the availability of the material. The data were collected from Enugu State Waste Management Authority ( ENSWAMA).This was calculated based on the state population, urbanization and industrialization strengths. Calculation of calorific value of the waste to determine the heat contents was carried out using two methods: Bomb calorimeter and Dulong’s formula. Some samples of the garbage were analyzed with bomb calorimeter in the National Centre For Energy Research & Development Laboratory, University of Nigeria Nsukka. This is important because it a direct measure of the temperature requirements that the specific waste will place on the system. The calorific values obtained from this analysis were 12572.308 KJ/kg, 14012.05 KJ/kg, 21833.26 KJ/kg and 20551.01 KJ/kg for paper products, woods, plastics and textiles waste respectively, while the energy content obtained from the elemental composition of waste using Dulong’s formula was 15,101 KJ/kg .The maximum temperature of the furnace attained from the energy balance based on this value around the combustion chamber was 833.7 K and the amount of air required per kg of MSW was 8.66kg.
机译:这项工作介绍了对小型市政固体废物蒸汽发生器的热分析。该分析基于选定的设计参数:工作蒸汽压力为10 bar,燃料消耗率为500 Kg / h,燃烧室使用水冷壁炉进行大规模燃烧焚烧。该工厂被设计为尼日利亚农村和城市垃圾热利用的可能选择。为了评估材料的可用性,考虑了MSW的平均每日生成量。这些数据是从Enugu国家废物管理局(ENSWAMA)收集的,是根据州人口,城市化和工业化实力计算得出的。确定热量的废物热值的计算使用了两种方法:炸弹量热计和杜隆公式。尼日利亚Nsukka大学国家能源研究与发展中心实验室用炸弹量热计分析了一些垃圾样品。这很重要,因为它可以直接测量特定废物将对系统造成的温度要求。通过此分析得出的纸制品,木材,塑料和纺织品废物的热值分别为12572.308 KJ / kg,14012.05 KJ / kg,21833.26 KJ / kg和20551.01 KJ / kg,而能量含量是由废物的元素组成获得的使用杜隆公式计算得出的最高炉温为15,101 KJ / kg。根据该值,燃烧室周围的能量平衡所达到的最高炉温为833.7 K,每公斤MSW所需的空气量为8.66kg。

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