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首页> 外文期刊>Agricultural Engineering International: CIGR Ejournal >Techno-economic assessment of municipal solid waste gasification for electricity generation: a case study of Kampala City, Uganda
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Techno-economic assessment of municipal solid waste gasification for electricity generation: a case study of Kampala City, Uganda

机译:市政固体废物气化发电的技术经济评估:以乌干达坎帕拉市为例

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This study was aimed at assessing the techno-economic potential of municipal solid waste (MSW) generated in Kampala City for electricity production through gasification. The quantity, characteristics and gasification parameters were determined. In addition, the gasifier- engine system components were sized, and an economic analysis was conducted to obtain the net present value (NPV) and the payback period. This study found that 523 t/d of MSW is collected in Kampala City. The biomass component of MSW was found to be 459.5 t/d with moisture content of 71.09% on as-received basis. The physical characteristics of the gasified biomass included 11.8% moisture content, 88.2% total solids, 25.9% ash content and 57.7 kg/m3 bulk density. The resulting normalized producer gas constituted 11.64% H2, 13.70% CO, 16.09% CO2, 54.12% N2, 4.45% CH4 and lower heating value (LHV) of 4.75 MJ/Nm3. The design fuel flow rate of 0.23 kg/s, specific gasification rate (SGR) of 5089.29 kg h-1 m-2 and specific energy demand of 42.75 GJ m-2 h-1 were obtained. This yields a net electrical power output of 425.17 kW with an overall efficiency of 15.6%. The net annual electricity generation from a single gasifier-engine system was found to be 2.97 GWh/a. The economic analysis for this system worth $887 333 of investment cost yielded a payback period of 6.57 years while the NPV at 6% interest rate was found to be nine years with a value of $316 47.
机译:这项研究旨在评估在坎帕拉市产生的城市固体废物(MSW)通过气化发电的技术经济潜力。确定了数量,特性和气化参数。另外,确定气化器-发动机系统组件的大小,并进行经济分析以获得净现值(NPV)和投资回收期。这项研究发现,坎帕拉市每天收集523吨垃圾。据估计,城市固体废弃物的生物量成分为459.5 t / d,含水量为71.09%。气化生物质的物理特性包括11.8%的水分含量,88.2%的总固体含量,25.9%的灰分含量和57.7 kg / m3的堆积密度。所得归一化的生产气包括11.64%的H2、13.70%的CO,16.09%的CO2、54.12%的N2、4.45%的CH4和4.75 MJ / Nm3的较低的热值(LHV)。设计燃料流量为0.23 kg / s,比气化率(SGR)为5089.29 kg h-1 m-2,比能量需求为42.75 GJ m-2 h-1。这样产生的净电力输出为425.17 kW,总效率为15.6%。单个气化器-发动机系统的年净发电量为2.97 GWh / a。对价值887 333美元的该系统进行的经济分析得出的投资回收期为6.57年,而按6%利率计算的NPV为9年,价值为316 47美元。

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