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Three municipal solid waste gasification technologies analysis for electrical energy generation in Brazil

机译:巴西电能生成的三个城市固体废物气化技术分析

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In Brazil, in 2016, 196,050 tonnes day(-1) of municipal solid waste (MSW) were collected, which means a waste generation of 1.035 kg per capita per day. Only 59.1% of the waste has adequate destination in sanitary landfills, whereas the remaining 40.9% has inadequate destination in controlled landfills and open dumps (ABRELPE, 2018). Among all the states in the country, the State of SAo Paulo has the biggest per capita generation: 2.290 kg. Today, the only waste destination practiced in the country is deposition in landfills, but other possibilities can be considered. Among thermal treatment routes, the gasification of MSW is an interesting alternative to be studied, because of its versatility and relatively low emissions. The aim of this work is to evaluate the potential of electricity generation through MSW gasification in Santo Andre city, Brazil, comparing three waste gasification technologies: TPS Termiska Processer AB, Carbogas and Energos. These alternatives have operated commercially for a few years, and data are available. Specific characteristics of each technology were taken into account, such as the reactor type and fuel properties. For the electricity production scheme, two energy conversion systems were assumed: an internal combustion engine and a steam power cycle. From the process parameters adopted, the results showed that Carbogas technology, coupled to internal combustion engines, presents the highest efficiency of electricity generation (30%) and also the lowest cost of electrical energy produced (US$65.22 MWh(-1)) when Santo Andre's gate fee is applied.
机译:在巴西,2016年,收集了196,050吨天(-1)的市政固体废物(MSW),这意味着每天浪费1.035千克的人。只有59.1%的废物在卫生垃圾填埋场中有足够的目的地,而剩下的40.9%在受控垃圾填埋场和开放式垃圾上的目的地不足(Abrelpe,2018)。在全国各州,圣保罗州人均最大年长最大:2.290公斤。今天,该国唯一的废物目的地是在垃圾填埋场中的沉积,但其他可能性可以考虑。在热处理路线中,MSW的气化是待研究的有趣替代方案,因为其通用性和相对低的排放。这项工作的目的是通过巴西Santo Andre City的MSW气化来评估发电的潜力,比较三种废气化技术:TPS Termiska加工商AB,Carbogas和Energos。这些替代方案已经在商业上运行了几年,数据可用。考虑各种技术的具体特征,例如反应器类型和燃料特性。对于电力生产方案,假设两个能量转换系统:内燃机和蒸汽动力循环。从采用的过程参数来看,结果表明,加上内燃机的肉毒糖技术呈现出最高效率(30%),也是Santo的电能最低的电能(65.22 MWH(-1)) Andre的大门费用是应用的。

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