An Applied “energy System” (ES) to Produce Energy by Wasted Biomass (Part One)

F. Patania, A. Gagliano, F. Nocera, A. Agrifoglio
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引用次数: 1

Abstract

The research was funded by “Operative National Plan - European Capital for Regional Development” (PON-FERS 2007-2013, Industry 2015). Authors considered the Sicilian Little and Middle Enterprise (LME) producing wastes from operational processes as like woody chips, wood shavings, shells of hazelnut or almond and so on. A previous survey carried out on a consistent sample of Sicilian LME showed that electrical power required by operational processes ranges substantially around three main values (250 / 500 / 635 kWe) and research was addressed to obtain previous values of electrical power by process of conversion of biomass. People takes in consideration the exploitation of biomass through pyrolysis process since it produces syngas usable as fuel in gas-turbine of CHP plant, bio-oil and bio-char too, both of them able to supply thermal energy to many section of expected plant. The whole paper describes the general plane of research (three sections of loop of plants) and particularly guidelines for: calculus of sizes of biomass stockpile storage (storage and drying - first section); design of equipments of pyrolysis process and exhausts treatment (pyrolysis process – second section); design of cogeneration system (CHP techniques – third section). The final result of research will specify too the economical decreasing of operational costs of LME and the remarkable environmental benefits arose by exploitation of biomass. For room reasons, the part one of paper describes the generalized characteristics of research and results of calculations to design drying and storage section.
利用废弃生物质生产能源的应用“能源系统”(一)
该研究由“国家行动计划-欧洲区域发展资本”(PON-FERS 2007-2013, Industry 2015)资助。作者认为西西里中小企业(LME)在生产过程中产生的废物如木屑、刨花、榛子壳或杏仁壳等。先前对西西里LME的一致样本进行的调查表明,操作过程所需的电力基本上在三个主要值(250 / 500 / 635千瓦时)左右,并且研究了通过生物质转化过程获得的电力的先前值。人们考虑通过热解过程开发生物质,因为它产生的合成气可以作为热电联产电厂燃气轮机的燃料,生物油和生物炭也可以作为燃料,它们都可以为预期电厂的许多区段提供热能。全文描述了研究的总体平面(三部分的工厂回路),并详细说明了:生物质储存的规模计算(储存和干燥-第一部分),热解过程和废气处理设备的设计(热解过程-第二部分),热电联产系统的设计(热电联产技术-第三部分)。研究的最终结果还将说明LME运营成本的经济降低以及生物质开发带来的显著环境效益。由于空间的原因,本文第一部分介绍了研究的一般特点和计算结果,以设计干燥和储存段。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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