工程木板工业设施中林业生物质热电联产的经济可行性

IF 2.7 2区 农林科学 Q1 FORESTRY
André Gustavo Oliveira Souza, F. Barbosa, M. S. S. Esperancini, S. Guerra
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引用次数: 1

摘要

利用甘蔗渣、秸秆和谷壳在糖乙醇厂发电已经建立;最近,为了减少矿物燃料的使用和增加以自我消费为重点的发电,森林生物量的恢复一直在增加。这部分的发电潜力是相当大的,但在热电联产过程中使用生物质取决于有吸引力的投资回报。本研究旨在分析投资火力和电力发电设备的经济可行性,使其有可能使用森林和伐木残留物和木屑来取代工程木板工业设施(场景1)中目前的燃气发电,或仅投资火力发电设备(场景2)。结果表明,投资用森林生物质取代天然气在经济上是可行的,不仅对森林来说是可行的这两种能源的产生同时也为热能本身的产生。尽管对热电联产系统的高投资要求,但该行业的能源投入(如天然气和电力)的高成本解释了这一结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Economic Feasibility of Electrical Power Cogeneration from Forestry Biomass in an Engineered Wood Panel Industrial Facility
The use of sugarcane bagasse, straw, and chaff for electrical power generation in sugar-ethanol mills has been established; more recently, the recovery of forest biomass has been increasing in an attempt to reduce the use of fossil fuels and to increase electrical power generation focused on self-consumption. The potential for power generation in this segment is considerable, but the use of biomass in cogeneration processes depends on an attractive return on investments. This study was designed to analyze the economic feasibility of investment in thermal and electrical power generation equipment that makes it possible to use forest and logging residues and wood chips to replace the current gas-fired power generation in an engineered wood panel industry facility (Scenario 1) or investment only in thermal generation equipment (Scenario 2). Results showed that the investment to replace natural gas with forest biomass is economically viable not only for the generation of both types of energy but also for the generation of thermal energy itself. High costs of energy inputs such as natural gas and electricity for the industry explain the results, despite the requirement for high investments in cogeneration systems.
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来源期刊
CiteScore
5.20
自引率
12.50%
发文量
23
审稿时长
>12 weeks
期刊介绍: Croatian Journal of Forest Engineering (CROJFE) is a refereed journal distributed internationally, publishing original research articles concerning forest engineering, both theoretical and empirical. The journal covers all aspects of forest engineering research, ranging from basic to applied subjects. In addition to research articles, preliminary research notes and subject reviews are published. Journal Subjects and Fields: -Harvesting systems and technologies- Forest biomass and carbon sequestration- Forest road network planning, management and construction- System organization and forest operations- IT technologies and remote sensing- Engineering in urban forestry- Vehicle/machine design and evaluation- Modelling and sustainable management- Eco-efficient technologies in forestry- Ergonomics and work safety
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