Utilization of agricultural waste biomass for co-firing fuel for coal-fired power plant with consideration of the potential of slagging, fouling, and abrasion in pulverized coal (PC) boilers

Hariana Hariana, Hanafi Prida Putra, M. Lutfi, A. Prismantoko
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引用次数: 2

Abstract

The world is moving towards clean energy, especially since the Paris Agreement in 2016. Indonesia is no exception, which must reach 23% of its total energy mix usage from renewable energy sources by 2025, as stated in President Regulation No. 22/2017. Biomass as a renewable energy source can be used as a co-firing fuel for power plants based on its calorific value. This study discusses some of the most important characteristics needed in co-firing fuels, including slagging, fouling, and abrasion, using palm empty fruit bunch (EFB), rice husk (RH), and EFB-RH blended with the composition of 5%, 15%, 25%, and 35% on low-rank coal (LRC) and bituminous coal (BTC). The results showed that the addition of biomass on BTC has no significant effect on the slagging and fouling potential. Conversely, the addition of biomass to LRC significantly reduced the potential of slagging and fouling with the composition of up to 35% biomass which has EFB up to 20%. For blends with 75% of LRC and 25% of biomass blends, only biomass blends with 100% RH can be considered from the aspect of slagging and fouling risk. From potential abrasion characteristics, the addition of biomass on two types of coals did not show any problem for all compositions studied.
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考虑煤粉锅炉结渣、结垢和磨损的农业废弃物生物质在燃煤电厂共烧燃料中的利用
特别是自2016年《巴黎协定》签署以来,世界正朝着清洁能源的方向发展。印度尼西亚也不例外,如第22/2017号总统条例所述,到2025年,可再生能源必须达到其能源结构总使用量的23%。生物质作为一种可再生能源,根据其热值可以作为发电厂的共烧燃料。本研究讨论了在低阶煤(LRC)和烟煤(BTC)上使用棕榈空果束(EFB)、稻壳(RH)和稻壳-RH分别以5%、15%、25%和35%的比例混合燃烧燃料所需的一些最重要的特性,包括结渣、结垢和磨损。结果表明,在BTC上添加生物质对结渣和结垢潜力没有显著影响。相反,添加生物质到LRC显著降低了结渣和结垢的可能性,其组成高达35%的生物质,EFB高达20%。对于75% LRC和25%生物质共混物,只有100% RH的生物质共混物才能考虑结渣和结垢风险。从潜在的磨损特性来看,在两种类型的煤上添加生物质对所研究的所有成分都没有任何问题。
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