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咖啡渣在生物精炼厂中用于生产燃料颗粒的潜在新价值

Emerging potential of spent coffee ground valorization for fuel pellet production in a biorefinery.

作者信息

Atabani A E, Mahmoud Eyas, Aslam Muhammed, Naqvi Salman Raza, Juchelková Dagmar, Bhatia Shashi Kant, Badruddin Irfan Anjum, Khan T M Yunus, Hoang Anh Tuan, Palacky Petr

机构信息

Alternative Fuels Research Laboratory (AFRL), Energy Division, Department of Mechanical Engineering, Faculty of Engineering, Erciyes University, 38039 Kayseri, Turkey.

Department of Electronics, Faculty of Electrical Engineering and Computer Science, VŠB-Technical University of Ostrava, Ostrava, Czech Republic.

出版信息

Environ Dev Sustain. 2022 May 3:1-39. doi: 10.1007/s10668-022-02361-z.

Abstract

ABSTRACT

The global market for fuel pellets (FPs) has been steadily growing because of a shift to coal substitutes. However, sustainability and the availability of biomass are the main issues. Various kinds of bio-wastes can be valorized through cutting-edge technologies. In the coffee industry, a valuable organic waste called spent coffee grounds (SCGs) is generated in bulk. SCG can be divided into two components, namely spent coffee ground oil and defatted spent coffee grounds (DSCG). SCG and DSCG can be used to produce FPs with excellent higher heating values. This review highlights that burning FPs composed of 100% SCG is not feasible due to the high emission of NO. Moreover, the combustion is accompanied by a rapid temperature drop due to incomplete combustion which leads to lower boiler combustion efficiencies and increased carbon monoxide emissions. This was because of the low pellet strength and bulk density of the FP. Mixing SCG with other biomass offers improved boiler efficiency and emissions. Some of the reported optimized FPs include 75% SCG + 20% coffee silverskin, 30% SCG + 70% pine sawdust, 90% SCG + 10% crude glycerol, 32% SCG + 23% coal fines + 11% sawdust + 18% mielie husks + 10% waste paper + 6% paper pulp, and 50% SCG + 50% pine sawdust. This review noted the absence of combustion and emissions analyses of DSCG and the need for their future assessment. Valorization of DSCG offers a good pathway to improve the economics of an SCG-based biorefinery where the extracted SCGO can be valorized in other applications. The combustion and emissions of DSCG were not previously reported in detail. Therefore, future investigation of DSCG in boilers is essential to assess the potential of this industry and improve its economics.

SUPPLEMENTARY INFORMATION

The online version contains supplementary material available at 10.1007/s10668-022-02361-z.

摘要

摘要

由于向煤炭替代品的转变,全球燃料颗粒(FPs)市场一直在稳步增长。然而,可持续性和生物质的可用性是主要问题。各种生物废物可以通过前沿技术实现价值提升。在咖啡行业,会大量产生一种名为咖啡渣(SCGs)的有价值有机废物。SCG可分为两个成分,即咖啡渣油和脱脂咖啡渣(DSCG)。SCG和DSCG可用于生产具有优异高热值的FPs。本综述强调,由于NO排放高,燃烧由100%SCG组成的FPs是不可行的。此外,由于燃烧不完全,燃烧伴随着快速的温度下降,这导致锅炉燃烧效率降低和一氧化碳排放增加。这是因为FP的颗粒强度和堆积密度低。将SCG与其他生物质混合可提高锅炉效率并减少排放。一些报道的优化FPs包括75%SCG + 20%咖啡银皮、30%SCG + 70%松木锯末、90%SCG + 10%粗甘油、32%SCG + 23%煤粉 + 11%锯末 + 18%玉米皮 + 10%废纸 + 6%纸浆,以及50%SCG + 50%松木锯末。本综述指出缺乏对DSCG的燃烧和排放分析以及未来对其进行评估的必要性。DSCG的价值提升为改善基于SCG的生物精炼厂的经济性提供了一条良好途径,其中提取的SCGO可在其他应用中实现价值提升。此前未详细报道DSCG的燃烧和排放情况。因此,未来对锅炉中DSCG的研究对于评估该行业的潜力并改善其经济性至关重要。

补充信息

在线版本包含可在10.1007/s10668-022-02361-z获取的补充材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2467/9061234/f1d72ee76b1d/10668_2022_2361_Fig1_HTML.jpg

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