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Thermal processing of biomass into high-calorific solid composite fuel

机译:将生物质热加工成高热量的固体复合燃料

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Since the reserves of fossil fuels are gradually exhausting, the biomass inclusion in the energy balance is becoming an urgent issue and a major field for researchers. However, such biomass characteristics as high moisture content, low calorific value, friability, stickiness and others lead to the high operating costs for burning. Thus, biomass pre-processing is required to improve its properties. This work shows the results obtained through the development and substantiation of the parameters of the biomass processing technology in a high-calorie solid fuel for boiler units. Chips from a mixture of Siberian wood (birch, pine, and aspen) and peat of Kandinsky deposit were used as biomass sources. Thermal processing (low-temperature pyrolysis) allows increasing the calorific value of the updated raw materials and obtaining the basis for the binder. Liquid pyrolysis products together with dextrin were used for molding solid composite fuel in the form of pellets and briquettes. These solid fuels had lower heating values of 29.1 MJ/kg (wood chips) and 20.9 MJ/kg (peat), which is superior to most types of fuel briquettes and pellets and comparable to the highest-quality fossil fuels. (C) 2017 Elsevier B.V. All rights reserved.
机译:由于化石燃料的储量逐渐消耗exhaust尽,将生物量纳入能量平衡正成为一个紧迫的问题,也是研究人员的主要研究领域。然而,诸如高水分含量,低热值,易碎性,粘性等生物质特征导致燃烧的高运行成本。因此,需要生物质预处理以改善其性能。这项工作显示了通过开发和证实用于锅炉机组的高热量固体燃料中生物质处理技术的参数所获得的结果。西伯利亚木材(桦木,松木和白杨木)和坎丁斯基矿床的泥炭混合物产生的碎片被用作生物量来源。热处理(低温热解)可以提高更新原料的热值,并获得粘合剂的基础。液体热解产物与糊精一起用于将固体复合燃料制成颗粒和团块的形式。这些固体燃料的发热量较低,分别为29.1 MJ / kg(木片)和20.9 MJ / kg(皮脂),优于大多数类型的燃料煤球和颗粒燃料,可与最高质量的化石燃料媲美。 (C)2017 Elsevier B.V.保留所有权利。

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