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A novel approach to improve the energy and cost efficiency of feedstock drying for pellet production

机译:一种提高原料干燥能量和成本效率的新方法,用于颗粒生产

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摘要

The success of the pellet industry depends on internal and external factors, comprising pellet quality, pellet production parameters and market variables. This study investigated the pellet production process from the raw material properties to the economic production parameters in order to quantify the feasibility of a new production concept. The proposed concept includes the sieving of the wet feedstock and successive selective drying of the fine fraction, while the coarse fraction is not dried. The impact of this energy saving measure is evaluated in terms of pellet quality, combustion emissions, and production / transport costs and energy consumption. Three sieve sizes were investigated (1.4 mm, 2.0 mm, 2.8 mm). The feedstock was separated and the fine and coarse fraction were equilibrated at 12 and 24% water content, respectively and mixed again for pelletization in a semi-industrial ring dye press. The pellets showed an improved durability and a higher water content, which had both positive and negative impacts on the combustion emissions. The bulk density decreased, which affected the transport parameters negatively. The economic benefit for medium and large scale production was high, mainly depending on the feedstock water content and the thermal efficiency of the dryer. The 2.0 mm sieve caused the best combination of improved durability, reduced emissions, increasing transport costs and thermal energy savings. A post-press reduction of the pellet water content can further improve the pellet quality and reduce combustion emissions, while the process of wet sieving has to be evaluated on industrial scale.
机译:颗粒行业的成功取决于内部和外部因素,包括颗粒质量,颗粒生产参数和市场变量。本研究研究了从原材料特性到经济生产参数的颗粒生产过程,以量化新生产概念的可行性。所提出的概念包括筛分湿原料和连续选择性干燥的细部分,而不干燥粗级分。在颗粒质量,燃烧排放和生产/运输成本和能源消耗方面评估了这种节能措施的影响。研究了三种筛尺寸(1.4毫米,2.0毫米,2.8毫米)。分离原料,分别在12至24%的水含量下平衡细胞和粗级分,再次混合在半工业环染料中。颗粒显示出改善的耐久性和较高的水含量,对燃烧排放具有正极和负面影响。堆积密度降低,这会产生负面影响。中型和大规模生产的经济效益高,主要取决于原料含水量和干燥器的热效率。 2.0毫米筛引起了提高耐用性,减少,减少,运输成本和热能节约的最佳组合。压制颗粒含水量的后压力降低可以进一步提高颗粒质量,减少燃烧排放,而湿筛分的过程必须对工业规模进行评估。

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