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Properties of pellets of torrefied U.S. waste blends

机译:烘焙过的美国废料混合物的颗粒特性

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摘要

With the continued growing U.S. population, solid waste generation will increase, which will lead to undesired and significant growth in landfilling. Thermal treatment can turn these high calorific value wastes into fuels that can be used in small-to-large power plants. This article focuses on using blends with 40% plastic and 60% fiber wastes and converting them into densified solid fuel by torrefaction and extrusion. The material was torrefied at 300 ℃ to obtain torrefied samples with different mass losses, ranging from 0% to a maximum of 51%. The torrefaction results showed a clear synergy between plastics and fibers. The torrefied material was then extruded into 9 mm diameter rods and the products were characterized by molecular functional group analysis, thermomechanical analysis, dynamic mechanical analysis, dynamic Theological measurement, density measurement, flexural testing, water absorption test, size distribution measurement, heat content test, and combustion test. The fiber content in the material decreased as mass loss increased, and the process reduced significantly the variability of the material. The heat content increased as the mass loss increased. The plastic in the feedstock acted as a process enabler as it imparted properties like bindability, water resistance, high heat content, and increased degradation reaction rate.
机译:随着美国人口的持续增长,固体废物的产生将增加,这将导致垃圾填埋的不希望有的显着增长。热处理会将这些高热值废物转化为可用于小型到大型发电厂的燃料。本文重点介绍如何使用掺有40%塑料和60%纤维废料的混合物,并通过烘焙和挤压将它们转化为致密的固体燃料。将该材料在300℃下焙烧,得到质量损失率从0%到最大51%的焙烧样品。烘焙结果表明塑料和纤维之间具有明显的协同作用。然后将经过烘焙的材料挤出成直径为9 mm的棒,并通过分子官能团分析,热力学分析,动态力学分析,动态神学测量,密度测量,弯曲测试,吸水率测试,尺寸分布测量,热含量测试对产品进行表征和燃烧测试。随着质量损失的增加,材料中的纤维含量降低,并且该过程显着降低了材料的可变性。热量随着质量损失的增加而增加。原料中的塑料起着工艺促进剂的作用,因为它赋予了诸如粘合性,耐水性,高热含量和提高的降解反应速率等性能。

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