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Pilot-scale grinding and briquetting studies on variable moisture content municipal solid waste bales - Impact on physical properties, chemical composition, and calorific value

机译:可变性水分含量城市固体废物包的试验规模研磨和压块研究 - 对物理性质,化学成分和热值的影响

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摘要

Low bulk density, variable moisture content, and particle size of municipal solid waste (MSW) create feeding, handling, storage, and transportation challenges. In this study, MSW bales were size-reduced in stage-1 and stage-2 hammer mill grinders fitted with 50.8-mm and 6.35-, 12.7-, and 19.05-mm screens. Ground MSW was densified further in a pilot-scale briquette press by varying moisture content in the range of 10-25% wet basis (w.b.). At 40% (w.b.) MSW moisture content, the stage-1 grinder fitted with a 50.4-mm screen took about 136 kWh/ton, while the stage-2 grinder fitted with a 19.05-mm screen took about 151 kWh/ton. The bulk density of MSW after stage-1 and stage-2 grinding was about 25-50 kg/m3. Unit bulk and tapped density were in the range of 680-850 kg/m3, 478-315 kg/m3, and 346-540 kg/m3 post briquetting, and 591-830 kg/m3, 295-458 kg/m3, and 319-519 kg/m3 post five days of storage at 20 °C. The durability was about 93.40-98.54% post briquetting. and after five days of storage. Increasing the moisture content and screen size decreased density and improved durability. Briquetting energy increased to 120 kWh/ton at a higher moisture content and larger grind size. MSW flow characteristics improved after briquetting. Higher lignin content (≈30%) and calorific value (19-21 MJ/kg) suggest MSW is suitable for thermochemical conversion. Ash content in the MSW was in the 11.9-14.8% range. CT-scan images of the briquettes showed a network of interconnected pores formed due to compression of various MSW fractions.
机译:低批量密度,可变性水分含量和城市固体废物(MSW)的粒度会产生喂养,处理,储存和运输挑战。在本研究中,MSW BALES在阶段-1和第2级锤式磨机中的尺寸减小,安装有50.8mm和6.35-,12.7-和19.05mm屏幕。通过在10-25%湿法范围内(W.B.)的水分含量,在试验尺寸压梯压织中进一步致密地致密磨碎的MSW。在40%(W.B.)MSW水分含量下,安装有50.4毫米屏幕的舞台-1磨床约为136千瓦时/吨,而安装有19.05毫米屏幕的第2级研磨机约为151千瓦时/吨。阶段-1和第2阶段研磨后的MSW的堆积密度约为25-50kg / m 3。单位块状和截止密度为680-850 kg / m3,478-315 kg / m3和346-540 kg / m3后压块,591-830 kg / m3,295-458 kg / m3和319-519千克/ m3在20°C的储存五天后柱。耐用性约为93.40-98.54%的压块。经过五天的储存。提高水分含量和屏幕尺寸降低,密度提高,耐久性提高。压块能量在更高的水分含量和较大的研磨尺寸下增加至120千瓦时/吨。压块后MSW流动特性提高。 Lignin含量更高(≈30%)和热值(19-21 MJ / kg)表明MSW适用于热化学转换。 MSW中的灰分含量在11.9-14.8%的范围内。压块的CT扫描图像显示出由于各种MSW分数的压缩而形成的相互连接的孔网络。

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