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首页> 外文期刊>Biomass & bioenergy >Torrefaction of biomass from municipal solid waste fractions I: Temperature profiles, moisture content, energy consumption, mass yield, and thermochemical properties
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Torrefaction of biomass from municipal solid waste fractions I: Temperature profiles, moisture content, energy consumption, mass yield, and thermochemical properties

机译:从城市固体废弃物中提取生物质I:温度曲线,水分含量,能耗,质量产率和热化学性质

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摘要

In this study, construction demolition waste (CDW) and grass clippings (GC) from municipal solid waste (MSW) were torrefied in a blown glass reactor using microwave irradiation with respect to microwave power levels (250, 500 and 750 W), torrefaction residence time (15, 30 and 45 min), moisture content (12, 16 and 20% w.b.) for CDW and 64% w.b. for GC, under nitrogen-activated inert condition. This investigation reflects that microwave power levels and torrefaction time have positive correlation on the temperature profiles. It shows that higher microwave power level contributed to higher heating rate and final temperature. Microwave power level and torrefaction time have negative correlation with the moisture content of CDW and GC after the torrefaction process. The higher the power level and torrefaction time, the higher the reaction temperature and the lower the moisture content of the torrefied MSW. Increasing the microwave power level and torrefaction residence time resulted to a corresponding increase in the thermochemical properties of the materials. As a result of torrefaction of CDW, elemental carbon increased by 1.3-39% over that of the non-torrefied CDW; while the elemental carbon of torrefied GC increased by 9-21% over that of the non-torrefied GC. The results show that the wetter the sample the less torrefaction energy is consumed and the more efficient the torrefaction process. At 500 W power level and 15 min torrefaction residence time of CDW, torrefaction energy of 4338 MJ/t and 3862 MJ/t were expended for 12 and 20% m.c., respectively.
机译:在这项研究中,使用微波辐射在吹制玻璃反应器中对微波功率水平(250、500和750 W),焙烧残留物进行了烘干,从城市固体废物(MSW)中去除了建筑拆除废物(CDW)和草屑(GC)。时间(15、30和45分钟),水分含量(12、16和20%wb)CDW和64%wb用于气相色谱,在氮气活化的惰性条件下。这项研究表明,微波功率水平和烘烤时间与温度曲线呈正相关。它表明较高的微波功率水平有助于较高的加热速率和最终温度。微波功率和焙干时间与焙干后CDW和GC的水分含量呈负相关。功率水平和焙烧时间越高,焙烧过的城市固体废弃物的反应温度越高,水分含量越低。微波功率水平和焙烧停留时间的增加导致材料热化学性质的相应增加。由于CDW的焙烧,元素碳比未焙烧的CDW增加了1.3-39%。而烘焙过的GC的元素碳比未烘焙过的GC的元素碳增加了9-21%。结果表明,润湿的样品消耗的烘焙能量越少,烘焙过程的效率就越高。在功率为500 W和CDW的焙烧停留时间为15分钟的情况下,焙烧能量分别为4338 MJ / t和3862 MJ / t,分别在m.c.和12%时消耗。

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