...
首页> 外文期刊>ACS Omega >MSW Compost Valorization by Pyrolysis: Influence of Composting Process Parameters
【24h】

MSW Compost Valorization by Pyrolysis: Influence of Composting Process Parameters

机译:通过热解的MSW堆肥算法:堆肥过程参数的影响

获取原文

摘要

The valorization of urban solid waste compost (MSW) in two different composting conditions (different aeration and humidity) has been studied (we work with the hypothesis that the composting process can have a significant influence on a subsequent pyrolysis process). The influence of composting on subsequent pyrolysis of the material was assessed by examining the kinetics of the process, maximizing hydrogen production and minimizing the activation energy. The thermogravimetric analysis carried out on the samples have shown that they have a greater loss of weight of 9–14% at 270–275 °C and 22–27% at 444–446 °C. Using the Kissinger–Akahira–Sunose method, the activation energy values are found to be in the range of 57.78–581.69 kJ mol~(–1), and the assumption that pyrolysis of compost could be modeled by a first-order reaction may be a suitable approximation. The analysis of the gases produced from the pyrolysis process revealed that hydrogen increases in concentration as composting time advances until intermediate time. In this form, the composting process could be a suitable previous treatment for improving the pyrolysis process. In fact, decreasing aeration and moisture in the MSW composting process led to the production of an increased amount of hydrogen (8.3%) by pyrolysis of the resulting compost and also to a decreased activation energy (102.8 kJ mol~(–1)). These effects were also observed before the end of the composting process in the form of maximum hydrogen production and minimum activation energy after 20 days.
机译:已经研究了城市固体废物堆肥(MSW)的算命(MSW)在两个不同的堆肥条件下(不同的曝气和湿度)(我们使用的假设,即堆肥过程对随后的热解过程产生重大影响)。通过检查该方法的动力学,最大化氢气产生并最小化活化能来评估堆肥对材料随后的热解的影响。在样品上进行的热重分析表明,它们的重量损失为9-14%,在270-275℃下,22-27%在444-446℃下。使用基辛格-Akahira-Sunose方法,发现激活能量值在57.78-581.69 kJ mol〜(-1)的范围内,并且可以通过一阶反应建模堆肥的热解的假设合适的近似。从热解过程中产生的气体的分析表明,氢气浓度增加,因为堆肥时间进入中间时间。在这种形式中,堆肥过程可以是用于改善热解过程的适当先前的处理。事实上,通过将所得堆肥的热解和降低的活化能量(102.8kJ mol〜(-1)的降低,降低MSW堆肥过程中的曝气和水分的产生增加了氢气量(8.3%)的产生(102.8kjmol〜(-1))。在堆肥过程结束之前还观察到这些效果在20天后最大氢气产生和最小活化能的形式。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号