Experimental and Mathematical Investigation of Thermochemical Conversion for Horse Manure

Mohamed Maache, Cheikh Kada, Ryoichi S. Amano, Hiroyuki Kumano, Osama M. Selim, Kada Kada
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Abstract

Horse manure is one of the highest potential biowastes for heat and power generation. This paper investigates the experimental and mathematical modeling of thermochemical conversion for horse manure. As one type of thermochemical conversions, the pyrolysis process was carried out at eight different heating rates on horse manure using three parameters: The extent of reaction, the rate change of the extent of reaction and Differential Thermal Analysis (DTA), all used to determine kinetic data that will be validated with a mathematical model. Slow pyrolysis: below 15 °C/min showed optimistic results of obtaining exothermic reaction over a wide range of temperature which makes it self-sustainable with steady heat generation. Also, low heating rates allowed a quasi-equilibrium state through slow heating with a minimum delay in response for any transient error that could be generated from Differential Thermogravimetry (DTG) device.
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马粪热化学转化的实验和数学研究
马粪是最有潜力用于供热和发电的生物废料之一。本文研究了马粪热化学转化的实验和数学模型。作为热化学转化的一种,本文使用三个参数对马粪进行了八种不同加热速率的热解过程:反应程度、反应程度的速率变化和差热分析 (DTA),所有这些参数都用于确定动力学数据,并通过数学模型进行验证。慢速热解:低于 15 °C/min 的温度显示了在大温度范围内获得放热反应的乐观结果,这使其能够自我维持,产生稳定的热量。此外,低加热速率可通过缓慢加热达到准平衡状态,并将差热重(DTG)装置可能产生的任何瞬态误差的响应延迟降至最低。
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