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Thermal utilization of meat and bone meals. Performance analysis in terms of drying process, pyrolysis and kinetics of volatiles combustion

机译:肉和骨粉的热利用。从干燥过程,热解和挥发物燃烧动力学方面进行性能分析

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A development of technology of thermal utilization requires a thorough knowledge of the physicochemical properties, as well as kinetics of combustion of volatiles and char. Due to waste management regulations the meat and bone meal (MBM) is regarded as biofuel constituting one of the alternatives to fossil fuels in the energy market. MBM is a heterogeneous material that may consist of several different fractions. The extensive analysis of issues related to its thermal conversion, including moisture evaporation, pyrolysis and gas burning, is reported in the paper. The samples derived from fallen animals which have undergone thermal decomposition in the plant of Jezuicka Struga S.A. (Poland) were examined. The research was carried out using a unique test stand. The study of drying process showed that the results for various samples differ to a great extent. It was observed that the time of drying process is proportional to the moisture content. Pyrolysis, being a thermal treatment itself, as the first step in gasification processes needs to be evaluated as a potential source of energy recovery from meat-and-bone meal. The conversion of animal waste by pyrolysis into fuels can contribute to the reduction of greenhouse gases. A series of laboratory tests were performed prior to establishing the best pyrolysis conditions. The paper also deals with research on the gas phase kinetics, which is the main core of a proceeding in the case of utilization process. The obtained test results allowed to determine the mass burning rates that are defined by kinetic constants in the Arrhenius equation.
机译:热利用技术的发展需要对理化性质以及挥发物和炭的燃烧动力学有透彻的了解。根据废物管理法规,肉骨粉(MBM)被视为构成能源市场中化石燃料替代品之一的生物燃料。 MBM是一种异质材料,可能包含几个不同的部分。本文报道了对其热转化相关问题的广泛分析,包括水分蒸发,热解和气体燃烧。检查了来自在Jezuicka Struga S.A.(波兰)的植物中经过热分解的下落动物的样品。使用独特的测试台进行了研究。干燥过程的研究表明,各种样品的结果差异很大。观察到干燥过程的时间与水分含量成正比。作为气化过程的第一步,热解本身就是一种热处理,需要评估为从骨粉中回收能量的潜在来源。通过热解将动物粪便转化为燃料可有助于减少温室气体。在建立最佳热解条件之前,进行了一系列实验室测试。本文还涉及气相动力学的研究,这是利用过程中程序的主要核心。获得的测试结果可以确定由Arrhenius方程中的动力学常数定义的质量燃烧速率。

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