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Experimental Study of Using Renewable Energy from Palm Empty Fruit Bunch as Additional Fuel in an Incinerator by Gasification Technology

机译:气化技术利用棕榈空果束可再生能源作为焚化炉辅助燃料的实验研究

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Empty fruit bunch from palm oil industrial process is always consider as waste and need to dispose properly, however, there is still hiding energy storage within which can be used as renewable and alternative fuel by using gasification technology. This study has aim to characterize the gasification reaction of Palm Empty Fruit Bunch (PEFB) by using two types of reactor; a 10 kg.hr~-1 lab-scale downdraft gasifier and a 50 kg.hr'1 prototype downdraft gasifler, in order to study die characteristic of synthetic gas from PEFB with different operating conditions. The study includes the analysis of physical and chemical characteristic of PEFB then the series of experiments on two types of reactor have been performed. The reaction temperature on reactor has classified on 4 different zones; 200 - 300°C for drying zone, 500 - 800°C for pyrolysis zone, 800 - l,000°C for oxidation zone and 550 - 800°C for reduction zone. The optimum operating conditions of a lab-scale reactor and in pilot-scale reactor are investigated in order to provide the synthetic gas with maximum yield. This synthetic fuel gas shall be used as additional fuel in a waste incineration in order to replace the using diesel oil burner which helps to reduce the operating cost of the incinerator when burned with high moisture waste. The experimental study shows that the synthetic gas from PEFB shall be used as renewable fuel to substitute diesel oil for waste incineration effectively, either in terms of technical and economical aspects. It can be concluded that PEFB should not be considered as waste any more but the renewable energy from PEFB could save fossil fuel and reduce the emission of green house gas for sustainable development society.
机译:棕榈油工业过程中产生的空果串一直被视为浪费,需要适当处置,但是,仍然存在隐藏的能量存储,其中可以通过使用气化技术将其用作可再生燃料和替代燃料。本研究旨在通过使用两种类型的反应器来表征棕榈空果束(PEFB)的气化反应。一台10 kg.hr〜-1实验室规模的下浮式气化炉和一台50 kg.hr'1的下浮式气化炉,以研究在不同操作条件下来自PEFB的合成气的模具特性。研究包括分析PEFB的物理和化学特性,然后对两种类型的反应器进行了一系列实验。反应器上的反应温度分为4个不同区域。干燥区为200-300°C,热解区为500-800°C,氧化区为800-l,000°C,还原区为550-800°C。为了提供最大产率的合成气,研究了实验室规模的反应器和中试规模的反应器的最佳操作条件。该合成燃料气体应在废物焚化中用作补充燃料,以代替使用过的柴油燃烧器,当燃烧高水分废物时,这有助于降低焚化炉的运行成本。实验研究表明,从技术和经济方面来看,PEFB的合成气均应用作可再生燃料,以代替柴油有效地进行废物焚烧。可以得出的结论是,PEFB不再被视为废物,而PEFB的可再生能源可以节省化石燃料并减少可持续发展社会的温室气体排放。

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