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Assessment of upgrading ability and limitations of slow co-pyrolysis: Case of olive mill wastewater sludge/waste tires slow co-pyrolysis

机译:缓慢共热解的升级能力和局限性评估:橄榄油厂废水污泥/废轮胎缓慢共热解的案例

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摘要

Olive mill wastewater sludge (OMWS) and waste tires (WTs), abundant wastes in Tunisia, were used as feedstock in a slow co-pyrolysis pilot reactor to produce upgraded pyrolytic oil as an alternative fuel. Despite the improvement of some properties of the pyrolytic oil when waste tires were added in the feed blend, a negative synergy was observed in the yield of the oil compared with that of char. The characterization of oil samples showed synergetic interaction between OMWS and WTs during co-pyrolysis which led to a partial deoxygenation and resulted in reduction of viscosity and increase in the calorific value of the co-pyrolytic oils. However, the co-pyrolytic oil properties did not meet the requirements of commercial diesel and will need further improvement by effective standardization to meet marketable specifications. Compared with catalytic fast pyrolysis (CFP) followed by hydrodeoxygenation (HDO), OMWS/WTs slow co-pyrolysis showed some limitations but it can be considered as a simple, clean and cheap process upgrading technique for bio-oil production (similar to 40% lower in fixed capital investment and similar to 30% lower in fuel selling price). (C) 2019 Elsevier Ltd. All rights reserved.
机译:在突尼斯的慢速联合热解试验反应器中,橄榄工厂的废水污泥(OMWS)和废轮胎(WTs)是大量废物,被用作原料,以生产提纯的热解油作为替代燃料。尽管将废轮胎加入进料共混物中时热解油的某些性能有所改善,但与焦炭相比,发现该油的收率具有负协同作用。油样品的表征表明,共热解过程中OMWS和WT之间存在协同作用,这导致部分脱氧,并导致粘度降低和共热解油的热值增加。但是,共热解油的性能不能满足商用柴油的要求,需要通过有效的标准化来进一步改进以满足可销售的规格。与催化快速热解(CFP)和加氢脱氧(HDO)相比,OMWS / WTs慢速共热解显示出一些局限性,但可以认为它是一种简单,清洁且廉价的生物油生产工艺升级技术(大约40%降低固定资本投资,降低近30%的燃料销售价格)。 (C)2019 Elsevier Ltd.保留所有权利。

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