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The Positive Effects of Biomass Materials as Additives on Dehydration Performance and the Pyrolysis System of Oily Sludge

机译:生物质材料作为添加剂对油性污泥脱水性能和热解体系的积极影响

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The focus of the research is the minimizing amount of oil sludge via dehydration. The effects of using combination of polyaluminum chloride and biomass as additives on the possible improvement of the dehydration performance (evaluated via water content of oily sludge) of oil sludge and on the yield of pyrolysis oil at 723K were investigated. The main influencing factors of dehydration considered in the experiment are biomass species and dosage, temperature, and flocculation time. The water content of oily sludge was significantly reduced when biomass ranging from 0.5 to 3.0wt% on dosage ratio. The best phase dehydration performance was obtained from Apricot shell of 0.5wt% at 313-323K at flocculate time of 30-40min, while the highest recovery percent of pyrolysis oil (33.54%) was obtained from Walnut shell of 1.0wt%. The results indicate that the positive effects of the biomass in oily sludge on the improvement of dehydration performance and on recovery rate of the pyrolysis oil were observed. The main reasons that the improvement of dehydration performance may be responsible for the mixtures containing different proportions of oil sludge and biomass. The pyrolysis of the mixtures can increase the yield of pyrolysis oil and the higher heating value of oily sludge.
机译:研究的重点是通过脱水使油泥的量最小化。研究了将聚氯化铝和生物质混合使用作为添加剂对油泥脱水性能(通过油泥含水量评估)和723K热解油收率可能改善的影响。实验中考虑的主要影响脱水因素是生物质种类,用量,温度和絮凝时间。当生物量为剂量比的0.5%至3.0wt%时,油性污泥的水分含量显着降低。在313-323K絮凝30-40min时,由0.5wt%的杏壳获得最佳的相脱水性能,而从1.0wt%的核桃壳获得的热解油回收率最高(33.54%)。结果表明,油污泥中的生物质对脱水性能的改善和热解油的回收率具有积极作用。脱水性能提高的主要原因可能是含有不同比例的油泥和生物质的混合物的原因。混合物的热解可以增加热解油的产率并提高油性污泥的热值。

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