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On the Pyrolysis of Sewage Sludge: the Influence of Pyrolysis Temperature on Biochar, Liquid and Gas Fractions

机译:污水污泥的热解:热解温对生物炭,液体和气体馏分的影响

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Pyrolytic conversion of sewage sludge to biochar, oil and gas is an environmentally and economically acceptable way comparable to conventional options for sewage sludge disposal. The aim of this paper is to investigate the influence of pyrolysis temperature on production of biochar fraction for agronomic application, oil and gas fractions for energy utilization. Sewage sludge samples collected from an urban sewage treatment plant were pyrolysed in a bench-scale quartz tubular furnace over the temperature range of 300-700°C.The results indicated that the biochar fraction yield decreased, the yields of liquid (oil and water) fraction and gas fraction increased by evaluating the pyrolysis temperature. Concentration of heavy metals and nutrient elements present in biochar varied with pyrolysis temperature, the heating value of oil from liquid fraction fluctuated between 26938.3 and 30757.9kJ/kg, the heating value of gas fraction increased from 4012kJ/Nm~3 to 12077 kJ/Nm~3 with the increasing pyrolysis temperature.
机译:污水污泥至生物炭,石油和天然气的热解转换是一种环境和经济上可接受的方式,可与污水污泥处理的常规选项相当。本文的目的是探讨热解温度对农艺应用,油气馏分的生物炭馏分生产的影响。从城市污水处理厂收集的污泥污泥样品在300-700℃的温度范围内以支撑尺寸石英管状炉中的热解。结果表明生物炭馏分产率降低,液体产量(油水)通过评估热解温度来增加馏分和气体级分。生物炭中存在的重金属和营养元素的浓度随热解温而变化,来自液体分数的油的加热值波动在26938.3和30757.9kJ / kg之间,气体馏分的加热值从4012kj / nm〜3增加到12077 kJ / nm 〜3随着热解温度的增加。

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