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污水污泥热解制备可持续生物燃料和增值生物炭。

Pyrolysis of sewage sludge for sustainable biofuels and value-added biochar production.

机构信息

Department of Chemical Engineering, National Institute of Technology Calicut, Kozhikode, 673601, Kerala, India.

Department of Chemistry, Centre for Alternate and Renewable Energy Research, R&D, University of Petroleum & Energy Studies (UPES), School of Engineering, Energy Acres Building, Bidholi, Dehradun, 248007, Uttarakhand, India.

出版信息

J Environ Manage. 2021 Nov 15;298:113450. doi: 10.1016/j.jenvman.2021.113450. Epub 2021 Aug 11.

Abstract

The study deals with the pyrolysis of sewage sludge to produce eco-friendly and sustainable fuels along with value-added biochar products. The experiments were conducted in a fixed-bed cylindrical glass reactor in the temperature range of 250-700 °C and achieved the product yield of 22.4 wt% bio-oil, 18.9 wt % pyrolysis gases, and 58.7 wt% biochar at 500 °C optimum temperature. The chemical composition of bio-oil was investigated by gas chromatograph-mass spectroscopy and fourier transformation infrared techniques. The ASTM standard procedures were used to assess the fuel qualities of bio-oil, and they were found to be satisfactory. Bio-oil has a greater H/C ratio (3.49) and a lower O/C ratio (1.10), indicating that it is suitable for engine use. The gas chromatographic analysis of pyrolysis gases confirmed the presence of 41.16 wt % combustible gases, making it suitable for use in spark-ignition engines. X-ray fluorescence analysis of biochar showed that it had a good amount of carbon, nitrogen, phosphorus, and potassium along with some micro-and macro-nutrient which proves its potential to utilize as organic manure in the agriculture sector. In addition, the data obtained from the TGA analysis during the pyrolysis of sewage sludge was applied to calculate kinetic parameters via the Coats-Redfern method.

摘要

本研究探讨了通过热解污水污泥生产环保且可持续的燃料以及增值生物炭产品。实验在固定床圆柱形玻璃反应器中进行,温度范围为 250-700°C,在 500°C 的最佳温度下,实现了 22.4wt%生物油、18.9wt%热解气和 58.7wt%生物炭的产物收率。通过气相色谱-质谱联用和傅里叶变换红外技术研究了生物油的化学成分。采用 ASTM 标准程序评估了生物油的燃料质量,结果令人满意。生物油具有较高的 H/C 比(3.49)和较低的 O/C 比(1.10),表明其适合用于发动机。热解气的气相色谱分析证实存在 41.16wt%的可燃气体,使其适合用于火花点火发动机。生物炭的 X 射线荧光分析表明,它含有大量的碳、氮、磷和钾以及一些微量和大量营养素,证明了其在农业领域用作有机肥料的潜力。此外,通过 Coats-Redfern 方法计算热解过程中污水污泥的 TGA 分析数据得到的动力学参数。

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