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Biochar from pyrolysis of biological sludge from wastewater treatment

机译:废水处理生物污泥热解的生物炭

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摘要

It was studied the production of biochar by pyrolysis of biological sludge from wastewater treatment in the pulp and paper industry. The pyrolysis process was conducted in bench-scale fixed-bed reactor using distinct operating conditions of heating rate (2, 10, 20 and 30?oC/min) and peak temperature (300, 375, 450, 525, and 600?oC). The biochar yield is in the range 0.40 to 0.73 kg/kg dry sludge, and decreases with increasing peak temperature and heating rate. The organic matter content of the biochar is in the range 55.9 to 75.3%wt. (dry basis). Both the temperature increase and the heating rate increase promote the decrease of biochar volatile matter content within values between 14.4 and 48.4%wt. (dry basis). The biochar ash content increases with peak temperature and heating rate, and it has values in the range 24.7 to 44.1%wt. (dry basis). The corresponding fixed carbon content is between 26.2 and 42.4%wt. (dry basis), and increases with an increase in the peak temperature. The carbon concentration in the biochar is in the range 42.8 to 47.0%wt. (dry basis). The biochar pH is in the range 6.9 to 11.2, and the electrical conductivity (EC) is in the range 2.2 to 5.0 mS/cm.
机译:通过在纸浆和造纸工业中从废水处理中的生物污泥的热解来研究生物炭。使用不同的加热速率(2,10,20和30→OC / min)和峰值温度(300,375,450,525和600Ω·oc)中的热解过程在台型固定床反应器中在台型固定床反应器中进行。 。生物炭产率在0.40至0.73千克/千克/千克/千克干污泥的范围内,随着峰值温度和加热速率的增加而降低。生物炭的有机物质含量为55.9至75.3%wt。 (干基)。温度升高和加热速率增加促进了14.4和48.4%的值之间的生物炭挥发物质含量的降低。 (干基)。 Biochar灰分含量随高峰温度和加热速率而增加,其值在24.7至44.1%wt的范围内。 (干基)。相应的固定碳含量为26.2和42.4%wt。 (干基),随着峰值温度的增加而增加。生物炭中的碳浓度在42.8至47.0%的范围内。 (干基)。 BioChOL pH在6.9至11.2的范围内,电导率(EC)在2.2至5.0ms / cm的范围内。

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