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Effect of pyrolysis temperature on chemical and physical properties of sewage sludge biochar

机译:热解温度对污泥生物炭化学物理特性的影响

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The objective of this study was to evaluate the effects of pyrolysis temperatures (300, 400, 500, 600 and 700℃) on properties of biochar produced from an urban sewage sludge. Biochar yield significantly decreased from 72.5% at 300℃ to 52.9% at 700℃, whereas an increase in temperature increased the gas yield. Biochar pH and electrical conductivity increased by 3.8 and 1.4 dS m~(-1), proportionally to the increment of temperature. Biochar produced at low temperatures had higher total nitrogen and total organic carbon content but a lower C/N ratio, calcium carbonate equivalent, and total P, K and Na contents. Total and diethylene triamine penta acetic acid (DTPA)-extractable concentrations of Fe, Zn, Cu, Mn, Ni, Cr and Pb increased with increment of temperature. Lower DTPA-extractable concentrations of Fe, Zn, Cu, Mn, Ni and Pb were found in biochars compared to the sewage sludge. Pyrolysis decreased bulk density, whereas particle density and porosity increment was observed upon pyrolysis with increment of temperature. Sewage sludge saturated water content (θ_s) was 130.4 g 100g~(-1) and significantly greater than biochar, but biochar θ_s significantly increased with temperature (95.7 versus 105.4 g 100g~(-1) at 300 and 700℃, respectively). Pyrolysis decreased the biochar's water repellency, assessed by molarity of ethanol droplet (MED), compared to the sewage sludge. The lowest MED of 0.2 and water repellency rating of 3 were found for the biochar produced at 700℃. Based on our results and considering the energy consumption, pyrolysis temperature in the range of 300-400℃ may be suggested for sewage sludge pyrolysis.
机译:这项研究的目的是评估热解温度(300、400、500、600和700℃)对城市污水污泥产生的生物炭特性的影响。生物炭的收率从300℃的72.5%显着降低到700℃的52.9%,而温度升高则提高了气体产率。生物炭的pH和电导率与温度的升高成比例地增加了3.8和1.4 dS m〜(-1)。在低温下生产的生物炭具有较高的总氮和总有机碳含量,但具有较低的C / N比,碳酸钙当量以及总P,K和Na含量。 Fe,Zn,Cu,Mn,Ni,Cr和Pb的总和二亚乙基三胺五乙酸(DTPA)可提取浓度随温度升高而增加。与污水污泥相比,在生物炭中发现了较低的DTPA可萃取铁,锌,铜,锰,镍和铅的浓度。热解降低了堆积密度,而随着温度的升高,热解时观察到了颗粒密度和孔隙率的增加。污泥饱和水含量(θ_s)为130.4 g 100g〜(-1),明显大于生物炭,但生物炭θ_s随温度显着升高(分别在300℃和700℃时分别为95.7和105.4 g 100g〜(-1))。与下水道污泥相比,热解降低了生物炭的拒水性(通过乙醇滴(MED)的摩尔浓度评估)。 700℃下生产的生物炭的最低MED为0.2,防水等级为3。根据我们的结果并考虑能耗,建议将污泥热解的热解温度建议在300-400℃范围内。

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