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Co-hydrothermal carbonization of corn stalk and swine manure: Combustion behavior of hydrochar by thermogravimetric analysis

机译:玉米秸秆和猪粪的共热碳化:热重分析水炭燃烧行为

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The combustion behavior of the hydrochar from co-hydrothermal carbonization (HTC) of corn stalk (CS) and swine manure (SM) was thermogravimetrically investigated. Flynn-Wall-Ozawa (FWO) and Kissinger-Akahira-Sunose (KAS) were used for kinetic analysis, and the thermodynamic parameters were determined. Results showed that HTC decreased the combustion property and stability of SM, while co-HTC with CS significantly improved the combustion performance of the hydrochar including the increased ignition temperature and decreased burnout temperature. HTC of SM decreased the average activation energy (E-a) value from 140.40 and 137.31 KJ/mol to 124.40 and 120.17 KJ/mol by FWO and KAS, respectively, and increasing proportion of CS during co-HTC increased the E-a value of the hydrochar to 141.53-171.23 and 138.35-169.66 KJ/mol, respectively. The thermodynamic parameters confirmed the enhanced combustion reactivity of the hydrochar from co-HTC of CS and SM. These findings demonstrated that co-HTC with CS benefited the hydrochar production from SM with improved combustion performance.
机译:来自玉米秸秆(Cs)和猪粪(SM)的冷水热碳化(HTC)的燃烧行为是热血流分析的。 Flynn-Wall-ozawa(FWO)和Kissinger-Akahira-Sunose(KAS)用于动力学分析,并确定热力学参数。结果表明,HTC降低了SM的燃烧性能和稳定性,而CS的CS HTC显着提高了水炭的燃烧性能,包括增加的点火温度和降低的耐磨温度。 SM的HTC分别从140.40和137.31kj / mol的平均激活能量(EA)值降低至124.40和120.17kJ / mol,分别通过FWO和Kas,并且在CO-HTC期间增加了Cs的比例增加了氢乙酸的EA值分别为141.53-171.23和138.35-169.66 kJ / mol。热力学参数证实了来自CS和SM的CO-HTC的氢丙烯的增强燃烧反应性。这些研究结果表明,CS的CO-HTC受益于SM的水解产生,改善燃烧性能。

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