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【论文发表】课题组在《Journal of the Energy Institute》学术期刊发表论文Co-pyrolysis of waste tire with agricultural and forestry residues: pyrolysis behavior, products distribution and synergistic effects
Co-pyrolysis waste tire agricultura forestry residues pyrolysis behavior
2025/2/26
内容简介:本研究运用热重分析(TGA)、傅里叶变换红外光谱(FTIR)及热裂解-气相色谱/质谱仪(Py-GC/MS)对废轮胎与农林废弃物(棉花秸秆、花生壳和杨树枝)进行了共热解分析。通过对废轮胎与棉花秸秆、花生壳、杨树枝进行共热解的热重分析,测定了质量损失率和烃含量的协同效应。相比单独热解,废轮胎与棉花秸秆、花生壳或杨树枝的共热解使质量损失率明显增加和烃含量明显增加。农林废弃物的加入简化了热解过程...


Low-formaldehyde?emission composite particleboard manufactured from waste chestnut bur
Chestnut bur Composite particleboard Formaldehyde Polyphenol
2023/12/21
Chestnut bur is an agro-waste material generated in the chestnut production. It is a tannin-rich lignocellulosic material which might be a promising raw material for low-formaldehyde?composite particl...

【论文发表】课题组在《Fuel》学术期刊发表论文Co-pyrolysis characteristics of waste tire and maize stalk using TGA, FTIR and Py-GC/MS analysis(图)
Co-pyrolysis characteristics waste tire maize stalk TGA FTIR Py-GC/MS analysis
2025/2/26
内容简介:共热解技术是实现废轮胎和生物质资源高效利用、解决环境问题、帮助缓解能源供应问题的重要途径。本研究利用热重分析(TGA)、傅里叶变换红外光谱(FTIR)和气相色谱/质谱(GC/MS)研究了废轮胎、玉米秸秆及其混合物的热解行为。结果表明,废轮胎与玉米秸秆之间的共热解具有协同作用。TGA分析结果表明在共热解过程中,玉米秸秆发生热解时间较早,所需的热解温度低于废轮胎,即温度低于380℃,玉米秸秆...

【论文发表】课题组在《Journal of Energy Resources Technology》学术期刊发表论文Products Distribution and Synergistic Effects Analysis During Co-Pyrolysis of Agricultural Residues and Waste Tire Using Gas Chromatography/ Mass Spectrometry(图)
Products Distribution Synergistic Effects Co-Pyrolysis Agricultural Residues Waste Tire
2025/2/26
内容简介:生物质与废旧轮胎的热化学转化是利用废弃资源生产可再生能源的重要方向。本研究采用热裂解-气相色谱/质谱联用仪(Py-GC/MS)分析了农林业剩余物和废轮胎共热解过程中的产物分布和协同效应。在550°C和650°C的条件下分析了玉米秸秆、小麦秸秆、废轮胎以及小麦秸秆-废轮胎(质量比为1:1)和玉米秸秆-废轮胎(质量比为1:1)的混合物的热解和共热解产物。结果表明农林业剩余物和废轮胎共热解促进...

【论文发表】课题组在《Journal of Energy Resources Technology》学术期刊发表论文Synergistic Effects and Kinetics in Co-Pyrolysis of Waste Tire with Five Agricultural Residues Using Thermogravimetric Analysis(图)
Synergistic Effects Kinetics Co-Pyrolysis Waste Tire Five Agricultural
2025/2/26
内容简介:随着社会流动性持续发展,废弃轮胎数量急剧增加,导致环境污染和资源浪费问题日益严重。与此同时,农业残留物作为一种可再生资源,近年来备受关注。进行废轮胎、农业残留物及其混合物的热化学转化研究具有重要前景,不仅可以提供能源安全,还可显著减少环境影响。本研究使用热重分析法,在不同加热速率下将废轮胎与玉米秸秆、小麦秸秆、棉秸秆、油菜秸秆和花生壳等农业残留物按1:1质量比共热解进行深入研究。采用Fl...
Multifunctional tannin extract-based epoxy derived from waste bark as a highly toughening and strengthening agent for epoxy resin
Waste bark Tannin extract Liquefaction Bio-based epoxy Toughness
2023/12/6
To reduce crude oil consumption and the corresponding environmental impact, the use of sustainable resources has recently attracted much attention. Herein, a low-viscosity and efficient tannin-based e...
Preparation and Degradation of Waste Polycarbonate-Derived Epoxy Thermosets and Composites
waste polycarbonate diphenyl carbonate one-hundred percent atom efficiency epoxy recycling of CFRP aminolysis
2023/12/5
We report a robust, 100% atom-efficiency strategy for preparing waste polycarbonate (WPC)-derived epoxy resin. To demonstrate the preparation process, we perform a pyridine-catalyzed model reaction be...


A novel method for squeezing molecules together could significantly reduce chemical manufacturing waste(图)
Mechanical Engineering Energy Science Research
2023/6/27
