Quan Cui, Li Aimin, Gao Ningbo
School of Environmental and Biological Science and Technology, Dalian University of Technology, Dalian, Liaoning 116024, China.
Waste Manag. 2009 Aug;29(8):2353-60. doi: 10.1016/j.wasman.2009.03.020. Epub 2009 Apr 23.
Pyrolysis of large printed circuit board (PCB) waste particle was conducted on a specially designed laboratory-scale thermobalance (Macro-TG) with sample loading of 30 g under dynamic nitrogen atmosphere. The effects of heating rate (10, 15, 20 and 25 degrees C min(-1)) and particle size (1 mm x 1 mm, 5 mm x 5 mm, 10 mm x 10 mm and 10 mm x 20 mm) were examined. To compare the different decomposition behavior of fine and large one, the thermal decomposition of PCB waste powder (approximately 5mg) was also performed on a thermogravimetric analyzer (common TG) under various heating rates (10, 15, 20 and 40 degrees C min(-1)) and particle size ranges (0.198-0.165 mm, 0.165-0.074 mm, 0.074-0.055 mm and 0.055-0.047mm). Experimental results show that large particle has a pyrolysis reaction retardancy compared to fine one. The distributed activation energy model was used to study the pyrolysis kinetics. It was found that during pyrolysis process, values of frequency factor (k(0)) changed with different activation energy (E) values. On common TG, the E values range from 156.95 to 319.37 kJ mol(-1) and k(0) values range from 2.67 x 10(13) to 2.24 x 10(27)s(-1). While, on Macro-TG, the range of E was 31.48-41.26 kJ mol(-1) and of the frequency factor was 19.80-202.67s(-1).
在专门设计的实验室规模热重分析仪(Macro-TG)上,于动态氮气气氛下对30克大型印刷电路板(PCB)废料颗粒进行热解。研究了加热速率(10、15、20和25℃·min⁻¹)和颗粒尺寸(1毫米×1毫米、5毫米×5毫米、10毫米×10毫米和10毫米×20毫米)的影响。为比较细颗粒和大颗粒的不同分解行为,还在热重分析仪(普通TG)上对约5毫克的PCB废料粉末在不同加热速率(10、15、20和40℃·min⁻¹)及不同颗粒尺寸范围(0.198 - 0.165毫米、0.165 - 0.074毫米、0.074 - 0.055毫米和0.055 - 0.047毫米)下进行了热分解。实验结果表明,与细颗粒相比,大颗粒具有热解反应延迟性。采用分布活化能模型研究热解动力学。研究发现,在热解过程中,频率因子(k₀)的值随不同的活化能(E)值而变化。在普通TG上,E值范围为156.95至319.37千焦·摩尔⁻¹,k₀值范围为2.67×10¹³至2.24×10²⁷秒⁻¹。而在Macro-TG上,E的范围为31.48 - 41.26千焦·摩尔⁻¹,频率因子的范围为19.80 - 202.67秒⁻¹。