低温活化温度对煤气化细灰基活性炭理化性质及电化学性能影响

Effect of low temperature activation temperature on physicochemical properties and electrochemical properties of coal gasification fine ash based activated carbon

  • 摘要: 煤气化细灰作为煤气化过程中产生的固体废弃物,难以有效回收利用,造成环境污染和资源浪费。为推动其资源化利用,以煤气化细灰为原料,采用酸洗脱灰−低温KOH活化法制备超级电容器用活性炭,探究活化温度对活性炭的理化结构及电化学性能的影响。研究结果表明:当活化温度由450 ℃增加到650 ℃时,活性炭比表面积由798 m2/g增加到2399 m2/g,总孔容由0.78 cm3/g增加到1.98 cm3/g,介孔/微孔比由0.93增加到1.11。在三电极测试中,650 ℃活化制备活性炭(DA−650)质量比电容达到178 F/g(1 A/g@6 M KOH)。双电极测试中,DA−650对称超级电容器在15万圈循环充放电测试后,电容保持率为125.23%。综上,通过酸洗脱灰‒低温KOH活化工艺,可以提高煤气化细灰基活性炭电容特性,为煤气化细灰的高值化利用提供了参考。

     

    Abstract: As a solid waste produced in the process of coal gasification, fine ash is difficult to recover effectively, resulting in environmental pollution and resource waste. In order to promote its resource utilization, coal gasification fine ash was used as raw material to prepare activated carbon for supercapacitors by pickling deashing and low-temperature KOH activation, with the effects of activation temperature on the physicochemical structure and electrochemical properties of activated carbon explored. The results showed that when the activation temperature increased from 450 ℃ to 650 ℃, the specific surface area of activated carbon increased from 798 m2/g to 2399 m2/g, the total pore volume increased from 0.78 cm3/g to 1.98 cm3/g, and the mesoporous/micropore ratio increased from 0.927 to 1.113. In the three-electrode test, the mass specific capacitance of activated carbon (DA−650) activated at 650 ℃ reached 178 F/g (1 A/g@6 M KOH). In the double electrode test, the capacitance retention rate of DA−650 symmetric supercapacitor is 125.23% after 150000 cycles of charge and discharge test. It is indicated that the activated carbon based on coal gasification fine ash is prepared by pickling deashing and low temperature KOH activation process, and its capacitance characteristics are improved, which provides a reference for the high value utilization of coal gasification fine ash.

     

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