多官能团活性炭纤维与O3双向协同脱除SO2的实验研究

Many Functional Groups of Activated Carbon Fiber with O3 Two-way Removal SO2 Experimental Research

  • 摘要: 采用溶胶-凝胶法,将脱硫多官能团薄膜负载在聚丙烯腈基活性炭纤维(ACF)上,并进行持续动态吸附和百次再生.通过实验研究分析,脱硫多官能团是以薄膜形式均匀包覆在ACF的纤维表面,脱硫多官能团薄膜封堵ACF纤维表面的部分孔洞,造成样品负载脱硫官能团ACF的比表面积、孔容和饱和吸附量都要略小于ACF,但对于硫化物的指向性和吸附量反而增大;百次反洗再生后,包覆在ACF纤维上的脱硫官能团薄膜会有一定程度的开裂翘起,使原本被封堵的孔隙结构重新露出,提高了样品比表面积、孔容和饱和吸附量.经过预膜剂原位再生后,包覆在ACF纤维上的脱硫官能团薄膜被重新修补如初.在臭氧的作用下,除了能够转化硫化物的吸附形态,还会对载体ACF产生再生自洁作用,使ACF吸附作用的时间大大延长.

     

    Abstract: Using the sol-gel method, the Desulfurization multifunctional thin film was loaded on the Polyacrylonitrile-based activated carbon fiber (ACF) and sustained dynamic adsorption and hundreds of regeneration were carried out. Through the experimental study and analysis, the Desulfurization multifunctional group was coated on the ACF with the fiber surface evenly. The desulfurization multifunctional thin film plugging the ACF fiber surface part hole caused the specific surface area of the sample loaded Desulfurization functional group ACF, the volume and the saturated adsorption quantity are slightly smaller than the ACF. However, the directivity and adsorption of sulfide increased. After hundreds of times of back-washing regeneration, the desulfurization functional groups coated on ACF fibers had a certain degree of cracking, which caused the original blocked pore structure to be exposed again, which improved the specific surface area of sample, volume and saturated adsorption quantity. After the film was regenerated in situ, the desulfurization functional group films coated on ACF fibers were repaired as before. Under the action of ozone, in addition to the transformation of sulfide adsorption morphology, the carrier ACF would produce a regenerative self-cleaning effect, so that ACF adsorption time greatly prolonged.

     

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