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Activated Carbon Production by Co-Pyrolysis of Vacuum Residue and Gum Rosin

机译:通过对真空残留物和胶松香的共热分解活性炭产生

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Vacuum residue (VR) is potential to be used as a feedstock for mesophase pitch (MP) production because of its low cost and aromatic content. MP, which is a liquid-crystalline state of VR, may be used as precursor of activated carbon (AC). Gum rosin containing conjugated double bonds may be added to and can improve crystallinity and pore surface area in further processes of carbonisation and activation. In the present study, co-pyrolysis was carried out in a stirred tank reactor at 450°C with holding time for 120 minutes. The amount of gum rosin mixed with VR was varied 0, 5, 10 and 15% wt of VR. The precursor products had C/H mole ratio of about 2.43, 2.37, 2.28, and 2.01 by increasing gum rosin added. Subsequently, this precursor underwent carbonization at 700°C with holding time for 120 minutes under N_2 flow and activation. KOH solution was used as activating agent to the precursor of activated carbon. Activated carbon gave higher surface area and lower C/H atom ratio with increasing gum rosin added during co-pyrolysis. With gum rosin addition, surface areas of ACs were 120.81, 194.56, 312.36, dan 462.19 m~2/g, respectively, and crystallite sizes increased from 8 to 22 A.
机译:真空残留物(VR)由于其低成本和芳族含量,潜力用作中间相沥青(MP)产生的原料。作为VR的液晶状态的MP可以用作活性炭(AC)的前体。含胶松香含有共轭双键可以加入并可以在进一步的碳化和活化过程中改善结晶度和孔表面积。在本研究中,在450℃下在450℃下在450℃下进行共热解,保持时间120分钟。与VR混合的胶松香的量为0,5,10和15%wt的VR。前体产品具有C / H摩尔比约为2.43,2.37,2.28和2.01通过增加口香糖松香。随后,在N_2流动和活化下,该前体在700℃下在700℃下进行碳化120分钟。 KOH溶液用作活性炭前体的活性剂。活性炭具有较高的表面积和降低C / H原子比与在共热过程中加入的口香糖松香。随着口香糖松香,AC的表面积分别为120.81,194.56,312.36,丹462.19m〜2 / g,微晶尺寸从8到22 A增加。

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