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首页> 外文期刊>Journal of Cleaner Production >Interaction of spent FCC catalyst and asphalt binder: Rheological properties, emission of VOCs and immobilization of metals
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Interaction of spent FCC catalyst and asphalt binder: Rheological properties, emission of VOCs and immobilization of metals

机译:废FCC催化剂和沥青粘合剂的相互作用:流变性质,VOCS排放和金属固定化

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Spent fluid catalytic cracking (FCC) catalyst and its reutilization in asphalt mortar was investigated. The interaction between spent FCC catalyst and Pen 60/80 asphalt binder has been evaluated by simultaneously discussing volatile organic compounds (VOCs) released from asphalt binder and mobility of selected metals elements existed in spent catalyst. Dynamic shear rheological test results showed that the high temperature performance of asphalt mortar was significantly improved by coarse spent FCC catalyst. Consequently, a higher rutting factor and lower fatigue factor can be obtained under similar filler to binder ratio. However, the low temperature performance reduced with an increase of spent catalyst compared with limestone powder asphalt mortar due to fluidity reduction of asphalt binder in pores of catalyst. Addition of spent FCC catalyst leaded to a reduction of VOCs released from asphalt binder in respect of relative content and categories, especially for polycyclic aromatic hydrocarbons (PAHs), such as naphthalene, anthracene, phenanthrene and its derivatives. Spent FCC catalyst influences emission of VOCs in the manner of adsorption and assisted catalytic reaction by resident zeolite structure and rare earth elements. On the basis of better understanding about migration of metals from spent catalyst to asphalt matrix and to aqueous solutions, immobilization of vanadium, nickel, lanthanum and cerium was enhanced by possible chemical reactions asphalt binder as well as physical wrapping effect. (C) 2020 Elsevier Ltd. All rights reserved.
机译:研究了沥青砂浆中的流体催化裂化(FCC)催化剂及其再利用。已经通过同时讨论从沥青粘合剂释放的挥发性有机化合物(VOC)和在废催化剂中存在的挥发性有机化合物(VOC)来评估废FCC催化剂和笔60/80沥青粘合剂的相互作用。动态剪切流变试验结果表明,粗糙的FCC催化剂显着改善了沥青砂浆的高温性能。因此,可以在与粘合剂相似的填料中获得更高的车辙因子和较低的疲劳因子。然而,与催化剂中的沥青粘合剂的流动性降低,低温性能随着花石灰石粉沥青砂浆的增加而降低了废催化剂。加入废FCC催化剂在相对含量和类别方面延伸到从沥青粘合剂中释放的VOC的减少,特别是对于多环芳烃(PAH),例如萘,蒽,菲及其衍生物。 CCC催化剂通过常规沸石结构和稀土元素的吸附和辅助催化反应的方式影响VOC的排放。在更好地了解金属从废催化剂中迁移到沥青基质和水溶液中,通过可能的化学反应沥青粘合剂以及物理包装效果,增强了钒,镍,镧和铈的固定化。 (c)2020 elestvier有限公司保留所有权利。

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