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Predicting the vanadium speciation during petroleum coke combustion by thermodynamic equilibrium calculation

机译:通过热力学平衡计算预测石油焦炭燃烧过程中的钒形态

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Petroleum coke (petcoke), as a substitute for natural gas and fuel oil, has been burning in boilers for heat and power production. The high content of vanadium (V) in petcoke is responsible for ash-related problems including fouling, corrosion and deposition. Thus, the behavior of V during petcoke combustion has become a subject of concern both in science and engineering. In this paper, thermodynamic equilibrium calculations were performed to investigate the V speciation with the presence of main associated mineral elements (Si, Ca, Al, Fe, Ni and Na) during petcoke combustion. The results demonstrate that V participates in the reactions with Ca, Fe and Na, yielding V-containing chemical compounds (CaO)V2O5(s), (CaO)(2)V2O5(s), Fe(VO3)(2)(s) and (Na2O)V2O5(s), respectively. The formation of liquid species NaVO3 also takes place. Moreover, no interactions of V with Si, Al and Ni occur because no other V-containing species is formed over the whole range of temperatures. However, the associated mineral elements may co-influence the V species equilibrium compositions dramatically. The formation of CaSiO3(s) and CaAl12O19(s) occurred at 1600 A degrees C restrains the (CaO)(2)V2O5(s) production. Ca reacts with Si and Al to form CaAl2Si2O8(s), impeding the formation of (CaO)(2)V2O5(s). Na can also combine with Si and Al to generate NaAlSi3O8(s), inhibiting the (Na2O)V2O5(s) and NaVO3(l) production. It should be noted that VO2(g) exhibits high volatility (more than 90% (mol mol(-1))) at high temperatures (1600 A degrees C), whereas the presence of Ca results in a reduction in volatility of VO2(g) due to the formation of (CaO)(2)V2O5(s).
机译:石油焦炭(佩皮克)作为天然气和燃料油的替代品,在锅炉中燃烧了热量和电力生产。剥皮疗法的高含量(v)负责灰与灰分相关的问题,包括污垢,腐蚀和沉积。因此,在剥落期间v的行为已成为科学和工程中关注的主题。在本文中,进行了热力学平衡计算,以在熟胶燃烧期间研究主要相关矿物元素(Si,Ca,Al,Fe,Ni和Na)存在的V形状。结果表明,V参与与Ca,Fe和Na的反应,得到含V含化合物(CaO)V2O5(S),(CaO)(2)V2O5(S),Fe(VO3)(2)(s )分别和(Na2O)V2O5。液体物种Navo3也进行了形成。此外,没有发生与Si,Al和Ni的v的相互作用,因为在整个温度范围内没有形成含V含量。然而,相关的矿物元件可以显着影响V物种平衡组合物。 CasiO3(S)和CaA112O19的形成发生在1600℃下,抑制(CaO)(2)V2O5产生。 Ca与Si和Al反应形成CaAL2SI2O8,妨碍形成(CaO)(2)V2O5的形成。 Na还可以与Si和Al结合产生Naalsi3O8,抑制(Na2O)V2O5和Navo3(L)的生产。应注意,VO2(g)在高温(1600℃)下表现出高挥发性(超过90%(摩尔摩(-1)),而CA的存在导致VO2的挥发性降低( g)由于形成(CaO)(2)V2O5。

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