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Electrostatic potentials in gas-solid fluidized beds influenced by the injection of charge inducing agents

机译:注入电荷诱导剂影响的气固流化床中的静电势

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Accumulation of electrostatic charges in gas-solid fluidized beds can lead to particle adhesions, electrostatic discharges, wall sheeting and even explosion. Therefore, it is of vital importance to reduce the electrostatic level in industrial fluidized beds. Adding chemical static agents was reported as one of the most promising ways to control fluidized bed electrostatic potentials. In this study, the electrostatic potential distributions were measured in a three-dimensional column gas-solid fluidized bed with the LLDPE particles for fluidization and the introduction of chemical static agents. Seven charge inducing agents including TiO2, Al2O3, MgO, H2O, C2H5OH, ZnO, and Fe2O3 were employed to investigate their influence on electrostatic potentials distribution respectively. Additionally, AI(Et)3, which is normally used as the cocatalyst for olefin polymerization, was also studied for comparison. It was found that the adding of negative charge inducing agent such as TiO2 made the positive electrostatic potentials shift to higher values and the negative electrostatic potentials shift to lower values. The injection of positive charge inducing agent such as Al2O3 and MgO caused the positive electrostatic potentials dropping to lower values and the negative electrostatic potentials shifting to the values near zero at low injection amount. Affecting mechanism of charge inducing agents was discussed based on the experimental results and the electronegativity of corresponding compounds. It was found that the electronegativity (chi(i)) of the metal ion played an important role in determining the charge polarity on the LLDPE particles and the change in the electrostatic potentials after contact and separation with the charge inducing agent particles.
机译:气固流化床中静电荷的积累会导致颗粒附着,静电释放,墙板甚至爆炸。因此,降低工业流化床中的静电水平至关重要。据报道,添加化学静电剂是控制流化床静电势的最有前途的方法之一。在这项研究中,在带有LLDPE颗粒的三维柱气固流化床中测量了静电势分布,以进行流化和引入化学静电剂。分别采用TiO2,Al2O3,MgO,H2O,C2H5OH,ZnO和Fe2O3七种电荷诱导剂研究其对静电势分布的影响。另外,还对通常用作烯烃聚合助催化剂的AI(Et)3进行了比较。已经发现,添加诸如TiO 2的负电荷诱导剂使得正静电势移至较高值,而负静电势移至较低值。在注入量少的情况下,注入Al 2 O 3和MgO等正电荷诱导剂会使正静电势下降至较低值,而使负静电势移至接近零的值。根据实验结果和相应化合物的电负性,探讨了电荷诱导剂的影响机理。已经发现,金属离子的电负性(chi(i))在确定LLDPE颗粒上的电荷极性以及与电荷诱导剂颗粒接触和分离后的静电势的变化中起着重要作用。

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