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Effect of support structure on the activity of Cr/nanosilica catalysts and the morphology of prepared polyethylene
Authors:Zahra Mohamadnia  Ebrahim Ahmadi  Mehdi Nekoomanesh  Ali Ramazani  Hamid Salehi Mobarakeh
Affiliation:1. Department of Polymerization Engineering, Iran Polymer and Petrochemical Institute (IPPI), PO Box 14965‐115, Tehran, Iran;2. Chemistry Department, Zanjan University, PO Box 45195‐313, Zanjan, Iran;3. Department of Science, Iran Polymer and Petrochemical Institute (IPPI), PO Box 14965‐115, Tehran, Iran
Abstract:Phillips‐type catalysts are responsible for the commercial production of more than one‐third of all polyethylene sold worldwide. Many types of chromium‐based catalysts are used in the Phillips polymerization process. Ordered mesoporous silica structures were synthesized using various surfactant species. Chromium nitrate nonahydrate (Cr(NO3)3·9H2O) complex was grafted onto the surface of pure silica and was used for ethylene polymerization. The materials were characterized using X‐ray diffraction, nitrogen adsorption‐desorption, inductively coupled plasma optical emission spectroscopy, thermogravimetric analysis and Fourier transform infrared spectroscopy. In the as‐synthesized materials, Cr3+ is present as a surface species in pseudo‐octahedral coordination. After calcination, Cr3+ is almost completely oxidized to Cr6+, which is anchored onto the surface in various oxidative states. The catalyst polymerization activity is dependent on the chromium loading, the pre‐calcination temperature and the support properties. In particular, the chromium catalyst prepared using spherical SBA‐15 is more active than the other catalysts investigated. Porous and nano‐fibrous polyethylene samples were prepared using various silica‐supported chromium catalytic systems. Differential scanning calorimetry results show that the melting point of samples produced with the SBA‐15‐supported catalyst is higher than that of samples produced with Cr/SiO2 under the same conditions, which could be related to the existence of an extended‐chain structure. Copyright © 2010 Society of Chemical Industry
Keywords:mesoporous  ethylene polymerization  chromium catalyst  SBA‐15
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