doctoralThesis
Degradacao termica e catalitica da borra oleosa de Petroleo com materiais nanoestruturados al-mcm-41 e AL-SBA-15
Fecha
2012-11-04Registro en:
PAULINO, Ana Adalgisa Dias. Degradacao termica e catalitica da borra oleosa de
Petroleo com materiais nanoestruturados al-mcm-41 e
AL-SBA-15. 2012. 126 f. Tese (Doutorado em Pesquisa e Desenvolvimento em Ciência e Engenharia de Petróleo) - Universidade Federal do Rio Grande do Norte, Natal, 2012.
Autor
Paulino, Ana Adalgisa Dias
Resumen
Aiming to reduce and reuse waste oil from oily sludge generated in large volumes by the oil
industry, types of nanostructured materials Al-MCM-41 and Al-SBA-15, with ratios of Si / Al
= 50, were synthesized , and calcined solids used as catalysts in the degradation of oily sludge
thermocatalytic oil from oilfield Canto do Amaro, in the state of Rio Grande do Norte.
Samples of nanostructured materials were characterized by thermogravimetric analysis (TG /
DTG), X-ray diffraction (XRD), scanning electron microscopy (SEM), absorption
spectroscopy in the infrared Fourier transform (FT-IR) and adsorption nitrogen (BET). The
characterization showed that the synthesized materials resulted in a catalyst nanostructure,
and ordered pore diameter and surface area according to existing literature. The oily sludge
sample was characterized by determining the API gravity and sulfur content and SARA
analysis (saturates, aromatics, resins and asphaltenes). The results showed a material
equivalent to the average oil with API gravity of 26.1, a low sulfur content and considerable
amount of resins and asphaltenes, presented above in the literature. The thermal and catalytic
degradation of the oily sludge oil was performed from room temperature to 870 ° C in the
ratios of heating of 5, 10 and 20 ° C min-1. The curves generated by TG / DTG showed a
more accelerated degradation of oily sludge when it introduced the nanostructured materials.
These results were confirmed by activation energy calculated by the method of Flynn-Wall, in
the presence of catalysts reduced energy, in particular in the range of cracking, showing the
process efficiency, mainly for extraction of lightweight materials of composition of oily
sludge, such as diesel and gasoline