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Composition of aquathermolysis catalysts forming in situ from oil-soluble catalyst precursor mixtures injection of destructive hydrogenation catalysts precursors is a relevant task. In this paper

Catalytic Aquathermolysis of High-Viscosity Oil Using Iron, Cobalt, and Copper Tallates
of the composition of active forms of the catalyst formed upon degradation of the precursor, based on the results

Application of thermal investigation methods in developing heavy-oil production technologies detected in the presence of the catalyst precursor, as compared with the original sample, reflect

Evaluation method of influence of catalyst precursors on initiation of in-situ combustion and it's dynamics-situ combustion in the presence of catalyst precursors caused interest in petroleum industry due

Application of thermal investigation methods in developing heavy-oil production technologies detected in the presence of the catalyst precursor, as compared with the original sample, reflect

Ultra dispersed magnetite as a catalyst for aquathermolysis of heavy oil
catalytic systems, is very attractive and relevant task for many researchers. Catalysts intensify a

COMPLEX COMPOUNDS OF 3d-TRANSITION METALS WITH HYDROXY AROMATIC LIGANDS AS PRECURSORS OF NANO SIZED OXIDE CATALYSTSCOMPLEX COMPOUNDS OF 3d-TRANSITION METALS WITH HYDROXY AROMATIC LIGANDS AS PRECURSORS OF NANO SIZED

Changes in hydrocarbon content of heavy oil during hydrothermal process with nickel, cobalt, and iron carboxylates in the reservoir conditions and used carboxylates of transition metals (Ni, Co, Fe) as catalyst precursors

Aquathermolysis of High-Viscosity Oil in the Presence of an Oil-Soluble Iron-Based Catalyst-based catalyst was studied experimentally. A physical model of the catalytic transformation of high-viscosity oil

Hoveyda–Grubbs catalysts with an N→Ru coordinate bond in a six-membered ring. Synthesis of stable, industrially scalable, highly efficient ruthenium metathesis catalysts and 2-vinylbenzylamine ligands as their precursors by the Hofmann cleavage. The resultant 2-vinylbenzyl-amines allowed us to obtain new Hoveyda–Grubbs catalysts

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