By Manuel E. Pardo Echarte, Osvaldo Rodríguez Morán

This publication reviews the “Redox Complex”, a fancy of unconventional geophysical-geochemical exploration suggestions used for the oblique detection, characterization and overview of varied steel ambitions, whereas additionally illustrating chosen purposes of unconventional geophysical-geochemical tools for oil exploration in Cuba. This complicated is effectively utilized in quite a few fields: oil & gasoline and steel ores exploration; stories of oil and steel contaminants in soils; and the quest for steel archaeological burials. using those concepts is meant to enrich the normal prospecting complicated by means of lowering parts and/or facilitating the choice of the main favorable objectives, enhancing the economical-geological effectiveness of investigations within the strategy. extra, the Redox advanced might be applied with no actual or chemical harm to the surroundings.

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The areas were selected to characterize response to different types of environments and deposits with different characteristics: of lying (occurrence), geometry, and composition; so it could do more representative analysis for design quantitative interpretation parameters. 2 Historical Development of Redox Complex Progress in the historical development of Redox Complex has followed the path from empirical observation, through experimentation and application of mathematical expressions that model the observed regularities, to an approach to the theory.

For purposes of metallic minerals (Kuroko VMS, Epithermal low and high sulfidation, Refractory chromite, Cyprus VMS, and Nickeliferous crust) works were developed by isolated profiles, step 20 m, extending from 200 to 600 m. For the purposes of environmental studies (surficial and occasionally at groundwater table contaminations of Fe, Mn, As, Pb, Zn, and hydrocarbons) works were developed by isolated profiles, step 20 m, with approximate length of 200 m. 5 m, with approximate length of 10 m. 00/km.

Prevalence of the lithological response of magnetic susceptibility and spectral reflectance. • Existence of a recent transported cover (less than 10 years). • Environmental Studies (a) Possibilities: • Recognition and detailed cartography of the contaminated area, allowing to establish its nature (surface or subsurface) and grade. • Approximate determination of the depth of the subsurface contaminant source. (b) Limitations: • Presence of surface reducing or oxidizing zones of various kinds. • Prevalence of the lithological response of magnetic susceptibility and spectral reflectance.

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