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  2. Lower mantle - Wikipedia

    en.wikipedia.org/wiki/Lower_mantle

    The lower mantle, historically also known as the mesosphere, represents approximately 56% of Earth's total volume, and is the region from 660 to 2900 km below Earth's surface; between the transition zone and the outer core. [1]

  3. Earth's mantle - Wikipedia

    en.wikipedia.org/wiki/Earth's_mantle

    The lower mantle is composed primarily of bridgmanite and ferropericlase, with minor amounts of calcium perovskite, calcium-ferrite structured oxide, and stishovite ...

  4. Mantle convection - Wikipedia

    en.wikipedia.org/wiki/Mantle_convection

    Simplified model of mantle convection: [1] Whole-mantle convection. Mantle convection is the very slow creep of Earth's solid silicate mantle as convection currents carry heat from the interior to the planet's surface. [2] [3] Mantle convection causes tectonic plates to move around the Earth's surface. [4]

  5. Core–mantle boundary - Wikipedia

    en.wikipedia.org/wiki/Core–mantle_boundary

    An approximately 200 km thick layer of the lower mantle directly above the CMB is referred to as the D″ region ("D double-prime" or "D prime prime") and is sometimes included in discussions regarding the core–mantle boundary zone. [3] The D″ name originates from geophysicist Keith Bullen's designations for the Earth's layers.

  6. Silicate perovskite - Wikipedia

    en.wikipedia.org/wiki/Silicate_perovskite

    The existence of silicate perovskite in the mantle was first suggested in 1962, and both MgSiO 3 and CaSiO 3 had been synthesized experimentally before 1975. By the late 1970s, it had been proposed that the seismic discontinuity at about 660 km in the mantle represented a change from spinel structure minerals with an olivine composition to silicate perovskite with ferropericlase.

  7. Transition zone (Earth) - Wikipedia

    en.wikipedia.org/wiki/Transition_zone_(Earth)

    The transition zone is the part of Earth's mantle that is located between the lower and the upper mantle, most strictly between the seismic-discontinuity depths of about 410 to 660 kilometres (250 to 410 mi), but more broadly defined as the zone encompassing those discontinuities, i.e., between about 300 and 850 kilometres (190 and 530 mi) depth. [1]

  8. Deep carbon cycle - Wikipedia

    en.wikipedia.org/wiki/Deep_carbon_cycle

    Accordingly, carbon can remain in the lower mantle for long periods of time, but large concentrations of carbon frequently find their way back to the lithosphere. This process, called carbon outgassing, is the result of carbonated mantle undergoing decompression melting, as well as mantle plumes carrying carbon compounds up towards the crust. [16]

  9. Earth's internal heat budget - Wikipedia

    en.wikipedia.org/wiki/Earth's_internal_heat_budget

    Radiogenic heat production in the mantle is linked to the structure of mantle convection, a topic of much debate, and it is thought that the mantle may either have a layered structure with a higher concentration of radioactive heat-producing elements in the lower mantle, or small reservoirs enriched in radioactive elements dispersed throughout ...