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Morgan 2001
Morgan, J.P. (2001). Thermodynamics of pressure release melting of a veined plum pudding mantle. Geochemistry, Geophysics, Geosystems 2.
This study explores the thermodynamics of adiabatic decompression melting of peridotitic mantle containing pyroxenite veins that have lower solidi than the peridotite. When a vein of lower solidus-temperature material melts adjacent to more refractory material, additional heat will flow into the melting region to increase its melting productivity. If pyroxenite veins have a solidus-depletion gradient ((partial derivativeT(m)/partial derivativeF)(P)) like that of olivine or peridotite, then the melting of the veins is enhanced by up to a factor of 4 by this heat. However, the solidus-depletion gradient of pyroxenites is apparently lower than that of peridotites; thus pyroxenite melting would be even more enhanced. If pyroxenite veins have a gentler solidus-pressure (T-P) dependence (i.e., lower (partial derivativeT(m)/partial derivativeP)(F)) than that of peridotite solidi, than although these veins will experience enhanced melting while they are the only melting assemblage, they will stop melting soon after their peridotite matrix begins to melt. During large-scale peridotite melting the material ascends along a T-P path close to that of the periodotite solidus, so that the mixture's temperature remains lower than the solidus of the residual pyroxenite, and pyroxenite melting ceases throughout the shallower sections of the melting column. If pyroxenitic material makes up a large fraction of the mantle mixture (similar to 20%), then the heat consumed by deep pyroxenite melting cools the ascending mantle mixture enough so that peridotite melting begins similar to5-10 km shallower than it would in the absence of precurser pyroxenite melting. After recycling into the mantle, the melt extraction residue will again melt if it is reheated to ambient mantle temperatures and rises again to shallow depths.
BACKGROUND DATA FILES

Abstract

Table 1
Table A1

Keywords
melting, plum pudding mantle, melting physics, chemical evolution, igneous petrology, beneath midocean ridges, crustal thickness, spreading rate, peridotite, petrogenesis, models, ronda, geochemistry, convection, generation
Journal
Geochemistry, Geophysics, Geosystems
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Publisher
American Geophysical Union
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