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The Reaction Mechanism of Sieve-Textured Orthopyroxene: Implications for Lithospheric Mantle Rejuvenation
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     man">An electronic backscattered diffraction man’; mso-hansi-font-family: ’times new roman’">(man">EBSDman’; mso-hansi-font-family: ’times new roman’">)man"> study of the sieve-textured reaction rim between or- thopyroxene and basalt in the Hannuoba mantle xenoliths was conducted in Damaping area, Hebei Province. Some conclusions have been rearchedman’; mso-hansi-font-family: ’times new roman’">:man"> man’; mso-hansi-font-family: ’times new roman’">(man">1man’; mso-hansi-font-family: ’times new roman’">)man"> The reaction rim has a complex multi-layer structure composed of a basalt layer, an olivine-rich layer and an intergrowth layer of olivine and clinopyroxene; man’; mso-hansi-font-family: ’times new roman’">(man">2man’; mso-hansi-font-family: ’times new roman’">)man"> The Mg# of the o- livine grains in the reaction rim increases toward the orthopyroxene grain while the Mg# of the clinopyroxene grains in the reaction rim remains stable; man’; mso-hansi-font-family: ’times new roman’">(man">3man’; mso-hansi-font-family: ’times new roman’">)man"> There is a well-defined crystallographic topotactic relationship be- tween orthopyroxene and clinopyroxene, i.e., man’; mso-hansi-font-family: ’times new roman’">(man">100man’; mso-hansi-font-family: ’times new roman’">)man">opx//man’; mso-hansi-font-family: ’times new roman’">(man">100man’; mso-hansi-font-family: ’times new roman’">)man">cpx, man’; mso-hansi-font-family: ’times new roman’">(man">010man’; mso-hansi-font-family: ’times new roman’">)man">opx//man’; mso-hansi-font-family: ’times new roman’">(man">010man’; mso-hansi-font-family: ’times new roman’">)man">cpx, man’; mso-hansi-font-family: ’times new roman’">(man">001man’; mso-hansi-font-family: ’times new roman’">)man">opx//man’; mso-hansi-font-family: ’times new roman’">(man">001man’; mso-hansi-font-family: ’times new roman’">)man">cpx; man’; mso-hansi-font-family: ’times new roman’">(man">4man’; mso-hansi-font-family: ’times new roman’">)man"> The crystallographic distribution of olivine grains is nearly at random and shows no relationship with orthopy- roxene and clinopyroxene. This sieve-textured reaction rim can be interpreted as the result of a multistage reac- tion process. In the first step, the orthopyroxene reacts with the melt to form clinopyroxene which made the re- action melt more silicic. As the melt gets saturated with silica, olivine precipitates from the reaction melt. Com- paring to the reaction between a silica-saturated melt and a peridotite, the reaction between a silica-tmderstaturated melt and a peridotite is probably easier to proceed due to the formation of sieve-textured reaction rims. The sieve-textured reaction rims provide a feasible channel for the migration of the melt along otherwise closed grain boundaries at high pressure, weaken the surrounding peridotite through the reduction of mineral grain size, and maintain a continuous erosion and destruction of the peridotite during the upward migration of the melt. This process may lead to a quick rejuvenation of lithospheric mantle.

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