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Dehydroxylation and dissolution of nickeliferous goethite in New Caledonian lateritic Ni ore

机译:新喀里多尼亚红土镍矿中镍基针铁矿的脱羟基和溶解

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Goethite is a major constituent in ferruginous soils in a lateritic nickel deposit on the Koniambo massif in New Caledonia, and dehydroxylation of nickeliferous goethite may occur naturally due to fire and during the processing of lateritic Ni ore. Goethite started to alter to hematite in 2 h of heating at 230-250℃ and had completely altered to hematite at 340℃ and higher temperatures. For most heated samples the rate of dissolution of Fe in 1 M HCl followed the cube root equation with a single straight line describing the data, however for samples where both goethite and hematite were present the data did not conform to this equation. There was an approximately 7 fold increase in the rate of dissolution for samples heated to 340℃ which can be accounted for by the increase in surface area (2-fold) due to the development of micropores and the increase of structural defects in poorly ordered hematite structures (protohematite and hydrohematite) (3.5-fold) formed by partial dehydroxylation of goethite. For heated samples Ni, Cr, Al, Co and Mn showed congruent dissolution with iron indicating uniform incorporation of these metals in the structures of the iron oxides and complete retention of these metals in crystals during the goethite to hematite transition. V and Cu showed only partial dissolution (i.e. noncongruent dissolution) indicating that some V and Cu may be associated with another less soluble mineral (e.g. ilmenite).
机译:针铁矿是新喀里多尼亚科尼奥博地块的红土镍矿床中铁质土壤中的主要成分,由于着火和在红土镍矿的加工过程中,含镍针铁矿的脱羟基作用自然会发生。针铁矿在230-250℃加热2 h后开始转变为赤铁矿,在340℃及更高温度下完全转变为赤铁矿。对于大多数加热的样品,Fe在1 M HCl中的溶解速率遵循立方根方程,并用一条直线描述了数据,但是对于同时存在针铁矿和赤铁矿的样品,数据与该方程式不符。加热到340℃的样品的溶解速率大约增加了7倍,这可以归因于微孔的发展和赤铁矿排列不良导致的表面积增加(2倍)针铁矿部分脱羟基形成的结构(原赤铁矿和水赤铁矿)(3.5倍)。对于加热的样品,Ni,Cr,Al,Co和Mn与铁的溶解度相同,表明在针铁矿向赤铁矿转变过程中这些金属均匀地掺入铁氧化物的结构中,并且这些金属完全保留在晶体中。钒和铜仅表现出部分溶解(即不完全溶解),表明某些钒和铜可能与另一种溶解度较低的矿物(如钛铁矿)有关。

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