2002•GEOCHEMICAL JOURNALOpen access

The geochemistry of lamprophyres in the Laowangzhai gold deposits, Yunnan Province, China: Implications for its characteristics of source region.

Huang Zhilong, Chongqiang Liu, Yang Hailing, Xu Cheng, Han Runsheng, Xiao Yunhua, Bo Zhang, Wenbo Li

Open full text 30 citations

Abstract

This paper analyzes the lamprophyres from the Laowangzhai gold deposits in Yunnan Province, China, which have close temporal-spatial relations with gold mineralization, for their major elements, trace elements and rare earth elements (REE), as well as their Sr, Nd isotopic compositions and the contents of fixed ammonia (NH 4 + ).The analytical results of major elements indicate that the lamprophyres in this region are potassic, calc-alkaline lamprophyres.Their M [Mg/(Mg+Fe 2+ )] and the contents of the transition elements reflect that the rocks possess the characteristics of primary magmas.As compared with the mid-ocean ridge basalts (MORB), the lamprophyres in this region are enriched in large ion lithophile elements (LILE) and high field strength elements (HFSE).Their REE distribution patterns are of the LREEenrichment type and their trace element distribution patterns are of the strong incompatible element enrichment type, indicating that the rocks originated from a fertile mantle.As compared with the modern values of the primitive mantle, the lamprophyres in this region have relatively high 87 Sr/ 86 Sr (0.70644~0.70895)and relatively low 143 Nd/ 144 Nd (0.512436~0.512524).The contents of NH 4 + in the rocks (74.34 ppm~468.7 ppm) are obviously higher than those of other types of mantle-source rocks (1 ppm~27 ppm), but lower than those of the carbonaceous country rocks (799.6 ppm~1742 ppm) in the ore field.Various lines of evidence demonstrate that the lamprophyres which possess the above Sr, Nd isotopic signatures and the contents NH 4 + of could not be derived from the magma with MORB characteristics during its ascending, or derived from the magma chamber, which had both been contaminated by crustal materials with high 87 Sr/ 86 Sr, low 143 Nd/ 144 Nd and high contents of NH 4 + , instead, the rocks are the results of partial melting of the fertile mantle.It is the main mechanism of formation of the fertile mantle in this region that metasomatism of the mantle mixed with crustal materials by fluids resultant from dewatering of crustal materials brought into the mantle during subduction and LREE-, LILE-and HFSErich fluids from the deep mantle (including the astrosphere).Many typical cases to show the close temporalspatial relations of lamprophyres with gold mineralization have been reported from a large number of large-and superlarge-sized gold deposits (Rock and Groves, 1988;Rock, 1990; Wyman and

Open-access reader

About this research paper

What this paper is about

This paper analyzes the lamprophyres from the Laowangzhai gold deposits in Yunnan Province, China, which have close temporal-spatial relations with gold mineralization, for their major elements, trace elements and rare earth elements (REE), as well as their Sr, Nd isotopic compositions and the contents of fixed ammonia (NH 4 + ).The analytical results of major elements indicate that the lamprophyres in this region are potassic, calc-alkaline lamprophyres.Their M [Mg/(Mg+Fe 2+ )] and the contents of the transition elements reflect that the rocks possess the characteristics of primary magmas.As compared with the mid-ocean ridge basalts (MORB), the lamprophyres in this region are enriched in large ion lithophile elements (LILE) and high field strength elements (HFSE).Their REE distribution patterns are of the LREEenrichment type and their trace element distribution patterns are of the strong incompatible element enrichment type, indicating that the rocks originated from a fertile mantle.As compared with the modern values of the primitive mantle, the lamprophyres in this region have relatively high 87 Sr/ 86 Sr (0.70644~0.70895)and relatively low 143 Nd/ 144 Nd (0.512436~0.512524).The contents of NH 4 + in the rocks (74.34 ppm~468.7 ppm) are obviously higher than those of other types of mantle-source rocks (1 ppm~27 ppm), but lower than those of the carbonaceous country rocks (799.6 ppm~1742 ppm) in the ore field.Various lines of evidence demonstrate that the lamprophyres which possess the above Sr, Nd isotopic signatures and the contents NH 4 + of could not be derived from the magma with MORB characteristics during its ascending, or derived from the magma chamber, which had both been contaminated by crustal materials with high 87 Sr/ 86 Sr, low 143 Nd/ 144 Nd and high contents of NH 4 + , instead, the rocks are the results of partial melting of the fertile mantle.It is the main mechanism of formation of the fertile mantle in this region that metasomatism of the mantle mixed with crustal materials by fluids resultant from dewatering of crustal materials brought into the mantle during subduction and LREE-, LILE-and HFSErich fluids from the deep mantle (including the astrosphere).Many typical cases to show the close temporalspatial relations of lamprophyres with gold mineralization have been reported from a large number of large-and superlarge-sized gold deposits (Rock and Groves, 1988;Rock, 1990; Wyman and

Why it matters

OpenAlex reports 30 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

This paper analyzes the lamprophyres from the Laowangzhai gold deposits in Yunnan Province, China, which have close temporal-spatial relations with gold mineralization, for their major elements, trace elements and rare earth elements (REE), as well as their Sr, Nd isotopic compositions and the contents of fixed ammonia (NH 4 + ).The analytical results of major elements indicate that the lamprophyres in this region are potassic, calc-alkaline lamprophyres.Their M [Mg/(Mg+Fe 2+ )] and the contents of the transition elements reflect that the rocks possess the characteristics of primary magmas.As compared with the mid-ocean ridge basalts (MORB), the lamprophyres in this region are enriched in large ion lithophile elements (LILE) and high field strength elements (HFSE).Their REE distribution patterns are of the LREEenrichment type and their trace element distribution patterns are of the strong incompatible element enrichment type, indicating that the rocks originated from a fertile mantle.As compared with the modern values of the primitive mantle, the lamprophyres in this region have relatively high 87 Sr/ 86 Sr (0.70644~0.70895)and relatively low 143 Nd/ 144 Nd (0.512436~0.512524).The contents of NH 4 + in the rocks (74.34 ppm~468.7 ppm) are obviously higher than those of other types of mantle-source rocks (1 ppm~27 ppm), but lower than those of the carbonaceous country rocks (799.6 ppm~1742 ppm) in the ore field.Various lines of evidence demonstrate that the lamprophyres which possess the above Sr, Nd isotopic signatures and the contents NH 4 + of could not be derived from the magma with MORB characteristics during its ascending, or derived from the magma chamber, which had both been contaminated by crustal materials with high 87 Sr/ 86 Sr, low 143 Nd/ 144 Nd and high contents of NH 4 + , instead, the rocks are the results of partial melting of the fertile mantle.It is the main mechanism of formation of the fertile mantle in this region that metasomatism of the mantle mixed with crustal materials by fluids resultant from dewatering of crustal materials brought into the mantle during subduction and LREE-, LILE-and HFSErich fluids from the deep mantle (including the astrosphere).Many typical cases to show the close temporalspatial relations of lamprophyres with gold mineralization have been reported from a large number of large-and superlarge-sized gold deposits (Rock and Groves, 1988;Rock, 1990; Wyman and

Key concepts: Lile, Geochemistry, Geology, Lithophile, Basalt, Mantle (geology), Trace element, Primitive mantle

Related papers

Back to paper searchBrowse research topicsOriginal source
The geochemistry of lamprophyres in the Laowangzhai gold deposits, Yunnan Province, China: Implications for its characteristics of source region. — Research Paper | ScholarLens