The lognormal distribution of metal resources in mineral deposits

被引:37
|
作者
Singer, Donald A.
机构
[1] 10191 N Blaney Ave., Cupertino
关键词
Mineral deposit model; Power law; Grade and tonnage models; Monte Carlo simulation; Mineral resource assessments;
D O I
10.1016/j.oregeorev.2013.04.009
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
For national or global resource estimation of frequencies of metals a lognormal distribution has sometimes been assumed but never adequately tested. Tests of frequencies of Cu, Zn, Pb, Ag, Au, Mo, Re, Ni, Co, Nb2O3, REE2O3, Cr2O3, Pt, Pd, It, Rh, and Ru, contents in over 3000 well-explored mineral deposits display a poor fit to the lognormal distribution. Neither a lognormal distribution nor a power law is an adequate model of the metal contents across all deposits. When these metals are grouped into 28 geologically defined deposit types, only nine of the over 100 tests fail to be fit by the lognormal distribution, and most of those failures are in two deposit types suggesting problems with those types. Significant deviations from lognormal distributions of most metals when ignoring deposit types demonstrate that there is not a global lognormal or power law equation for these metals. Mean and standard deviation estimates of each metal within deposit types provide a basis for modeling undiscovered resources. When tracts of land permissive for specific deposit types are delineated, deposit density estimates and contained metal statistics can be used in Monte Carlo simulations to estimate total amounts of undiscovered metals with associated explicit uncertainties as demonstrated for undiscovered porphyry copper deposits in the Tibetan Plateau of China. (C) 2013 Elsevier B.V. All rights reserved.
引用
收藏
页码:80 / 86
页数:7
相关论文
共 50 条
  • [21] Development of Deposits of Solid Mineral Resources by the Open Method in Various Conditions of Mining and Geological Deposits
    Kaimov, S.
    Kaiym, Talgat
    Tuleshov, A.
    Kanagatova, Nazym
    Seidakhmet, Askar
    Abussagatov, Ye
    Chinibayeva, Tolganay
    Kushkimbayeva, Diana
    PROCEEDINGS OF THE 2ND INTERNATIONAL CONFERENCE ON GEOSYNTHETICS AND ENVIRONMENTAL ENGINEERING, ICGEE 2024, 2025, 396 : 231 - 240
  • [22] Distribution of metal values in ore deposits
    Razumovsky, NK
    COMPTES RENDUS DE L ACADEMIE DES SCIENCES DE L URSS, 1940, 28 : 814 - 816
  • [23] Metal nanoparticles in soil: Indicators of concealed mineral deposits
    Zhang, Bimin
    Lu, Yuexin
    Wang, Xueqiu
    Zhou, Jian
    Li, Hongwei
    JOURNAL OF GEOCHEMICAL EXPLORATION, 2025, 269
  • [24] The geographical and geological distribution of the mineral deposits of Mexico.
    Aguilera, JG
    TRANSACTIONS OF THE AMERICAN INSTITUTE OF MINING AND METALLURGICAL ENGINEERS, 1901, 32 : 497 - 520
  • [25] Controls on the heterogeneous distribution of mineral deposits through time
    Groves, DI
    Vielreicher, RM
    Goldfarb, RJ
    Condie, KC
    MINERAL DEPOSITS AND EARTH EVOLUTION, 2005, 248 : 71 - 101
  • [26] Are fractal dimensions of the spatial distribution of mineral deposits meaningful?
    Raines G.L.
    Natural Resources Research, 2008, 17 (2) : 87 - 97
  • [27] An interactive voxel model for mineral resources: loess deposits in Flanders (Belgium)
    van Haren, Tom
    Dirix, Katrijn
    De Koninck, Roel
    De Groot, Chris
    De Nil, Katrien
    ZEITSCHRIFT DER DEUTSCHEN GESELLSCHAFT FUR GEOWISSENSCHAFTEN, 2016, 167 (04): : 363 - 376
  • [28] LOGNORMAL DISTRIBUTION OF THE ELEMENTS
    AHRENS, LH
    AMERICAN MINERALOGIST, 1954, 39 (3-4) : 314 - 315
  • [29] Near lognormal distribution
    Swamee, PK
    JOURNAL OF HYDROLOGIC ENGINEERING, 2002, 7 (06) : 441 - 444
  • [30] LOGNORMAL DISTRIBUTION OF THE ELEMENTS
    AHRENS, LH
    GEOLOGICAL SOCIETY OF AMERICA BULLETIN, 1953, 64 (12) : 1389 - 1390