综合物探方法在湖南香花岭矿田三合圩矿区深部成矿规律研究中的应用
屈利军, 王庆, 李波, 姚伟

The application of multiple geophysical methods to the study of deep metallogenic regularity in the Sanhexu mining area, the Xianghualing orefield, Hunan Province
QU Li-Jun, WANG Qing, LI Bo, YAO Wei
图9 成矿预测模型
1—泥盆系余田桥组;2—泥盆系棋梓桥组;3—泥盆系跳马涧组;4—地质界线;5—断层;6—矿化界线;7—花岗岩;8—云英岩化、钾化Nb、Y带;9—云英岩化、硫化W、Sn带;10—透闪石化、绿泥石化Sn、Pb、Zn带;11—黄铁矿化、碳酸盐化Pb、Zn带;12—碳酸盐化F、Hg带;13—Pb、Zn矿体;14—Sn、Pb、Zn矿体;15—W、Sn矿体
Fig.9 Metallogenic prediction model diagram
1—Devonian Shetianqiao Formation; 2—Devonian Qiziqiao Formation; 3—Devonian Tiaomajian Formation; 4—geological boundary; 5—fault zone; 6—mineralization boundary; 7—granite; 8—greisenization and potassium Nb, Y zone; 9—greisenization and vulcanized W, Sn zone; 10—tremolite and chloritization Sn, Pb, Zn zone; 11—pyritization and carbonic acid Salinized Pb, Zn zone; 12—carbonic acid Salinized F, Hg zone; 13—Pb, Zn ore body; 14—Sn, Pb, Zn ore body; 15—W, Sn ore body