img

QQ群聊

img

官方微信

高级检索

黄金科学技术 ›› 2023, Vol. 31 ›› Issue (3): 453-463.doi: 10.11872/j.issn.1005-2518.2023.03.059

• 矿产勘查与资源评价 • 上一篇    下一篇

玲珑金矿田108#脉支脉控矿模式研究及探矿成果

张顺(),生显军,赵红浩   

  1. 山东黄金矿业(玲珑)有限公司,山东 招远 265400
  • 收稿日期:2022-04-24 修回日期:2022-11-19 出版日期:2023-06-30 发布日期:2023-07-20
  • 作者简介:张顺(1990-),男,山东招远人,工程师,从事地质探矿研究工作。zhangsll@sd-gold.com

Study on Ore-controlling Model and Prospecting Results of 108# Vein Branch in Linglong Gold Field

Shun ZHANG(),Xianjun SHENG,Honghao ZHAO   

  1. Shandong Gold Mining (Linglong) Co. ,Ltd. ,Zhaoyuan 265400,Shandong,China
  • Received:2022-04-24 Revised:2022-11-19 Online:2023-06-30 Published:2023-07-20

摘要:

玲珑金矿是我国重要的黄金资源生产基地,而西山矿段是玲珑金矿的主力生产矿区之一。近年来,随着西山矿段资源开发力度的加大,寻找深部隐伏接替资源成为矿山发展的迫切需求。通过对比区域构造和矿体构造特征,发现西山矿段的西部区域与原来主成矿区——东部区域的构造特征存在明显差异。研究发现,108#主矿体受逆断层控制明显,上下盘发生明显位移,其支脉则受张扭性或张性断裂控制,含金支脉多产于张性断裂中。因此,沿108#主脉下盘的张扭性分支构造开展探矿工作,探获盲支脉108支#脉,并通过总结成矿和控矿规律又探获了108支2#脉和108支3#脉,建立并完善了玲珑金矿田108#脉支脉控矿模式。

关键词: 支脉控矿, 构造控矿, 成矿环境, 盲矿体, 资源危机, 玲珑金矿

Abstract:

Due to the long-term mining,the resource crisis in Xishan section of Linglong gold field is becoming more and more serious.The known main veins have been basically explored and mined by pit exploration,finding new resources has become an urgent need for mines.Through regional geological analysis and summary of metallogenic regularity,the veins in the ore-section are sorted out one by one,and it is found that the local geological structure is inconsistent with the regional structural regularity.The researchers selected the 108# vein group with stable overall occurrence but large local changes to study the metallogenic regularity and tectonic movement regularity.Through the study of the movement law of the upper and lower plates of the 108# vein group and the mineralization of 108# vein group,it was found that the main vein of 108# vein is a reverse fault with obvious displacement,while its branch vein 96#,vein 98# and vein 107# are tensile-torsional or tensile faults with no obvious displacement.At the same time,there are obvious differences in mineral structure and mineral composition,so it is speculated that there are a series of structures in the footwall of the western main vein of 108# vein,which are consistent with the structural laws of the branches in the footwall and move downward with the footwall.Therefore,108# blind branches were found in the blind zone prospecting in the speculated area at -50 elevation level of Xishan ore section.The exploration of 108# veins verified the study of this metallogenic regularity and established a branch prospecting model,that is,the upper and lower walls of the main vein of 108# vein have ore-hosting secondary structures corresponding to each other with nearly parallel arrangement and nearly equal spacing distribution,and the blind veins of 108 2# veins and 108 3# veins were successfully explored by this model.At present,the proven metal amount is 2.4 tons,which prolongs the service life of the mine.It is worth mentioning that after the upper and lower wall branches of 108# main vein were dislocated by the fault of 108# main vein,the lower branch vein and the upper branch vein experienced different metallogenic periods.In the later period,the main vein of the 108# vein blocked the ore-forming hydrothermal solution,so that the ore-bearing faults of the lower plate could form better orebodies,and the mineralization of the footwall branches vein at the far end of 108# main vein also confirmed this point.According to the results of this prospecting,the same tectonic regularity and metallogenic environment have been found in other vein groups such as 53#,55# vein group,which points out the direction for the next prospecting.

Key words: ore-controlling branch vein, ore-controlling structure, metallogenic environment, blind orebody, resource crisis, Linglong gold mine

中图分类号: 

  • P618.51

图1

玲珑金矿田地质图(a)和剖面图(b)(修改自宋英昕等,2017)1.第四系;2.栾家河型花岗岩;3.玲珑型花岗岩;4.闪长岩脉;5.闪长玢岩脉;6.煌斑岩脉;7.断裂;8.岩脉、矿脉及断裂产状;9.蚀变断裂破碎带;10.金矿脉及编号;11.深部金矿体;12.浅部金矿体水平投影范围;13.深部金矿体水平投影范围及编号"

图2

玲珑金矿田西山矿段矿脉分布平面示意图1.第四系;2.玲珑超单元大庄子单元含斑粗—中粒二长花岗岩;3.玲珑超单元九曲单元弱片麻状中—细粒含石榴二长花岗岩;4.玲珑超单元罗山单元弱片麻状中—细粒含石榴二长花岗岩;5.闪长岩;6.闪长玢岩;7.煌斑岩;8.玲珑断裂;9.岩脉、矿脉及产状;10.矿脉编号"

图3

玲珑金矿田108#脉主脉与支脉岩性对比(a)108#脉黄铁石英脉;(b)96#脉黄铁石英脉;(c)98#脉黄铁石英脉;(d)108支#脉碳酸盐化石英黄铁矿脉;(e)108支2#脉黄铁矿化石英方解石脉;(f)108支2#脉方解石脉Py-黄铁矿;Qtz-石英;Cc-方解石"

图4

玲珑金矿田108支#脉岩性水平分带示意图1.含金黄铁矿脉;2.石英脉;3.破碎的绢英岩;4.玲珑花岗岩;5.钾化花岗岩;6.坑探巷道;7.标高"

图5

玲珑金矿田108支2#脉垂直纵投影图"

图6

玲珑金矿田#30中段108#脉地质平面图1.黄铁石英脉;2.绢英岩;3.煌斑岩;4.钾化花岗岩;5.玲珑花岗岩;6.矿脉编号;7.坑探巷道"

图7

玲珑金矿田-50 m中段地质平面图1.黄铁石英脉;2.绢英岩;3.煌斑岩;4.钾化花岗岩;5.玲珑花岗岩;6.矿脉编号;7.坑探巷道"

图8

玲珑金矿田108#脉及其支脉“Y”字形分布剖面图1.黄铁石英脉;2.绢英岩;3.煌斑岩;4.钾化花岗岩;5.玲珑花岗岩;6.矿脉编号;7.坑探巷道;8.断裂移动方向"

图9

玲珑金矿田108#脉支脉控矿模式剖面图1.黄铁石英脉;2.绢英岩;3.煌斑岩;4.钾化花岗岩;5.玲珑花岗岩;6.矿脉编号;7.坑探巷道;8.断裂移动方向"

图10

玲珑金矿田#30中段北区地质平面图1.黄铁石英脉;2.绢英岩;3.煌斑岩;4.钾化花岗岩;5.玲珑花岗岩;6.矿脉编号;7.坑探巷道"

图11

玲珑金矿田#30中段53#脉地质平面图1.黄铁石英脉;2.煌斑岩;3.钾化花岗岩;4.玲珑花岗岩;5.矿脉编号;6.坑探巷道"

Dai Lixin, Wu Jichun, Teng Yuansheng,et al,2003.Review and foreground expectation of Linglong gold mine during the ninth-five-year[J].Gold Science and Technology,11 (2):20-26.
Fan Liuyang, Guxian Lü, Ren Jiancheng,et al,2016.Characteristics of deep fault alteration rock zones in Linglong gold orefield[J].Geological Review,62(Supp.1):295-296.
Fan Yongxiang, Lu Zuoxiang, Liu Fuchen,et al,1983.Study on ore control law of fault structure and deep prediction of Xishan deposit in Linglong gold field,Shandong Province[J].Bulletin of Geological Science and Technology,(Supp.1):112-121.
Fan Yongxiang, Lu Zuoxiang, Sun Qingcun,et al,1984.Study on ore control law of fault structure in Xishan gold deposit,Linglong gold field,Shandong Province[J].Gold,(4):18-23,66.
Benhai Ha, Wu Jichun,2000.Model for spatially prospecting ore in Xishan gold mine of Linglong deposit[J].Gold Journal,(3):197-199.
Hou Jianglong, Niu Shuyin, Sun Aiqun,et al,2014.Effects of mantle branch structure on the distribution of gold deposits in Jiaodong area[J].Gold Science and Technology,22(4):45-49.
Hu Baoqun, Gao Haidong, Wang Yun,et al,2022.Bedrock geochemical characteristics and prospecting potential Eevaluation of ore-bearing faults in Linglong gold ore-field[J].Gold Science and Technology,30(4):518-531.
Jiang Qi,2010.Geological characteristics of Linglong fault and its significance of ore prospecting,Shandong Province[J].Gold Science and Technology,18(2):35-39.
Li Hongyu, Jiang Zhenfu,2000.The geological feature of the orebody of northeast section of ore vein No.108 of Ling-long ore field and the ore-prospecting orientation arising therefrom[J].Gold,21(9):8-10.
Li Junfeng, Zhang Shun, Song Xiaoyan,et al,2014.Significance and function of high grade remnant ore recovery in gold mines[J].Precious Metals,35(3):83-87.
Li Junfeng, Zhang Shun, Wu Jichun,et al,2015.Main veins and branch prospecting and metallogenic prediction of Linglong gold field Xishan mining area[J].Nonferrous Metals Engineering,5(2):72-76.
Li Shiyong, Li Jie, Song Mingchun,et al,2022.Metallogenic characteristics and mineralization of the Linglong goldfield,Jiaodong Peninsula[J].Acta Geologica Sinica,96(9):3234-3260.
Liu Weimin, Wu Jichun, Guo Wanchen,et al,2008.The research of geological characteristics,mineralization and prospecting application of Dongshan deposit,Linglong gold field[J].Gold Science and Technology,141 (4):41-44,57.
Lu Zuoxiang, Fan Yongxiang, Wang Yan,et al,1983.Discussion on metallogenic characteristics of Xishan gold deposit in Linglong,Shandong[J].Bulletin of Geological Science and Technology,(Supp.1):131-138.
Luo Zhenkuan, Guan Kang, Miao Laicheng,2001.Discussion on relationship between lamprophyre veins and mineralization in the Linglong gold field,Eastern Shandong[J].Gold Geology,7(4):15-21.
Guxian Lü, Guo Tao, Shu Bin,et al,2007.Study on the multi-level controlling rule for tectonic system in Jiaodong gold-centralized area [J].Geotectonica et Metallogenia,(2):193-204.
Guxian Lü, Wu Jichun, Hu Baoqun,et al,2011.Geology and metallogenic regularity of Linglong gold field in Jiaodong[J].Acta Mineralogica Sinica,31(Supp.1):74-75.
Guxian Lü, Wu Jichun, Zheng Xiaoli,et al,2006.A study and prognosis of deep resources along the second enrichment belt of the Linglong gold orefield,Shandong Province[J].Mineral Deposits,25(Supp.1):435-438.
Shang Junwei, Dong Yixue,2021.Application of systematic prospecting engineering in Xishan mining area of Linglong gold mine[J].China Metal Bulletin,(6):76-77.
Shang Junwei, Zhang Shun, Zhao Honghao,et al,2018.Ore controlling characteristics and prospecting prediction of 108 branch vein structure in Linglong gold field [C]//China Geophysical Society.Proceedings of 2018 China Geoscience Joint Academic Annual Meeting.Beijing:China Geophysical Society.
Song Mingchun, Ding Zhengjiang, Liu Xiangdong,et al,2022.Structural controls on the Jiaodong type gold deposits and metallogenic model[J].Acta Geologica Sinica,96(5):1774-1802.
Song Quanwu, Li Ning, Zhang Lin,2019.98# vein of Linglong gold ore field and its north-south tectonic,vein rock characteristics and blind ore body prediction[J].World Nonferrous Metals,531(15):164-165.
Song Yingxin, Song Mingchun, Ding Zhengjiang,et al,2017.Major advances on deep prospecting in Jiaodong gold ore cluster and its metallogenic characteristics[J].Gold Science and Technology,25(3):4-18.
Sun Guosheng, Liu Ying, Li Xujun,et al,2003.Studies on different types of fracture structures controlling gold orebodies in Linglong gold orefield[J].Geology-Geochemistry,(2):18-24.
Sun Guosheng, Yao Fengliang, Hu Ruizhong,2001.Enriched la-ws and controlling factors of ore bodies in the Linglong gold deposit[J].Geotectonica et Metallogenia,(4):464-470.
Wang Qiliang, Dai Lixin, Benhai Ha,2004a.The applications and research of model for exploration at depth of Xishan deposit in Linglong gold ore field[J].Gold Science and Technology,12(7):11-15.
Wang Qiliang, Song Quanwu, Dai Lixin,2004b.Division of structure succession and discussion to mineralization-controlling features in No.107 fault of Linglong gold field [J].Gold,(4):14-16.
Wu Jichun, Guxian Lü, Ren Hong,2011.Deep prognosis for goaf of mining area of Jiuqu in Linglong area,Shandong Province,China[J].Geological Bulletin of China,30(4):579-587.
戴立新,武际春,滕元生,等,2003.玲珑金矿“九五”探矿回顾与前景分析[J].黄金科学技术,11(2):20- 26.
樊刘洋,吕古贤,任剑成,等,2016.玲珑金矿田深部断裂蚀变岩相分带特征研究[J].地质论评,62(增1):295-296.
范永香,卢作祥,刘辅臣,等,1983.山东玲珑金矿田西山矿床断裂构造控矿规律及深部预测研究[J].地质科技情报,(增1):112-121.
范永香,卢作祥,孙庆存,等,1984.山东玲珑金矿田西山金矿床断裂构造控矿规律研究[J].黄金,(4):18-23,66.
哈本海,武际春,2000.玲珑金矿田西山金矿矿体空间预测模式[J].黄金学报,(3):197-199.
侯江龙,牛树银,孙爱群,等,2014.幔枝构造对胶东地区金矿分布的控制[J].黄金科学技术,22(4):45-49.
胡宝群,高海东,王运,等,2022.玲珑金矿田含矿断裂的基岩地球化学特征及找矿潜力评价[J].黄金科学技术,30(4):518-531.
姜琪,2010.山东玲珑断裂地质特征及其找矿意义[J].黄金科学技术,18(2):35-39.
李洪玉,姜振富,2000.玲珑矿田108号脉北东段矿体地质特征及找矿方向[J].黄金,21(9):8-10.
李军峰,张顺,宋晓燕,等,2014.高品位残矿回收在黄金矿山中的意义和作用[J].贵金属,35(3):83-87.
李军峰,张顺,武际春,等,2015.玲珑金矿田西山矿区主矿脉支脉找矿及预测[J].有色金属工程,5(2):72-76.
李世勇,李杰,宋明春,等,2022.胶东玲珑金矿田成矿特征和成矿作用[J].地质学报,96(9):3234-3260.
刘维民,武际春,郭万臣,等,2008.玲珑金矿田东山矿床地质特征、成矿规律研究及找矿应用[J].黄金科学技术,141(4):41-44,57.
卢作祥,范永香,王燕,等,1983.山东玲珑西山金矿床成矿特征探讨[J].地质科技情报,(增1):131-138.
罗镇宽,关康,苗来成,2001.胶东玲珑金矿田煌斑岩脉与成矿关系的讨论[J].黄金地质,7(4):15-21.
吕古贤,郭涛,舒斌,等,2007.胶东金矿集中区构造体系多层次控矿规律研究[J].大地构造与成矿学,(2):193-204.
吕古贤,武际春,胡宝群,等,2011.胶东玲珑金矿田地质与成矿规律[J].矿物学报,31(增1):74-75.
吕古贤,武际春,郑小礼,等,2006.山东省玲珑金矿田深部资源第二富集带的研究和预测[J].矿床地质,25(增1):435-438.
尚君尉,董轶学,2021.系统探矿工程在玲珑金矿西山矿区的应用[J].中国金属通报,(6):76-77.
尚君尉,张顺,赵红浩,等,2018.玲珑金矿田108支脉构造控矿特征与找矿预测[C]//中国地球物理学会.2018年中国地球科学联合学术年会论文集.北京:中国地球物理学会.
宋明春,丁正江,刘向东,等,2022.胶东型金矿床断裂控矿及成矿模式[J].地质学报,96(5):1774-1802.
宋泉吾,李宁,张林,2019.玲珑金矿田98#脉及其南北向构造、脉岩特征与盲矿体预测[J].世界有色金属,531(15):164-165.
宋英昕,宋明春,丁正江,等,2017.胶东金矿集区深部找矿重要进展及成矿特征[J].黄金科学技术,25(3):4-18.
孙国胜,刘颖,李绪俊,等,2003.玲珑金矿田不同级别构造控矿特征[J].地质地球化学,(2):18-24.
孙国胜,姚凤良,胡瑞忠,2001.玲珑金矿田矿体富集规律及其控制因素[J].大地构造与成矿学,(4):464-470.
王启梁,宋泉吾,戴立新,2004a.玲珑金矿田F107构造序次划分及其控矿特征探讨[J].黄金,(4):14-16.
王启梁,戴立新,哈本海,2004b.玲珑金矿田西山矿床深部找矿模式研究及其应用[J].黄金科学技术,12(7):11-15.
武际春,吕古贤,任宏,2011.山东省招远市玲珑地区九曲金矿区采空区深部预测——构造蚀变岩相地质测量与深部找矿[J].地质通报,30(4):579-587.
[1] 胡宝群,高海东,王运,张宝林,吕古贤,申玉科,郭涛. 玲珑金矿田含矿断裂的基岩地球化学特征及找矿潜力评价[J]. 黄金科学技术, 2022, 30(4): 518-531.
[2] 李博文,谷华娟,李成禄,刘宝山,杨晓平. 黑龙江省三合屯金矿床地质特征及找矿潜力分析[J]. 黄金科学技术, 2022, 30(4): 508-517.
[3] 王海丰,龚红胜,冯志兴,韩润生,丁天柱,赵新跃,吴鹏. 四川大梁子铅锌矿床1 944 m中段构造岩元素组合异常及隐伏矿体预测[J]. 黄金科学技术, 2021, 29(6): 781-794.
[4] 宋明春,宋英昕,丁正江,李世勇. 胶东金矿床:基本特征和主要争议[J]. 黄金科学技术, 2018, 26(4): 406-422.
[5] 刘国栋,温桂军,刘彩杰,鲍中义*,孙忠全,范家盟,李山,闫春明,郭志峰. 招平断裂北段水旺庄深部超大型金矿床的发现、特征和找矿方向[J]. 黄金科学技术, 2017, 25(3): 38-45.
[6] 曹东宏,崔龙,辛小军,朝银银. 西秦岭马坞金矿床韧性剪切带构造控矿特征[J]. 黄金科学技术, 2016, 24(6): 24-31.
[7] 马宝军,陈超,牛树银,耿国建,张福祥,张建珍,孙爱群. 河北木吉村铜钼矿田构造变形及蚀变分析[J]. 黄金科学技术, 2016, 24(5): 19-25.
[8] 张晓飞,吴荣泽,石卿,牛树银,孙爱群,张福祥. 胶东地区玲珑金矿和焦家金矿成矿控矿构造对比研究[J]. 黄金科学技术, 2015, 23(5): 14-19.
[9] 吴春俊,余金元,王金荣,杨忠虎. 甘肃阳山矿带地质特征及找矿靶区优选[J]. 黄金科学技术, 2014, 22(6): 33-38.
[10] 侯江龙,牛树银,孙爱群,孙保花,李强峰. 幔枝构造对胶东地区金矿分布的控制[J]. 黄金科学技术, 2014, 22(4): 45-49.
[11] 刘润田,刘吉兴,刘家瑞,黄麟淇. 采空区冒落松散岩体中的成巷方法研究与应用[J]. 黄金科学技术, 2014, 22(3): 60-64.
[12] 宋凯,郝晓圆,汪江河,赵春和,孔源,牛树银. 豫西上宫金矿构造控矿特征及成矿作用探讨[J]. 黄金科学技术, 2013, 21(6): 30-35.
[13] 牛树银,樊武义,姬红星,薛克勤,孙爱群,王宝德,张建珍,陈超. 晋东北上石矾金矿中深部找矿预测研究[J]. 黄金科学技术, 2013, 21(1): 1-8.
[14] 宋晓燕,杨桂彬,李军峰,吕军恩,李双峰,王朝阳,张祥红,张振. 山东玲珑金矿田九曲矿段5号脉系综合地质找矿研究[J]. 黄金科学技术, 2012, 20(6): 46-50.
[15] 唐泽伟,郭广军,王恩敬,吕广耀,叶延岭,张姗. 山东焦家金矿中深部矿体成矿规律及成矿预测[J]. 黄金科学技术, 2012, 20(6): 51-55.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] 李斌, 邹海洋, 杨牧, 杜高峰, 韦继康, 王天国. 马来西亚吉兰丹州Ulu Sokor金矿地质特征及找矿方向[J]. J4, 2010, 18(4): 17 -21 .
[2] 常春郊,范俊杰,刘桂阁,陈勇敢,马德锡. 甘肃党河南山鸡叫沟矿体地质特征[J]. J4, 2008, 16(2): 5 -11 .
[3] 刘涛,闫永生. 黑龙江砂宝斯矿田三十二站金矿地质特征及区域成矿条件分析[J]. J4, 2008, 16(2): 33 -36 .
[4] 陈剑锋. 缅甸胶帕图金矿选冶工艺浅议[J]. J4, 2011, 19(1): 58 -60 .
[5] 赵华. 浅孔留矿法在矿山开采工作的实践[J]. J4, 2008, 16(6): 51 -54 .
[6] 何建华. 竖井水仓的设计与施工若干技术问题探讨[J]. J4, 2004, 12(1): 39 -43 .
[7] 孙素英, 殷清. 改造破碎工艺实现节能增效[J]. J4, 2007, 15(4): 62 -64 .
[8] 赵莎, 吴姗姗, 牛树银, 王宝德. 冀西北水晶屯金矿成矿控矿构造研究[J]. J4, 2009, 17(2): 12 -16 .
[9] 戚静洁,于博滨. 胶莱盆地周边典型金矿类型及成因浅析[J]. J4, 2009, 17(4): 25 -30 .
[10] 陈荷芳. 交流变频调速技术在鼓风机上的应用[J]. J4, 2004, 12(4): 39 -41 .