2010•Gold Science and TechnologyRequires access

Looking for Strata Bound Type Gold Deposit in Liaodong Metallogenic Belt

Sun Liangliang

Open publisher page 0 citations

Abstract

Liaodong metallogenic belt is one of the important prospecting areas of No.4 Gold Geological Party of CAPF,where have been found stratabound gold deposits,like Xiaotongjiapuzi,Maoling and so on,and which shows a fine prospecting potential in this area.Xiaotongjiapuzi super large-scale gold deposit,Gaojiapuzi large scale silver deposit,Baiyun gold deposit,Qingchengzi gold deposit and Qingchengzi large-scale Pb-Zn gold deposit have been found in the right part of No.14 1∶50 000 dumbbell-shaped gold anomaly area in Taziling-Qingchengzi.Left part of anomaly area has similar metallogenic conditions as right part,and several gold mineralized points have been found in the area.So left part become prior choice of prospecting.Compared with No.9 anomaly area of large scale gold deposit,make anomaly As-2,As-3,As-4,As-5,As-8 as the main objects in the future geological prospecting.We fixed three gold prospecting targets,there are Ji’anqibaogou-Hengrenxianrendong,Fengchengsanjiazi-Qingchengzi and Gaixianmaoling-Xindian.

About this research paper

What this paper is about

Liaodong metallogenic belt is one of the important prospecting areas of No.4 Gold Geological Party of CAPF,where have been found stratabound gold deposits,like Xiaotongjiapuzi,Maoling and so on,and which shows a fine prospecting potential in this area.Xiaotongjiapuzi super large-scale gold deposit,Gaojiapuzi large scale silver deposit,Baiyun gold deposit,Qingchengzi gold deposit and Qingchengzi large-scale Pb-Zn gold deposit have been found in the right part of No.14 1∶50 000 dumbbell-shaped gold anomaly area in Taziling-Qingchengzi.Left part of anomaly area has similar metallogenic conditions as right part,and several gold mineralized points have been found in the area.So left part become prior choice of prospecting.Compared with No.9 anomaly area of large scale gold deposit,make anomaly As-2,As-3,As-4,As-5,As-8 as the main objects in the future geological prospecting.We fixed three gold prospecting targets,there are Ji’anqibaogou-Hengrenxianrendong,Fengchengsanjiazi-Qingchengzi and Gaixianmaoling-Xindian.

Why it matters

A significance statement is not available in the OpenAlex record.

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

Liaodong metallogenic belt is one of the important prospecting areas of No.4 Gold Geological Party of CAPF,where have been found stratabound gold deposits,like Xiaotongjiapuzi,Maoling and so on,and which shows a fine prospecting potential in this area.Xiaotongjiapuzi super large-scale gold deposit,Gaojiapuzi large scale silver deposit,Baiyun gold deposit,Qingchengzi gold deposit and Qingchengzi large-scale Pb-Zn gold deposit have been found in the right part of No.14 1∶50 000 dumbbell-shaped gold anomaly area in Taziling-Qingchengzi.Left part of anomaly area has similar metallogenic conditions as right part,and several gold mineralized points have been found in the area.So left part become prior choice of prospecting.Compared with No.9 anomaly area of large scale gold deposit,make anomaly As-2,As-3,As-4,As-5,As-8 as the main objects in the future geological prospecting.We fixed three gold prospecting targets,there are Ji’anqibaogou-Hengrenxianrendong,Fengchengsanjiazi-Qingchengzi and Gaixianmaoling-Xindian.

Key concepts: Prospecting, Geology, Gold ore, Anomaly (physics), Geochemistry, Mining engineering, Physics, Condensed matter physics

Related papers

Back to paper searchBrowse research topicsOriginal source
Looking for Strata Bound Type Gold Deposit in Liaodong Metallogenic Belt — Research Paper | ScholarLens