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秦岭生态地质环境系统研究关键思考
引用本文:彭建兵,申艳军,金钊,刘铁铭,李永红,庄建琦,王震洪,余琛,成玉祥,马鹏辉,高帅,李振洪.秦岭生态地质环境系统研究关键思考[J].生态学报,2023,43(11):4344-4358.
作者姓名:彭建兵  申艳军  金钊  刘铁铭  李永红  庄建琦  王震洪  余琛  成玉祥  马鹏辉  高帅  李振洪
作者单位:长安大学地质工程与测绘学院, 西安 710054;长安大学陕西省黄河科学研究院, 西安 710054;黄土科学全国重点实验室(筹), 西安 710054;中国地质大学(北京)地质安全研究院, 北京 100083;长安大学地质工程与测绘学院, 西安 710054;黄土科学全国重点实验室(筹), 西安 710054;中国科学院地球环境研究所, 西安 710061;西安地质环境监测站, 西安 710018;陕西省地质环境监测总站, 西安 710068;长安大学陕西省黄河科学研究院, 西安 710054;长安大学水利与环境学院, 西安 710054
基金项目:国家自然科学基金专项项目:秦岭生态地质环境系统演化与灾害风险管控项目(42341101)
摘    要:生态地质环境系统研究应以地质学为基础,以生态学为指导,研究岩石、土壤、水、生物等在地质作用下产生的生态问题。秦岭生态地质特色鲜明,是催生生态地质基础理论、形成生态地质保护对策的理想实践地,迫切需要对秦岭生态地质环境角色地位予以系统剖析,梳理秦岭生态地质环境系统面临的主要挑战,构建秦岭生态地质环境系统框架体系。研究提出秦岭生态地质环境系统研究要把握以下关键思考:一是秦岭生态地质环境要素多元、圈层互馈过程复杂、灾害叠加影响效应突出、人-地-生相互作用强烈,立足生态秦岭面临的现实挑战,需认知秦岭生态地质环境系统的要素构成及家底,构建秦岭生态地质环境系统要素互馈演化模型,探索生态退化、水土流失和地质灾害共存递进关系,进而提出地质环境-生态环境-人类环境动态平衡调控对策;二是秦岭生态地质环境系统框架体系应以地质环境认知为基础,将生态环境充分融入地质环境之中整体考虑,并对各要素对生态环境影响进行梳理;其中,构造、地貌地质环境是“生态容器”,岩石、土壤及水文地质环境是“生态载体”,灾害地质环境是引起“生态损害”的重要因素,人类活动环境则为造成“生态扰动”的外在驱动;三是秦岭林体-土体-岩体-山体-水...

关 键 词:秦岭  生态地质环境系统  地质环境  生态损害  生态安全
收稿时间:2023/3/31 0:00:00
修稿时间:2023/6/7 0:00:00

Key thoughts on the study of eco-geological environment system in Qinling Mountains
PENG Jianbing,SHEN Yanjun,JIN Zhao,LIU Tieming,LI Yonghong,ZHUANG Jianqi,WANG Zhenhong,YU Chen,CHENG Yuxiang,MA Penghui,GAO Shuai,LI Zhenhong.Key thoughts on the study of eco-geological environment system in Qinling Mountains[J].Acta Ecologica Sinica,2023,43(11):4344-4358.
Authors:PENG Jianbing  SHEN Yanjun  JIN Zhao  LIU Tieming  LI Yonghong  ZHUANG Jianqi  WANG Zhenhong  YU Chen  CHENG Yuxiang  MA Penghui  GAO Shuai  LI Zhenhong
Institution:Department of Geological Engineering and Geomatics, Chang''an University, Xi''an 710054, China;Academy of Yellow River Sciences of Shaanxi Province, Chang''an University, Xi''an 710054, China;State Key Laboratory of Loess Science(In Preparation), Xi''an 710054, China;China University of Geosciences, Institute of Geosafety, Beijing 100083, China;Department of Geological Engineering and Geomatics, Chang''an University, Xi''an 710054, China;State Key Laboratory of Loess Science(In Preparation), Xi''an 710054, China;Institute of Earth Environment, Chinese Academy of Sciences, Xi''an 710061, China;Xi''an Institute of Geo-Environment Monitoring, Xi''an 710018, China;Shaanxi Institute of Geo-Environment Monitoring, Xi''an 710068, China;Academy of Yellow River Sciences of Shaanxi Province, Chang''an University, Xi''an 710054, China;School of Water and Environmental, Chang''an University, Xi''an 710054, China
Abstract:The systematic study of eco-geological environment should be based on geology and under the guidance of ecology to study the ecological problems caused by rock, soil, water, biology and so on. Qinling Mountains has distinctive eco-geological characteristics, which is an ideal practical place to give birth to the basic theory of eco-geology and form eco-geological protection countermeasures. It is urgent to systematically analyze the role and status of Qinling eco-geological environment, sort out the main challenges faced by Qinling eco-geological environment system, and construct the framework system of Qinling eco-geological environment system.This paper puts forward that the following key thoughts should be grasped in the study of Qinling eco-geological environment system. Firstly, the multi-elements of Qinling eco-geological environment, the complex process of circle-layer mutual feedback, the prominent effect of disaster superposition, and the strong human-geology-ecology interaction. Based on the realistic challenges faced by the ecological Qinling Mountains, it is necessary to recognize the element composition and resource status of the Qinling eco-geological environment system, and construct a mutual feedback evolution model of the elements of the Qinling eco-geological environment system, rexplores the coexistence and progressive relationship among ecological degradation, soil erosion and geological disasters, and then puts forward the countermeasures for the dynamic balance of geological environment-ecological environment-human environment. Secondly, the frame system of Qinling eco-geological environment system should be based on the cognition of geological environment, fully integrate the ecological environment into the geological environment as a whole, and sort out the impact of various elements on the ecological environment. Among them, the tectonic, geomorphological geological environment is the "ecological container", the rock, soil and hydro geological environment are the "ecological carrier", and the disaster geological environment is the important factor causing "ecological damage". The environment of human activities is the external drive of "ecological disturbance". Thirdly, the relationship among forest body, soil body, rock mass, mountain body and water body in Qinling Mountains is complex, and the endogenetic interaction is close. To understand the scientific connotation of the law of co-exist, co-evolution, co-loss and co-prosperity of "Life Community of mountains, waters, forests, farmlands, lakes and grasslands", we should be based on exploring the mutual feedback and co-evolution mechanism of forest-soil-rock-mountain-water. Fourthly, the surface ecological damage, surface soil and water disasters, and shallow and deep geological disasters in the Qinling Mountains show the characteristics of mutual feedback-coupling, coexistence and progressive evolution. It is necessary to pay attention to the key problem of "the progressive relationship between ecological damage and geological disasters and the internal mechanism". Lastly, research on the regulation mechanism of the dynamic balance of human environment-geological environment-ecological environment in the Qinling Mountains should focus on exploring the relationship between ecological security and human-land coordination, and analyze the relationship between the destruction of ecosystem and geological disasters and the sequential evolution of geology-geomorphology-climate-human activities. On this basis, the dynamic balance mechanism of eco-geological environment system is explored, and then the ecological security prevention and control strategy based on human-land coordination is put forward.
Keywords:Qinling Mountains  eco-geological environment system  geological environment  ecological damage  ecological security
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