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开展高寒退化生态系统恢复与重建技术研究,助力西藏生态安全屏障保护与建设 被引量:26
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作者 张宪洲 王小丹 +3 位作者 高清竹 侯太平 沈振西 方江平 《生态学报》 CAS CSCD 北大核心 2016年第22期7083-7087,共5页
西藏是青藏高原的核心,是我国重要的生态安全屏障。由于高、寒、旱的特点,西藏高寒生态系统极为脆弱,在自然和人为因素影响下极易发生退化,治理难度大。草地退化和土地沙化治理一直是西藏生态安全屏障保护与建设的重中之重。为此,国家在... 西藏是青藏高原的核心,是我国重要的生态安全屏障。由于高、寒、旱的特点,西藏高寒生态系统极为脆弱,在自然和人为因素影响下极易发生退化,治理难度大。草地退化和土地沙化治理一直是西藏生态安全屏障保护与建设的重中之重。为此,国家在"典型脆弱生态修复与保护研究"重点专项里启动了"西藏退化高寒生态系统恢复与重建技术及示范(2016YFC0502000)"项目,旨在研究生态系统演变规律和影响机理的基础上,针对西藏高原不同的退化区域,重点研发高寒退化草地恢复、沙化土地治理、生态产业及生态畜牧业发展等技术与模式,开展县域水平的集成示范,实现高寒生态系统功能的提升与适应性优化管理的目标,为西藏生态安全屏障保护与建设提供技术支撑。 展开更多
关键词 西藏 草地退化 土地沙化 生态系统恢复与重建 重点项目
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生态系统恢复与重建课程在线教学实践探索
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作者 康东伟 《智慧农业导刊》 2023年第10期115-118,共4页
在线教学是一种重要的教学方式。该文以北京林业大学生态系统恢复与重建课程为例,分析在线教学的优缺点,从教学准备工作、创造师生交流机会、引导学生自主学习、重视理论联系实际和关注学生身心健康等方面,对课程进行在线教学实践探索,... 在线教学是一种重要的教学方式。该文以北京林业大学生态系统恢复与重建课程为例,分析在线教学的优缺点,从教学准备工作、创造师生交流机会、引导学生自主学习、重视理论联系实际和关注学生身心健康等方面,对课程进行在线教学实践探索,收到良好的教学效果。通过在线教学,保证正常的教学进度,强化师生之间的沟通,提高学生学习的积极性,加深学生对知识的理解,促进学生精神饱满地进行课程学习。该文的在线教学方法可以为其他课程的教学工作提供参考。 展开更多
关键词 生态系统恢复与重建 在线教学 课程概况 教学实践 教学效果
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开展高寒退化生态系统恢复与重建技术研究,助力西藏生态安全屏障保护与建设 被引量:1
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作者 李秀华 《环境与发展》 2018年第7期177-177,180,共2页
近年来随着我国对西部地区的开发取得了一系列进展,许多不毛之地也有了人类活动的踪影,在自然和人为的双重影响下,原本脆弱的生态环境更易产生退化,对生态治理也提出了更严峻、更迫切的要求。本文论述了当前西藏地区生态系统的基本情况... 近年来随着我国对西部地区的开发取得了一系列进展,许多不毛之地也有了人类活动的踪影,在自然和人为的双重影响下,原本脆弱的生态环境更易产生退化,对生态治理也提出了更严峻、更迫切的要求。本文论述了当前西藏地区生态系统的基本情况以及开展环境治理的必要性,并结合相关理论指出了恢复西藏地区生态环境与开展生态整治的具体计划,旨在通过当前西藏高原的生态退化情况,从高原生态产业和高原生态经济入手,进一步完善森林生态效益补偿、草原生态保护补助奖励机制,建立湿地、水生态补助奖励机制,让更多群众吃上"生态饭"。 展开更多
关键词 生态系统恢复与重建 高寒地区 青藏高原
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中国科学院成都生物研究所退化生态系统恢复与重建研究中心
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《植物生态学报》 CAS CSCD 北大核心 2005年第4期i005-i005,共1页
中国科学院成都生物研究所生态中心于1999年首批进入中国科学院知识创新工程“西南生物资源与生物多样性保护与发展研究基地。”中心拥有植物学博士点和生物学硕士点,现有在职科技人员43人,其中研究员7人,博士生导师4 ,“百人计划... 中国科学院成都生物研究所生态中心于1999年首批进入中国科学院知识创新工程“西南生物资源与生物多样性保护与发展研究基地。”中心拥有植物学博士点和生物学硕士点,现有在职科技人员43人,其中研究员7人,博士生导师4 ,“百人计划”人才2人,“西部之光”人才计划3人,博士12人,形成了以常务副所长、四川省学术带头人吴宁研究员为主的一批青藏高原东缘及长江上游地区恢复生态学研究的核心力量。 展开更多
关键词 中国科学院 成都生物研究所 “退化生态系统恢复与重建研究中心” 队伍建设 科研项目
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Study on Expressway Road-area Ecosystem
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作者 Z.B. Qin Z.H. Liu Y.Z. Li 《Journal of Environmental Science and Engineering》 2010年第3期64-69,共6页
Ecological restoration and reconstruction refers to how to prevent the main factors and processes from further degrading the ecosystem, as well as how to regulate and optimize the exchanging process and the space-time... Ecological restoration and reconstruction refers to how to prevent the main factors and processes from further degrading the ecosystem, as well as how to regulate and optimize the exchanging process and the space-time cycling system of substance, energy and information through man force, in order to restore the structure, function and eco-potentiality back to the original level or even higher, with the help of certain biological, ecological and engineering techniques. Ecological restoration and reconstruction involves problems of different levels and different fields, with the focus on the ecosystem (species communities), the landscape and certain areas. Problems in the process of road-area ecosystem construction are as follows: attention is paid to the conditions of the road itself and the short-term effects, not to the natural propagation of species within the whole road-area or the ecological safety area; the importance of biological diversity in ecological restoration is neglected; the property of heterogeneity necessary for a sound ecosystem is ignored; the ecological interaction among species doesn't earn enough attention; properties like localization and adaptability in different districts are not paid enough attention. Landscape ecology can guide the work of road-area ecosystem restoration, through the space pattern. 展开更多
关键词 Expressway road ecological restoration ecological reconstruction.
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Towards Regional Synergy: Reconciling Rangeland Ecological Functioning with Forage Production of Cultivated Pasture 被引量:8
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作者 SHI Peili ZHANG Xianzhou 《Journal of Resources and Ecology》 CSCD 2020年第3期247-252,共6页
Animal husbandry and crop farming are specialized for development in separate areas on the Tibetan Plateau. Such a pattern of isolation has led to current concerns of rangeland and farming system degradation due to in... Animal husbandry and crop farming are specialized for development in separate areas on the Tibetan Plateau. Such a pattern of isolation has led to current concerns of rangeland and farming system degradation due to intensive land use. The crop-livestock integration, however, has been proven to increase food and feed productivity thorough niche complementarity, and is thereby especially effective for promoting ecosystem resilience. Regional synergy has emerged as an integrated approach to reconcile rangeland livestock with forage crop production. It moves beyond the specialized sectors of animal husbandry and intensive agriculture to coordinate them through regional coupling. Therefore, crop-livestock integration(CLI) has been suggested as one of the effective solutions to forage deficit and livestock production in grazing systems. But it is imperative that CLI moves forward from the farm level to the regional scale, in order to secure regional synergism during agro-pastoral development. The national key R & D program, Technology and Demonstration of Recovery and Restoration of Degraded Alpine Ecosystems on the Tibetan Plateau, aims to solve the problems of alpine grassland degradation by building up a grass-based animal husbandry technology system that includes synergizing forage production and ecological functioning, reconciling the relationship between ecology, forage production and animal husbandry, and achieving the win-win goals of curbing grassland degradation and changing the development mode of animal husbandry. It is imperative to call for regional synergy through integrating ecological functioning with ecosystem services, given the alarming threat of rangeland degradation on the Tibetan Plateau. The series of papers in this issue, together with those published previously, provide a collection of rangeland ecology and management studies in an effort to ensure the sustainable use and management of the alpine ecosystems. 展开更多
关键词 Tibet Plateau ecosystem restoration and reconstruction crop-livestock integration regional synergy reconciling rangeland functioning with forage production
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