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生态恢复工程系统集成原理的一些理论分析 被引量:35
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作者 胡聃 奚增均 《生态学报》 CAS CSCD 北大核心 2002年第6期866-877,共12页
生态恢复是不同层次上退化生态系统的选择性再生与再发展过程 ,它包括人类主导作用下的生态系统恢复和自然主导下的生态恢复 ,它具有自然性、经济性、人文性和选择性。以生态经济原理为基础 ,首先提出了生态系统退化度与恢复度理论上存... 生态恢复是不同层次上退化生态系统的选择性再生与再发展过程 ,它包括人类主导作用下的生态系统恢复和自然主导下的生态恢复 ,它具有自然性、经济性、人文性和选择性。以生态经济原理为基础 ,首先提出了生态系统退化度与恢复度理论上存在的反 -S型关系 ,讨论了在统一矢量价值标尺下恢复演进过程的数学描述与恢复的判定准则。作者进一步讨论了生态恢复工程的一些系统集成原理 ,包括系统集成的技术流程、基本原则的关联组合体系、恢复技术的组装与集成体系、生态恢复模式的分类系统及其在生态集成管理体系下以成本约束、效益约束、尺度约束为核心的模式集成系统、生态恢复系统目标 -模式 (速度与路径 ) -成本 /效益 展开更多
关键词 生态恢复工程系统 集成原理 理论分析
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生态系统恢复工程对康平地区生态系统格局的影响 被引量:2
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作者 李虹 朱洪波 +2 位作者 王钟书 宁新元 王烽旭 《水土保持学报》 CSCD 北大核心 2022年第1期95-100,109,共7页
为了对自1999年起辽宁省沈阳市康平县实施的生态系统恢复工程的成效进行评估,利用多期Landsat影像解译了康平地区陆表生态系统时空分布特征;利用气候要素回归分析、生态系统转移矩阵以及生态系统综合人类扰动指数等研究方法,对康平地区... 为了对自1999年起辽宁省沈阳市康平县实施的生态系统恢复工程的成效进行评估,利用多期Landsat影像解译了康平地区陆表生态系统时空分布特征;利用气候要素回归分析、生态系统转移矩阵以及生态系统综合人类扰动指数等研究方法,对康平地区自1984年以来的陆表生态系统格局进行了研究,特别是对生态系统恢复工程实施20年来的生态系统时空变化规律进行了探索,并分析了其演变的驱动力机制。结果表明:(1)1999—2020年康平地区的生态系统格局发生显著变化,主要表现为沙地面积占比减少35.391%,耕地面积占比减少6.240%,林地面积大幅增加。(2)通过对气候要素回归分析得出,研究时间段内康平地区气候整体转湿,并且在生态系统恢复工程实施后尤为显著,适合陆表植被生长和恢复。研究最终得出,康平地区生态系统格局演变的主要驱动力为该地区自上世纪末实施的一系列生态系统恢复工程,辅助驱动力为该地区年起沙风天数减少和气候转湿的结论。 展开更多
关键词 生态系统格局 康平 遥感 生态系统恢复工程
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退化草地植被生态恢复系统工程设计 被引量:5
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作者 蒙荣 袁清 杨劼 《中国草地》 CSCD 2001年第2期7-11,共5页
设计了生态环境适宜度分析及植被生态恢复系统工程决策专家系统的技术流程。应用多种数据源、多种决策分析方法 ,建立生态环境基础空间数据库 ,确定生态环境适宜度评价模型 ,依据专家系统原理 ,在地理信息系统平台上分析生态环境适宜度 。
关键词 生态环境适宜度评价 植被恢复 专家系统 退化草地 植被生态恢复系统工程 设计
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Carbon sequestration of plantation in Beijing-Tianjin sand source areas 被引量:3
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作者 LIU Xiu-ping ZHANG Wan-jun +2 位作者 CAO Jian-sheng YANG Bai CAI Yan-jiang 《Journal of Mountain Science》 SCIE CSCD 2018年第10期2148-2158,共11页
The Beijing-Tianjin Sand Source Control Project(BTSSCP), a national ecological restoration project, was launched to construct an ecological protection system in the Beijing-Tianjin sand source areas to reduce dust haz... The Beijing-Tianjin Sand Source Control Project(BTSSCP), a national ecological restoration project, was launched to construct an ecological protection system in the Beijing-Tianjin sand source areas to reduce dust hazards. The carbon sequestration dynamics can be used to assess the ecological effects of an ecological restoration project. Here, we conducted vegetation and soil study to assess the carbon sequestration in the plantations with 10 years old stands in Beijing-Tianjin sand source areas. The results at the site scales indicated that the average net increase of plantation ecosystem carbon stock was 33.8 Mg C ha^(-1), with an annual increase rate of 3.38 Mg C ha^(-1) yr^(-1). The average net increase of carbon varied among regions, vegetation types, and forest management activities. Soil bulk density in the top soil decreased slightly after 10-year implementation of the project. Coniferous forests and shrubs are suitable plant species for sand source areas.Natural restoration in the plantations is a practical and feasible and promising approach for enhancing ecosystem carbon sequestration potential. 展开更多
关键词 AFFORESTATION Carbon sequestration Carbon density Forest management RESTORATION Sand source control
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Did Ecological Engineering Projects Have a Significant Effect on Large-scale Vegetation Restoration in Beijing-Tianjin Sand Source Region, China? A Remote Sensing Approach 被引量:6
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作者 LI Xiaosong WANG Hongyan +2 位作者 ZHOU Shufang SUN Bin GAO Zhihai 《Chinese Geographical Science》 SCIE CSCD 2016年第2期216-228,共13页
Aiming for the restoration of degraded ecosystems, many ecological engineering projects have been implemented around the world. This study investigates the ecological engineering project effectiveness on vegetation re... Aiming for the restoration of degraded ecosystems, many ecological engineering projects have been implemented around the world. This study investigates the ecological engineering project effectiveness on vegetation restoration in the Beijing-Tianjin Sand Source Region(BTSSR) from 2000 to 2010 based on the rain use efficiency(RUE) trend in relation to the land cover. More than half of the BTSSR experienced a vegetation productivity increase from 2000 to 2010, with the increasing intensity being sensitive to the indicators chosen. A clear tendency towards smaller increasing areas was shown when using the net primary productivity(NPP, 51.30%) instead of the accumulated normalized difference vegetation index(59.30%). The short-term variation in the precipitation and intra-seasonal precipitation distribution had a great impact on the remote sensing-based vegetation productivity. However, the residual trends method(RESTREND) effectively eliminated this correlation, while incorporating the variance and skewness of the precipitation distribution increased the models′ ability to explain the vegetation productivity variation. The RUE combined with land cover dynamics was valid for the effectiveness assessment of the ecological engineering projects on vegetation restoration. Particularly, the result based on growing season accumulated normalized difference vegetation index(ΣNDVI) residuals was the most effective, showing that 47.39% of the BTSSR experienced vegetation restoration from 2000 to 2010. The effectiveness of the ecological engineering projects differed for each subarea and was proportional to the strength of ecological engineering. The water erosion region dominated by woodland showed the best restoration, followed by the wind-water erosion crisscross regions, while the wind erosion regions dominated by grassland showed the worst effect. Seriously degraded regions still cover more area in the BTSSR than restored regions. Therefore, more future effort should be put in restoring degraded land. 展开更多
关键词 vegetation restoration ecological engineering rain use efficiency(RUE) residual trends method(RESTREND) Beijing-Tianjin Sand Source Region(BTSSR)
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