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1980—2020年气候和土地利用变化对甘肃省陆地生态系统碳储量的影响 被引量:16
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作者 冯永忠 尹振良 +4 位作者 王凌阁 毛龙 邱晓峄 陶卓琳 吴翠霞 《中国沙漠》 CSCD 北大核心 2023年第4期168-179,共12页
土地利用变化对干旱区陆地生态系统碳储量影响显著,但气候变化对其的影响尚不明晰。本研究基于1980—2020年土地利用数据以及植被和土壤碳密度动态数据,利用InVEST模型测算1980—2020年甘肃省及各市州碳储量及固碳量的变化趋势,并定量... 土地利用变化对干旱区陆地生态系统碳储量影响显著,但气候变化对其的影响尚不明晰。本研究基于1980—2020年土地利用数据以及植被和土壤碳密度动态数据,利用InVEST模型测算1980—2020年甘肃省及各市州碳储量及固碳量的变化趋势,并定量评估气候变化和土地利用变化对陆地生态系统碳储量的影响。结果表明:(1)甘肃省气候状态整体趋向于暖湿化,同时土地利用转移强度逐渐剧烈,并由1980—2000年的耕地扩张和草地流失逐步转变为2000—2020年的未利用地治理及城镇扩张。(2)1980—2020年甘肃省生态系统平均碳储量为2651.01 Tg C(1 Tg=10^(12)g),碳密度高值区主要分布在甘南高原和祁连山山地区域,低值区主要分布在河西走廊西北荒漠区及内陆河流域下游地区;而固碳速率则呈现出自东南向西北递减的空间格局,其中固碳量排名前四的市州依次为甘南藏族自治州、陇南市、张掖市和庆阳市。(3)1980—2020年甘肃省生态系统碳储量净增长量为208.79Tg C。1980—2000年,碳储增加量主要来源于气候变化(63.01 Tg C);而2000—2020年,土地利用变化则是甘肃省陆地生态系统碳储量变化的主要驱动因素,尤其体现在林-草-沙治理和人工绿洲扩张方面。 展开更多
关键词 陆地生态系统 固碳效应 碳密度动态数据 气候变化 土地利用
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Compounding effects of human activities and climatic changes on coexistence of oasis-desert ecosystems:Prioritizing resilient decision-making for a riskier world 被引量:1
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作者 XinWei Yin Wei Liu +11 位作者 Meng Zhu JuTao Zhang Qi Feng HaiYang Xi LinShan Yang Tuo Han WenJu Cheng YingQing Su BaiTing Zhang YuanYuan Xue ZeXia Chen lingge wang 《Research in Cold and Arid Regions》 CSCD 2023年第5期219-229,共11页
Water-salt balance is critical for the stable coexistence of salt-affected and groundwater-fed oasis-desert ecosystems. Yet, a comprehensive investigation of how soil salinization and groundwater degradation threaten ... Water-salt balance is critical for the stable coexistence of salt-affected and groundwater-fed oasis-desert ecosystems. Yet, a comprehensive investigation of how soil salinization and groundwater degradation threaten the coexistence of oasis-desert ecosystems is still scarce, especially under the compounding effects of human activities and climatic changes. Here, we assessed the impacts of irrigated agriculture on hydrological regimes in oasisdesert systems, investigated the spatio-temporal variations of soil salinization in irrigated cropland, and evaluated the implications of the interplays of soil salinization and groundwater degradation on the coexistence of oasis-desert ecosystems in northwestern China, based on meaningful modelling approaches and comprehensive measurements over 1995–2020. The results showed that the irrigation return flow coefficient decreased sharply from 0.21 ± 0.09 in the traditional irrigation period to 0.09 ± 0.01 in the water-saving irrigation period. The continuous drop in groundwater tables and significant degradation of groundwater quality are occurring throughout this watershed. The eco-environmental flows are reaching to their limit with watershed closures(i.e.,the drainage from the oasis region into the desert region is being weakened or even eliminated), although these progressions were largely hidden by regional precipitation and streamflow variability. The process of salt migration and accumulation across different landscapes in oasis-desert system is being reshaped, and soil salinization in water-saving agricultural irrigated lands is accelerating with a regional average annual growth rate of18%. The vegetation in this watershed is degrading, and anthropogenic disturbance accelerates this trend. Our results highlight that environmental stress adaptation strategies must account for resilience maintenance to avoid accelerating catastrophic transitions in oasis-desert ecosystems. Determining the optimal oasis scales and formulating the best irrigation management plans are effective and resilient decision-making ways to maintain the coexistence relationship of oasis-desert ecosystem in drylands. 展开更多
关键词 Oasis-desert ecosystems Hydrological regimes Soil salinization Vegetation dynamics Resilient decision-making
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