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长江中下游地区典型湖泊摇蚊亚化石-湖水总磷定量模型研究 被引量:9
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作者 张恩楼 Alan Bedford +3 位作者 Richard Jones 沈吉 王苏民 唐红渠 《科学通报》 EI CAS CSCD 北大核心 2006年第11期1318-1325,共8页
长江中下游地区30个典型湖泊表层摇蚊幼虫亚化石-环境数据库研究表明影响该地区湖泊中摇蚊组合的主导因素为营养态梯度.12个水质环境指标的典型对应分析(CCA)揭示总磷为解释摇蚊幼虫亚化石组合变化的最重要的显著性指标,可解释20.1%... 长江中下游地区30个典型湖泊表层摇蚊幼虫亚化石-环境数据库研究表明影响该地区湖泊中摇蚊组合的主导因素为营养态梯度.12个水质环境指标的典型对应分析(CCA)揭示总磷为解释摇蚊幼虫亚化石组合变化的最重要的显著性指标,可解释20.1%的摇蚊幼虫亚化石组合变化信息,适于进行定量模型的建立.依据总磷的DCCA分析,利用非线性的多元回归方法,建立了摇蚊幼虫亚化石-湖水总磷转换函数模型.最佳二次次残差提取的WA-PLS模型为摇蚊幼虫亚化石-总磷转换函数推导提供了最高的实测值与推导值的回归相关系数(R2jack=0.76)和较低的推导误差(RMSEPjack0.13).最后,对模型的推导能力进行了综合评价.该模型的建立为定量研究该地区湖泊富营养化的历史开拓了新途径,并为湖泊环境管理与生态修复提供了科学依据. 展开更多
关键词 湖泊 摇蚊幼虫亚化石 总磷 定量转换函数 长江中下游
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Climatic and Edaphic Controls on Soil pH in Alpine Grasslands on the Tibetan Plateau,China:A Quantitative Analysis 被引量:6
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作者 JI Cheng-Jun YANG Yuan-He +3 位作者 HAN Wen-Xuan HE Yan-Fang J.SMITH P.SMITH 《Pedosphere》 SCIE CAS CSCD 2014年第1期39-44,共6页
Soil acidity is an important parameter that can regulate ecosystem structure and function.However,a quantitative understanding of the relationships between soil pH and environmental factors remains unavailable.In this... Soil acidity is an important parameter that can regulate ecosystem structure and function.However,a quantitative understanding of the relationships between soil pH and environmental factors remains unavailable.In this study,relationships of soil pH with both climatic and edaphic factors in alpine grasslands on the Tibetan Plateau,China were quantified using data obtained from a regional soil survey during 2001-2004.Our results showed that soil pH decreased along the gradient of both mean annual temperature and precipitation.Likewise,soil pH exhibited consistent negative correlations with soil moisture and silt content.However,soil organic and inorganic carbon contents played opposite roles in shaping patterns of soil pH:the accumulation of soil organic matter led to higher soil acidity,while the existence of soil inorganic matter was favorable for maintaining higher soil alkalinity.The variation partitioning analysis indicated that the combination of climatic and edaphic variables explained 74.3%of the variation in soil acidity.These results suggest that soil pH could be predicted from routinely-measured variables,allowing a robust pedotransfer function to be developed.The pedotransfer function may facilitate land surface models to generate more reliable predictions on ecosystem structure and function around the world. 展开更多
关键词 CLIMATE soil acidity soil inorganic carbon soil organic carbon soil texture
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