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潮滩生物-物理互馈机制与系统稳态效应研究进展 被引量:4
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作者 张荷悦 周怡 +2 位作者 孙涛 曹浩冰 周曾 《科学通报》 EI CAS CSCD 北大核心 2023年第5期457-468,共12页
潮滩是海岸湿地系统的重要组成部分,在维持海岸生态系统健康、抵御海岸自然灾害、蓝碳固存等方面发挥着重要作用.潮滩为多种生物提供适宜生长环境的同时,不同类型生物也通过改变水、沙过程影响潮滩地貌演化与系统稳态.本文归纳了盐沼植... 潮滩是海岸湿地系统的重要组成部分,在维持海岸生态系统健康、抵御海岸自然灾害、蓝碳固存等方面发挥着重要作用.潮滩为多种生物提供适宜生长环境的同时,不同类型生物也通过改变水、沙过程影响潮滩地貌演化与系统稳态.本文归纳了盐沼植被、底栖微藻对潮滩水动力、泥沙运动过程的生物-物理效应,提出了描述潮滩生物与泥沙在时间、空间尺度上反馈过程的概化动力学模型,分析了生物-物理互馈时间累积驱动下潮滩系统双稳态及稳态突变理论特性,总结了潮滩生物与周围物理条件空间自组织作用下的地貌形态形成机制,探讨了潮滩系统层面的连续性现场观测、生物种间作用对生物-物理互馈过程的调节,以及外界扰动下潮滩生物地貌系统稳态突变阈值定量模拟等方面仍面临的科学问题. 展开更多
关键词 潮滩 盐沼植被 底栖微藻 生物-物理效应 地貌演变 系统稳态
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Study on the Urban Heat Island Effects and Its Relationship with Surface Biophysical Characteristics Using MODIS Imageries 被引量:1
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作者 ZENG Yongnian HUANG Wei +2 位作者 ZHAN E Benjamin ZHANG Honghui LIU Huimin 《Geo-Spatial Information Science》 2010年第1期1-7,共7页
This study assesses surface urban heat island (UHI) and its associated surface physical characteristics using remote sensing approaches. TERRA/MODIS images acquired in 2005 in three different seasons were selected to ... This study assesses surface urban heat island (UHI) and its associated surface physical characteristics using remote sensing approaches. TERRA/MODIS images acquired in 2005 in three different seasons were selected to generate land surface tem-perature and surface characteristics for the Changsha-Zhuzhou-Xiangtan metropolitan area in China. The intensity of urban heat is-land effects and its seasonal variations were examined. The result showed that UHI effects were significant both in the summer and the spring. Land surface temperatures in the city were 8 ℃ to 10℃ warmer than those in surrounding rural areas in the spring and the summer seasons. Although UHI effects exist in winter, they are not significant. Land surface temperature in the city was 4℃ warmer than that in surrounding rural areas in winter. This study uses normalized difference vegetation index (NDVI) and normal-ized difference built-up index (NDBI) as indicators of surface physical characteristics and investigates the relationship among land surface temperature (LST), NDVI and NDBI. The results from this study indicate that, while the relationship between LST and NDVI changes in different seasons, there is a strong positive linear relationship between NDBI and LST for all seasons. The amount of slope and intercept of the linear relationship between NDBI and LST can indicate the magnitude of UHI for different seasons. This finding suggests that NDBI provides an alternative physical indicator for analyzing LST quantitatively over different seasons, and therefore providing a useful way to study UHI effects using remote sensing. 展开更多
关键词 urban heat island biophysical indicators MODIS image Changsha-Zhuzhou-Xiangtan area China
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Impacts of climate change on the ecotoxicology of chemical contaminants in estuarine organisms 被引量:1
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作者 Marie E. DELORENZO 《Current Zoology》 SCIE CAS CSCD 2015年第4期641-652,共12页
Global climate change effects will vary geographically, and effects on estuaries should be independently considered. This review of the impacts of climate change on the ecotoxicology of chemical contaminants aims to s... Global climate change effects will vary geographically, and effects on estuaries should be independently considered. This review of the impacts of climate change on the ecotoxicology of chemical contaminants aims to summarize responses that are specific to estuafine species. Estuarine organisms are uniquely adapted to large fluctuations in temperature, salinity, oxygen, and pH, and yet future changes in climate may make them more susceptible to chemical contaminants. Recent research has hig- hlighted the interactive effects of chemical and nonchemical stressors on chemical uptake, metabolism, and organism survival. Assessments have revealed that the nature of the interaction between climate variables and chemical pollution will depend on es- tuarine species and life stage, duration and timing of exposure, prior stressor exposure, and contaminant class. A need for further research to elucidate mechanisms of toxicity under different abiotic conditions and to incorporate climate change factors into toxicity testing was identified. These efforts will improve environmental risk assessment of chemical contaminants and manage- ment capabilities under changing climate conditions [Current Zoology 61 (4): 641-652, 2015]. 展开更多
关键词 CLIMATE TOXICITY Metals PESTICIDES Oil Esmarine
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