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模拟氮输入对黄河三角洲盐沼湿地碳循环关键过程的影响 学位论文
工学博士, 中国科学院烟台海岸带研究所: 中国科学院烟台海岸带研究所, 2021
Authors:  李隽永
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氮输入  净生态系统 CO2 交换  光合碳分配  有机碳流失  盐沼湿地  Nitrogen input  Net ecosystem CO2 exchange  Photosynthetic carbon allocation  Soil organic carbon loss  Salt marsh  
黄河三角洲互花米草入侵对大型底栖动物的生态影响 学位论文
工程硕士, 山东烟台: 中国科学院烟台海岸带研究所, 2021
Authors:  姜少玉
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黄河三角洲,互花米草入侵,沉积物,大型底栖动物,食物网  
无权访问的条目 学位论文
Authors:  周倩
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黄河三角洲恢复湿地磷的存储容量及其影响因素研究 学位论文
工学硕士, 中国科学院烟台海岸带研究所: 中国科学院大学, 2020
Authors:  宋佳伟
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黄河三角洲,恢复湿地,磷吸附饱和度,磷存储容量,存储机制  
黄河三角洲盐沼湿地碳交换过程及其对潮汐淹水的响应 学位论文
工程硕士, 北京: 中国科学院研究生院, 2020
Authors:  魏思羽
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生态系统碳交换,潮汐淹水,小波分析,盐沼,黄河三角洲  
S~(2-)和Na~+胁迫下黄河三角洲高潮滩芦苇光合作用和抗氧化酶活性的响应 期刊论文
生态科学, 2020, 卷号: 39, 期号: 02, 页码: 175-181
Authors:  陈琳;  张俪文;  刘子亭;  路峰;  颜坤;  韩广轩
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黄河三角洲  盐胁迫  芦苇  光合作用  抗氧化酶活性  
长期生态学研究为滨海湿地保护提供科技支撑 期刊论文
中国科学院院刊, 2020, 卷号: 35, 期号: 2, 页码: 218-228
Authors:  韩广轩;  宋维民;  李培广;  王晓杰;  王光美;  初小静
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滨海湿地生态系统  长期定位监测研究  碳汇功能  水盐运移  生态修复  Coastal Wetland Ecosystem  Long-term Monitoring Research  Carbon Sink  Water And Salt Migration  Ecological Restoration  
环渤海芦苇湿地磷的吸附容量及释放风险评估 期刊论文
环境科学, 2020, 卷号: 41, 期号: 2, 页码: 728-733
Authors:  宋佳伟;  徐刚;  张扬;  吕迎春
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环渤海湿地  表层沉积物  磷吸附容量  磷吸附饱和度  释放风险指数  Coastal Wetland  Surface Sediment  p Adsorption Capacity  Degree Of p Adsorption Saturation  Emission Risk Index  
黄河三角洲高潮滩芦苇植被区天津厚蟹的食源食性 期刊论文
应用生态学报, 2020, 卷号: 31, 期号: 1, 页码: 319-325
Authors:  兰思群;  张俪文;  衣华鹏;  徐长林;  路峰;  冯光海;  韩广轩
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黄河三角洲  天津厚蟹  芦苇  稳定同位素  食源  食性  Yellow River Delta  Helice Tientsinensis  Phragmites Australis  Stable Isotope  Food Source  Feeding Habit  
入侵植物互花米草的资源化利用研究进展 期刊论文
中国生态农业学报(中英文), 2019, 卷号: 27, 期号: 12, 页码: 1870-1879
Authors:  谢宝华, 路峰, 韩广轩
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入侵植物  互花米草  资源化利用  秸秆资源  药用价值  耐盐基因  Invasive plant  Spartina alterniflora  Resource utilization  Straw resource  Medicinal value  Salt tolerant gene  In China, Spartina alterniflora, an invasive alien plant species, covers an area of approximately 54 600 hectares. The total dry matter of the aboveground part of S. alterniflora is 7.5*10~5~1.15*10~6 tons per year. The control and utilization of S. alterniflora have received increasing attention. A combined utilization and control approach could produce simultaneous economic and ecological benefits. Studies of the utilization of S. alterniflora in China tended to focus on the direct utilization of straw, including its use as fuel, feed, and raw material. These methods of utilization were generally low-value. Possible high-value utilization includes the medicinal value of S. alterniflora and its salt-tolerant genes. In all the studies, the largest proportion (43%) of straw was utilized as fuel, whereas the smallest proportion (approximately 8%) was utilized for other purposes, such as fertilizer and for its salt-tolerant genes. Previous studies have focused on utilization technologies, but they have not looked at S. alterniflora collection technology and market promotion. In the future, attention should be paid to every link of the industry chain of S. alterniflora utilization, and cooperation between research institutions and enterprises is essential for the synchronous development of industry, education, and research.