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《湿地生态学》课程育人元素的挖掘与课堂融入
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作者 杨丹 《创新教育研究》 2022年第10期2585-2588,共4页
《湿地生态学》是农林类综合高等院校生态学、环境生态工程和湿地保护与恢复专业的一门专业基础课,是以培育湿地保护修复与合理利用专业性复合人才为育人目标。本文以贵州大学生物科学类生态学专业开设《湿地生态学》课程为例,探讨了以... 《湿地生态学》是农林类综合高等院校生态学、环境生态工程和湿地保护与恢复专业的一门专业基础课,是以培育湿地保护修复与合理利用专业性复合人才为育人目标。本文以贵州大学生物科学类生态学专业开设《湿地生态学》课程为例,探讨了以生命共同体和生态文明教育为导向的思政育人元素教学实践,并指出《湿地生态学》课程处处渗透着爱党、爱国、爱社会主义等育人元素。以期培养具有马克思主义辩证唯物主义世界观和扎实专业技能的复合型高素质人才。 展开更多
关键词 课程思政 《湿地生态学》 育人元素
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Application of landscape ecology to the research on wetlands 被引量:5
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作者 WANG Ying-zi HONG Wei +3 位作者 WU Cheng-zhen HE Dong-jin LIN Shu-wei FAN Hai-lan 《Journal of Forestry Research》 SCIE CAS CSCD 2008年第2期164-170,共7页
This review describes the characteristics and hot spots of wetland research, including biodiversity protection of wetland, management and restoration of wetland, function and process of wetland, and the theories, meth... This review describes the characteristics and hot spots of wetland research, including biodiversity protection of wetland, management and restoration of wetland, function and process of wetland, and the theories, methods and scales of landscape ecology. Moreover, some deficits of landscape ecology theory and method were discussed, and the application of landscape ecology to research on wetlands was reviewed specially, involving in the application of landscape structure principle, landscape pattern, and scale and hierarchy theory. In conclusion, landscape ecology plays an enlightening and guiding function on the comprehensive research of wetlands at multi-scales. 展开更多
关键词 WETLAND landscape ecology landscape structure landscape pattern scale and hierarchy
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Ecosystem services value of wetland in Suzhou Taihu Lake 被引量:2
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作者 GU Li-xia WU Chang-nian +3 位作者 PU Hui-min NAN Nan WU Jin-lian GUO Rong 《Ecological Economy》 2010年第4期349-355,共7页
Based on a comprehensive analysis on various classifications of natural resource values,this paper summarizes an ecological services system of constructed wetland(CW) ecosystems for the accounting of ecological econom... Based on a comprehensive analysis on various classifications of natural resource values,this paper summarizes an ecological services system of constructed wetland(CW) ecosystems for the accounting of ecological economic value.With the research,the wetland ecosystem services can be classified into six categories,that is waste treatment,food and material production,water supply,gas regulations,disturbance and water regulations,habitat and refuge provision.For decision making in terms of environmental economics for wetland construction,ecosystem services value for the wetland in Suzhou Taihu Lake National Tourist and Holiday Resort is accounted for 7,088,769 USD/yr through Environmental Economics Analysis.Ecosystem services value of waste treatment is 825,000 USD/yr,that of food and material production is 1,430 USD/yr,that of water supply is 4,752,000 USD/yr,that of gas regulation is 2,251USD/yr,that of disturbance and water regulations is 1,3721 USD/yr,and that of habitat and refuge provision value is 1,494,367 USD/yr.The ecosystem services values of a pilot constructed wetland in Suzhou are compared with those of other wetlands as a mean and of a typical human-interfered wetland in Wenzhou of China.Results show that in both finite and infinite time horizons considered,the wetland in Suzhou Taihu Lake National Tourist and Holiday Resort has the largest services value.This paper analyzes all the probability that may weaken the value of the Suzhou Taihu Wetland in order to provide some advices for the wetland protection. 展开更多
关键词 Ecosystem services value Ecosystem services Suzhou Taihu Wetland
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Driving mechanisms of nitrogen transport and transformation in lacustrine wetlands 被引量:3
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作者 ZHAO Shan ZHOU Nian Qing SHEN Xin Ping 《Science China Earth Sciences》 SCIE EI CAS CSCD 2016年第3期464-476,共13页
As an essential component of proteins and genetic material for all organisms, nitrogen(N) is one of the major limiting factors that control the dynamics, biodiversity and functioning of lacustrine wetlands, in which i... As an essential component of proteins and genetic material for all organisms, nitrogen(N) is one of the major limiting factors that control the dynamics, biodiversity and functioning of lacustrine wetlands, in which intensified N biogeochemical activities take place. Reactive N loaded into wetland ecosystems has been doubled due to various human activities, including industrial, agricultural activities and urbanization. The main driving mechanisms of N transport and transformation in lacustrine wetlands are categorized to pushing forces and pulling forces in this study. Geomorphology, wetland age, N concentrations, and temperature are the main pushing forces(passive forces); whereas water table variation, oxygen concentration, other elements availability, oxidation-reduction potential(Eh) and p H, and microorganisms are the predominant pulling forces(active forces). The direction and kinetic energy of reactions are determined by pulling forces and then are stimulated by pushing forces. These two types of forces are analyzed and discussed separately. Based on the analysis of driving mechanisms, possible solutions to wetland N pollutions are proposed at individual, regional and global scales, respectively. Additional research needs are addressed to obtain a thorough understanding of N transport and transformations in wetlands and to reduce detrimental impacts of excessive N on such fragile ecosystems. 展开更多
关键词 Nitrogen Driving mechanisms Transport and transformation Excessive loading Lacustrine wetlands
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