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地震、台风对集水区景观生态的影响(英文) 被引量:5
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作者 张俊斌 《资源科学》 CSSCI CSCD 北大核心 2006年第4期19-24,共6页
由于人类的或者自然的干扰改变,景观在不同异质性土地由各种大小、形状和空间的关系中重复的相互作用,形成生态系统的组成。评估景观的转变能够理解由干扰影响生态系统的过程。因此,使用适当地图影像技术和生态定量的方法在不同干扰情... 由于人类的或者自然的干扰改变,景观在不同异质性土地由各种大小、形状和空间的关系中重复的相互作用,形成生态系统的组成。评估景观的转变能够理解由干扰影响生态系统的过程。因此,使用适当地图影像技术和生态定量的方法在不同干扰情形下评价估景观之变化与趋势就显得十分重要。计算景观生态指标及不同土地利用面积之变化,可以更了解此区域生态系统的特征与内涵。试验研究地区之陈有兰溪集水区,位于台湾的中央,是台湾唯一不靠海之县市,同时也是历年地震和台风等灾害受创最严重之地区,也是土壤冲蚀(土、泥石流)的敏感性地区。此研究着重于自然灾害如何影响景观型态及其变迁模式与未来研究之对策与方向。本研究透过遥感探测技术,选取不同时期之台风和地震干扰前后之景观变迁情形,经由景观生态之计算指标与多变量统计,来了解这些天然灾害对集水区生态之影响与河川上中下游,其景观型态之变化差异。希望藉由此评估景观变迁之模式,提供有关集水区生态经营与景观健康度之合理监测的参考依据。 展开更多
关键词 地震 台风 景观健康度 集水区监测
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Spatial and Temporal Analyses of Water Quality in the Dhrabi Watershed of Pakistan: Issues and Options
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作者 Muhammad Ashraf Theib Y. Oweis +2 位作者 Abdur Razzaq Bashir Hussain Abdul Majid 《Journal of Environmental Science and Engineering(A)》 2012年第3期329-340,共12页
Monitoring water quality is important for maintaining a healthy watershed, but it is mostly ignored in watershed planning and management. In the Dhrabi watershed of Pakistan, the quality of surface water was monitored... Monitoring water quality is important for maintaining a healthy watershed, but it is mostly ignored in watershed planning and management. In the Dhrabi watershed of Pakistan, the quality of surface water was monitored at 16 locations to assess suitability for irrigation over regular intervals during the period 2007-2010. Similarly, groundwater quality was monitored at 10 locations for drinking and irrigation purposes. There was high spatial and temporal variability in surface water quality. Electrical conductivity (EC) and residual sodium carbonate (RSC) either exceeded or fluctuated around permissible limits at most of the locations throughout the monitoring period. Therefore, the use of such water for irrigation needs special care, otherwise its prolonged use may pose soil salinity and sodicity problems. The trend of EC and RSC for groundwater was similar to that for surface water. Exchangeable Mg2+ exceeded permissible limits for most of the surface water and groundwater samples. In addition, microbial analysis of groundwater revealed that only two out of eight monitoring points during August 2009, none out of eight points during February 2010, and one out of nine points during June 2010 provided water fit for drinking. Soil samples were collected from the catchment areas of the major contributing streams and from the beds of the Kallar Kahar Lake and the Dhrabi Reservoir. The soil samples from the catchments showed high salinity and sodicity that may be the cause of high salinity and sodicity in the streams. The highest EC, sodium adsorption ratio (SAP,) and exchangeable sodium percentage (ESP) in the bed samples from the Kallar Kahar Lake were about 43 dS/m, 56, and 45, respectively. These high values were due to the saline water brought into the lake with the runoff. 展开更多
关键词 Surface water quality groundwater quality drinking water quality wastewater.
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