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峰丛洼地坡面流径流过程——以丫吉试验场为例   总被引:1,自引:0,他引:1  
选取裸露型和土壤植被覆盖型两种峰丛洼地地貌结构.通过降雨量、pH、电导率(Ec)、CO2分压和流量的过程线来分析降雨中详细的产流过程.裸露性坡地因包气带结构简单仅存在局部的超渗产流和表层岩溶带的回归流.水化学性质较稳定;有土壤植被覆盖的坡地的产流过程可以分为3个阶段:补偿阶段(可出现超渗产流)、饱和径流阶段、稳定阶段,补偿阶段仅在降雨强度大于入渗强度时可产生坡面流,饱和径流阶段坡面流流量与降雨强度成正比.稳定阶段坡面流流量趋于稳定,不随雨强的变化而变化,坡面流的水化学性质变化剧烈,pH、电导率(Ec)、CO2分压基本上同步变化,水漫(T)在降雨前期变化规律不明显.后期与pH、Ec等呈相反变化.  相似文献   
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柳州岩溶地下河水体有机氯农药分布特征   总被引:6,自引:3,他引:3  
采用气相色谱(配ECD检测器)对柳州鸡喇和龙寨两条岩溶地下河不同位置水体中18种有机氯农药(OCPs)组分进行分析。结果表明,除异狄氏剂醛外,其余17种OCPs均有不同程度检出,OCPs浓度变化范围为107.68~1101.55ng/L,均值为532.515ng/L。OCPs主要组分为:α-HCH、β-HCH、γ-HCH、δ-HCH、p,p'-DDE、o,p'-DDT、p,p'-DDD、p,p'-DDT、六氯苯、七氯、艾氏剂。其中DDTs和HCHs含量最高,二者之和占到总OCPs的75.8%~96%。对其污染源进行分析,发现地下河水体中DDTs主要源自土壤。HCHs来源相对复杂,可能源于工业品或者长距离大气运输,也可能是近期有林丹的输入使其浓度增高。与国内外各水体相比,本次研究的两条岩溶地下河有机氯农药含量相对较高。   相似文献   
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In a 10-day aquarium experiment,this investigation examines macrophyte restoration in eutrophic Lake Taihu,the physiological effects of different plant biomass levels and of increasing natural cyanobacterial concentrations on a submerged macrophyte,Vallisneria asiatica. Cyanobacterial stress suppressed the superoxide dismutase(SOD) activity of the plant's leaves and induced the catalase(CAT) and peroxidase(POD) activities of its roots. The soluble protein content in V. asiatica decreased with an increase in natural cyanobacterial concentrations,whereas the malonaldehyde(MDA) increased significantly at chlorophylla(Chl a) concentrations of 222 and 262 μg/L in water. V. asiatica adapted to the stress caused by cyanobacterial concentrations by adjusting its antioxidant defense system to remove the excessive reactive oxygen species when the algal Chl a concentration was 109 μg/L. Additionally,high biomass of V. asiatica(2 222 g FW/m 2) can inhibit the reproduction of cyanobacteria more significantly than low biomass(1 111 g FW/m2). High biomass of V. asiatica increased the oxidative stress in an individual plant when the initial Chl a concentration in the water reached 222 and 262 μg/L,as expressed by the increased MDA in leaves,compared with low biomass of V. asiatica. This provides a basis for controlling cyanobacterial concentrations and V. asiatica biomass for the recovery of V. asiatica in eutrophic Lake Taihu.  相似文献   
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