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61.
以泾惠渠灌区为例,针对井渠结合灌区地下水超采及地下水位上升而导致的农田灌溉水环境等问题,从水位调控水量的角度出发,提出了基于地下水位合理埋深的水资源调控模式。在确定不同水文地质单元和不同植被类型条件下地下水位合理埋深上下限的基础上,结合PSO-RBF神经网络对地下水位埋深预测的结果,设计了基本、节水两种水资源联合方案,对不同保证率下的灌区水资源进行了联合调控。结果表明:泾惠渠灌区地下水位合理埋深上限介于1.76~3.50m,下限介于8.7~25.0m,不同水文地质单元、植被类型的水位埋深上下限值差异较大;水资源联合调控时,局部地区出现地下水超采,需加强节水灌溉和多水源的联合调控。  相似文献   
62.
地下水埋深对冬小麦和春玉米产量及水分生产效率的影响   总被引:3,自引:0,他引:3  
利用排水式蒸渗仪,通过设置6种地下水位控制处理(地下水位埋深分别为0.5、1.0、1.5、2.0、2.5 m和3.0 m)试验,探讨了太原盆地不同地下水埋深对冬小麦和春玉米生长指标、产量、产量构成因素及水分生产效率(WUE)的影响.结果表明,地下水埋深对冬小麦和春玉米千粒重的影响较小,对冬小麦干.物质重影响显著(P=0...  相似文献   
63.
沙米(Agriophyllum squarrosum)、沙蒿(Artemisia sphaerocephala)和油蒿(Artemisia ordosica)分别是腾格里沙漠南缘不同植被演替阶段的3个优势物种,2009年5~6月在大田盆栽条件下,设计了2种土壤类型和0 cm,1 cm,2 cm,3 cm,4 cm,6 ...  相似文献   
64.
以塔里木河下游输水河畔的植被覆盖度和地下水埋深为研究对象,建立遥感反演模型获取研究区植被覆盖度的空间分布,建立地下水数值模型模拟与覆盖度同时段的埋深空间分布,采用空间分析方法对覆盖度和埋深的空间分布数据进行分析,获取不同埋深区间所对应的植被覆盖度,并得出以下结论:研究区植被覆盖度在地下水0~20m的埋深区间上呈阶梯状分...  相似文献   
65.
利用地统计学方法定量研究了额济纳绿洲地下水位埋深的空间异质性.结果表明:额济纳绿洲地下水位埋深分布有较大的空间异质性,地下水位埋深的理论模型为球体模型;额济纳绿洲地下水位埋深主要受结构性因子的影响;地下水位埋深的变程在22.6km左右.地下水位埋深的空间分布总体上表现为从南到北,从西向东逐渐增大的分布格局.局部分布上,...  相似文献   
66.
Denitrification has the potential to remove excess nitrogen from groundwater passing through riparian buffers, thus improving water quality downstream. In regions with markedly seasonal precipitation, transient stream flow events may be important in saturating adjacent floodplain soils and intermittently providing the anaerobic conditions necessary for denitrification to occur. In two experiments we characterised the denitrification potential of soils from two contrasting floodplains that experience intermittent saturation. We quantified under controlled laboratory conditions: 1) potential rates of denitrification in these soils with depth and over time, for a typical period of saturation; and 2) the influences on rates of nitrate and organic carbon. Treatments differed between experiments, but in each case soil-water slurries were incubated anaerobically with differing amendments of organic carbon and nitrate; denitrification rates were measured at selected time intervals by the acetylene-block technique; and slurry filtrates were analysed for various chemical constituents. In the first experiment (ephemeral tributary), denitrification was evident in soils from both depths (0-0.3 m; 0.3-1.1 m) within hours of saturation. Before Day 2, mean denitrification rates at each depth were generally comparable, irrespective of added substrates; mean rates (Days 0 and 1) were 5.2 ± 0.3 mg N kg dry soil−1 day−1 (0-0.3 m) and 1.6 ± 0.2 mg N kg dry soil−1 day−1 (0.3-1.1 m). Rates generally peaked on Days 2 or 3. The availability of labile organic carbon was a major constraint on denitrification in these soils. Acetate addition greatly increased rates, reaching a maximum in ephemeral floodplain soils of 17.4 ± 1.8 mg N kg dry soil−1 day−1 on Day 2: in one deep-soil treatment (low nitrate) this overcame differences in rates observed with depth when acetate was not added, although the rate increase in the other deep-soil treatment (high nitrate) was significantly less (P ≤ 0.01). Without acetate, peak denitrification rates in this experiment were 6.9 ± 0.4 and 2.8 ± 0.2 mg N kg dry soil−1 day−1 in surface and deep soils, respectively. Differences in rates were observed with depth on all occasions, despite similar initial concentrations of dissolved organic carbon (DOC) at both depths. Levels of substrate addition in the second experiment (perennial stream) more closely reflected natural conditions at the site. Mean denitrification rates were consistently much higher in surface soil (P ≤ 0.001), while the source of water used in the slurries (surface water or groundwater from the site) had little effect on rates at any depth. Mean rates when all treatments retained nitrate were: 4.5 ± 0.3 mg N kg dry soil−1 day−1 (0-0.3 m depth); 0.8 ± 0.3 mg N kg dry soil−1 day−1 (0.3-1.0 m); and 0.6 ± 0.1 mg N kg dry soil−1 day−1 (1.8-3.5 m). For comparable treatments and soil depths, denitrification potentials at both sites were similar, apart from higher initial rates in the ephemeral floodplain soils, probably associated with their higher DOC content and possibly also their history of more frequent saturation. The rapid onset of denitrification and the rates measured in these soils suggest there may be considerable potential for nitrate removal from groundwater in these floodplain environments during relatively short periods of saturation.  相似文献   
67.
不同施肥措施对白土腐殖质组成的影响   总被引:3,自引:0,他引:3  
吴萍萍  王家嘉  李录久 《土壤》2016,48(1):76-81
以白土稻区4年大田定位试验为基础,设置2种翻耕深度(10 cm、20 cm,分别标记为T10、T20)和4种施肥措施(单施化肥、化肥+畜禽粪肥、化肥+秸秆还田、化肥+绿肥,分别标记为F、F+M、F+S、F+G),通过腐殖质组成修改法分别提取表层土壤水溶性物质、胡敏酸、富里酸和胡敏素,研究不同施肥措施对白土腐殖质各组分碳含量的影响。结果表明:单施化肥措施下,翻耕20 cm处理(T20+F)土壤总有机碳和腐殖质各组分碳含量均低于翻耕10 cm处理(T10+F),但差异未达显著水平。在翻耕20 cm的基础上增施有机肥能显著提高土壤总有机碳和腐殖质各组分碳含量,增施畜禽粪(T20+F+M)、秸秆还田(T20+F+S)和增施绿肥(T20+F+G)3处理的土壤总有机碳、胡敏酸、富里酸和水溶性物质碳含量较T20+F处理分别提高14.57%~30.64%、10.36%~30.57%、0.74%~12.31%和14.25%~26.80%。增施有机肥显著提高胡敏素碳含量,T20+F+M、T20+F+S和T20+F+G处理较T20+F处理提高18.87%~35.78%。4年不同翻耕与施肥措施对白土腐殖质性质未产生显著影响。增施有机肥能一定程度上提高土壤PQ值、胡富比、E4/E6值和色调系数。相关性分析表明,胡敏素、胡敏酸、富里酸碳含量与总有机碳含量间均存在显著或极显著正相关,与水溶性物质碳含量间无明显相关性。  相似文献   
68.
Soil quality is a major concern in the management of urban parks. In this study, the soils at 0–3, 3–13, and 13–23 cm depths were sampled from six urban parks, differing in reconstruction intensity(mainly changes made during conversion of natural forests into parklands), in the Pearl River Delta, China to determine how reconstruction intensity influenced the extent of acidification and heavy metal levels in the soils of urban parks in a humid subtropical environment. High reconstruction intensity(HRI) was practiced in three parks and low reconstruction intensity(LRI) in three other parks. The LRI soils were strongly to extremely acidic(with low exchangeable Ca, Mg, and K concentrations) while the HRI soils were much less acidic. Both total and extractable concentrations of soil heavy metals were related to the specific management practices and age of the park, but did not differ significantly between LRI and HRI parks or among soil depths. Soil p H was significantly related to soil exchangeable cation concentrations and base saturation but was weakly related or unrelated to soil heavy metal levels. Our results suggest that high intensity but not low intensity reconstruction significantly reduces the extent of soil acidification in the urban parks in a humid subtropical environment.  相似文献   
69.
We measured methane (CH4) emissions in the Luanhaizi wetland, a typical alpine wetland on the Qinghai-Tibetan Plateau, China, during the plant growth season (early July to mid-September) in 2002. Our aim was to quantify the spatial and temporal variation of CH4 flux and to elucidate key factors in this variation. Static chamber measurements of CH4 flux were made in four vegetation zones along a gradient of water depth. There were three emergent-plant zones (Hippuris-dominated; Scirpus-dominated; and Carex-dominated) and one submerged-plant zone (Potamogeton-dominated). The smallest CH4 flux (seasonal mean=33.1 mg CH4 m−2 d−1) was observed in the Potamogeton-dominated zone, which occupied about 74% of the total area of the wetland. The greatest CH4 flux (seasonal mean=214 mg CH4 m−2 d−1) was observed in the Hippuris-dominated zone, in the second-deepest water area. CH4 flux from three zones (excluding the Carex-dominated zone) showed a marked diurnal change and decreased dramatically under dark conditions. Light intensity had a major influence on the temporal variation in CH4 flux, at least in three of the zones. Methane fluxes from all zones increased during the growing season with increasing aboveground biomass. CH4 flux from the Scirpus-dominated zone was significantly lower than in the other emergent-plant zones despite the large biomass, because the root and rhizome intake ports for CH4 transport in the dominant species were distributed in shallower and more oxidative soil than occupied in the other zones. Spatial and temporal variation in CH4 flux from the alpine wetland was determined by the vegetation zone. Among the dominant species in each zone, there were variations in the density and biomass of shoots, gas-transport system, and root-rhizome architecture. The CH4 flux from a typical alpine wetland on the Qinghai-Tibetan Plateau was as high as those of other boreal and alpine wetlands.  相似文献   
70.
泥石流与主河交汇的试验研究   总被引:3,自引:1,他引:3  
泥石流入汇主河属于复杂的非牛顿流体与牛顿流体汇流问题,由于其机理的复杂性,一直缺少这方面的研究。本文在试验的基础上,分析了泥石流入汇主河后,汇口附近各水力参数的变化规律。探讨了泥石流入汇后下游水位相对壅高与流量比以及交汇角的关系,得出相对壅水高度随流量比及交汇角的增大而增大的结论。分析了交汇口附近淤积量及淤积率与流量及流量比的关系。30°,60°和120°交汇角情况下,淤积量总体趋势是随支流流量及流量比的增大而增大,淤积率随总流量增大而减小,在主支流量相当时出现最大值;90°交汇时,淤积量随支流流量及流量比的增大而减小,淤积率随总流量增大而增大,在主支流量相当时出现最小值。  相似文献   
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