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1.
评估人工灌丛植被重建对干旱半干旱区陆地生态系统蒸散的影响,不仅能揭示植被变化与水文过程的耦合机理,又可为区域生态治理与水资源管理提供科学指导。该研究利用Landsat-8OLI/TIR遥感影像及气象数据等驱动SEBAL模型,反演宁夏盐池县的年内不同日期的陆表蒸散,结合目视解译选取的人工灌丛区与对照草地,评估了人工灌丛植被对陆表蒸散的影响。结果表明:1)SEBAL模型的蒸散反演精度与站点观测结果较为一致,可用于干旱半干旱区蒸散反演及空间特征研究;2)盐池县人工灌丛植被区日平均蒸散为1.20mm/d,高于对照草地1.17mm/d的日平均蒸散量,即干旱半干旱区人工种植灌木林增加了生态系统水分消耗,但不同季节和不同生物地理条件下的蒸散增强作用存在差异,蒸散增强在8月份最大,而3、4月份呈现负效应;3)人工灌丛的密度越大、植被盖度越高,对陆表蒸散的增强作用越强,特别在NDVI0.4的高盖度情况下蒸散增强作用更加明显。由此可知,在水资源紧缺的干旱半干旱区开展以灌木树种为主的植被重建需在合理的生态水文阈值范围内开展,才能构建出稳定可持续的人工生态系统。  相似文献   
2.
基于土壤水分下限的宁夏枸杞滴灌灌溉制度试验研究   总被引:1,自引:0,他引:1  
以宁杞7号枸杞为研究对象,在宁夏同心县开展2 a田间试验.设置4个关键控水期、3个控水水平共8个处理,研究枸杞不同生育期不同水分下限条件下根区土壤含水率、叶片光合生理指标、产量与品质变化;分析其耗水规律与水分利用效率,提出基于土壤水分下限的宁夏枸杞滴灌灌溉制度.结果表明:不同水分处理枸杞根区20~60 cm土层土壤含水率最大;叶片气孔导度随土壤下限升高而增大,高水分下限处理的蒸腾速率相对较大,叶片水分利用效率则相反;生育期耗水量随土壤水分下限升高而增大,2 a增幅分别为10.8%和12.8%,平均耗水量为386.6~463.2 mm,夏果期耗水量最大且差异具有统计学意义,是关键需水期.2 a均为处理S5的产量最大分别为2 208.15和2 571.30 kg/hm2,水分利用效率最高为0.39 kg/m3;水分处理对蛋白质含量影响差异不具有统计学意义,低土壤水分下限的枸杞多糖含量相对较高;全生育期分为6个灌水期,其中萌芽期灌水(春水)为375 m3/hm2;春梢生长期、花期、夏果期、秋果期的土壤质量含水率下限分别为50%θff为田间持水率),65%θf,65%θf,55%θf,而上限为95%θf;休眠期冬灌量为450 m3/hm2.  相似文献   
3.
干旱区平原水库的渗漏会抬高坝后农田地下水位,使土壤发生盐渍化,许多土地因此减产甚至弃耕。坝后设置排水沟是一种有效控制农田地下水位的措施。本研究采用排水沟调控坝后农田的地下水位,并利用HYDRUS模拟出在不同地下水位和深度的条件下土壤含水率与含盐量的变化情况,将实测数据与模拟数据相互对比,检验出模拟值的可靠度。研究结果表明:地下水位通过排水沟从1 m降到3 m,表层含盐量相差1.49~33.19 g·L~(-1),因此排水沟遏制地下水位越深,水盐运移越不明显,次生盐渍化越不容易发生,反之,则容易发生土壤盐渍化;地下水位相同时,土体种植植物可以降低含水率和含盐量,其中含水率最大变化为6.33%,含盐量仅相差0.08~4.56 g·L~(-1)左右,而且随着土层深度增加其影响的程度也逐渐减小。设置排水沟是解决坝后农田土壤盐渍化的较好方式。  相似文献   
4.
【目的】研究塔里木河上游棉区不同类型盐土CEC的分布状况及影响因素。 了解不同类型盐土土壤特性及肥力状况,为新疆南疆干旱区盐土改良利用提供理论依据。【方法】以阿拉尔绿洲草甸盐土(MeS)、沼泽盐土(MaS)、残余盐土(ReS)、洪积盐土(PrS)、棕漠林盐土(DeS)5种典型盐土为对象,研究该流域不同类型盐土阳离子交换量(CEC)的剖面分布规律,分析盐土CEC的影响因素,并利用灰色关联法对盐土CEC与土壤理化性质之间的关系进行了量化。【结果】该区盐土CEC在2.02~25.54 cmol/kg,平均值为12.39 cmol/kg,CEC随剖面深度的变化规律各类型盐土有所不同,不同类型盐土CEC大小依次为MeS> ReS > DeS > PrS > MaS。粘粒是干旱区盐土CEC的主要来源;pH、CaCO3、盐基总量(TEB)和碱化度(BSP)与盐土CEC呈极显著正相关,是盐土CEC的主要影响因素,其中CaCO3对盐土CEC的贡献不容忽视;盐土有机质(SOM)含量极低,对盐土CEC未表现出显著性影响;交换性钙饱和度(CaSP)、交换性镁饱和度(MgSP)及交换性钾饱和度(KSP)对盐土CEC有显著的抑制作用。【结论】塔里木河上游棉区不同类型盐土CEC有显著差异,不同类型盐土保肥、供肥及缓冲性能不同。pH、CaCO3、TEB和ESP是CEC主要贡献因子,SOM对盐土CEC无显著的影响。  相似文献   
5.
【目的】研究困难立地植被地上和地下部分对环境胁迫的响应,探讨植物叶、根形态对不良环境的适应策略,是逆境生理生态学研究的有效途径,可为困难立地造林及管理提供科学依据。【方法】以30年生柽柳Tamarix chinensis人工纯林为研究对象,分析其比叶面积(SLA)、细根比根面积(SRA)和比根长(SRL),并对0~60 cm不同土壤层次的全N、全P、速效K、Na、Mg、Ca、Zn、Fe、Cu等营养元素进行含量测定,研究盐碱地植物柽柳地上及地下部分形态特征及其与盐碱地土壤养分垂直分布格局的相关性。【结果】1)在晋北干旱区重度盐碱胁迫下的柽柳SLA显著高于轻度和中度胁迫(F=3.301,P=0.041);SRA在重度盐碱胁迫下高于轻度和中度胁迫,与轻度胁迫差异显著(F=0.154,P=0.015);SRL在不同盐碱胁迫等级下无显著差异(F=0.808,P=0.632),但在重度盐碱胁迫下其值明显高于轻度和中度胁迫。2)土壤全N含量表现为浅层高于深层,且重度胁迫盐碱含量明显低于轻度胁迫,全P、Cu含量在不同盐碱胁迫及不同土壤深度差异均不显著,速效K、Fe含量在不同盐碱胁迫下表现出完全不同的分布格局,Na含量在不同盐碱胁迫下差异显著,Mg、Ca、Fe含量在15~60 cm土壤表现出重度盐碱胁迫高于轻度和中度盐碱胁迫土壤,Zn含量在不同盐碱胁迫间差异不显著。3)不同的土壤营养元素对柽柳叶、根形态特征的作用机制不同,土壤速效K与柽柳SLA、SRA和SRL均呈显著正相关关系(P<0.05),Zn与柽柳SRA、SRL呈显著负相关关系(P<0.05),土壤全P和Fe含量与SRL呈显著正相关关系(P<0.05),其中以30~45 cm土壤养分含量与柽柳形态特征的关系最为密切,此土壤深度全N含量与SLA、SRA和SRL均呈显著负相关关系(P=0.038,0.019,0.006)。【结论】研究结果可为树种立地适应性评价、该区域植被恢复以及生态环境改善提供理论参考。  相似文献   
6.
The increasing shortage in water resources is a key factor affecting sustainable socio-economic development in the arid region of Northwest China(ARNC). Water shortages also affect the stability of the region's oasis ecosystem. This paper summarizes the hydrological processes and water cycle of inland river basins in the ARNC, focusing on the following aspects: the spatial-temporal features of water resources(including air water vapor resources, runoff, and glacial meltwater) and their driving forces; the characteristics of streamflow composition in the inland river basins; the characteristics and main controlling factors of baseflow in the inland rivers; and anticipated future changes in hydrological processes and water resources. The results indicate that:(1) although the runoff in most inland rivers in the ARNC showed a significant increasing trend, both the glaciated area and glacial ice reserves have been reduced in the mountains;(2) snow melt and glacier melt are extremely important hydrological processes in the ARNC, especially in the Kunlun and Tianshan mountains;(3) baseflow in the inland rivers of the ARNC is the result of climate change and human activities, with the main driving factors being the reduction in forest area and the over-exploitation and utilization of groundwater in the river basins; and(4) the contradictions among water resources, ecology and economy will further increase in the future. The findings of this study might also help strengthen the ecological, economic and social sustainable development in the study region.  相似文献   
7.
Jun ZHANG 《干旱区科学》2019,11(3):419-430
Drip irrigation can produce high rice yields with significant water savings; therefore, it is widely used in arid area water-scarce northern China. However, high-frequency irrigation of drip irrigation with low temperature well water leads to low root zone temperature and significantly reduce the rice yield compared to normal temperature water irrigated rice, for example, reservoir water. The main purpose of this paper is to investigate the effects of low soil temperature on the yield reduction of drip irrigated rice in the spike differentiation stage. The experiment set the soil temperatures at 18°C, 24°C and 30°C under two irrigation methods(flood and drip irrigation), respectively. The results showed that, at the 30°C soil temperature, drip irrigation increased total root length by 53% but reduced root water conductivity by 9% compared with flood irrigation. Drip irrigation also increased leaf abscisic acid and proline concentrations by 13% and 5%, respectively. These results indicated that drip irrigated rice was under mild water stress. In the 18°C soil temperature, drip irrigation reduced hydraulic conductivity by 58%, leaf water potential by 40% and leaf net photosynthesis by 25% compared with flood irrigation. The starch concentration in male gametes was also 30% less in the drip irrigation treatment than in the flood irrigation treatment at soil temperature 18°C. Therefore, the main reason for the yield reduction of drip irrigated rice was that the low temperature aggravates the physiological drought of rice and leads to the decrease of starch content in male gametes and low pollination fertilization rate. Low temperature aggravates physiological water deficit in drip irrigated rice and leads to lower starch content in male gametes and low pollination fertilization rate, which is the main reason for the reduced yield of drip irrigated rice. Overall, the results indicated that the low soil temperatures aggravated the water stress that rice was under in the drip irrigated environment, causing declines both in the starch content of male gametes and in pollination rate. Low temperature will ultimately affect the rice yield under drip irrigation.  相似文献   
8.
Long MA 《干旱区科学》2019,11(2):192-207
An abrupt temperature change and a warming hiatus have strongly influenced the global climate.This study focused on these changes in Inner Mongolia, China. This study used the central clustering method, Mann-Kendall mutation test and other methods to explore the abrupt temperature change and warming hiatus in three different temperature zones of the study region based on average annual data series.Among the temperature metrics investigated, average minimum temperature(Tnav) shifted the earliest,followed by average temperature(Tnv) and average maximum temperature(Txav). The latest change was observed in summer(1990 s), whereas the earliest was observed in winter(1970 s). Before and after the abrupt temperature change, Tnav fluctuated considerably, whereas there was only a slight change in Txav.Before and after the abrupt temperature change, the winter temperature changed more dramatically than the summer temperature. Before the abrupt temperature change, Tnav in the central region(0.322°C/10 a)and west region(0.48°C/10 a) contributed the most to the increasing temperatures. After the abrupt temperature change, Tnav in winter in the central region(0.519°C/10 a) and in autumn in the west region(0.729°C/10 a) contributed the most to the temperature increases. Overall, in the years in which temperature shifts occurred early, a warming hiatus also appeared early. The three temperature metrics in spring(1991)in the east region were the first to exhibit a warming hiatus. In the east region, Txav displayed the lowest rate of increase(0.412°C/a) in the period after the abrupt temperature change and before the warming hiatus,and the highest rate of increase after the warming hiatus.  相似文献   
9.
以甘肃灌区和旱作区苜蓿(Medicago sativa)地土壤为研究对象,对不同地域的苜蓿地土壤全氮(TSN)、有机碳(SOC)、容重、含水量进行测定,结果表明:灌区SOC含量均高于旱作区,在90~100cm土层其含量与旱作区差值最大,达3.41g/kg。在0~100cm灌区SOC含量为6.81~12.49g/kg,均值为9.25g/kg,比旱作区高22%。旱作区TSN含量随土壤深度的增加而减小,含量在(1.03±0.01)~(0.44±0.04)g/kg。在0~30cm灌区TSN含量相对较稳定,差异不显著(P0.05),在30~60cm剖面全氮含量急剧下降,70~100cm含量变化较为稳定,TSN含量维持在(0.66±0.01)g/kg。旱作苜蓿地土壤含水量在0~60cm变化不显著(P0.05),0~100cm土壤含水量均值为(14.437±1.124)%,灌区苜蓿地土壤含水量均值为(16.025±2.029)%。随着土壤深度的增加,旱作区和灌区苜蓿地土壤容重均呈现依次增大的分布规律,旱作区最大值为(1.421±0.034)g/cm,比最小值高出17.5%,灌区最大值(1.332±0.017)g/cm,比最小值高出11.3%.  相似文献   
10.
通过多年的生产实践和科学研究,总结出从树种选择、整地、造林、抚育、施肥到病虫害防治等一整套可行的采伐迹地更新造林技术,并提出9种可行的造林设计模式。对于干旱沙区采伐迹地更新造林技术有一定参考意义。  相似文献   
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