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1.
本文重点总结了我国在宁夏中卫腾格里沙漠中,平整流动沙丘引黄淤灌改良流沙地及在流沙地铺设隔水层的试验结果。试验表明,经引黄淤灌15年后,可沉积淤泥厚达22厘米。通过施肥、种植农林植物等措施,使原来单相流沙改良成为有层次的耕作土壤。经淤灌并加薄膜塑料隔水层后,所种植的农林作物增产效果显著,与对照相比,黄豆增产277.8%,玉米增产238.4%。一年生沙冬青苗高生长增加165%,地茎粗增加200%,二年生侧柏幼苗高生长增加163%,地茎粗增加79%。  相似文献   

2.
The Horqin Sandy Land of northeastern China was originally a grassland with plenty of water and lush vegetation dominated by palatable grass species along with sparsely scattered woody species. However, it has experienced severe desertification in recent decades due to its fragile ecology together with inappropriate human activities. Currently, the landscape of the Horqin Sandy Land is dominated by irrigated croplands and sand dunes with different degrees of vegetation cover, as the region has become the most important part of the semiarid agro-pastoral ecotone of northern China. In this study, we compared soil physical and chemical properties under different land-use and cover types (irrigated cropland, rainfed cropland, sandy grassland, fixed dunes, and mobile dunes). We found that soil particle size distribution; organic C, total N, and total mineral element, microelement, and available microelement and nutrient contents; pH; CEC; and bulk density differed significantly among the land-use and cover types. In general, soil quality was highest in the cropland, intermediate in the sandy grassland, and lowest in the dunes. The most important soil quality attribute, soil organic carbon (SOC) storage, decreased in the following order: irrigated cropland (5,699 g/m2) > sandy grassland (3,390 g/m2) > rainfed cropland (2,411 g/m2) > fixed dunes (821 g/m2) > mobile dunes (463 g/m2). SOC was significantly positively correlated with a large proportion of the other soil physico-chemical parameters. Our results suggest that the key issue in restoration of the degraded soils will be to increase SOC storage, which would also create a high potential for sequestering soil C in desertified areas of the Horqin Sandy Land.  相似文献   

3.
秸秆覆盖下的夏玉米蒸散、水分利用效率和作物系数的变化   总被引:29,自引:0,他引:29  
农业用水占华北水资源的70%以上,提高农业用水的效率对华北水资源安全具有重要意义。在节水农业研究中,利用农艺节水提高农田水分利用效率是节水农业的重要组成部分,其中减少农田无效棵间蒸发耗水和优化供水制度是主要的农艺节水措施。夏玉米是华北太行山山前平原的主要作物之一,一般在冬小麦收获前的5~7天套种在其中,以延长夏玉米的生育期。随着联合收割机的广泛应用,冬小麦收获后的秸秆直接覆盖夏玉米,对夏玉米的农田蒸散特别是苗期的蒸散产生影响;夏玉米生长在6~9月的雨季,一般年份降水能够满足夏玉米的需水要求,但夏季降水的分布变异较大,再加上近6年来的夏季干旱,使灌水对夏玉米的高产至关重要。为了提高夏玉米的农田水分利用效率,本研究的目的是建立秸秆覆盖下的夏玉米优化供水制度和研究秸秆覆盖对减少棵间无效耗水的影响及秸秆覆盖下的夏玉米作物系数的变化,为制定秸秆覆盖下的夏玉米优化供水制度提供依据。2年的实验结果显示,秸秆覆盖下的夏玉米产量在8000kg/ha,总蒸散量在390mm,水分利用效率在2.2kg/m3。干旱年份,夏玉米在灌四水的条件下产量最高,再增加灌水量,产量减少。水分利用效率随着灌水量的增加有所递减。  相似文献   

4.
Analyses of desertified land and land use change in Naiman County of Inner-Mongolia showed that there was a fluctuated in-crease of rain-fed cropland in the period from 1951 to 1960, then decreased until the middle of the 1990's, then increased again, while irrigated cropland consistently increased. The woodland and build-up land consistently increased while grassland area de-creased. The area of water body increased from 1975 to 1995 and then decreased while river beach decreased. Wetland change fluctuated with a maximum of 303.53km2 in 1995 and a minimum of 62.08 km2 in 2002. Invasion of cropland into river beach does not only change land coverage on the beach, but also the hydrological process of the river systems and deeply influence wa-ter availability. The correlation between cropland and underground water table is negative and significant. Increase of irrigated cropland is the primary cause of water availability reduction. Water table reduction is negatively correlated to cropland. The total desertified land has decreased since 1975. A rapid increase occurred before 1959, but it is difficult to assess the change of deserti-fication due to lack of data from 1959 to 1975. Changes of different types of desertified lands were different. There is no signifi-cant correlation between land use and different types of desertified land, but there is a significant negative correlation between woodland and total desertified land. The correlation between grassland and total desertified land is positive and significant. There is a significant correlation between different land cover and key factors such as water body and annual precipitation, river beach and runoff, area of shifting dune and annual precipitation, and cropland and underground water table. Desertification reversion in Naiman County is fragile and will be even much more fragile due to population growth, rapid land use and climate change. This will lead to continued invasion of irrigated cropland into more fragile ecosystems and reduction of water availability.  相似文献   

5.
In irrigated agricultural landscapes, land-use conversion may have landscape-level social, hydrological, and ecological effects. We used geographic information systems (GIS) and interviews to analyze development effects on irrigation in the Henry's Fork Watershed, Idaho. Farmers developed irrigation there in the 19th century, and incidental recharge from canal seepage and flood irrigation raised groundwater levels and expanded wetlands. Cohesive culture in agricultural communities sustained irrigation systems until amenity-driven demographic shifts beginning in the 1970s led to development approved by local governments with land-use planning but no water-management authority. Although only 5% of irrigated land has been converted, development has fragmented irrigated landscapes and made canal-system operation more difficult, potentially reducing groundwater levels, wetland extent, and return flows critical to downstream irrigators and fish and wildlife. We discuss future scenarios, highlighting the need for increased communication among local and state governments regarding land use and water management in irrigated landscapes across the West.  相似文献   

6.
Soil moisture is a critical state affecting a variety of land surface and subsurface processes. We report investigation results of the factors controlling vertical variation of soil moisture and sand transport rate of three types of dunes on the southeastern margin of the Mu Us Sandy Land. Samples were taken from holes drilled to a depth of 4 m at different topographic sites on the dunes, and were analyzed for soil moisture, grain-size distribution and surface sediment discharge. The results show that: (1) The average soil moisture varies in different types of dunes, with the following sequences ordered from highest to lowest: in the shrubs-covered dunes and the trees-covered dunes the sequence is from inter-dunes lowland to windward slope to leeward slope. The average moisture in the bare-migratory sand dunes is sequenced from inter-dunes lowland to leeward slope to windward slope. (2) Vegetation form and surface coverage affect the range of soil moisture of different types of dunes in the same topographic position. The coefficient of variation of soil moisture for shrubs-covered dunes is higher than that of other types of dune. (3) The effect of shrubs on dune soil moisture is explained in terms of the greater ability of shrubs to trap fine-grained atmospheric dust and hold moisture. (4) The estimated sand transport rates over sand dunes with sparse shrubs are less than those over bare-migratory dunes or sand dunes with sparse trees, indicating that shrubs are more effective in inhibiting wind erosion in the sandy land area.  相似文献   

7.
Given steadily increasing federal expenditures to manage surplus crop production, it would seem to make economic and environmental sense to concentrate production on the best acreage and to retire marginal crop acreage to alternate uses. A major obstacle constraining adoption and implementation of cropland retirement programs in the past has been the fear that cropland retirement threatens the viability of rural communities. Regression of change in population and retail establishments on changes in farm structure, nonfarm employment, and agricultural land-use in the rural Southern Plains between 1930 and 1970 provides only weak evidence to support this fear. In fact, short-term cropland idling under post-1960 price-support programs appears to pose more of a threat to rural communities than does cropland retirement.  相似文献   

8.
Given steadily increasing federal expenditures to manage surplus crop production, it would seem to make economic and environmental sense to concentrate production on the best acreage and to retire marginal crop acreage to alternate uses. A major obstacle constraining adoption and implementation of cropland retirement programs in the past has been the fear that cropland retirement threatens the viability of rural communities. Regression of change in population and retail establishments on changes in farm structure, nonfarm employment, and agricultural land-use in the rural Southern Plains between 1930 and 1970 provides only weak evidence to support this fear. In fact, short-term cropland idling under post-1960 price-support programs appears to pose more of a threat to rural communities than does cropland retirement.  相似文献   

9.
科尔沁沙地农田玉米耗水规律研究   总被引:12,自引:5,他引:7  
首先采用波文比-能量平衡法分析了科尔沁沙地农田玉米(Zeamays L.)不同发育阶段晴天的能量分配特征,在此基础上估算了玉米的蒸散量,并对估算结果和蒸渗仪测定结果进行比较,最后运用作物蒸散量和参考作物蒸散量计算了玉米的作物系数。结果表明:①在玉米的整个生长过程中,能量交换以水分蒸散耗热为主;②根据试验年份的降雨分布情况,该地区的自然降水不能满足玉米对水分需求,玉米各生育阶段水分亏缺比较严重;③科尔沁地区玉米4个生长阶段(苗期、营养期、生殖期、成熟期)的作物系数分别为0.52、0.90、1.13和0.64;④波文比能量平衡法可以较准确的估算玉米农田晴天时的蒸散量。  相似文献   

10.
土层厚度对紫色土坡地生产力的影响   总被引:12,自引:0,他引:12  
通过紫色土坡地土层厚度的调查与不同土层厚度的小区对比试验,研究紫色土薄层坡地的生产力特性. 结果表明,约73%的紫色土坡耕地土层厚度为20-60 cm.土层厚度是紫色土生产力的基本限制条件.土层越薄, 作物株高、生物量和产量愈低,生产力愈低;土层越厚,生物量、产量愈高,生产力愈高,土层厚度的影响在玉米季尤 为突出,20 cm、40 cm小区夏玉米产量仅为60 cm小区的50%、74%,为80 cm小区的28%、40%,100 cm小区的23%、34%.当土壤厚度超过60 cm,小麦、玉米的株高、生物量及根重差异不显著,而土壤蓄水可抵御紫色丘陵区连续20 d的夏旱,因此,可初步判定60 cm土层为紫色土生产力临界土层.60cm以上厚度的紫色土可维持基本稳定的生产力水平.  相似文献   

11.
塔里木河下游地区滴灌沙枣防护林地土壤盐分分布特征   总被引:4,自引:0,他引:4  
赵新风  王炜  张涛  白元  徐海量 《中国沙漠》2012,32(3):763-770
为了研究不同滴灌措施对极端干旱区防护林土壤盐分的淋洗作用,以沙枣(Elaeagnus angustifolia)防护林作为研究对象,对塔里木河下游喀拉米吉绿洲沙枣防护林开展了灌溉与不灌溉、不同滴头距离、不同滴灌年限处理的试验。结果表明:①不灌溉林地土壤盐分含量与流动沙丘相似,流动沙丘土壤盐分分布的空间异质性大于不灌溉林地。滴灌林地土壤含盐量低于不灌溉林地。②1.5 m滴头距离处理与其他处理相比压盐碱效果显著(P<0.01)。1.5 m与3 m滴头距离处理在50 cm土体中含盐量差异达极显著水平(P<0.01),前者比流动沙丘低30.5%~32.7%、后者比流动沙丘高17.1%~13.3%。与3 m滴头距离处理相比,1.5 m滴头距离处理产生水盐运移的“互作”影响,盐峰下移。③滴灌后的第1、2、3年,林地的土壤盐分分别下降至30 cm、50 cm和70 cm以下,基本对沙枣根系生长没有影响。随着滴灌次数增加,根系生物量逐渐增大,根系附近土壤盐分逐渐减少。滴灌能使防护林的根系分布上移,大部分在10~65 cm土层内,土层越深,林木的根系越少。④灌水季节末期,不同林龄的防护林在120 cm土体的含盐量表现为:1 a林>2 a林>6 a林,说明滴灌对林龄大的防护林淋洗效果更为明显;非灌溉季节里,防护林的林龄越大,其土壤盐分表聚现象越明显。  相似文献   

12.
中国粮食生产的综合影响因素分析   总被引:18,自引:1,他引:17  
采用模型模拟的方式, 根据中国社会发展规划, 将未来社会经济发展情景与区域气候模型、水资源模型和作物模型相连接, 综合评估和分析未来中国的粮食生产状况, 以期为宏观决策提供科学参考。结果表明, ①气候变化将影响未来三大作物单产, 如果不考虑 CO2 肥效作用, 未来雨养作物单产将受到更大冲击; 当灌溉条件保障后, 水稻受到冲击更大, 单产降低最多, 尤其是 A2 情景。如果考虑 CO2 肥效作用, 未来玉米平均单产变化不大, 小麦单产明显增加, 尤其是雨养小麦, 水稻单产也有所增加。②未来气候变化、水资源、社会经济发展将影响中国三大作物的需水量和农业供水量, 导致水稻、灌溉玉米和小麦的播种面积下降, 而雨养小麦和玉米的播种面积上升。③未来气候变化、 CO2 肥效、水资源和土地利用变化对粮食生产的影响较为复杂, 依情景和时段的不同而不同。农业可用水资源对粮食总产的影响最不利, 致使三大作物粮食总产量明显降低, 成为未来粮食生产的主要限制因素, 尤其是水稻生产; 土地利用对总产的负面影响最小; 气候变化和 CO2 的相互作用可使总量少许增加。未来各情景下水稻受到冲击最大, 而小麦和玉米则表现为不同程度的增产。  相似文献   

13.
《自然地理学》2013,34(1):78-96
Soil erosion has been recognized as one of the major forms of human-induced soil degradation. Due to land use changes in Iran, erosion has increased 800% between 1951 and 2002, calling for urgent action. But erosion research and policy development are hampered by a lack of information on the underlying factors controlling erosion. Soil types vary in their inherent susceptibility to erosion; but, like most countries, Iran lacks a network of field plots where erodibility is measured. A proxy for erodibility based on existing data and supplemented by an easily measured minimum data set is therefore needed. In this study, we use geological mapping and cluster, principal component, and factor analysis to group soils in the Taleghan Drainage Basin in Iran and subsequently determine their erodibility. First, a geological map of the area was prepared by photogeological methods and on-the-ground verification. Then, three soil profiles were investigated within similar landform units of each geological formation, and soil samples were taken. Physical and chemical properties that might impact soil erodibility (soil texture, pH, electrical conductivity, CaCO3, and soil organic matter) were used to create a matrix of soil properties and parent material. Application of cluster analysis and factor analysis to the data allowed identification of three geological (parent material) clusters. To investigate the mutual effect of land use and parent material on soil erodibility, a soil erodibility factor was obtained for three land use types in each cluster: rangeland, cropland (irrigated), and dry-land farming (nonirrigated). Geological cluster 1, consisting of marl, gypsum, and gypsiferous mudstone, was the most erodible; geological cluster 2, consisting of recent alluvium, alluvial fan, and landslip deposits, was of intermediate erodibility; and geological cluster 3, consisting of igneous rocks, dolomite, and conglomerate, was the least erodible. Within each geological cluster, dry-land farming was the most erodible, cropland was medium erodible, and rangeland was least erodible. The study suggests that geological and land use maps provide a useful framework for assessing soil erodibility. This work can guide future soil erosion studies and direct soil conservation policy to areas most susceptible to erosion.  相似文献   

14.
三工河流域农户灌溉效率及影响因素   总被引:2,自引:0,他引:2  
通过三工河流域农户访谈和问卷调查,基于DEA方法,从作物类型和地域空间两方面评价了农户灌溉效率,利用Tobit 模型探讨了农户灌溉效率差异产生的影响因素及不同因素对灌溉效率的作用程度.研究结果显示:①不同作物类型的灌溉效率不同,平均灌溉效率的大小依次为棉花(0.95)>葡萄(0.89)>葵花(0.88)>打瓜葫芦(0.80)>玉米(0.78)>小麦(0.72).②不同地域空间的灌溉效率具有差异,同种作物的平均灌溉效率在兵团与地方间差异显著,兵团略大于地方;上、中、下游进行比较,上游与中下游作物平均灌溉效率差异显著,下游>中游>上游.③灌溉方式、作物类型、收入、灌水量、水价、灌溉管理、技术培训对灌溉效率影响显著.其中灌溉量与灌溉效率呈负相关;灌溉方式、灌溉管理规范程度、水价、技术培训、收入与灌溉效率呈正相关;灌溉效率随种植作物类型和区域不同存在显著变化.最后基于研究结果提出了提高灌溉效率的政策建议.  相似文献   

15.
Crop diversity (e.g. the number of agricultural crop types and the level of evenness in area distribution) in the agricultural systems of arid Central Asia has recently been increased mainly to achieve food security of the rural population, however, not throughout the irrigation system. Site-specific factors that promote or hamper crop diversification after the dissolvent of the Soviet Union have hardly been assessed yet. While tapping the potential of remote sensing, the objective was to map and explain spatial patterns of current crop diversity by the example of the irrigated agricultural landscapes of the Fergana Valley, Uzbekistan. Multi-temporal Landsat and RapidEye satellite data formed the basis for creating annual and multi-annual crop maps for 2010–2012 while using supervised classifications. Applying the Simpson index of diversity (SID) to circular buffers with radii of 1.5 and 5 km elucidated the spatial distribution of crop diversity at both the local and landscape spatial scales. A variable importance analysis, rooted in the conditional forest algorithm, investigated potential environmental and socio-economic drivers of the spatial patterns of crop diversity. Overall accuracy of the annual crop maps ranged from 0.84 to 0.86 whilst the SID varied between 0.1 and 0.85. The findings confirmed the existence of areas under monocultures as well as of crop diverse patches. Higher crop diversity occurred in the more distal parts of the irrigation system and sparsely settled areas, especially due to orchards. In contrast, in water-secure and densely settled areas, cotton-wheat rotations dominated due to the state interventions in crop cultivation. Distances to irrigation infrastructure, settlements and the road network influenced crop diversity the most. Spatial explicit information on crop diversity per se has the potential to support policymaking and spatial planning towards crop diversification. Driver analysis as exemplified at the study region in Uzbekistan can help reaching the declared policy to increase crop diversity throughout the country and even beyond.  相似文献   

16.
民勤咸水灌溉及SWAP模型模拟研究   总被引:4,自引:2,他引:2  
黄翠华  王涛  薛娴  尤全刚  彭飞 《中国沙漠》2011,31(2):288-294
 采用0.8 g·L-1和5 g·L-1浓度咸水对民勤传统作物黄河蜜进行咸水灌溉试验。通过野外试验和实验室分析,评价了咸水灌溉对土壤性质和作物产量的影响,校正了SWAP模型并对相关因子进行了模拟分析。研究结果显示,尽管基于当地种植经验的灌水量与基于潜在蒸发蒸腾量(ET0)及根据田间持水量计算的需水量有一定差异,但灌溉水质和灌水量与田间产量具有较好的一致性;0.8 g·L-1处理的水利用效率高于5 g·L-1处理,湿润年的水利用效率高于干旱年;模拟结果显示,SWAP模型对不同试验处理和不同气候条件下的土壤性质和作物产量模拟效果较好。由此得出结论,在民勤可以利用SWAP模型模拟不同环境条件下的土壤水分状况及作物产量,为农田耕作提供理论支撑。  相似文献   

17.
为了探究沙地植物群落结构特征对极端干旱的响应,通过野外模拟试验开展了极端干旱(生长季减雨60%与干旱60 d)对沙质草地和固定沙丘植物群落丰富度、地上生物量和叶性状等群落结构特征影响的研究。结果表明:(1)生境变化对植物群落地上生物量和叶干物质含量(LDMC)具有显著影响(P<0.05),草地地上生物量和LDMC显著高于固定沙丘,而物种数、植被盖度、高度和比叶面积(SLA)在两种生境间无显著差异(P>0.05);(2)极端干旱处理显著影响沙地植物群落盖度、地上生物量和LDMC(P<0.05),减雨60%显著降低了植物群落盖度和地上生物量,而干旱60 d显著降低了植物群落盖度、地上生物量、高度和LDMC;植被特征和叶性状在减雨60%和干旱60 d处理间无显著差异(P>0.05);(3)减雨60%和干旱60 d显著降低了草地和固定沙丘的植被盖度和地上生物量,而干旱60 d也降低了固定沙丘的植物高度和LDMC(P<0.05);(4)相关分析表明,沙地植物群落地上生物量与盖度、高度和LDMC显著正相关(P<0.05)。极端干旱事件的发生会极大地改变沙地一年生为主的植物群落组成和功能,而沙地不同生境植被则通过改变植物群落组成、优势种及其关键性状的变化来适应极端干旱。  相似文献   

18.
Agricultural mismanagement of irrigated drylands results in severe soil degradation. Afforestation is an option for ameliorating such degraded land. We evaluated the impact afforestation has on the topsoil (0-20 cm) of salinized degraded cropland in regards to salinity, aggregate stability, and soil organic carbon (SOC) stocks in Uzbekistan, Central Asia. The effects of tree plantations established under either furrow or drip irrigation were studied four years following afforestation and two years after irrigation ceased. For comparative study we also sampled fallow land, land with 80 years of tree growth, natural forest, desert ecosystems, and paddy rice fields. Initial furrow irrigation showed to be most effective in improving soil fertility after four years of afforestation; the respective plantations of Populus euphratica and Ulmus pumila showed significant levels of reduced soil salinity and increased aggregate stability and improved SOC stocks. The comparison of the long-term afforested land with the short-term equivalent suggested a C sequestration rate of 0.09-0.15 t C ha−1 year−1. The SOC stocks of the long-term afforestation site exceeded those of the native forest. Hence, a rehabilitation of salt-affected cropland is feasible following the conversion into occasionally irrigated tree plantations, although it takes decades to reach steady-state conditions.  相似文献   

19.
Although a number of studies have analysed the methods to monitor crop water needs, the integration of phenological dynamics and irrigation using water stored in reservoirs has received little attention. This study is an example of such analysis applied to two irrigation communities (IC) located in a Spanish Mediterranean area, one with less water resources than the other, which it was carried out between 2002 and 2008. These years comprised periods of water surplus and water scarcity including the 2007–2008 drought considered by the Catalan public water authority the worst since 1944. The dynamics of maize, alfalfa, fruit trees and poplars were analysed using greenness and wetness extracted from remote sensing data. A statistical analysis was applied in order to find out the relationship between crop wetness and stored water. Results show that the IC used two methods for water-saving: crop substitution, by decreasing the area of maize, and timing the crop cycle, delaying or advancing sowing depending on water availability. In conclusion although one IC is drier in rainfall terms than the other, a similar crop wetness status was detected and no difference was observed between periods of water scarcity and water surplus.  相似文献   

20.
Research on Amazonian communities has focussed more often on rural‐urban linkages than on links among rural communities. This is unsurprising, given the low density of population, limited intercommunity commerce, and importance of direct city‐market relations. Social relations among rural communities are also important in shaping rural livelihoods and lifeways. We report on the findings of a large‐scale census of communities in the Napo River basin in northeastern Peru (n=174). Data were gathered on intervillage crop seed acquisition and cooperative labor sharing as two key inputs in agriculture, and on intervillage soccer matches, which are integral to rural social life. We analyze the socio‐spatial networks of each practice, paying attention to settlement patterns, community ethnicity, and differential access to the uplands. We find that seeds and labor flow along soccer network lines. Rural social networks appear to be structured strongly by ethnicity (homophily) and reflect important complementarities between upland and lowland communities (weak ties).  相似文献   

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