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1.
三江平原土壤质量变化评价与分析   总被引:45,自引:3,他引:42  
胡金明  刘兴土 《地理科学》1999,19(5):417-421
土壤质量是土壤特性的综合反映,是揭示人类活动影响下的土壤动态变化的最敏感的指标,建立土壤质量变化评价模式,计算三江平原地区主要耕作土壤表层土(耕作层)的土壤质量矩阵。利用主要耕作土壤表层土的土壤质量指数的变化来定量地分要三江平原地区大面积开荒后土壤质量的变化趋势,结果表明,大面积开荒后主要耕作土壤的表层土的土壤质量指数均呈下降趋势,土壤发生了明显的经,最后还探讨了一变化趋势的形成原因。  相似文献   

2.
通过调查河北省遵化市低山丘陵区油松林、板栗、草地和坡耕地等典型土地利用方式对土壤养分和土壤容重的影响,土地取样取土壤表层0-20cm,结果表明,森林的砍伐以及随后的耕种显著增加了土壤容重并降低了大部分土壤养分。和林地相比,草地、当年开垦的农地、板栗和耕种3年的农地容重分别增加了13.3%,14.2%,27.5%,39.7%。除全磷外,板栗和耕种3年的农地土壤养分有显著下降,和林地相比,板栗有机质减少了60.7%,全氮减少了35.6%,全钾减少了21.3%,速效钾减少了57%;耕种3年的农地土壤有机质、全氮、全钾和速效钾则分别减少了62.9%,52.6%,31%和60%。土壤退化指数的计算结果表明板栗和耕种3年的农地土壤发生了较为严重的退化。  相似文献   

3.
高寒草甸草地退化对土壤水热性质的影响及其环境效应   总被引:2,自引:2,他引:0  
尤全刚  薛娴  彭飞  董斯扬 《中国沙漠》2015,35(5):1183-1192
青藏高原高寒草甸草地的大面积退化,将改变浅层土壤的水热性质,影响地表水热交换,甚至导致区域生态环境的变化。本文通过系统分析典型原生高寒草甸与中度退化高寒草甸的植物群落特征、地上地下生物量和土壤理化特征的差异,研究高寒草甸草地退化对土壤水热性质的影响及其环境效应。结果表明:随着高寒草甸草地退化,植被覆盖度显著降低(p<0.01),适应旱生、深根系的杂草侵入适应湿润生境、浅根系的以莎草科植物为主的原生植被,生物多样性显著增加(p<0.01);草毡表层(0~10 cm)地下生物量显著减少(p<0.01),30~50 cm地下生物量显著增加(p<0.01)。草毡表层变薄降低了土壤容重的垂向异质性,使表层土壤容重显著增加(p<0.01),土壤颗粒显著变粗(p<0.01)。受浅层土壤有机质降低和土壤容重增加的影响,中度退化高寒草甸土壤的持水量和饱和导水率降低,土壤导热率升高。高寒草甸草地植被退化,土壤持水量、饱和导水率降低和导热率增加将加速地表水热交换,对高寒草甸草地退化和下伏多年冻土消融都可能是正反馈。  相似文献   

4.
干旱荒漠区土地利用方式快速转变对土壤入渗性能的影响   总被引:3,自引:1,他引:3  
研究不同土地利用类型下土壤入渗及其影响因素,有助于城市土地利用管理及径流调节。以快速城市化的兰州新区6种土地利用类型为例,利用圆盘入渗仪,对土壤水分入渗过程进行了实地测量,并利用主成分分析对影响因素进行研究。结果表明:城市化过程中土地利用变化使土壤砂粒和容重增加,总孔隙度和饱和含水量降低;待建地和人工林地的土壤入渗参数值均低于其他土地利用类型。土壤入渗率与有机质含量、总孔隙度、饱和含水量、粉粒含量正相关,与容重和砂粒、黏粒含量负相关。城市化过程中土地利用类型向待建地的转变改变了土壤理化性质及土壤水分入渗能力。  相似文献   

5.
开展土壤质量评价是有效保护土壤的关键环节,对保障生态系统稳定和区域生态安全及可持续发展至关重要。柴达木盆地是青藏高原土壤风蚀最严重的地区,风蚀导致的土壤系统的变化深刻影响着青藏高原生态安全屏障和水源涵养功能。本研究基于对柴达木盆地典型风蚀区表层土壤的理化性质分析,利用主成分分析法建立最小数据集,构建土壤质量综合指数并进行土壤质量评价。结果表明:(1)柴达木盆地土壤有机质、全氮、全磷、有效磷、容重、碳酸钙含量仅达到全国第二次土壤普查六级土壤肥力分级标准下的四级到六级水平指标评分空间分布上,有机质、全氮、有效磷、全磷、砂粒含量东高西低,速效钾、砾石含量则西高东低。(2)柴达木盆地土壤质量评价最小数据集(MDS)包括容重、有机质、全磷、速效钾、砂粒含量5个指标,基于最小数据集构建的土壤质量综合指数(MDS-SQI)具有较好的代表性和适用性。(3)盆地整体土壤质量较差,且呈现出东部土壤质量优于西部的分布规律。将研究区的土壤质量由高到低划分为Ⅰ~Ⅴ级,Ⅰ~Ⅱ级土壤样点主要分布在东部地区,且所占面积较小,中部和西部地区主要分布Ⅲ~Ⅴ级样点。(4)MDS-SQI和风蚀强度显著负相关,柴达木盆地土壤风...  相似文献   

6.
四川盆地紫色丘陵区土地利用类型对土壤理化性质的影响   总被引:7,自引:1,他引:6  
为了提供土地利用结构调整的科学依据,调查和测试了四川盆地紫色丘陵区南充和盐亭两个典型小流域内草地、林地和耕地的土壤理化性质,结果表明:不同土地利用对土壤理化性质的影响是明显的。林/草地较耕地能显著增加(约1倍)土壤有机质含量。研究结果还揭示了耕地的长期耕种,使其土壤理化性质和功能退化,如土壤抗蚀性和持水性能降低。因此,增加耕地的有机肥投入是耕地可持续发展的重要举措。  相似文献   

7.
以杭州湾南岸滨海平原为研究区,通过定点配对土壤采样分析,选取有机质、全氮、全磷、速效磷、速效钾、全盐、pH值等要素作为土壤质量评价指标,分析了1982~2003年土地利用变化对土壤发生层质量演化的影响。结果表明:① 1982~2003年杭州湾南岸滨海平原土壤发生层质量的总体演化特征表现为A层综合质量指数明显下降,B (或P)、C (或W) 层略有上升。整个土壤发生层全磷含量普遍下降,其他单质量指标的变化差异较大。② 土地利用方式变化使得不同发生层的土壤有机质含量等单质量指标和综合质量指数的变化都明显大于土地利用方式未发生变化的土壤,其变化量表现为A层> B (或P) 层 > C (或W) 层。③ 土地利用变化引起的土壤耕种、栽培、施肥和排灌制度的变化,改变着土壤成土过程,从而对土壤发生层质量演化产生直接影响。  相似文献   

8.
黄河三角洲湿地土壤质量综合评价   总被引:1,自引:0,他引:1  
将山东黄河三角洲国家级自然保护区湿地分为新生湿地、退化湿地、天然稳定湿地和耕作区湿地。采用土壤质量指数法,利用GIS技术,对黄河三角洲湿地土壤质量进行综合评价及土壤质量分区。结果可见,湿地土壤质量总体较低,土壤有机质和全氮含量平均值分别低于全国第二次土壤普查养分的分级标准6 g/kg和0.5g/kg,属于最差等级。土壤盐度和有效磷含量空间变异性很高(变异系数100%)。从14个土壤理化指标中筛选出全磷含量、全氮含量、盐度、铵态氮含量和全硫含量,构成最小数据集,用于计算土壤质量综合指数;耕作区湿地的土壤质量最高,新生湿地和天然稳定湿地土壤质量居中,退化湿地土壤质量最差。基于克里金(Kriging)空间插值,将研究区湿地的土壤质量分为4个区域,结果与4种湿地类型的分布基本一致。对于新生湿地,2012年的土壤质量综合指数高于2007年,表明土壤质量明显提升。  相似文献   

9.
岩溶山区不同植被群落土壤生态系统特性研究   总被引:14,自引:4,他引:10  
自然植被演替成为次生植被、人工林或人工开垦利用后,岩溶山地土壤物理性能退化;沙化现象明显;坡耕地土壤长时间持水供水性能、抗旱性能降低;土壤种子库中草本种子比例大,木本植物种子少,土壤种子库退化更严重。研究区土壤有机质和全N受植被类型和土地利用强度影响明显,坡耕地土壤有机质较林草地系统低,退耕还林还草后,土壤有机质含量稳定增加。与自然植被相比,人工林、次生林系统土壤有机质含量仍较低。从弃耕地→灌草坡→次生林地的演替过程中,土壤种子库生态优势度呈降低趋势,物种丰富度和多样性增加。研究结果认为,岩溶生态系统土地退化的实质是土壤作为水库、养分库和土壤种子库功能的差异退化。  相似文献   

10.
黑河上游山地土壤容重分布特征及影响因素   总被引:1,自引:0,他引:1  
土壤容重不仅可用作计算土壤持水力和导水性,也是估算土壤养分和碳储量的重要变量。野外测定土壤容重一般费时费力,特别是在地形复杂的山区,因此山地土壤容重在国内外大多数清查数据库中缺失。本文以黑河上游山地为例,基于野外调查的124个土壤剖面,研究了山地土壤容重的空间分布特征及影响因素。结果表明:黑河上游山地0~10 cm和0~60 cm土壤容重分别为0.91±0.02 g·cm~(-3)和1.04±0.01 g·cm~(-3);不同植被类型下,高山寒漠容重最大,山地森林最小。随着土壤深度的增加,容重呈幂函数递增;随着土壤有机质含量的增加,容重呈指数递减。区域上,黑河上游从西北到东南,容重呈递减趋势,从高海拔到低海拔,容重呈先减小后增大趋势。主成分分析(PCA)和一般线性模型(GLM)表明,与土壤容重相关的环境因子中,海拔是影响土壤表层容重的第一主成分,土壤有机质含量是第二主成分,黏粒含量和大于2.0 mm砾石含量分别为第三、四主成分。第一、二、三、四主成分分别解释土壤容重空间变异的24.00%、29.40%、0.01%、6.20%。  相似文献   

11.
Understanding the effect of human activities on the soil environment is fundamental to understanding global change and sustainable development. In the process of transformation of tropical rain forests and semiarid grasslands to farmlands, land degradation usually occurs. But the transformation of arid desert landscape to oasis is found to have quite different consequences. Taking an alluvial plain oasis in the north piedmont of the Tianshan Mountains as a case study, we investigate oasis soil properties related to different land-use systems during the transformation of arid desert to oases. Selected land-use systems consisted of an annual crop field less than 3 years old, annual crop field 3?6 years old, annual crop field more than 6 years old, perennial crop field less than 4 years old, perennial crop field of 4-6 years old, perennial crop field more than 6 years old, abandoned farmland more than 3 years old, woodland field more than 6 years old, ecological forestation field, natural shrubbery field, desert grass land, and saline or alkaline field. Different land-use systems affect significantly the distribution of sand, silt and clay. Sand content in oasis soil tends to decrease with cultivation years but silt and clay contents tend to be increased in the oasis soils. Soil fertility is higher in the land-use systems under strong human disturbance than under weak human disturbance. Oasis soil nutrients also tend to increase with cultivation years. Soils have a significantly lower salinity in the land-use systems under strong human disturbance than under weak human disturbance. Soil organic matter and nutrients of the annual and perennial crop systems in the oasis tend to increase with cultivation time with the oasis soil acting as a carbon sink. These results show that soils are not degraded and the soil quality is gradually improved under rational land use and scientific management patterns, including uniform exploitation of land resources, effective irrigation systems, sound drainage systems, balanced fertilizer application, crushed straw return to soil and transformation of annual crop fields to perennial ones.  相似文献   

12.
The 26 plots including natural forestland, secondary forestland, shrub-grassland, sloping cropland, artificial forest and abandoned field, were selected to discuss the impact of land cover on the soil characteristics in the three karst districts of Chongqing. The results showed that: (1) After the vegetation turned into secondary vegetation or artificial vegetation, or reclamation, soil physical properties would be degraded. In the surface-layer soil of sloping cropland, the contents of > 2 mm water-stable aggregates decreased obviously with apparent sandification. (2) The contents of soil organic matter and total nitrogen are controlled completely by vegetation type and land use intensity. The increasing trend is rather slow in the early days when over-reclamation is stopped and the land is converted to forest and pasture. (3) Herbaceous species increase and woody plants species decrease with the increase of land use intensity, therefore, the soil seed banks degrade more seriously. (4) The soil degradation index has been set up to describe the relative soil degradation degree under the conditions of different vegetation types. (5) Land cover has a significant effect on karst soil characteristics, land degradation in the karst ecosystem is essentially characterized by the different degradation of soil functions that serve as water banks, nutrient banks and soil seed banks.  相似文献   

13.
重庆喀斯特地区土地覆被类型对土壤特征的影响   总被引:2,自引:0,他引:2  
1 Introduction The karst region of Southwest China, with Guizhou Province as the center, extends across Yunnan Province, Guangxi Zhuang Autonomous Region, Sichuan Province, Chongqing, western Hunan Province, Hubei Province, and Guangdong Province, coveri…  相似文献   

14.
三工河流域绿洲土地利用对土壤特性的影响   总被引:2,自引:1,他引:1  
Understanding the effect of human activities on the soil environment is fundamental to understanding global change and sustainable development. In the process of transformation of tropical rain forests and semiarid grasslands to farmlands, land degradation usually occurs. But the transformation of arid desert landscape to oasis is found to have quite different consequences. Taking an alluvial plain oasis in the north piedmont of the Tianshan Mountains as a case study, we investigate oasis soil properties related to different land-use systems during the transformation of arid desert to oases. Selected land-use systems con- sisted of an annual crop field less than 3 years old, annual crop field 3-6 years old, annual crop field more than 6 years old, perennial crop field less than 4 years old, perennial crop field of 4-6 years old, perennial crop field more than 6 years old, abandoned farmland more than 3 years old, woodland field more than 6 years old, ecological forestation field, natural shrubbery field, desert grass land, and saline or alkaline field. Different land-use systems affect significantly the distribution of sand, silt and clay. Sand content in oasis soil tends to decrease with cultivation years but silt and clay contents tend to be increased in the oasis soils. Soil fertility is higher in the land-use systems under strong human disturbance than under weak human disturbance. Oasis soil nutrients also tend to increase with cultivation years. Soils have a significantly lower salinity in the land-use systems under strong human disturbance than under weak human disturbance. Soil organic matter and nutrients of the annual and perennial crop systems in the oasis tend to increase with cultivation time with the oasis soil acting as a carbon sink. These results show that soils are not degraded and the soil quality is gradually improved under rational land use and scientific management patterns, including uniform exploitation of land resources, effective irrigation systems, sound drainage systems, balanced ferti  相似文献   

15.
内蒙古是我国土壤风力侵蚀较为严重的地区之一,同时也是我国土地利用方式剧烈变化的地区之一。依据两期土地利用数据以及相应年代的土壤风力侵蚀数据,研究了20世纪90年代末期内蒙古自治区土地利用和风力侵蚀的静、动态格局。根据土地利用和风力侵蚀的空间分布及动态变化特点,设计了内蒙古土地利用-风力侵蚀动态区划,基于该区划详细讨论了内蒙古不同地区占主导地位的土地利用动态与风力侵蚀动态,由此揭示了两者之间存在的驱动--被驱动关系。研究发现,在20世纪90年代末期,内蒙古土地利用和风力侵蚀的基本格局没有太大变化,但风力侵蚀强度在总体上增强了;土地利用的变化主要反映为草地的退化和耕地的扩张。土地利用动态与风力侵蚀动态有着良好的时空对应关系:草地的退化与耕地的扩张导致了显著的风力侵蚀增强,而草地的改善以及耕地的收缩对风力侵蚀的影响不如前者明显,这表明了土地利用动态对风力侵蚀动态正、反向驱动的不平衡性。  相似文献   

16.
坡耕地水土流失与可持续利用图是综合表示滇东北山区各个坡耕地单元的水土流失状况及其可持续利用的专题地图。该图表示的基本内容是坡耕地类型、土壤类型、坡度级别、侵蚀强度、可持续利用程度、合理利用方向与措施。以土壤流失方程为基础,应用地理信息系统编制了该图。该图的编制为治理本区坡耕地水土流失、合理利用坡耕地资源提供了科学依据。  相似文献   

17.
To explore the optimal land-use for soil carbon(C) sequestration in Inner Mongolian grasslands,we investigated C and nitrogen(N) storage in soil and soil fractions in 8 floristically and topographically similar sites which subjected to different land-use types(free-grazing,grazing exclusion,mowing,winter grazing,and reclamation).Compared with free-grazing grasslands,C and N storage in the 0-50 cm layer increased by 18.3%(15.5 Mg C ha-1) and 9.3%(0.8 Mg N ha-1) after 10-yr of grazing exclusion,respectively,and 21.9%(18.5 Mg C ha-1) and 11.5%(0.9 Mg N ha-1) after 30-yr grazing exclusion,respectively.Similarly,soil C and N storage increased by 15.3%(12.9 Mg C ha-1) and 10.2%(0.8 Mg N ha-1) after 10-yr mowing,respectively,and 19.2%(16.2 Mg C ha-1) and 7.1%(0.6 Mg N ha-1) after 26-yr mowing,respectively.In contrast,soil C and N storage declined by 10.6%(9.0 Mg C ha-1) and 11.4%(0.9 Mg N ha-1) after 49-yr reclamation,respectively.Moreover,increases in C and N storage mainly occurred in sand and silt fractions in the 0-10 cm soil layer with grazing exclusion and mowing.Our findings provided evidence that Inner Mongolian grasslands have the capacity to sequester C and N in soil with improved management practices,which were in the order:grazing exclusion > mowing > winter grazing > reclamation.  相似文献   

18.
利用开路式土壤碳通量测量系统-LI-8100对塔里木河下游6种土地利用方式下土壤呼吸速率的日变化进行了野外定位测量,并就水热因子及土壤理化性质对土壤日呼吸速率差异的影响进行了分析。结果表明,梨园、弃耕地、棉田、人工林、草地和天然林土壤呼吸速率日变化均呈单峰曲线,土壤日呼吸速率差异显著。大气温度和土地利用方式是造成土壤日呼吸差异的主要因素,其中土地利用方式通过改变地表温度、土壤水分、电导率、pH、盐分含量及机械组成等影响土壤日呼吸速率。  相似文献   

19.
基于安徽省霍山县第二次土壤普查数据,提取2005~2008年耕地监测数据资料建成土壤有机碳含量数据库,对耕地监测的有机碳数据按县域内不同空间尺度进行了统计分析。结果表明:20年来该县农田表土有机碳含量明显提高,显示农田土壤的有机碳库积累。县域范围内耕地土壤有机碳含量的不同尺度的变异系数介于4.53%~14.91%。村民组(自然村)单元内变异性最高,有机碳含量乡镇间变异性低于行政村间变异性。因此,从县级尺度的农田土壤碳计量来说,以乡镇尺度采样研究比村级尺度可靠性要高。影响县域内农田土壤有机碳含量与变异的动力因子主要是农业利用和农田基本建设,茶、桑和水稻利用下农田土壤有机碳含量明显较高。  相似文献   

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