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1.
科尔沁沙地土地利用变化对土壤特性的影响   总被引:7,自引:0,他引:7  
刘任涛  赵哈林 《生态环境》2010,19(9):2079-2084
在中国科学院奈曼沙漠化研究站放牧试验场周围,选取了不同利用方式和类型的草地(封育和放牧)、林地(乔木和灌木)和农田(灌溉和非灌溉)为研究样地,调查了0~30cm土层每隔10cm的土壤水分质量分数和有机养分(有机碳和全氮),分析了土地利用变化对土壤水分质量分数和有机养分的影响。结果发现,垂直空间分布上,无论哪种土地类型样地,土壤水分质量分数和有机养分各土层间均无显著差异性(P〉0.05),土层垂直变化对土壤特性影响均较小。在不同土地利用方式水平空间分布上,土壤水分质量分数和有机养分(土壤有机碳和全氮)灌木林地均显著高于乔木林地(P〈0.05),而封育草地和放牧草地间以及灌溉农田与非灌溉农田间土壤水分质量分数和有机养分均无显著差异性(P〉0.05)。不同土地利用类型水平分布上,草地土壤水分质量分数显著低于林地和农田(P〈0.05),而土壤养分质量分数草地显著高于林地和农田(P〈0.05)。分析表明,对沙质草地进行围栏封育和旱作农田退耕还林还草的同时,对水浇农田实行保护性耕作和精细管理,有利于沙地土壤环境改善与生态系统恢复。  相似文献   

2.
以巢湖典型低丘山区坡地的6种主要土地利用类型(弃耕地、尾矿裸地、灌木林地、荒草地、马尾松林地和人工恢复林地)为研究对象,通过定位观测与收集坡面壤中流,探讨该地区壤中流养分流失动态变化特征。结果表明,巢湖低丘山区典型土地利用类型壤中流发生概率为灌木林地和荒草地较高,尾矿裸地最低(仅在0~20cm土层产生);表层壤中流氮含量为尾矿裸地最高,人工恢复林地最低,壤中流磷含量为弃耕地最高,尾矿裸地最低;壤中流氮素流失以溶解态NO3-N为主,并随雨季的到来而呈下降趋势,随土层加深呈先下降后升高趋势;磷主要以有机溶解态形式流失,随土层加深而呈下降趋势。相关分析表明,地表总盖度、地表植被均匀度、土壤养分含量与壤中流氮、磷含量间存在显著相关性,而降雨特征(降雨量、降雨强度)与壤中流氮、磷含量问相关性不显著。由于人为开采严重,在分析该地区壤中流氮素含量时,应注意干湿沉降的影响。  相似文献   

3.
The temporal-spatial interaction of land cover and non-point source (NPS) nutrient pollution were analyzed with the Soil and Water Assessment Tool (SWAT) to simulate the temporal-spatial features of NPS nutrient loading in the upper stream of the Yellow River catchment. The corresponding land cover data variance was expressed by the normalized difference vegetation index (NDVI) that was calculated from MODIS images. It was noted that the temporal variation of land cover NDVI was significantly correlated with NPS nutrient loading. The regression analysis indicated that vegetation not only detained NPS nutrient pollution transportation, but also contributed to sustainable loading. The temporal analysis also confirmed that regional NDVI was an effective index for monthly assessment of NPS nitrogen and phosphorus loading. The spatial variations of NPS nutrient loading can be classified with land cover status. The high loadings of NPS nitrogen in high NDVI subbasins indicated that forestry and farmland are the main critical loss areas. Farmland contributed sustainable soluble N, but the loading of soluble and organic N from grassland subbasins was much lower. Most P loading came from the areas covered with dense grassland and forestry, which cannot directly discharge to local water bodies. However, some NPS phosphorus from suburban farmland can directly discharge into adjacent water bodies. The interactions among nutrient loading, NDVI, and slope were also analyzed. This study confirmed that the integration of NPS modeling, geographic information systems, and remote sensing is needed to understand the interactive dynamics of NPS nutrient loading. Understanding the temporal-spatial variation of NPS nutrients and their correlations with land cover will help NPS pollution prevention and water quality management efforts. Therefore, the proposed method for evaluating NPS nutrient loading by land cover NDVI can be an effective tool for pollution evaluation and watersheds planning.  相似文献   

4.
1980—2015年青藏高原植被变化研究   总被引:2,自引:0,他引:2  
青藏高原地形复杂,气候类型独特,是北半球气候变化的调节器。全球气候变化直接影响植被变化,探讨植被变化对了解青藏高原的环境状况及环境保护与恢复具有重要意义。选取青藏高原作为研究区域,基于1980年和2015年的1 km土地利用数据利用转移矩阵研究植被的转换变化,利用1981—2015年的GIMMS-NDVI数据借助趋势分析法分析土地利用未变化区域的植被覆被变化,并通过相关分析法研究植被变化与气候因子的关系。研究表明:1980—2015年,青藏高原植被的转换变化表现为转入面积大于转出面积,植被面积整体增加。植被类型变化的主要表现形式为农作物和草地面积增加,乔木林地和灌木林面积减少;草地的面积变化最大,农作物、乔木林地和灌木林面积变化很小。从不同植被类型和生态分区来看,植被覆被变化表现为农作物面积较小,分布于半干旱地区,NDVI呈上升趋势;乔木林地位于东南部湿润半湿润地区,生长状况呈现退化趋势;灌木林位于东部边缘和东南部的湿润半湿润和半干旱地区,呈退化趋势;草地分布范围最大,生长情况趋于改善。近35年来,青藏高原的植被覆盖整体趋于好转,低覆盖度、干旱半干旱地区趋于改善,高覆盖度、湿润半湿润地区出现退化。研究时段内,青藏高原趋于暖湿化,NDVI变化与年平均气温、年降水量变化呈正相关,对降水变化更为敏感。不同植被类型对气候变化响应不同,农作物相关系数最高。乔木林地与气温和降水变化呈负相关,农作物和草地则呈正相关,灌木林与降水变化呈正相关,与气温变化呈负相关。  相似文献   

5.
高富  沙丽清  许建初 《生态环境》2000,9(3):223-226
采用野外调查、取样和实验分析相结合的方法对云南省保山市西庄河山地流域内4种主要土地利用方式(林地、耕地、茶园、灌丛)的土壤理化性质进行对比研究,讨论了不同土地利用方式对土壤肥力的影响,结果表明,不同的土地利用方式对土壤肥力具有比较明显的影响:土壤有机质和全氮质量分数变化从大到小依次为灌丛>林地>茶园>耕地;磷、钾元素表现为耕地>茶园>林地>灌丛;土壤阳离子交换量表现为耕地>茶园>灌丛>林地;盐基饱和度表现为耕地>灌丛>林地>茶园;农业耕作活动对表层土壤物理性质影响明显。  相似文献   

6.
Abstract:  For several decades, many grassland bird species have been declining in abundance throughout the Midwest and Great Plains regions of the United States, possibly due to loss of natural grassland habitat and increasing urbanization. I used 20 years of data from the North American Breeding Bird Survey to identify increasing, decreasing, and stable populations of 36 grassland-nesting bird species. I characterized the immediate landscape (circle with radius = 30 km) surrounding each population based on data from the National Resources Inventory. For each landscape, I calculated the proportion of eight different land-cover types: restored grassland, rangeland, cultivated cropland, pasture, noncultivated cropland, forest, urban land, and water. Using a null model, I compared landscape composition of increasing, decreasing, and stable populations. As predicted on the basis of the habitat preferences of grassland birds, increasing populations inhabited landscapes that contained significantly more restored grassland and rangeland but significantly less forest land and urban land than landscapes inhabited by decreasing populations. There was no significant difference in the proportion of cropland within the landscapes of increasing and decreasing populations, although cropland composed a large proportion (>30%) of many landscapes. In contrast, restored grassland typically composed a very small proportion (<3.5%) of total land cover, yet it was significantly more common in the landscapes of increasing than decreasing populations. These results suggest that grassland birds may benefit from government initiatives, such as the Conservation Reserve Program, that promote the restoration of grassland at a landscape scale.  相似文献   

7.
Protection of the water quality of Lugu Lake is important because it is a unique geographic and cultural resource. Not only point source pollution but also non-point source pollution contribute to degradation of water quality. A GIS-NPS model, with long-term hydrologic impact assessment (L-THIA), was used to evaluate long-term implications of land-use change impacts on non-point source (NPS) pollution. The land-use patterns of 1995 and 2005 were analysed to determine the changes in Lugu Lake watershed. A 30-year (1974–2003) precipitation dataset was used to estimate mean annual surface runoff and NPS pollutant loads. The contributions of different land-use categories to average annual runoff and NPS pollutant production were assessed with a unit contribution index (UCI). Results show loss of agricultural land (by 44.9%), while forest, grass/pasture and residential land increased to different degrees from 1995 to 2005. At the same time, annual average NPS pollutants, TN, TP, TSS and BOD loads all decreased, while heavy metal lead increased by 6.87%. The UCI formulated in this research was a more useful method to assess land-use impact on NPS pollutants than simple investigations of the percentage land-use change. Agricultural and residential land changes had more impact on NPS pollutants and were identified as the main source types. Suggestions on regulating land uses and management proposals for protecting lake water quality in Lugu Lake watershed are made.  相似文献   

8.
Climate change models for California's Sierra Nevada predict greater inter-annual variability in precipitation over the next 50 years. These increases in precipitation variability coupled with increases in nitrogen deposition from fossil fuel consumption are likely to result in increased productivity levels and significant increases in forest understory fuel loads. Higher understory plant biomass contributes to fuel connectivity and may increase future fire size and severity in the Sierra Nevada. The objective of this research was to develop and test a model to determine how changing precipitation and nitrogen deposition levels affect shrub and herb biomass production, and to determine how often prescribed fire would be needed to counter increasing fuel loads. Model outputs indicate that under an increasing precipitation scenario significant increases in shrub and herb biomass occur that can be counteracted by decreasing the fire return interval to 10 years. Under a scenario with greater inter-annual variability in precipitation and increased nitrogen deposition, implementing fire treatments at an interval equivalent to the historical range of 15–30 years maintains understory vegetation fuel loads at levels comparable to the control.  相似文献   

9.
三峡库区小流域土地利用方式对土壤肥力的影响   总被引:25,自引:0,他引:25  
为探讨三峡库区小流域不同土地利用方式对土壤肥力的影响特征,采用野外调查、取样和室内实验分析相结合的方法,对三峡库区五桥河流域内3种主要土地利用方式(旱地、柑橘园、林地)的土壤理化性状进行对比分析。结果表明,不同土地利用方式对土壤吧力具有较为明显的影响,土壤孔度、渗透率变化由大到小的次序为林地→柑橘园→旱地;土壤有机质和氮、磷、钾养分含量由大到小次序为林地→柑橘园→旱地。这与不同土地利用方式下人类耕作活动、对土地的劳力与经济投入不同密切相关。林地受人为扰动少,因而土壤肥力高;柑橘园、旱地受人类耕作活动影响大,但因柑橘园经济产出效益较高,农户对土地的投入相应较高,使得柑橘园土壤肥力高于旱地土壤。  相似文献   

10.
This study proposed an integrated biogeochemical modelling of nitrogen loads from anthropogenic and natural sources in Japan. Firstly, the nitrogen load (NL) from different sources such as crop, livestock, industrial plant, urban and rural resident was calculated by using datasets of fertilizer utilization, population distribution, land use map, and social census. Then, the nitrate leaching from soil layers in farmland, grassland and natural conditions was calculated by using a terrestrial nitrogen cycle model (TNCM). The Total Runoff Integrating Pathways (TRIP) was used to transport nitrogen from natural and anthropogenic sources through river channels, as well as collect and route nitrogen to the river mouths. The forcing meteorological and hydrological data is a 30-year (1976–2005) dataset for Japan which were obtained by the land surface model, Minimal Advanced Treatments of Surface Interaction and Runoff (MATSIRO). For the model validation, we collected total nitrogen (TN) concentration data from 59 rivers in Japan. As a comparison result, calculated TN concentration values were in good agreement with the observed ones, which shows the reliability of the proposed model. Finally, the TN loads from point and nonpoint sources were summarized and evaluated for 59 river basins in Japan. The proposed modelling framework can be used as a tool for quantitative evaluation of nitrogen load in terrestrial ecosystems at a national scale. The connection to land use and climate data provides a possibility to use this model for analysis of climate change and land use change impacts on hydrology and water quality.  相似文献   

11.
随着经济快速发展、城镇化进程加快以及人口基数不断增加,在城市用地不断向外扩张以及生态退耕措施的影响下,耕地面积呈逐年减小的趋势.这一现象加剧了农业发展与其他要素间的矛盾,对区域粮食安全也产生重要影响,因此,探讨耕地面积时空变化及其驱动机制对保障区域粮食安全具有现实意义.分析青藏高原地区1980年、1990年、2000年、2010年、2018年的耕地面积数据,结合户籍人口、地区生产总值(GDP)、粮食单产等统计年鉴资料解析影响其变化的主要驱动因子.结果表明:(1)青藏高原近40年耕地面积变化总体经历缓慢增加、显著增加和缓慢递减3个阶段,整个变化过程中耕地主要流失方向为林地和草地,分别占总流失面积的50.99%和32.02%,主要原因为退耕还林还草等政策的实施,其次为建设用地和水域增加.(2)耕地转为非耕地的地区主要集中在四川西部、云南西北部、青海东部,而耕地转入地区主要集中在青藏高原中部.以地市州来看,拉萨、海东、海西、阿坝、林芝等地区耕地面积变化特征以缓慢递增为主;西宁、黄南、甘孜、甘南等地区的耕地面积则呈缓慢递减的变化趋势.(3)主成分分析和结构方程模型结果显示影响耕地面积减少的主要驱动因素包括经济社会发展和粮食生产.其中经济和社会因素对耕地面积变化产生的影响为负值,社会因素产生的负影响最大,为-0.224,人口基数增长、建设用地扩张、土地利用转型要求以及二、三产业红利的吸引都会导致耕地面积减小.本研究揭示了青藏高原地区近40年耕地变化情况及流失方向,耕地面积波动主要受到经济社会因素以及政策因素的影响;上述结果可为今后国家粮食安全及当地生态环境可持续发展提供理论参考.(图7表8参45)  相似文献   

12.
基于地理信息系统和卫星遥感技术,利用地面气象数据、遥感数据和土地分类等数据,根据河南省实际植被覆盖和自然地理情况,应用改进的CASA模型估算了1994—2008年间河南省植被净第一性生产力及其时空变化。结果表明:河南省植被净第一性生产力与年均温度的相关性好于植被年净第一性生产力与年降水量和年均太阳辐射之间的相关性,温度是限制河南省植被净第一性生产力的主要因子;15年来河南省植被净第一性生产力呈增加趋势,但不明显;河南省主要植被类型的净第一性生产力从大到小依次为林地、灌丛、耕地、草地、其它植被,它们随时间的变化趋势极为一致。  相似文献   

13.
1975年以来黑河中游地区土地利用/覆被变化时空演变   总被引:2,自引:0,他引:2  
以西北干旱区重要的内陆河——黑河中游地区为研究区域,采用1975、1987、1992、2001和2010年遥感影像为基础数据,选取土地利用变化幅度、动态度和土地利用强度指数3个指标,并结合转移矩阵,采用相关性分析和主成分分析方法,对该地区近35a来的土地利用/覆被变化及其驱动力进行综合分析。结果表明,1975--2010年,研究区耕地和城乡居民工矿用地所占比例持续上升,分别由14.14%和1.52%增加到19.74%和1.98%;草地和水域面积则分别减少3.87×10^4和0.41×10^4hm2。各土地利用类型中以耕地的土地利用变化强度指数最高,达0.1604%,草地次之。研究区土地利用类型间主要转移方向为:草地转化为耕地和未利用地,未利用地转化为耕地和草地,林地与草地问相互转化。导致黑河中游地区土地利用发生上述变化的主要驱动力为社会经济因素。  相似文献   

14.
Eutrophication caused by the enrichment of nutrients from diffusing sources is degrading surface water quality throughout the world. Assessing the potential contributions of different land areas in diffuse nutrient export has become an important task in non-point source (NPS) pollution control. Existing methods were often limited by the availability of local data and the complexity of model formulation. This study developed a spatial multicriteria method to evaluate the nitrogen loss potential at the basin level. Four criteria were formulated to characterize the source capacity of nitrogen export, the flow path to water body, the efficiency of runoff generation and the climatic driving force. The proposed method is a low-effort approach since the required data is either already available in a global context or easily produced with limited inputs. Being implemented in GIS environment, this method generates maps that can be easily interpreted to provide decision support. The method was applied to the Huai River Basin, China. The results were validated based on the correlation between the nitrogen loss potential of sub-basin and the water quality class of river. The maps of nitrogen loss potential were helpful for examining the regional pattern of diffuse nitrogen loss, and could facilitate the decisions of NPS pollution management at the provincial or basin level.  相似文献   

15.
基于遥感与GIS的黄河三角洲绿色空间生态服务价值评估   总被引:2,自引:0,他引:2  
刘庆  李伟  陆兆华 《生态环境》2010,19(8):1838-1843
基于黄河三角洲1987、1997和2007年的TM遥感影像解译数据和野外调查结果,得到研究区三个年度的土地利用空间分布图。然后从土地利用的角度重新审视绿色空间的概念和内涵,建立基于土地利用类型的绿色空间生态评估体系,分析黄河三角洲地区的绿色空间生态服务价值及其变化情况。研究结果表明,1987—2007年间黄河三角洲地区绿色空间土地利用变化显著,其中,水体面积增加明显,农田、林地面积略有增加,湿地和草地面积显著减少,未利用地面积略有减少。土地利用面积的变化直接影响到其生态服务价值的变化,研究期间湿地生态服务价值减少了77.72亿元,草地减少9.00亿元,未利用地减少0.16亿元;水体的生态服务价值增加54.54亿元,农田和林地共增加3.41亿元。研究区绿色空间生态服务价值呈逐年减少的趋势,20年间研究区生态服务价值减少了28.94亿元。通过对绿色空间单项生态服务价值功能重要性进行评价,研究表明黄河三角洲地区单项生态服务价值以湿地、农田和水体占主要地位,这与各单项生态系统的面积及其单位生态服务价值量有关。  相似文献   

16.
程建中  李心清  唐源  周志红  王兵  程红光  邢英 《生态环境》2010,19(11):2551-2557
为了解不同土地利用方式对土壤剖面CO2体积分数的影响,采用气相色谱法对贵州喀斯特地区土壤不同深度空气CO2体积分数进行观测。结果表明:不同土地利用对土壤平均CO2体积分数影响较大,其次序为:次生林(0.35%±0.06%)〉草地(0.34%±0.05%)〉人工林(0.27%±0.03%)〉农田(0.16%±0.03%)。次生林、草地与农田之间土壤CO2体积分数差异性显著,而人工林与农田之间无显著性差异。不同土地利用方式土壤剖面CO2体积分数的时空变化特征比较一致:从春季到夏季逐渐增加而从秋季到冬季又逐渐降低,与该区域的温度和降雨量变化趋势一致。同时随着土壤剖面深度增加CO2体积分数逐渐增大,但在土层12 cm处有突然降低现象(农田除外)。不同土地利用方式土壤空气CO2体积分数变化与大气、土壤温度密切相关(r=0.602~0.886,P〈0.05),土壤温度升高会导致土壤CO2体积分数上升。土壤湿度虽然也在一定程度上影响了剖面CO2体积分数,但相关性分析表明二者之间并不显著(r=0.105~0.393,P〉0.05),说明在贵州喀斯特地区,土壤温度对土壤空气CO2体积分数的影响大于土壤湿度。  相似文献   

17.
运用灰色关联法对南亚热带鹤山丘陵试验站4种森林生态系统植被状况影响地表径流系数进行了定量分析,结果表明:对于本文所选取的植被状况参数对地表径流系数影响的大小顺序是:枯落叶层厚度〉草本层盖度〉灌木层盖度〉林分高;4种森林生态系统的植被状况对地表径流系数的影响,马占相思林最大,平权关联度与非平权灰关联度分别为0.782和0.766;林果苗系统最小,平权关联度与非平权灰关联度分别为0.532和0.535  相似文献   

18.
Riparian land use remains one of the most significant impacts on stream ecosystems. This study focuses on the relationship between stream ecosystems and riparian land use in headwater regions. Four riparian land types including forest, grassland, farmland, and residential land were examined to reveal the correlation between stream water and fish communities in headwater streams of the Taizi River in north-eastern China. Four land types along riparian of 3 km in length were evaluated at 25, 50, 100, 200 and 500 m widths, respectively. Generally, the results found a significant relationship between riparian land uses and stream water quality. Grassland was positively correlated with water quality parameters (conductivity and total dissolved solids) at scales from 100 to 500 m riparian width. Farmland and residential land was negatively correlated with water quality parameters at scales from 25 to 500 m and from 50 to 200 m riparian widths, respectively. Although the riparian forest is important for maintaining habitat diversity and fish communities, the results found that only fish communities were significantly correlated with the proportion of riparian farmland. Farmland had a positive correlation with individual fish abundance within a riparian corridor of 25 to 50 m, but a negative correlation with fish diversity metrics from 25 to 100 m. This study indicates that effective riparian management can improve water quality and fish communities in headwater streams.  相似文献   

19.
The regional acid deposition model system (RegADMS) was applied to simulate the air sulfur deposition onto different landuse types over China, in which the dry deposition velocities of SO2 and sulfate aerosol (SO 4 2– ) were estimated by use of a big leaf resistance analogy model and the wet scavenging coefficients were parameterized in terms of precipitation rate. Investigations show that the annual total sulfur deposition over mainland China is 7.24 mt (1 mt = 106 ton) , in which dry deposition and wet deposition accounts for 56 and 44%, respectively. The sulfur deposition onto agriculture land, grass land, and forest land is 1.09, 3.6 and 1.41 mt, respectively, which sums 6.1 mt and accounts for 84% of the total sulfur deposition. The modeled sulfur deposition was in agreement with the measurement conducted at farmland in Yingtan, a typical read soil region in Jiangxi province of China, during the period of November 1998–October 1999. The total sulfur deposition at the Yingtan site is about 10.3 gm–2 year–1 of which 83% is dry deposition. The modeling sulfur deposition at the same site is 8.4 gm–2 year–1. Furthermore, the comparison between RegADMS and RAINS-ASIA on modeling regional sulfur deposition shows the consistence of the two models. The correlation coefficient between the simulated sulfur deposition at the medium-large cities reaches 0.72.  相似文献   

20.
Heating effects on carbon and mineral nitrogen contents of soils within different land use types were investigated in this study. With this intention we collected soil samples from 3 different land use types which are abandoned agricultural lands (AAL), shrub land (SL) and Oak forest land (OFL) and are in neighborhood with each other. The sampling was made at mid-summer to provide a better correspondence between factual buming conditions as well. Soils are slightly acidic (pH between 4.60-5.72) and sandy, sandy loamy textured. At the study site the vegetation type is pasture at AAL, Cystus and Rubus sp. dominated shrubs at SL and mixture of Oak species such as Quercus petrea, Q. robur Q. cerris and Q. frainetto at OFL. The results we found revealed that heating temperature has more remarkable effect on C losses and soil NH4+-N re-mineralization and losses of NH4+-N. Besides we could not detect remarkable differences between total N and NO3- amounts. Heating time created significant differences between NH4+-N amounts for different land use types where SL soils showed significant difference for all temperature levels. Heating soils at 100 degreesC created only slight differences at C and NH4+-N budgets but heating at 200 degreesC caused to striking results at NH4+-N budgets and heating at 350 degreesC led to only slight increase at NH4+-N budget. As the temperature increased the C loss also increased linearly.  相似文献   

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