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1.
江苏北部景观生态对策研究   总被引:3,自引:1,他引:3  
在对江苏北部气候、地貌、土壤、植被等景观生态要素研究的基础上,以地貌和基质为基本线索,以植被为标志建立了该地区的景观生态分类系统。该系统为二级分类系统,包括10个景观型、31个景观亚型,以景观亚型或景观亚型的组合为基本制图单位,编制了江苏北部1:100万景观生态类型图。详细分析了江苏北部稀疏植被景观、常绿针叶林景观、落叶阔叶林景观、旱地作物景观、水旱轮作景观、水田作物景观、淡水水生植被景观等主要景  相似文献   

2.
在对江苏北部气候、地貌、土壤、植被等景观生态要素研究的基础上,以地貌和基质为基本线索、以植被为标志建立了该地区的景观生态分类系统。该系统为二级分类系统,包括10个景观型、31个景观亚型。以景观亚型或景观亚型的组合为基本制图单位,编制了江苏北部1∶100万景观生态类型图。详细分析了江苏北部稀疏植被景观、常绿针叶林景观、落叶阔叶林景观、旱地作物景观、水旱轮作景观、水田作物景观、淡水水生植被景观等主要景观型的生态问题,提出了相应的生态对策。  相似文献   

3.
临策铁路沿线土地沙漠化敏感性评价   总被引:2,自引:0,他引:2  
以临河至策克铁路为研究对象,选择土壤、地貌、植被类型作为沙漠化敏感性评价因子,根据TM遥感影像,参考铁路沿线有关资料,并结合现场调查,编制了铁路沿线地貌、土壤和植被图.采用图层权重 - 级别打分叠加模型,对铁路沿线土地沙漠化敏感性进行评价.结果表明,临策铁路大部分位于沙漠化高度敏感区,占全线长度的54.5%;极度敏感区占4.4%.这些区域也是风沙流主要分布地区,在铁路工程施工期及运营期应该采取有效保护措施,防止沙漠化土地的扩大与蔓延以及风沙流的加剧.  相似文献   

4.
秦岭是中国南北气候分界线.2000年以来植被的快速恢复,对该区域生态水文过程产生了深远的影响.秦岭地区地貌多样,分析不同地貌区植被恢复特征、影响因素及其对生态水文过程的影响,对秦岭生态环境保护具有重要的借鉴意义.以位于秦岭北坡的浐灞河流域为研究对象,将整个研究区分为上游山地区、中游丘陵区和下游平原区3个分区,以归一化植...  相似文献   

5.
铜陵市铜尾矿土壤动物群落生态研究   总被引:10,自引:2,他引:10  
对安徽省铜陵市铜尾矿地6种生境中土壤动物群落进行野外调查和室内分析,研究不同弃置堆放时间的铜尾矿地土壤的动物群落结构及其与尾矿基质理化性质、植被状况等生境条件之间的关系。结果表明,尾矿堆放时间、区位地貌和植被状况的不同,尾矿基质的理化性质发生变化,导致土壤动物的种类组成和数量分布具有明显差异。土壤动物在土体中的表聚性强,绝大部分集中分布于A层(0~5cm);土壤的物理性质越稳定,土壤动物越丰富;土壤肥力越高,土壤动物越丰富多样。即尾矿地土壤的生境条件越优越,土壤动物群落的物种丰富度越大,个体数量分布越多,群落多样性越高。这些研究结论为尾矿区的生态修复和可持续利用提供了参考依据。  相似文献   

6.
露天煤矿开采作为世界范围内的主要采煤方式,在满足人类能源需求和促进社会经济发展的同时,也造成矿区生态环境破坏和生态系统固碳能力退化。研究露天煤矿土地复垦过程中生态系统碳库动态变化不仅对认识区域碳平衡具有重要意义,该变化过程还可以作为露天煤矿土地复垦效果的重要判断指标。综述了国内外露天煤矿复垦林地、复垦草地以及复垦耕地生态系统碳库动态变化的研究。已有的研究成果表明,(1)露天煤矿复垦林地、复垦草地和复垦耕地生态系统土壤碳库均较自然恢复地要高,有的矿区甚至比原地貌要高。干旱区煤矿土地复垦初期以草地固碳效果较好,而半干旱和湿润区煤矿复垦以林地效果较好。同一生态系统,碳储量随植物物种及植物配置方式而异。(2)矿区土壤碳库呈现"U"型动态恢复过程。林地土壤有机碳年均增长量为0.20~6.27 Mg·hm-2;草地为0.30~3.37 Mg·hm-2;林草混合复垦模式为0.31~2.80 Mg·hm-2。(3)复垦林地生态系统碳库主要存储在植被中,而复垦草地则主要存储在土壤中。(4)土壤碳库主要受土壤理化性质、地上植被、复垦年限、立地条件以及复垦工艺等因素影响。因此,矿区土地复垦中应注重排土场微地形优化,筛选适宜物种,优化植被配置模式和改进复垦措施,以加快矿区复垦生态系统碳库恢复。针对露天煤矿生态系统碳库研究现状,提出未来我国露天煤矿复垦生态系统碳库的研究重点,包括加强植被碳库、土壤无机碳库及总碳库全生命周期研究,加强荒漠区露天煤矿碳库研究,以期为全面认识我国露天煤矿复垦生态系统碳库研究提供科学依据。  相似文献   

7.
城市化已成为全球土地覆被变化的主要驱动因素之一。城市化及其引起的土地覆被变化对城市生态系统碳动态具有重要的影响。以快速城市化的典型区域——深圳市为例,采用遥感影像解译与实地生态调查相结合的方法,研究了1986—2015年间城市化引起的土地覆被变化对城市生态系统碳密度和碳储量的影响,旨在加深对城市生态系统碳循环的认知,为城市生态系统碳管理提供科学依据。研究结果显示,(1)研究区城市化过程中土地覆被变化的主要特征是建设用地的急剧扩张。林地、耕地、园地等在面积减少的同时,景观趋于破碎化。(2)研究区植被和土壤的碳密度呈现出明显的空间异质性。研究时段内,植被和土壤的平均碳密度分别减少了约5.1 t?hm~(-2)、11.8 t?hm~(-2)。(3)研究区城市生态系统碳储量的变化大致经历了3个阶段:城市化"初始期"以自然植被和农业用地为主的高碳储量期;城市化"加速期"建设用地快速扩张带来的城市生态系统碳储量急剧下降;城市化"稳定期"城市生态系统碳储量逐渐恢复。(4)研究时段内土地覆被变化造成研究区城市生态系统约16.8 t?hm~(-2)的碳损失,占城市生态系统碳储量的37.7%。虽然城市化总体上导致了城市生态系统碳密度和碳储量的减少,但通过适当的城市植被与土壤的碳管理措施可以使城市生态系统碳库逐渐得到恢复。  相似文献   

8.
植被作为反映陆地生态系统和气候的重要指标,对研究全球或区域生态环境变化具有重要作用.以地处黄土高原生态脆弱区的榆林市为研究区,基于地理探测器模型,选取坡向、坡度、气温、降水和土壤类型5类自然因子,土地利用类型、人口密度和GDP 3类人文因子,分析榆林地区植被空间分异特征及其驱动力,并揭示了促进植被生长影响因子的最适宜特...  相似文献   

9.
土地利用、覆被变化(LUCC)与环境变化关系研究进展   总被引:1,自引:0,他引:1  
土地利用、覆被变化(LUCC)作为环境变化的主要原因之一,已成为全球变化研究的前沿和热点问题。文章总结了国内外 LUCC 与环境变化关系的主要研究成果和方法,继而从气候、碳循环、土壤环境、水环境以及生态环境对土地利用方式的限制等方面概括了 LUCC 与环境变化之间的关系。LUCC 通过改变大气成分和下垫面性质对气候造成影响;影响着陆地生态系统的碳循环;改变土壤的理化性质,带来土壤污染、土壤养分迁移等土壤质量问题;并且引起水体的非点源污染,影响区域的产水量和水循环。同时,环境变化对LUCC具有限制作用。不仅通过特定的气候环境直接限制土地的利用方式;还间接通过借助人类生态环境意识的改变,实现对区域土地利用强度与方式的约束。LUCC既是全球环境变化的原因,也是全球环境变化的结果。LUCC 与生态环境之间存在着复杂的、非线性的动态反馈关系。进一步探讨了当前 LUCC 与环境变化关系的主要研究方向和相关研究方法,针对目前存在的缺乏统一的指标体系,研究区域、时空尺度单一,以单要素静态研究为主,实验研究相对薄弱以及动态模拟不够等问题,提出加强跨学科综合交叉研究、注重多尺度探讨LUCC的环境效应、构建一个 LUCC 环境效应研究的统一指标体系及加强“3S”技术与模拟模型的融合等建议。为寻求更科学更合理的土地利用方式提供了基础信息。  相似文献   

10.
参照《(DZ/T 0295—2016)土地质量地球化学评价规范》测定了土壤样品中17项元素指标,查明了土壤环境质量和土壤养分丰缺状况,综合评价得到土壤质量综合等级.结果表明,研究区农用地环境综合质量状况较好,地球化学等级以中等为主,面积占85.9%;土壤养分综合等级以稍缺为主,有机质、N、Fe和Zn较缺乏,Mo较丰富.土壤环境质量总体较好,轻度-重度污染面积不足8%,土壤污染主要受As、Cr和Cd的影响.同时,本次评价发现了占研究区面积5.3%的富硒土地资源,为当地发展富硒特色农产品提供了基础依据.  相似文献   

11.
Abstract: The landscape of the intermountain west has changed dramatically in the last 150 years, particularly in the state of Washington, where over half the native shrubsteppe ecosystem has been converted to agricultural lands, resulting in a fragmented landscape with few extensive tracts of shrubsteppe. We examined the historical and current distribution of shrubsteppe on different soil types in eastern Washington, and we censused bird communities at 78 sites in shrubsteppe from 1991 to 1993. We compared abundance of species among soil types and range conditions and developed models of species occurrence using site-specific vegetation and landscape variables. The pattern of shrubsteppe conversion has resulted in a disproportionate loss of deep soil communities. Eight bird species showed strong relationships with soil type and three with range condition. These associations likely resulted from the influence of soil type and range history on the vegetation of these communities. Brewer's Sparrows (  Spizella breweri ) and Sage Sparrows ( Amphispiza belli ) reached their highest abundances in deep, loamy soils, whereas Loggerhead Shrikes (   Lanius ludovicianus ) were most abundant in deep, sandy soils. Sage Sparrows occurred more frequently in landscapes dominated by shrubsteppe, indicating a negative relationship with fragmentation. Our results suggest that fragmentation of shrubsteppe and the pattern of agricultural conversion among soil types have had detrimental effects on numerous shrubsteppe species. The landscape for species with an affinity for deep, loamy soil communities has changed considerably more than the overall loss of shrubsteppe would indicate. Conservation practices that emphasize retention of shrubsteppe communities on deep soils and that reduce further fragmentation will be critical to the maintenance of avian biological diversity in this system.  相似文献   

12.
A model of rainfall redistribution in terraced sandy grassland landscapes   总被引:5,自引:0,他引:5  
A simple model of rainfall redistribution within a terraced sandy grassland landscape has been developed. The model assumes that rainfall redistribution is driven by rainfall impulses and is controlled by characteristic field capacity of soils. When the rainfall intensity is large enough to render soil water content greater than its characteristic field capacity, the excessive soil water can drain very quickly by means of large amounts of non-capillary pores of sandy soils or by means of surface runoff. Exponential distribution of rainfall impulses was assumed and tested with measured daily rainfall at two meteorological stations in the sandy grassland area of north China. The model was solved to give the equivalent rainfall at each terrace in the landscape.  相似文献   

13.
稀土尾矿区土壤重金属污染与优势植物累积特征   总被引:7,自引:0,他引:7  
矿山废弃地不仅占用大量土地,而且还是严重的污染源,因此,矿山废弃地的生态恢复己成为一项紧迫而重要的研究课题。对广东省河源市和平县下车镇内的稀土矿区土壤的重金属污染情况进行调查,并对该区优势植物对重金属的富集特征进行分析,以期对稀土尾矿区的生态系统的恢复和重建提供理论依据。主要研究的3种植物分别是:马唐草(Digitaria sanguinalis),香根草(Vetiveria zizanioides),望江南(Cassia occidentalis)。采用原子吸收分光光度法测定稀土矿区废弃地土壤和植被中Mn、Pb、Zn的含量,并计算优势植物对重金属的生物富集系数BAC(Biological Accumulating Coefficient)和生物转移系数BTC(Biological Transfer Coefficient)。结果表明:研究区域的土壤中重金属含量Mn、Pb、Zn的平均含量均超出广东省土壤背景值和中国土壤背景值,土壤受Mn污染最严重,其次是Pb、Zn的污染。3种草本植物对于Pb的BAC和BTC均小于1,说明这3种植物对Pb的富集和运输能力都很弱。香根草对于Mn和Zn的BAC分别为0.9和0.4,小于1,BTC分别为3.7和1.1,大于1,说明香根草对Mn和Zn的富集能力不强,但吸收后的运输能力很强。马唐草和望江南2种植物对于Mn和Zn的BAC和BTC均大于1,说明它们对重金属Mn和Zn具有较强的吸收和转移能力,是Mn和Zn的超富集植物。马唐草覆盖率高,抗病虫能力强,可作为该矿区生态恢复的先锋植物,望江南可以间作种植。  相似文献   

14.
A model is presented to predict sanitary felling of Norway spruce (Picea abies) due to spruce bark beetles (Ips typographus, Pityogenes chalcographus) in Slovenia according to different climate change scenarios. The model incorporates 21 variables that are directly or indirectly related to the dependent variable, and that can be arranged into five groups: climate, forest, landscape, topography, and soil. The soil properties are represented by 8 variables, 4 variables define the topography, 4 describe the climate, 4 define the landscape, and one additional variable provides the quantity of Norway spruce present in the model cell. The model was developed using the M5′ model tree. The basic spatial unit of the model is 1 km2, and the time resolution is 1 year. The model evaluation was performed by three different measures: (1) the correlation coefficient (51.9%), (2) the Theil's inequality coefficient (0.49) and (3) the modelling efficiency (0.32). Validation of the model was carried out by 10-fold cross-validation. The model tree consists of 28 linear models, and model was calculated for three different climate change scenarios extending over a period until 2100, in 10-year intervals. The model is valid for the entire area of Slovenia; however, climate change projections were made only for the Maribor region (596 km2). The model assumes that relationships among the incorporated factors will remain unchanged under climate change, and the influence of humans was not taken into account. The structure of the model reveals the great importance of landscape variables, which proved to be positively correlated with the dependent variable. Variables that describe the water regime in the model cell were also highly correlated with the dependent variable, with evapotranspiration and parent material being of particular importance. The results of the model support the hypothesis that bark beetles do greater damage to Norway spruce artificially planted out of its native range in Slovenia, i.e., lowlands and soils rich in N, P, and K. The model calculation for climate change scenarios in the Maribor region shows an increase in sanitary felling of Norway spruce due to spruce bark beetles, for all scenarios. The model provides a path towards better understanding of the complex ecological interactions involved in bark beetle outbreaks. Potential application of the results in forest management and planning is discussed.  相似文献   

15.
Proliferation of woody plants in grasslands and savannas is a persistent problem globally. This widely observed shift from grass to shrub dominance in rangelands worldwide has been heterogeneous in space and time largely due to cross-scale interactions among soils, climate, and land-use history. Our objective was to use a hierarchical framework to evaluate the relationship between spatial patterns in soil properties and long-term shrub dynamics in the northern Chihuahuan Desert of New Mexico, USA. To meet this objective, shrub patch dynamics from 1937 to 2008 were characterized at patch and landscape scales using historical imagery and a recent digital soils map. Effects of annual precipitation on patch dynamics on two soils revealed strong correlations between shrub growth on deep sandy soils and above-average rainfall years (r = 0.671, P = 0.034) and shrub colonization and below-average rainfall years on shallow sandy soils (r = 0.705, P = 0.023). Patch-level analysis of demographic patterns revealed significant differences between shrub patches on deep and shallow sandy soils during periods of above- and below-average rainfall. Both deep and shallow sandy soils exhibited low shrub cover in 1937 (1.0% +/- 2.3% and 0.3% +/- 1.3%, respectively [mean +/- SD]) and were characterized by colonization or appearance of new patches until 1960. However, different demographic responses to the cessation of severe drought on the two soils and increased frequency of wet years after 1960 have resulted in very different endpoints. In 2008 a shrubland occupied the deep sandy soils with cover at 19.8% +/- 9.1%, while a shrub-dominated grassland occurred on the shallow sandy soils with cover at 9.3% +/- 7.2%. Present-day shrub vegetation constitutes a shifting mosaic marked by the coexistence of patches at different stages of development. Management implications of this long-term multi-scale assessment of vegetation dynamics support the notion that soil properties may constrain grassland remediation. Such efforts on sandy soils should be focused on sites characterized by near-surface water-holding capacity, as those lacking available water-holding capacity in the shallow root zone pose challenges to grass recovery and survival.  相似文献   

16.
农田土壤固碳不仅可以减缓气候变化,而且能够提高土壤质量。推荐管理措施,如少、免耕和秸秆还田等,具有促进农田土壤有机碳(SOC)增加的巨大潜力。旱地占中国农田面积的70%以上,在固定大气CO2方面可以发挥重要作用。本研究基于黄淮海地区的一个旱地土壤肥力长期监测点数据并运用Century模型模拟了监测期间(1998~2007)土壤有机碳动态变化。在此基础上,设计了1种基础管理措施情景和4种推荐管理措施情景并模拟了它们未来20年的固碳潜力。模拟结果表明,监测期间监测点土壤有机碳密度增加2.72 Mg.hm-2,年均增加0.27 Mg.hm-2。土壤有机碳的增加主要是因为氮肥施用量的增加。模型验证结果表明,Century模型很好地模拟了监测点土壤有机碳的动态变化。各推荐管理措施均具有较大的固碳潜力,其中50%秸秆还田是比少、免耕更有效的固碳措施,而少耕+50%秸秆还田的固碳潜力最大。因此,在黄淮海地区旱地推广实施推荐管理措施是促进农田土壤固碳的有效策略,有助于减缓大气CO2浓度升高和保障国家粮食安全。  相似文献   

17.
Nickel hyperaccumulator plants have been the focus of considerable research because of their unique ecophysiological characteristics that can be exploited in phytomining technology. Comparatively little research has focussed on the soil chemistry of tropical nickel hyperaccumulator plants to date. This study aimed to elucidate whether the soil chemistry associated with nickel hyperaccumulator plants has distinctive characteristics that could be indicative of specific edaphic requirements. The soil chemistry associated with 18 different nickel hyperaccumulator plant species occurring in Sabah (Malaysia) was compared with local ultramafic soils where nickel hyperaccumulator plants were absent. The results showed that nickel hyperaccumulators in the study area were restricted to circum-neutral soils with relatively high phytoavailable calcium, magnesium and nickel concentrations. There appeared to be a ‘threshold response’ for the presence of nickel hyperaccumulator plants at >20 μg g?1 carboxylic-extractable nickel or >630 μg g?1 total nickel, and >pH 6.3 thereby delimiting their edaphic range. Two (not mutually exclusive) hypotheses were proposed to explain nickel hyperaccumulation on these soils: (1) hyperaccumulators excrete large amounts of root exudates thereby increasing nickel phytoavailability through intense rhizosphere mineral weathering; and (2) hyperaccumulators have extremely high nickel uptake efficiency thereby severely depleting nickel and stimulating re-supply of Ni from diffusion from labile Ni pools. It was concluded that since there was an association with soils with highly labile nickel pools, the available evidence primarily supports hypothesis (2).  相似文献   

18.
Five medicinal plants viz. Abelmoschatus moschatus Linn., Clitoria tematea L., Plumbagozeylanica L., Psorolea corylifolia L. and Withania sominifera L. were grown in a polypot experiment in five soils representing coal mine soil, coppermine soil, fly ash, skeletal soil and forest soil with and without mycorrhizal inoculations in a completely randomized block design. Dry matter yield and mycorrhizal root colonization of plants varied both in uninoculated and inoculated conditions. The forest soil rendered highest dry matter due to higher yield of A. moschatus, P. zeylanica and P corylifolia while fly ash showed lowest dry matter without any inoculants. P. cematea were best in coalmine soil and W. sominifera in copper mine soil without mycorrhizal inoculation. The mycorrhiza was found to enhance the dry matter yield. This contributed minimum 0.19% to maximum up to 422.0% in different soils as compared to uninoculated plants. The mycorrhizal dependency was noticed maximum in plants grown in fly ash followed by coal mine soil, copper mine soil, skeletal soil and forest soil. The mycorrhizal response was increased maximum in W. sominifera due to survival in fly ash after inoculation followed by P corylifolia and P cematea. Percent root colonization in inoculated plant was increased minimum of 1.10 fold to maximum of 12.0 folds in comparison to un-inoculated plants . The native mycorrhiza fungi were also observed to colonize 4.0 to 32.0% roots in plants understudy. This study suggests that mycorrhizal inoculation increased the dry matter yield of medicinal plants in all soils under study. It also helps in survival of W. sominifera in fly ash.  相似文献   

19.
冻融对长白山森林土壤碳氮矿化的影响   总被引:1,自引:0,他引:1  
长白山地区秋末春初常常存在冻融过程,冻融过程影响土壤水分分布而改变土壤理化性质。通过室内模拟实验,研究了冻融过程(-20~15℃)对长白山阔叶红松(Pinus koraiensis)林和白桦(Betula platyphylla)林土壤有机碳和氮矿化过程的影响。结果表明,经过3次冻融循环,冻融处理土壤矿化速率显著高于对照处理,但经过多次冻融循环过程,冻融处理抑制土壤有机碳矿化过程,对照处理土壤有机碳矿化速率高于冻融处理(P=0.019)。在培养结束后,冻融处理的阔叶红松林和白桦林土壤无机氮质量分数,分别是对照处理的1.88倍和1.96倍;冻融次数也是影响土壤有机氮矿化的一个重要因素,35次冻融循环后,阔叶红松林和白桦林土壤中无机氮分别提高了2.10倍和2.81倍。冻融循环促进了土壤有机氮的矿化,有利于土壤中有效氮的累积,为春季植物生长提供足够的氮素,但也潜在增加了土壤中无机氮流失的风险。  相似文献   

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