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1.
不同坡位火力楠林土壤肥力变化特征   总被引:6,自引:1,他引:5  
对不同坡位的火力楠林土壤肥力动态进行了研究。与2004年相比,2007年火力楠林上坡、中坡和下坡的土壤容重、毛管孔隙、非毛管孔隙、总孔隙变化不明显,土壤含水量显著增加;3个坡位的土壤pH值均略有减少,土壤有机质、全氮和全钾含量显著增加,全磷含量减少;3个坡位的土壤碱解氮、速效磷及中坡和下坡的速效钾含量显著增加,上坡的速效钾含量略增。2004和2007年火力楠林的土壤物理性质无明显变化规律。2004和2007年,3个坡位的pH值相近,土壤有机质、全氮和全磷含量均表现为:下坡〉中坡〉上坡。2004和2007年,土壤碱解N含量为中坡和下坡大于上坡,3个坡位的速效磷含量均相近。2004年上坡和中坡的速效钾含量小于下坡,2007年速效钾含量则表现为:下坡〉中坡〉上坡。  相似文献   

2.
宣城市岗坡地土壤养分特征及其与颗粒组成关系   总被引:1,自引:0,他引:1  
刘程海  吕成文  姚慧  黎原 《土壤通报》2012,(5):1116-1119
对宣城市岗坡地土壤养分特征及其与颗粒组成关系进行了分析,结果表明:⑴不同土地利用类型中,林地土壤有机质和全氮含量显著高于其它3种土地利用类型;耕地和新耕地土壤全磷、速效养分含量都高于林地和灌丛;土壤有机质、速效氮和速效磷含量与土地利用类型有显著的相关性。⑵土壤有机质、全氮含量中、上坡位都显著高于下坡位,全磷和速效养分的含量随坡位下降呈显著增加趋势;有机质、全磷和速效磷与坡位有显著的相关性。⑶土壤有机质与粘粒(<0.002 mm)和粉粒(0.002~0.02 mm)的含量均呈显著的正相关,与砂粒(0.02~2 mm)含量呈显著负相关,全氮与粉粒含量呈现显著正相关,全磷与粉粒、砂粒含量显著正相关。  相似文献   

3.
在宁南山区黄土丘陵区开展了退耕还林还草工程效益监测研究,测定了不同坡位退耕还林还草地的土壤养分。对土壤养分单因子分析结果表明:在同一坡面上,随着坡位的降低,退耕还林还草地0—100 cm土层土壤有机质、全氮、全磷、速效氮、速效磷平均含量增加;从不同坡位退耕还林还草地各层土壤养分含量来看,随着土层深度的增加,土壤有机质、全氮、全磷、速效氮、速效磷、速效钾含量在降低。说明半干旱黄土丘陵区林带间种植的苜蓿经营粗放,加剧了土壤养分的失调。  相似文献   

4.
赣南红壤丘陵区137Cs示踪土壤侵蚀对土壤养分元素的影响   总被引:1,自引:1,他引:0  
赣南红壤丘陵区是我国土壤侵蚀与土地退化比较严重的地区,以南丰县为例,应用137 Cs示踪技术探讨不同土地利用方式下土壤侵蚀与养分元素的关系。结果表明:(1)湿地松林、桔园、水田3种土地利用方式作用下土壤中137 Cs与养分元素分布差异显著,在垂直剖面上,湿地松林137 Cs含量呈指数递减分布,水田与桔园137 Cs含量因人为干扰在耕层内均匀分布;有机质与137 Cs有相似的分布特征;全氮、碱解氮、速效磷、速效钾含量均呈现一定表聚性。(2)位于坡地的2种土地利用方式中,湿地松林137 Cs、全氮、碱解氮、速效磷、速效钾、有机质含量均表现为下坡>上坡>中坡;桔园137 Cs活度表现为中坡>下坡>上坡,全氮、碱解氮、速效磷表现为下坡>中坡>上坡,而速效钾、有机质最大值均出现在上坡。(3)相关性分析表明,土壤137 Cs与有机质、全氮、碱解氮显著正相关,表明小流域有机质、氮元素可能与137 Cs有相同的物理运移方式,pH与137 Cs显著负相关,速效磷、速效钾则与137 Cs不相关。(4)3种土地利用方式中位于小流域谷地的水田137 Cs、有机质、全氮、碱解氮含量最高,坡地上桔园坡面137 Cs与土壤养分元素含量均高于湿地松林地,表明一定程度的坡改梯桔园种植模式能有效缓解土壤侵蚀与养分流失,改善区域生态环境。  相似文献   

5.
研究黄土高原侵蚀环境下林地开垦后坡面土壤养分空间分布状况,确立林地开垦后侵蚀驱动的坡地土壤养分空间变异特征。以黄土高原丘陵区子午岭林地和开垦28年的侵蚀坡面为研究对象,分析土壤主要性质和养分含量的变化情况,运用经典统计学和地统计法分析坡面土壤基本性质和养分空间分布规律。林地开垦后坡面土壤pH增加了0.24个单位,有机质、全氮、全磷和铵态氮、硝态氮、速效磷和速效钾分别降低了13.77,1.14,0.10 g/kg和6.05,1.63,4.99,58.44 mg/kg。林地的土壤有机质、全氮和全磷的变异系数大于开垦地,而pH和各速效养分的变异系数小于开垦地。开垦后中坡位和下坡位养分含量减少幅度较大,上坡位减少幅度较小。林地和开垦地的土壤各指标都呈中等或强烈的空间自相关。林地开垦增强了有机质、全氮、全磷、铵态氮、速效磷和速效钾的空间异质性,但减小了pH的空间异质性,地形等结构性因子主导了土壤养分空间异质性的形成。林地开垦后,pH、有机质、全氮和全磷变程增大,铵态氮、硝态氮和速效钾变程减小,速效磷在2个坡面上的变化趋势不一致。研究结果表明林地开垦极大地减少了坡面土壤养分含量,但减少幅度与坡位和坡面形态有关。同时,开垦增大了坡面土壤有机质、全氮和全磷的空间依赖性,减小了速效养分的空间依赖性。  相似文献   

6.
为了探讨坡向、坡位对苜蓿地土壤含水量的影响程度,在宁南黄土丘陵区,采用时域反射仪TDR对不同坡向、坡位种植的7 a生苜蓿地土壤体积含水量进行了分层动态监测,分析结果表明:(1)种植苜蓿7 a后,土壤旱化显现,土壤水分明显分为补水期与耗水期,3-7月属于耗水期,8-10月为补水期;(2)各坡向苜蓿地旱化最为严重的土层深度也不同,西坡(阴坡)为40-60 cm,南坡苜蓿地旱化最为严重的土层为80-100 cm,东坡(阳坡)为100-120 cm;西坡(阴坡)0-180 cm土壤平均含水量最高(13.8%).其次为南坡苜蓿地,东坡(阳坡)最低(12.8%).(3)受降水再分配影响,上、中、下坡0-180 cm平均土壤含水量变化趋势为:下坡(13.69%)>中坡(13.61%)>上坡(12.29%);土壤含水量最为活跃的0-100 cm范围内,相同层土壤含水量相比,CK>下坡>上坡>中坡.这说明种植苜蓿多年后土壤出现旱化现象,且坡位越高,土壤旱化越严重.  相似文献   

7.
以江西省玉山县红壤丘陵区不同林龄(1a和15a)人工油茶林地土壤为研究对象,按不同坡位(上、中、下)、土层(0—10,10—20cm)采集土壤样品,分析其理化性质。结果表明:(1)随着油茶林龄增加,土壤容重呈减小趋势,而土壤含水量、田间持水量均呈增大趋势;土壤pH、有机质含量除上坡位外均呈显著增大趋势(P0.05);全氮、全磷、全钾均呈减小趋势;红壤坡地水平阶整地种植油茶后,土壤理化性质有所改善,土壤含水量、田间持水量和土壤有机质含量均有不同程度的增加,而土壤容重和养分(N、P、K)含量有所降低,为满足生产需要,在油茶林抚育过程中,应注意合理施肥,尤其是磷肥的施用。(2)不同坡位间土壤理化性质表现出一定的规律性。土壤容重表现为上坡位中坡位下坡位;土壤含水量在上坡位最大,而田间持水量在下坡位最小;有机质含量、全钾均为上坡位中坡位下坡位,有机质含量在各坡位间差异显著,而全氮、全磷没有显著差异;(3)与1a油茶林地相比,15a林龄的油茶林地土壤理化性质空间差异趋于均匀化。研究结果旨在揭示水平阶整地种植人工油茶复合措施的水土保持效应,为南方红壤坡地水土流失综合治理及人工油茶林地可持续经营提供理论依据。  相似文献   

8.
扰动地表及不同坡位土壤养分特征分析   总被引:1,自引:0,他引:1  
通过径流小区试验,研究了20m坡长条件下人为扰动地表后不同坡位的土壤养分含量特征。研究结果表明,上坡和下坡扰动地表小区土壤养分含量均低于同一坡位自然坡面小区。其中,上坡7个养分指标含量差异均达极显著水平;下坡除土壤有机质含量差异不显著外,其他养分指标含量差异也达极显著水平。中坡,除土壤全氮、有机质及全磷含量是扰动地表小区极显著高于自然坡面小区外,其他土壤养分指标含量也是扰动地表小区极显著低于自然坡面小区。但是从整个径流小区坡面看,自然坡面小区土壤养分含量明显高于扰动地表小区。不同坡位,对于扰动地表小区,土壤氮素、钾素及有机质含量高低依次为下坡中坡上坡;土壤磷素含量高低依次为中坡下坡上坡。对于自然坡面小区,土壤氮素、钾素及有机质含量是下坡上坡中坡;土壤磷素含量是下坡中坡上坡。  相似文献   

9.
水旱轮作条件下免耕土壤主要理化特性研究   总被引:10,自引:1,他引:9  
采用野外调查取样与室内分析相结合的方法,研究了水旱轮作条件下.不同免耕年限土壤主要理化特性的变化特点.结果表明:(1)水作及早作后.随免耕年限延长土壤容重在免耕7~8年达到最大值,与常规耕作差异显著.长期免耕导致土壤板结;土壤pH值在免耕2~3年显著低于常规耕作.免耕致使土壤酸化.(2)水作及旱作后.免耕土壤有机质、全氮、速效氮、速效磷、速效钾均在表层(0-5 cm)富集.(3)水作及早作后,免耕土壤耕层有机质、全氮均高于常规耕作,随免耕年限延长,免耕7~8年时明显下降;旱作后耕层土壤速效氮、速效磷变化特征与有机质和全氮一致,水作后免耕土壤速效氮含量高于常规耕作,但各免耕年限间无显著差异,土壤速效磷在免耕5~6年达到最大值,显著高于常规耕作,后随免耕年限延长变化趋于稳定;水作及旱作后,土壤速效钾在免耕5~6年内.与常规耕作均无显著差异,免耕7~8年达到最大值.水作与旱作相比.各肥力指标均表现为水作高于旱作.  相似文献   

10.
水平阶整地是半干旱黄土高原丘陵沟壑区普遍应用的一种抗旱造林措施。为研究水平阶整地措施对人工油松林的影响,对20a高密度人工油松林样地的土壤水分和养分状况进行了研究。结果表明,雨季末各样地0—160cm土层的平均土壤含水量为5.43%,其中0—60cm土层为6.94%,60—160cm土层为4.53%,雨季对各样地的土壤水分补给量很小;碱解氮、速效磷、速效钾、有机质和全氮具有表聚性,尤其是0—10cm土层表聚性显著,全磷和全钾表聚性不明显;各样地pH值均大于8;0—100cm土层的全磷、速效磷、全钾和速效钾平均含量为中等水平,有机质、全氮、碱解氮为低或很低水平。结果说明在半干旱黄土区降水量不足的情况下,人工植被密度如果过大,会恶化土壤水分和养分的状况,所以人工疏伐就成了人工林后期管理和经营中必要的环节。  相似文献   

11.
In southern China, collapsing gully erosion produces massive deposits of sediment on the plough layer of alluvial fan farmland, leading to reduced nutrients, increased erodibility, and even desertification. The aim of this study was to investigate soil erodibility (the factor K in the universal Soil Loss Equation, USLE) and physicochemical properties of the alluvial fans of the most severe collapsing gully erosion areas (Hubei, Jiangxi, Fujian, and Guangdong provinces) in southern China. The soils of the collapsing gully alluvial fans had a higher bulk density, but a lower total porosity, saturated water content, and silt and clay fractions than the control (CK) soils from the farmland without desertification. Soil quality gradually decreased from fan edge to fanhead. Significant decreases were found in soil pH, organic matter, cation exchange capacity, and total potassium, nitrogen, and phosphorus, as well as available nitrogen, phosphorus, and potassium, resulting in a gradual decrease in soil nutrients from the fanedge to the fanhead. Soil erodibility was greatest in the fanhead, and soil erodibility K values of the alluvial fans were 53.71%, 66.28%, 67.53%, and 71.68 % greater than that in those of the CK soils of Hubei, Jiangxi, Fujian, and Guangdong, respectively, indicating a significant correlation between the soil erodibility K values and physicochemical properties, particularly sand fraction and organic matter content. The results provide new insights into the relationship between soil physicochemical properties and erodibility of alluvial fans, and suggest that improving soil structure might increase soil fertility in the collapsing gully alluvial fan farmland.  相似文献   

12.
Reducing greenhouse gas emissions from arable soil while maintaining productivity is a major challenge for agriculture. Biochar is known to reduce N2O emissions from soil, but the underlying mechanisms are unclear. This study examined the impact of green waste biochar (20 Mg ha?1) and lime (CaCO3; 2 Mg ha?1) application on soil gas transport properties and related changes in these to soil N2O and CO2 emissions measured using automated chambers in a field experiment cropped with maize. In situ soil water content monitoring was combined with laboratory measurements of relative soil gas diffusion coefficient (Dp/D0) at different matric potentials, to determine changes in Dp/D0 over time. Cumulative N2O emissions were similar in the control and lime treatment, but much lower in the biochar treatment. Cumulative CO2 emissions decreased in the order: lime treatment > biochar treatment > control soil. When N2O emissions were not driven by excess N supply shortly after fertilisation, they were associated with Dp/D0 changes, whereby decreases in Dp/D0 corresponded to N2O emissions peaks. No distinct pattern was observed between CO2 emissions and Dp/D0. Cumulative N2O emissions were positively related to number of days with Dp/D0 < 0.02, a critical limit for soil aeration. These results indicate that improved soil gas diffusivity, and hence improved soil aeration, may explain the effect of biochar in reducing N2O emissions. They also suggest that knowledge of Dp/D0 changes may be key to explaining N2O emissions.  相似文献   

13.
设施栽培下原状土与扰动土水分特性的试验研究   总被引:1,自引:0,他引:1  
以四川省双流县设施栽培土壤为研究对象,对其原状土与扰动土的土壤水分特征曲线、水分物理性质和比水容量等项目进行了研究。结果表明,扰动土水分特征曲线总体变化趋势与原状土较为一致。在低吸力阶段,相同吸力条件下扰动土含水量高于原状土,在高吸力阶段两者差异较小。扰动土毛管孔隙度、总孔度和凋萎含水量在剖面上的总体变化趋势与原状土较为一致。扰动土不同土层田间持水量和有效水含量差异较小,原状土的田间持水量和有效水含量均随土层加深而减少。在低吸力阶段,相同吸力条件下扰动土比水容量远高于原状土,但随土壤水吸力增加,扰动土比水容量变化趋势逐渐与原状土一致。  相似文献   

14.
土壤可蚀性研究现状及展望   总被引:10,自引:0,他引:10  
<正> 土壤可蚀性(soil erodibility)是指土壤是否易受侵蚀破坏的性能,也就是土壤对侵蚀介质剥蚀和搬运的敏感性。与侵蚀营力一样,土壤可蚀性是影响土壤侵蚀量大小的又一个重要因子。在水土保持学科中,我国习惯上把“水”和“土”并列使用,而国际上则用“soil loss”、“soil erosion”、“soil conservation”或“soil and water conservation”等术语。显然,土壤是水土保持学科的重点。另一方面,土壤侵蚀营力等是土壤流失过程中的外部因素,而土壤性质才是内在因素,因此,水土保持学科中核心的也是重要的问题,应该是土壤保护。土壤可蚀性研究在水土保持研究工作中具有重要意义,国际上把土壤可蚀性研究一直作为水土保持学科研究的重要内容之一。  相似文献   

15.
Abstract

There has been a marked change in the soil testing procedures used in the United States by state soil testing laboratories since the early 1950's. In the Coastal Plain states of the south and east, the Double Acid extraction procedure is used for P, K, Ca, and Mg determinations. Bray P1 is the most frequently used method for P extraction except for the alkaline soils of the west where the Olsen method is used. Neutral normal ammonium acetate is the most frequently used extractant for K, Ca, and Mg determinations. The Morgan extraction procedures for P, K, Ca, and Mg, commonly used in the 1950's, is used by only a few states in the northeast and west. Although similar extraction reagents are used in many sections of the United States, there is considerable variance among states regarding weighed versus volume sampling, soil to solution ratio, shaking speed and time, and extraction vessel size and shape. For soil water pH, there is little variance in method as most states are using a 1:1 soil to solution ratio. The only exception is in several western states where water pH's are read in a saturated soil paste.

Considerable efforts are underway to standardize the techniques used to test soils primarily for the extractable elements.  相似文献   

16.
Historical perspective of soil classification in Japan from Max Fesca's soil classification in 1882 to the “Unified Soil Classification System of Japan (2002)” was outlined, aiming at reviewing the progress in soil classification. The evolution can be divided into the following five aspects: 1) Max Fesca's soil texture survey and soil classification from the agro-geological point of view under the influence of the German school; 2) Introduction of the concept of pedology into the classification under the influence of the Russian school led by Dokchaev; 3) Brief history of the classification of Andosols which has exerted a considerable influence on soil classification worldwide; 4) Soil classifications developed through the implementation of national soil survey projects to independently evaluate land suitability for the cultivation of paddy rice, upland crops, and for forest establishment; 5) Attempts to develop a comprehensive soil classification system in order to unify soil classification systems for the above-mentioned land uses from 1963 to the present.  相似文献   

17.
低丘侵蚀红壤复垦后土壤微生物特征研究   总被引:18,自引:7,他引:18  
侵蚀红壤复垦培肥后 ,随着地面覆盖度的增加 ,土壤结构、土壤通气性、土壤养分状况得到改善 ,各侵蚀观测小区的年径流量、侵蚀模数、土壤流失量急剧降低 ,土壤微生物量、土壤呼吸强度、土壤酶活性均有较大幅度的提高 ,并且其在各小区的分布趋势与土壤养分和土壤水稳性团聚体的分布趋势相一致 ,说明侵蚀红壤经耕作培肥后 ,土壤有机残体的分解强度和腐殖质的合成过程得到加强 ,土壤肥力处于不断的恢复和提高过程当中 ,从土壤微生物和土壤酶活性增强的幅度来看 ,林地要优于草地 ,在林地中阔叶林优于混交林优于针叶林 (杉木林 ) ,而且随着复垦年限增加 ,土壤培肥效果更加显著  相似文献   

18.
土壤孔隙结构与土壤微环境和有机碳周转关系的研究进展   总被引:7,自引:1,他引:6  
土壤结构是土壤功能的基础,不仅影响土壤养分的供应、水分的保持及渗透、气体的交换等过程,还为土壤微生物提供了物理生境,并调控土壤有机碳的周转这一关键过程。土壤的孔隙特征能够直接、真实地反映土壤结构的好坏;用土壤的孔隙特征作为试验指标能更好地反映土壤结构对这些过程的调节作用。在此基础上,将高度异质性的土壤孔隙结构同土壤微环境的变化和土壤有机碳的周转过程进行定量分析,对深入了解土壤结构在土壤生态系统中的功能至关重要。因此,着重从土壤孔隙结构对土壤微环境的影响及其与有机碳的关系两方面展开,剖析土壤孔隙结构调控作用下的土壤微环境响应过程,阐述土壤孔隙结构对土壤有机碳周转产生的直接、间接影响,强调土壤孔隙结构在调节土壤有机碳周转进程中的重要作用,并对土壤孔隙结构在调节土壤有机碳周转、植物残体分解及其与微生物协调作用机制等方面研究提出展望。  相似文献   

19.
金沙江干热峡谷中退化的土壤生态系统生物学特征初探   总被引:4,自引:0,他引:4  
Distribution characteristics of soil animals,microorganisms and enzymatic activity were studied in the dry red soil and Vertisol ecosystems with different degradation degrees in the Yuanmou dry hot valley of the Jinsha River,China.Results showed that Hymenoptera,Araneae and Collembola were the dominant groups of soil animals in the polts studied.The numbers of groups and individuals and density of soil animals in the dry red soil series were higher than those in the Vertisol series,and the numbers of individuals and density of soil animals decreased with the degree of soil degradation.Bacteria dominated microbiococnosis not only in the dry red soils but also in the Vertisols.Microbial numbers of the dry red soil series were higher than those of Vertisol series,and decreased with the degree of soil degradation.The activities of catalase,invertase,urease and alkaline phosphatase declined with the degradation degree and showed a significant decline with depth in the profiles of both the dry red soils and the Vertisols,but activities of polyphenol oxidase and acid and neutral phosphatase showed the same tendencies only in the Vertisols.It was concluded that the characteristics of soil animals,microorganisms and enzymatic activity could be used as the bio-indicators to show the degradation degree of the dry red soils and Vertisols.Correlation among these soil bio-indicators was highly significant.  相似文献   

20.
渭北旱塬侵蚀退化土壤生产力的恢复与评价   总被引:3,自引:0,他引:3  
土壤侵蚀会降低生产力,威胁农业生产,因此,对土壤生产力进行恢复和评价具有重要意义。通过人工剥离熟土层,模拟研究不同侵蚀程度下的土壤生产力,选取施肥和覆盖表土2种恢复措施,对其土壤生产力的恢复情况展开研究并进行评价。结果表明:1)土壤侵蚀能够使土壤的理化性状恶化,施肥和覆土均能很好地改善土壤密度和孔隙度等,并能够增加土壤有机质及其他养分的质量分数。2)土壤侵蚀会降低作物产量,在不施肥下,每侵蚀1cm熟土层,玉米产量平均下降1.27%,施肥下每侵蚀1 cm熟土层,玉米产量比对照平均增加0.87%;而每覆盖1cm熟土层,玉米产量平均增加0.91%,但并不能完全补偿侵蚀造成的产量损失。3)利用土壤生产力指数模型(PI模型)计算出了不同措施下的生产力指数,发现:无肥下侵蚀的生产力指数最低,平均每侵蚀1 cm熟土层,生产力指数下降2.17%,施肥下平均每侵蚀1 cm熟土层,生产力指数比无肥增加1.09%,而平均每覆盖1 cm熟土,生产力指数增加1.29%;表明覆土较施肥更易提高土壤生产力。4)对产量和生产力指数进行相关性分析,得出二者具有很好的正相关关系,说明用生产力指数来衡量土壤生产力的高低是可行的。  相似文献   

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