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1.
晋西北不同土地恢复管理措施下土壤物理性状分析   总被引:1,自引:0,他引:1  
【目的】晋西北丘陵风沙区由于受风蚀影响,土壤沙化十分严重,生态恢复是缓解此问题的主要措施之一。研究不同土地恢复管理措施旨在为提高晋西北黄土高原丘陵风沙区农田土壤质量及植被恢复提供理论依据。 【方法】本研究以晋西北五寨县作为研究区,设置4种土地恢复措施:传统翻耕播种玉米 (CTC)、免耕播种玉米 (NTC)、免耕播种苜蓿 (NTA)、撂荒地 (WL)。通过野外和室内分析的方法,分析了0—50 cm土层土壤粒度组成、粒度参数和土壤质量含水量、土壤饱和持水量、毛管持水量。 【结果】1) 晋西北地区土壤主要以砂粒和粉粒为主。撂荒地砂粒含量最大,且随着深度的增加变化不明显;其它3种措施下的土壤表层砂粒含量均小于深层。不同土地恢复措施间粒度参数差异较大,翻耕分选较差,免耕玉米和免耕苜蓿属于分选中等到分选较好范围,表明翻耕地块土壤受到人为扰动较大,导致土壤偏细,其粉粒含量在0—50 cm土层变化范围为6.5%~15.3%,而免耕苜蓿和免耕玉米土壤环境相对较好。2) 4种土地恢复措施下表层 0—40 cm的土壤容重均低于深层土壤,翻耕、免耕播种玉米和免耕播种苜蓿的土壤容重范围在1.10~1.50 g/cm3之间,表现为WL>NTA>NTC>CTC,撂荒地土壤容重与其它三种处理措施的土壤容重差异显著 (P < 0.05),其他三种措施间差异不显著,40—50 cm土层四种土地恢复措施之间无显著差异;表层 0—30 cm的土壤孔隙度以翻耕总孔隙度最大。翻耕地块土壤孔隙度显著高于其它三种恢复措施,其它三种恢复措施间无显著性差异,40—50 cm土层四种土地恢复措施之间无显著差异。3) 不同土地恢复措施之间土壤质量含水量、饱和持水量和毛管持水量存在较大差异,翻耕地块表层0—20 cm土壤毛管持水量显著高于其它三种恢复措施;免耕苜蓿和免耕玉米地块毛管持水量无显著差异,两者均显著高于撂荒地,20—30 cm土层免耕苜蓿地块显著低于翻耕和撂荒地,30—40 cm土层撂荒地与免耕玉米显著低于翻耕和免耕苜蓿,40—50 cm土层四种土地恢复措施之间无显著差异。4) 土壤毛管持水量和饱和持水量与毛管孔隙度和非毛管孔隙无显著相关关系,与总孔隙度呈显著正相关关系。土壤质量含水量和毛管持水量与粘粒含量无显著相关;与砂粒含量呈极显著负相关,相关系数分别为–0.619和–0.474;与粉粒含量呈显著正相关,相关系数分别为0.639和0.584。 【结论】晋西北丘陵风沙区翻耕、免耕玉米和免耕苜蓿三种土地恢复措施都不同程度地降低了表层土壤砂粒含量,提高了土壤孔隙度,降低了土壤容重,改善了土壤的保水和供水能力,7年常规耕种和免耕种植作物都显著改善了土壤的物理性状,有助于生态的恢复和提高土壤的生产力。因此,在晋西北地区不提倡土地撂荒。  相似文献   

2.
深松与压实对红壤坡耕地土壤物理性质的影响   总被引:4,自引:1,他引:3  
《土壤通报》2017,(6):1347-1353
以红壤坡耕地为研究对象,研究了深松和机械压实对土壤物理性质的影响。结果表明:深松改善了除土壤最小持水量和毛管孔隙度外的土壤物理性质,并对表层土壤的改善效果较好,进而提高了红薯产量;机械压实则对除土壤紧实度和最小持水量外的土壤物理性质产生了负面影响,影响深度达30 cm左右,造成红薯产量降低。0~20 cm土层土壤容重、土壤孔隙度及土壤持水量之间呈显著或极显著相关;20~40 cm土层土壤容重、毛管孔隙度与土壤紧实度分别呈极显著和显著相关性,土壤持水量与土壤非毛管孔隙度、总孔隙度呈显著或极显著正相关。可见,避免机械压实并对深松耕作管理模式进行优化,是缓解红壤坡耕地农业生产与生态破坏的突破口之一。  相似文献   

3.
通过比较贵州喀斯特山区森林火烧迹地不同坡位表层土壤和未受火灾区域表层土壤的理化性质可以看出,较大森林火灾、重大森林火灾以及特别重大森林火灾下的土壤含水量、田间持水量、毛管孔隙度以及土壤通气度均降低,土壤容重和非毛管孔隙度增加,而火灾后土壤化学性质的改变因火灾等级的不同而有所不同,总体上火烧迹地土壤有机质和全氮含量均显著低于未受火灾区域,而在重大森林火灾和特别重大森林火灾下,火烧迹地的速效磷含量大幅增加。  相似文献   

4.
黄河三角洲引黄灌区不同植被类型的降盐改土功能   总被引:4,自引:1,他引:3  
王晓芳  夏江宝 《水土保持学报》2012,26(3):141-144,179
以裸地为对照,对黄河三角洲小开河引黄灌区输沙干渠两侧的白蜡林、棉田及杂草地3种植被类型改良土壤盐碱程度、土壤容重和孔隙度状况、土壤养分含量及土壤呼吸速率等参数进行比较分析。结果表明:①植被建设具有降盐效应,棉田、白蜡林、杂草地含盐量均值分别比裸地下降66.7%,52.4%,16.7%,表层低于20-40cm土层。②植被建设使土壤容重减小、孔隙度增大,土壤容重均值表现为白蜡林<杂草地<棉田<裸地,总孔隙度则与之相反,对土壤表层的改良效果好于20-40cm土层。③不同植被类型土壤有机质及速效养分含量均有提高,白蜡林、棉田、杂草地土壤有机质含量均值分别是裸地的2.72,2.03,1.75倍,土壤表层高于20-40cm土层。④白蜡林、杂草地、棉田的土壤呼吸速率日动态呈现单峰曲线,土壤呼吸速率日均值及日变幅均表现为白蜡林>棉田>杂草地>裸地,其中白蜡林、棉田、杂草地土壤呼吸速率日均值分别是裸地的8.01,6.47,3.36倍。  相似文献   

5.
不同土地利用类型土壤入渗性能及其影响因素研究   总被引:8,自引:0,他引:8  
土壤入渗性能是土壤侵蚀研究的热点内容,其值受土壤理化性质的影响较大。为了准确测得紫色土区不同土地利用类型土壤入渗性能,采用一种新方法——点源入渗法对其进行测定,并对不同土地利用类型土壤入渗性能与其理化性质进行了相关性分析。结果表明:(1)不同土地利用类型土壤理化性质差异性较大,土壤初始含水率、非毛管孔隙度、毛管孔隙度、0.25mm团聚体含量和有机质含量基本上是表层土大于下层土;(2)不同土地利用类型土壤入渗性能差异较大,初渗速率和平均入渗率大小基本表现为林地坡耕地草地,稳渗速率则为坡耕地林地草地,达到稳渗时间为坡耕地林地草地;(3)初渗速率与湿筛MWD值和结构破坏率呈显著正相关,与毛管孔隙度呈显著负相关;(4)稳渗速率与非毛管孔隙度呈显著正相关,与容重呈显著负相关;(5)平均入渗率与非毛管孔隙度和结构破坏率呈正相关,其相关系数较大,与土壤容重和毛管孔隙度呈负相关,其相关系数绝对值较大。本研究可为紫色土区土壤入渗的研究提供理论依据。  相似文献   

6.
研究了95个桉树林的土壤肥力。按母岩将95个林分土壤合并为花岗岩、石灰岩、紫色砂岩、砂页岩、玄武岩发育的土壤类型,分析各类土壤的理化性质与桉树生长的关系。结果表明:花岗岩发育成的土壤的容重较小,非毛管孔隙较多,通气好,持水量一般;各种养分都处于中等或偏低水平,但在5种母岩形成的土壤中多处于较高水平,整体土壤肥力较高;石灰岩发育成的土壤容重最小,毛管孔隙和最大持水量大,非毛管孔隙较小,故保水能力强,通气差,全N含量在5种土壤中稍低,其它养分含量均较高,整体土壤肥力高;紫色砂岩发育成的土壤容重大,非毛管孔隙极少,通气差,持水量小,全K和速效K含量位于5种土壤之首,其它养分含量低,整体的土壤肥力低;砂页岩发育成的土壤毛管孔隙度小,非毛管孔隙度大,通气好,在5种土壤中全N含量较高,其它养分含量处于中等或较低水平,土壤肥力较差;玄武岩发育成的土壤容重中等、毛管孔隙少、非毛管孔隙中等,全P和有效P含量在5种土壤中较高,其余养分含量较低,土壤肥力较低。将桉树林地与其它林地的土壤理化性质比较可知,桉树林地的土壤容重大,通气不良,持水能力差,有机质、全N、全K、速效N、速效K含量低。  相似文献   

7.
不同人工造林树种及其配置方式对土壤理化性质影响分析   总被引:3,自引:0,他引:3  
人工造林是黄土高原改善生态环境,减少水土流失的重要手段。不同树种及其配置方式下地表植被的生长、土壤理化性质的差异影响着生态水文功能的强弱。以长武王东沟流域8种造林树种和不同配置径流小区为研究对象,采用样方法进行造林地及林下地表植被调查,分层采样测定0—40cm土层土壤容重、孔隙度、有机质含量,分析不同人工造林模式下土壤理化性质,并初步分析了植被特征与土壤理化性质间的关系。结果表明:不同造林方式小区内林下草本层虽然覆盖度区别很大,但物种丰富度、多样性、均匀度指数差异不显著。0—20cm表层土壤理化性质变异性小于20—40cm土层。不同人工造林方式间土壤容重差异显著,且对20—40cm层土壤的毛管孔隙度、总孔隙度有显著性影响。不同造林方式下草本层丰富度、多样性指数与林下土壤毛管孔隙度相关性显著。草本层丰富度、多样性与0—20cm表层土壤的保水作用存在良好的对应关系。相比较而言,0—40cm土壤剖面上,草地和侧柏刺槐混交林地下的土壤孔隙度和有机质等理化性质,以及相关的蓄水性和入渗性等生态水文功能要好于其他造林林种。  相似文献   

8.
研究深圳城市绿地土壤水库特征及其相关影响因素,为海绵城市建设和城市绿地水土保持提供参考。针对不同类型绿地(交通、公园、小区)在不同深度土层(0—30 cm,30—60 cm)分析了土壤水库特征,并探究了土壤理化性质对土壤水库特征的影响。结果表明:深圳城市绿地土壤死库容及滞洪库容较低,但有效库容较大,约占总库容的68%,这表明深圳城市绿地土壤有较大的水分存蓄空间;交通绿地的总库容及死库容显著高于小区绿地、公园绿地(p0.05),公园绿地死库容显著高于小区绿地(p0.05),说明不同类型绿地的不同利用方式可影响绿地土壤死库容;深圳城市绿地土壤压实较为严重,透气性能差,非毛管孔隙度较低;土壤容重、孔隙度、毛管孔隙度、非毛管孔隙度、砂粒含量显著影响土壤水库,改善土壤理化性质能显著提高土壤水库库容;深圳绿地土壤死库容较低,有效库容较大,未来可考虑降低土壤压实、提高砂粒含量、改良土壤理化性质来大幅度提高土壤水库库容。  相似文献   

9.
黄河三角洲滩地不同植被类型的土壤贮水功能   总被引:3,自引:3,他引:0  
以滩涂裸地为对照,对黄河三角洲滩地乔木林、灌木林、草地及农田等4种植被类型改良土壤的盐碱程度、容重和孔隙度状况、土壤入渗性能及蓄水能力进行对比研究.结果表明:不同植被类型均具有一定的压碱抑盐效应.且表土层盐碱含量多低于20-40 cm土层;同时降低土壤容重,增加土壤孔隙度的效应显著,并且对土壤表层的改良效果好于20-40 cm土层.不同植被类型均能改善土壤入渗性能.渗透性能由强到弱表现为乔木林>灌木林>农田>草地,其平均渗透速率分别是滩涂裸地的4.9,3.7,2.9,1.9倍.不同植被类型的土壤饱和蓄水量、毛管蓄水量、非毛管蓄水量均表现为乔木林>灌木林>草地>农田,其饱和蓄水量分别比滩涂裸地高18.3%,11.8%,3.7%和3.5%;土壤涵蓄降水量和有效涵蓄量大小均表现为乔木林>草地>灌木林>农田,且0-20 cm土层的贮水性能均好于20-40 cm.  相似文献   

10.
不同土地利用方式下土壤入渗特征及其影响因素   总被引:16,自引:6,他引:10  
采用野外测定与室内分析相结合的方法,对红叶李林、李园、梨园、桃园的入渗特征及其影响因素进行了研究。结果表明,红叶李林与李园、梨园和桃园相比,砂粒含量分别增加5.78%,16.17%和19.59%,粘粒含量分别减少5.34%,10.46%和13.57%,其土壤有机质含量、总孔隙度和非毛管孔隙度是4种土地利用方式中最高的;4种土地利用方式下土壤入渗特征差异明显,土壤渗透性能表现为红叶李林李园梨园桃园,这表明红叶李林能够有效延缓地表径流的发生;不同土地利用方式下土壤入渗能力与砂粒含量、有机质含量、非毛管孔隙度及总孔隙度呈正相关,与粉砂粒含量、粘粒含量、土壤容重和毛管孔隙度呈负相关,且4种土地利用方式的土壤入渗过程均可通过考斯加可夫公式进行高精度拟合。  相似文献   

11.
于路加  王翠平  马海军  杨怀秋 《土壤》2024,56(1):202-213
为阐明银川市黄河滩地土壤性质的空间分布特征,分析不同用地类型(荒地、林地、耕地、退耕地)之间土壤性质的差异,通过均匀取样法实地采集银川市黄河滩地耕层土壤样品92份,采用地统计学和模糊数学法对土壤容重、孔隙度、田间持水量等物理性质和pH、电导率、可溶性盐、有机质、全氮、全磷、全钾、碱解氮、有效磷、速效钾、硝态氮、铵态氮等化学性质的空间分布特征进行了分析和综合评价。结果表明:银川市黄河滩地表层土壤容重在1.07~1.52 g/cm3,田间持水量为18.18%~31.16%,总孔隙度介于33.60%~49.83%,毛管孔隙度在26.67%~36.43%,非毛管孔隙度为5.6%~17.00%;土壤均为盐碱土,氮、磷元素含量偏低,其余养分含量处于中等水平;不同用地类型之间,林地的物理特征表现最优,退耕地土壤pH显著高于耕地(P<0.05),电导率、可溶性盐和铵态氮含量均表现为退耕地显著高于其他3种用地类型(P<0.05),全磷含量表现为林地显著低于其他3种用地类型(P<0.05),有效磷含量表现为耕地和退耕地显著高于林地和荒地(P<0.05),其余理化性状差异不显著;田间持水量、总孔隙度和非毛管孔隙度在空间上的分布总体表现为上游偏大、下游偏小,容重、pH、电导率、可溶性盐含量、有效磷含量在空间上的分布特征与之相反,其余理化性状空间分布特征规律性不明显。研究区土壤综合肥力指数(IFI)平均值处于中下水平,土壤pH和无机态氮是土壤质量的制约因子,要改善土壤酸碱度、提高氮素含量才能提高整体土壤质量水平。  相似文献   

12.
王诚楠  张伟东  王雪峰  洪毅 《土壤学报》2015,52(5):1135-1143
在2013年对大连市大魏家镇海水入侵污染区域进行了土壤理化性质和线虫群落调查,在此基础上,应用线虫多样性指数和功能类群指数研究海水入侵土壤盐渍化以及不同土地利用方式对土壤线虫群落结构的影响。研究期间共鉴定出土壤线虫30科48个属。其中食细菌类群的比例最高,共17属,占总数42.81%;其次为杂食/捕食类群,共9个属,占总数25.26%。优势属为Plectus。结果显示:海水入侵已造成该地区土壤盐渍化;土壤盐分与线虫生态指数SR、f/b、NCR、PPI、MI、PPI/MI、PP%、FF%、BF%和OP%存在显著的相关关系;土地利用方式、土壤盐分对线虫群落的生态指数影响显著,是影响该地区土壤线虫群落结构的主要因素。通过开展土壤线虫对海水入侵土壤盐渍化响应的研究,为促进沿海受海水污染区土壤生态系统的健康发展提供科学依据。  相似文献   

13.
I. Celik   《Soil & Tillage Research》2005,83(2):270-277
Forest and grassland soils in highlands of southern Mediterranean Turkey are being seriously degraded and destructed due to extensive agricultural activities. This study investigated the effects of changes in land-use type on some soil properties in a Mediterranean plateau. Three adjacent land-use types included the cultivated lands, which have been converted from pastures for 12 years, fragmented forests, and unaltered pastures lands. Disturbed and undisturbed soil samples were collected from four sites at each of the three different land-use types from depths of 0–10 cm and 10–20 cm in Typic Haploxeroll soils with an elevation of about 1400 m. When the pasture was converted into cultivation, soil organic matter (SOM) pool of cultivated lands for a depth of 0–20 cm were significantly reduced by, on average 49% relative to SOM content of the pasture lands. There was no significant difference in SOM between the depths in each land-use type, and SOM values of the forest and pasture lands were almost similar. There was also a significant change in soil bulk density (BD) among cultivation (1.33 Mg m−3), pasture (1.19 Mg m−3), and forest (1.25 Mg m−3) soils at depth of 0–20 cm. Only for the pasture, BD of the depth of 0–10 cm was significantly different from that of 10–20 cm. Depending upon the increases in BD and disruption of pores by cultivation, total porosity decreased accordingly. Cultivation of the unaltered pasture obviously increased the soil erodibility measured by USLE-K factor for each soil depth, and USLE-K factor was approximately two times greater in the cultivated land than in the pasture indicating the vulnerability of the cultivated land to water erosion. The mean weight diameter (MWD) and water-stable aggregation (WSA) were greater in the pasture and forest soils compared to the cultivated soils, and didn’t change with the depth for each land-use type. Aggregates of >4.0 mm size were dominant in the pasture and forest soils, whereas the cultivated soils comprised aggregates of the size ≤0.5 mm. I found that samples collected from cultivated land gave the lowest saturated hydraulic conductivity values regardless of soil depths, whereas the highest values were measured on samples from forest soils. In conclusion, the results showed that the cultivation of the pastures degraded the soil physical properties, leaving soils more susceptible to the erosion. This suggests that land disturbances should be strictly avoided in the pastures with the limited soil depth in the southern Mediterranean highlands.  相似文献   

14.

Purpose

The impacts of different land use practices on soil quality were assessed by measuring soil attributes and using factor analysis in coastal tidal lands. The study provided relevant references for coastal exploitation, land management and related researches in other countries and regions.

Materials and methods

Measured soil attributes include physical indicators [bulk density (ρ b), total porosity (? t) and water-holding capacity (WHC)], chemical indicators [pH, electrical conductivity (EC), total nitrogen (TN), soil organic matter (SOM), available N, available P and available K] and biological indicators (urease activity, catalase activity and phosphatase activity), and 60 soil samples were collected within five land use types [(1) intertidal soils, (2) reclaimed tidal flat soils, (3) farmland soils, (4) suburban vegetable soils, (5) industrial area soils) in Jianggang village of Dongtai county, Jiangsu province of China.

Results and discussion

The results from the investigation indicated that selected soil properties reduced to three factors for 0–20-cm soil depth; “Soil fertility status” (factor 1), “Soil physical status” (factor 2) and “Soil salinity status” (factor 3). For the first factor, the measured soil attributes with higher loadings were TN and SOM, which represented soil fertility feature, and for the second and third factors, the measured soil attributes with higher loadings were ρ b and available K as well as EC, which reflected soil physical properties and soil salinity feature, respectively.

Conclusions

Changes in different land use types due to plants (corn, wheat and green vegetable) and application of fertilizers were characterized by promoted soil quality, including improvements in chemical properties (increasing SOM concentration, TN and nutrient available to plants; decreasing EC), improvements in soil physical properties (decreasing ρ b; increasing ? t and WHC) and enhancements in soil enzyme activities. Judging from the soil quality indices, the soil quality was affected by different land use practices and decreased in sequence of suburban vegetable soils, farmland soils, industrial area soils, reclaimed tidal flat soils and intertidal soils in the study area.  相似文献   

15.
以复垦农用地为研究对象,以原地貌未受损农用地和排土场未复垦地作为对照,共选择18个样地,对比研究复垦农用地、未复垦地及原地貌未受损农用地的土壤容重、田间持水量、pH值、有机质、全氮、全钾、有效磷、速效钾的差异,揭示复垦农用地土壤重构的过程及变异的规律。结果表明:(1)复垦农用地土壤容重、田间持水量、pH值、全钾、有效磷、速效钾的均值都略高于未受损农用地;而复垦农用地有机质、全氮的均值都略低于未受损农用地。(2)复垦农用地和未受损农用地在0-10cm的土壤容重及pH值均略低于10~20cm土层;0~10cm的土壤肥力指标均值略高于10~20em土层。(3)在0~10cm土层,复垦耕地和复垦林地的相关土壤理化性质要优于未受损耕地;在10—20cm,复垦林地土壤理化性质基本上优于未受损耕地。(4)复垦13年的耕地土壤容重、速效钾与未受损耕地差异不显著;复垦22年林地的单个土壤理化指标基本上优于复垦19年林地,复垦19年林地的单个土壤理化指标基本上优于未受损林地。  相似文献   

16.
土地利用方式是影响土壤酸化的重要因素,研究不同土地利用方式下赤红壤酸化特征可为缓解和治理赤红壤区土壤酸化提供依据。本研究采集了4种土地利用方式(菜地、果园、水田、林地)的赤红壤区土壤样品,测定了表层(0~20 cm)和表下层(20~40cm)土壤的理化性状,结合田间调查和统计数据分析了不同土地利用方式下土壤酸化特征及成因。结果表明:果园表层土壤pH显著低于林地,果园表下层土壤p H显著低于水田和林地;菜地、果园土壤交换性Al3+含量显著高于水田和林地;果园表层土壤的盐基饱和度与阳离子交换量均显著低于自然林地,菜地表下层土壤盐基饱和度显著低于水田;与水田和林地相比,菜地和果园的酸化更严重,酸缓冲能力更低。不同土地利用下施肥、复种指数以及耕作方式上的差异可能是造成气候与母质相似地区土壤酸化差异的主要原因。  相似文献   

17.
刚察县不同植被类型的土壤水分特征研究   总被引:1,自引:1,他引:0  
通过对土壤的物理性质和水分特征曲线的测定,分析了刚察县4种植被类型土壤的持水性能和供水性能。结果表明,不同植被类型土壤水分特征曲线与Van Genuchten模型非常符合,R2值都高达0.99以上,说明用Van Genuchten模型描述不同类型土壤水分数量和能量之间的关系是比较准确的。不同植被类型土壤的物理性黏粒含量为:油菜地>高草地>草灌地,土壤容重为:高草地>草灌地>油菜地,而总孔隙度为:油菜地>草灌地>高草地,表明油菜地土壤水分物理性质明显优于草灌地和高草地。土壤持水能力随着土壤吸力的增加而呈现先急剧递减后变化平缓的趋势,不同植被类型土壤持水能力为:高草地>草灌地>油菜地。通过改善土壤结构,增加土壤密度和降低土壤总孔隙度等改善土壤物理性质的措施能对其持水性能产生积极作用。土壤供水能力随着土壤吸力的增加而递减,低吸力段高草地和稠密草灌地的土壤供水性能均优于油菜地和稀疏草灌地,而高吸力段油菜地和稠密草灌地的土壤供水性能优于高草地和稀疏草灌地,表明高草地和稀疏草灌地植被极易受到干旱的威胁。  相似文献   

18.
ABSTRACT

Rice-Wheat rotation is the dominant land use in the state of Punjab, resulting in over exploitation of ground water resources. Thus, it is necessary to evaluate other land uses that requires less water and are sustainable. The present investigation was planned with four land uses viz., fallow (FLU), rice-wheat (ALU), grasses (GLU) and pear (PLU) with respect to their effect on soil organic carbon and soil physical characteristics in surface and subsurface depth in district Ludhiana, Punjab. The soil organic carbon (SOC) content was higher by 10, 30.9 and 24.9% under rice-wheat, grasses, and pear than that under fallow. The grasses showed higher soil moisture characteristics curve (SMCC) and lower bulk density (Db) than that under rice-wheat. The larger mean weight diameter (MWD) were observed under pear, grasses and fallow than that under rice-wheat by 0.21, 0.51 and 0.41 mm, respectively. The saturated hydraulic conductivity (Ks) was higher in magnitude by 56.1, 55.4 and 28%, respectively under PLU, GLU and FLU over ALU. Of the evaluated land uses, pear and grasses proved to be more sustainable by retaining more moisture, maintaining better soil physical characteristics and SOC under semiarid irrigated conditions in the state on long term gradual response.  相似文献   

19.
Environmental monitoring of small, rural watersheds was one of the components of the Natural Resources Management and Rural Poverty Alleviation Program (RS-Rural) in southern Brazil. The purpose of the monitoring was to assess the impact of promoting soil conservation and environment management practices adopted by farmers and funded by the Program. In four small monitored watersheds, in a total of 95 plots representing distinct land use and soil management, surface soil was collected to characterize ground-zero of the Program by determining several soil physical, chemical and microbiological properties. Principal component analysis (PCA) shows soil physical, chemical and biological properties were decisive in defining the agricultural soils in the rural watersheds with family farming. The sensitivity to chemical properties provides an opportunity to improve soil quality if soil management focuses on altering those properties. Soil management practiced by tobacco farmers leads to rapid, intense degradation of some natural soil properties, especially those related to the dynamics of soil organic matter, compared with more conservationist uses (forest, regrowth, and grassland). Thus, soil management must be reoriented to avoid the progress of degradation and recover soil physical and biological quality. Cover crops and by land-abandonment to allow natural vegetation are important management strategies for the degraded soils used for tobacco production, increasing soil organic matter, nutrients and microbial activity and thus allowing further crop production. In conclusion, watersheds with tobacco cropping have soils with lower quality than when under no-tillage grain production, requiring changes in land use and soil management.  相似文献   

20.
贵州喀斯特山区土壤物理性质对土壤侵蚀的影响   总被引:35,自引:1,他引:34  
徐燕  龙健 《水土保持学报》2005,19(1):157-159,175
对贵州喀斯特山区在不同土地利用方式下土壤主要物理性质对土壤侵蚀的影响进行了研究。结果表明:土壤物理性质是影响土壤侵蚀和土壤抗蚀性能的内在因素。贵州喀斯特山区土壤表现出明显的粗骨性土壤特征。不同土地利用方式下土壤物理性质具有明显的差异,林地、草地和台耕地的土壤物理性状良好,缓解了土壤侵蚀的发生发展,能有效地发挥保持水土的作用;大面积农耕坡地和裸坡地的土壤物理性状极差,促进了山区土壤侵蚀的发生发展,是引起土壤侵蚀的主要因素。喀斯特山区不同土地利用类型的土壤抗蚀能力依次为台耕地>林地、草地>坡耕地、裸坡地。  相似文献   

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