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1.
耕作与覆盖措施对黄土塬区春玉米田土壤水气传输的影响   总被引:2,自引:1,他引:1  
  【目的】  良好的土壤物理和水力学性质是土壤肥力可持续的基础。研究黄土高原旱作农业区长期不同耕作、覆盖措施对土壤水气传输性质的影响,为黄土塬区可持续的农田管理提供参考。  【方法】  基于设在渭北旱塬始于2002年的田间定位试验,选取传统耕作 (CT)、传统耕作+秸秆覆盖 (TS)、传统耕作+地膜覆盖 (TP)、传统耕作+全膜覆盖 (TWP)、免耕 (NT)、免耕+秸秆覆盖 (NS)、免耕+地膜覆盖 (NP)、免耕+生草覆盖 (NG) 共8个处理。于2019年春玉米收获期采集剖面土样,对0—10、10—20、20—30和30—40 cm土层土壤质量含水量、容重、导气率、相对气体扩散率和饱和导水率进行测定与分析。  【结果】  与CT处理相比,TS处理显著增加了0—40 cm土壤平均质量含水量,降低了0—40 cm各层土壤导气率,增加了各层土壤相对气体扩散率,表层 (0—10 cm) 土壤饱和导水率显著降低了75.9%;TP处理收获期耕层 (0—20 cm) 土壤容重增加,土壤总孔隙度显著降低,在0—10 cm土层,土壤导气率显著提高了54.1%;TWP处理耕层土壤容重显著增加,土壤总孔隙度显著降低,剖面0—40 cm土壤导气率和饱和导水率分别平均增加了64.8%和111.2%,尤其是表层土壤导气率显著提高了99.5%。与NT处理相比,NS处理耕层土壤容重降低,总孔隙度增加,表层土壤质量含水量、相对气体扩散率和饱和导水率分别显著提高了14.8%、25.3%和446.4%;NP处理耕层土壤容重增加,总孔隙度降低,表层土壤质量含水量和饱和导水率分别显著增加3.5%和145.2%,土壤导气率显著降低33.7%;NG处理耕层土壤容重降低,总孔隙度增加,表层土壤质量含水量显著提高了11.3%,土壤相对气体扩散率显著降低了42.1%。相同覆盖条件下与传统耕作比较,免耕处理能够降低下层20—40 cm土壤容重,增加土壤总孔隙度,提高土壤持水性,虽然降低了表层0—10 cm土壤导气率,但提高了土壤相对气体扩散率和饱和导水率。  【结论】  免耕秸秆覆盖可降低耕层土壤容重,增加总孔隙度,并且显著提高耕层土壤相对气体扩散率和饱和导水率,增加下层土壤导气率,是免耕处理组中最佳处理。传统耕作全膜覆盖可提高耕层土壤导气率、相对气体扩散率和饱和导水率,是传统耕作组中最佳处理,可有效保持渭北旱塬良好的土壤水气传输能力。  相似文献   

2.
不同耕作深度对红壤坡耕地耕层土壤特性的影响   总被引:2,自引:0,他引:2  
红壤坡耕地不同耕作深度对耕层质量和作物产量具有重要影响。以江西红壤坡耕地示范区耕层为研究对象,从土壤属性角度,对红壤坡耕地不同耕作深度处理下垂直深度土壤水分、容重、孔隙度、土壤紧实度、土壤抗剪强度、土壤有机质、有效磷和速效钾等进行分析。结果表明:(1)不同耕作深度对土壤孔隙度、饱和含水量和田间持水量的影响为免耕翻耕20 cm翻耕10 cm常规耕作翻耕30 cm,对容重的影响为翻耕30 cm常规耕作翻耕10 cm免耕翻耕20 cm;与常规耕作比较,翻耕30 cm使土壤饱和含水量、田间持水量和土壤孔隙度分别提高了18.17%,12.67%,5.94%,土壤容重降低6.90%。(2)不同耕作深度下土壤紧实度表现为翻耕30 cm翻耕10 cm翻耕20 cm免耕常规耕作,土壤抗剪强度表现为翻耕30 cm常规耕作翻耕10 cm免耕翻耕20 cm;与常规耕作对照,翻耕30 cm使土壤紧实度和抗剪强度分别降低27.07%和24.82%。(3)土壤有机质含量以翻耕20 cm处理下最高(13.48 g/kg),免耕处理含量最低(9.39 g/kg),土壤速效养分主要集中分布在0-20 cm土层,但20-40 cm土层中翻耕处理较免耕处理有不同程度的增加,以翻耕20 cm和常规耕作表现显著。(4)主成分分析结果表明,翻耕30 cm处理对红壤坡耕地土壤的综合改善效果最好。研究结果可为红壤坡耕地耕层土壤改善和合理耕层构建提供技术参考。  相似文献   

3.
基于2015年布置的田间定位试验,结合不同土壤耕作方式与有机物料类型,设置旋耕+无还田(RT0)、旋耕+秸秆还田(RT1)、旋耕+牛粪还田(RT2)、深松+无还田(SS0)、深松+秸秆还田(SS1)和深松+牛粪还田(SS2)共6个处理,于2017年进行采样测定,研究在不同有机物料配施条件下,深松对黑土区坡耕地农田土壤孔隙度、饱和导水率、含水量、团聚体稳定性和贯入阻力等土壤物理性质的影响,为黑土区坡耕地合理耕层构建和可持续发展提供理论依据。研究结果表明:1)深松配施有机物料技术在维护表层0~10 cm土壤物理性状稳定的情况下,显著改善黑土区坡耕地农田10~30 cm土壤孔隙度、含水量和饱和导水率。深松配施有机物料对土壤孔隙度的增加幅度为2.76%~4.01%,对土壤含水量的增加幅度为3.96%~7.39%,对土壤饱和导水率的增加幅度为87.6%~125.2%,均大于无物料还田的深松处理。2)深松配施有机物料还田降低土壤贯入阻力,所影响的耕层厚度(35~45 cm)大于深松无物料还田的处理(25 cm),且这一耕层增厚效益持续整个玉米生长季。3)深松配施秸秆还田条件下黑土区坡耕地农田10~30 cm土壤团聚体平均重量直径的增加幅度为21.3%~23.1%,显著高于深松配施牛粪还田和无物料还田的深松处理。研究结果认为,深松配施秸秆还田改善表层0~10 cm以下土壤的物理保水和导水能力,增加耕层厚度,提高土壤结构的稳定性,且耕层增厚和土壤结构改善的效益持续整个玉米生育季,是比较理想的黑土区坡耕地耕层构建技术,研究结果可为黑土区坡耕地耕层构建和土壤改良提供技术支撑。  相似文献   

4.
保护性耕作对坡耕地土壤水分特性和水土流失的影响   总被引:11,自引:4,他引:7  
在黄土高原西部丘陵沟壑区水土流失严重的坡耕地进行了2 a的定位试验,研究了不同耕作方式对坡耕地土壤水分特性和水土流失的影响.研究结果表明:(1)免耕+覆盖的保护性耕作方式保水效果明显,全年平均土壤含水量比传统耕作高出1%以上,单纯的免耕与传统耕作没有显著差异.(2)免耕可使耕作层土壤水分保持相对稳定,初春播种后土壤较长时间保持较高含水量有利于作物出苗;雨后免耕处理耕作层具有更强保水能力,从而使土壤水分保持相对稳定则有利于作物生长.(3)不同耕作方式对坡耕地土壤水分特性的影响与其对士壤结构的影响有关,免耕虽然增加了耕作层土壤容重,但也增加了团聚体的稳定性,降低了团聚体破坏率,增强了土壤抗蚀力,覆盖能降低免耕地表层土壤容重,增强其持水与保墒能力.(4)免耕措施未必能减少坡地径流量,但可显著降低土壤侵蚀量,免耕辅以秸杆覆盖的保护性耕作可有效防止水土流失,径流量和产沙量较传统耕作处理分别减少了8.35%和88.11%.  相似文献   

5.
利用计算机断层扫描技术研究土壤改良措施下土壤孔隙   总被引:12,自引:5,他引:7  
为探明不同土壤结构改良措施(秸秆覆盖、免耕、有机肥、保水剂)对土壤孔隙特征及分布的影响,采用计算机断层(computed tomography,CT)扫描法定量分析了土壤孔隙的数目、孔隙度及孔隙在土壤剖面上的分布特征。结果表明:不同措施均提高了土壤总孔隙数、大孔隙数及0.13~1.0 mm孔隙数,且其孔隙度也相应提高。同时孔隙成圆率也得到了改善。各处理中以有机肥和免耕处理效果较佳,其次为保水剂和秸秆覆盖,对照最低。此外,不同措施显著提高了土壤的田间持水量和>0.25 mm 水稳性团聚体含量,降低了土壤容重,且各处理中,仍以有机肥和免耕处理效果最佳,其田间持水量分别较对照提高了15.9%和16.4%,而土壤容重较对照降低了6.8%和8.8%。相关分析表明:田间持水量、容重和>0.25 mm水稳性团聚体含量与土壤总孔隙度和大孔隙度呈显著或极显著正相关;而土壤容重对于总孔隙度和大孔隙度及孔隙成圆率呈显著负相关。  相似文献   

6.
[目的]探讨不同耕法与秸秆还田方式下,旱地草甸土土壤水分随深度运移的变化,为今后生产中因地制宜制定科学合理的耕作与培肥技术提供理论依据。[方法]采用田间定位试验,研究3种耕法免耕、浅翻、深翻与3种秸秆还田方式覆盖还田、浅翻还田、深翻还田条件下,作物生长不同时期、不同深度土层土壤含水量、田间持水量和容重的变化。[结果]土壤水分的年际间变化与降水量和降水变率有一定的关系。秸秆不还田条件下,连续2 a免耕,年际间土壤含水量随深度变化的特征曲线基本一致,0—20 cm耕层田间持水量降低13.62%,而浅翻与深翻分别增加11.32%和27.98%;耕翻深度对20—30 cm土层水分的影响较大,随作物生长和地表覆盖度增加,40 cm以下土层含水量的变化减弱。秸秆还田条件下,0—20 cm耕层浅翻还田与深翻还田田间持水量分别增加16.24%,5.08%,而土壤容重降低0.12,0.09 g/cm~3。[结论]同一耕法有秸秆还田处理土壤水分含量高于无秸秆还田,降水量越少,差异越明显。与免耕和免耕覆盖比较,翻耕与翻耕还田均增加了作物生长期间土壤含水量,提高了作物抗旱能力,产量有增加趋势。  相似文献   

7.
为探究长期秸秆覆盖免耕对黑土坡耕地土壤结构的影响以及水土保持效应,通过秸秆覆盖免耕(NT)和传统顺坡耕作(CT)2组长期定位田间试验,对土壤结构、土壤保水能力、保土效应作对比分析。结果表明:NT与CT相应性状比较,土壤容重没有显著增加(P>0.05),在0—20 cm土层,虽总孔隙度和非毛管孔隙度低,但增加了土壤毛管孔隙度和水稳性大团聚体(WR0.25)含量,WR0.25含量和平均重量直径(MWD)差异均达到显著水平(P<0.05);分别提高了垄台土壤初始入渗和稳定入渗速率28.8%,24.7%;0—10 cm土层,饱和含水量和田间持水量差异均达到显著水平(P<0.05);减少了产流次数、径流量和土壤流失量分别为11次,86.6%和98.9%,有效地遏制了水土流失。研究结果表明,长期连续秸秆覆盖免耕是一项有利于土壤结构稳定和遏制土壤侵蚀的黑土地保护措施。  相似文献   

8.
【目的】研究不同耕作、覆盖措施对土壤理化性质及对作物农艺性状的影响,为选择适合黄土高原沟壑区最佳耕作、覆盖措施提供参考。【方法】田间定位试验设置12个处理,分别为传统耕作、传统耕作+膜上种植、传统耕作+秸秆覆盖、传统耕作+膜侧种植、传统耕作+全膜覆盖、传统耕作+秸秆覆盖+地膜覆盖、隔年耕作、免耕、免耕+地膜覆盖、免耕+秸秆覆盖、免耕+生草覆盖、免耕+秸秆覆盖+地膜覆盖,每个处理3个重复。于2014年对已持续12年的不同耕作、覆盖措施土壤理化性质与农艺指标进行测定与分析。【结果】免耕处理降低了土壤容重,提高了土壤饱和导水率和4月下旬至10月上旬表层土壤含水量,降低了作物出苗期温度,降低了成熟期土壤全磷与速效磷含量,降低了株高、叶面积指数和产量。相反,地膜覆盖极显著增加了土壤容重(P < 0.01),显著降低了土壤饱和导水率(P < 0.05),降低了成熟期土壤有机质、全氮含量,有较为明显的保持和调节温度的作用,不同类型的地膜覆盖均能极显著提高玉米株高和叶面积指数进而提高产量(P < 0.01)。秸秆覆盖对土壤容重和含水量的影响与耕作方式有关,翻耕条件下,秸秆覆盖增加了土壤容重;免耕条件下,降低了土壤容重且均不显著。翻耕+秸秆覆盖土壤表层含水量最高;免耕+秸秆覆盖处理的土壤含水量最低。但秸秆覆盖下土壤有机质含量、全氮含量、作物株高、叶面积指数和产量与未覆盖时相比均有增加,影响皆达到显著水平(P < 0.05),且均有降低地表温度的作用。【结论】免耕虽有利于改良土壤物理性状,却较传统耕作降低了作物产量。免耕条件下秸秆+地膜处理显著提高作物产量和土壤全氮、有机质含量(P < 0.05),是免耕处理组中最优选择。不同类型的地膜覆盖均可显著提高作物产量(P < 0.05),而且秸秆+地膜双覆盖增产效果最显著,并显著提高土壤全氮、有机质含量,是黄土塬区最适宜的覆盖措施。  相似文献   

9.
生物质炭对旱地红壤理化性状和水力学特性的影响   总被引:1,自引:1,他引:1  
[目的]研究生物质炭对旱地红壤基本理化性质及水分特征曲线的影响,为红壤地区土壤改良提供依据。[方法]分层测定不同生物质炭施用量水平下的土样容重、孔隙度和有机碳含量,采用原状土压力膜法分层测定土壤的水分特征曲线。[结果]施用生物质炭能显著降低土壤的容重,提高土壤的孔隙度及有机碳含量,且随着施用量的增加,土壤容重逐渐降低,孔隙度及有机碳含量逐渐提高;随着生物质炭施用量的增加,土壤饱和含水量、田间持水量和有效水含量逐渐增加,凋萎系数逐渐减小,施用生物质炭30t/hm2的土壤处理饱和含水量、田间持水量和有效水含量最高;生物质炭施用量与土壤饱和含水量、田间持水量和有效水含量呈极显著正相关关系,与凋萎系数呈极显著负相关关系。[结论]施用生物质炭能显著提高红壤田间持水量和有效水含量。  相似文献   

10.
李超  王俊  邢文超  张少宏  柳瑞 《水土保持通报》2022,42(2):107-113,121
[目的]探讨绿肥填闲种植对旱作冬小麦农田耕层土壤物理性质的影响,为其在黄土高原旱作农业区的推广提供科学依据。[方法]基于4 a田间定位试验,研究了夏闲期种植长武怀豆、苏丹草、怀豆/苏丹草混播以及裸地休闲(CK)对旱作冬小麦收获期农田耕层(0—20 cm)土壤容重、孔隙度、持水量和团聚体的影响。[结果]在0—10 cm土层,与CK相比,苏丹草和混播处理显著降低了土壤容重,怀豆,苏丹草和混播处理显著提高了土壤毛管孔隙度、总孔隙度、饱和持水量、毛管持水量、大团聚体(>5 mm)所占比例和团聚体平均重量直径(MWD);在10—20 cm土层,苏丹草处理大团聚体所占比例和MWD均显著高于CK。土壤容重与土壤有机碳含量呈显著负相关,毛管孔隙度和团聚体平均重量与绿肥生物量呈显著正相关,而土壤总孔隙度、饱和持水量和毛管持水量与绿肥生物量和土壤有机碳均呈显著正相关。[结论]在黄土高原地区,夏闲期单播种植长武怀豆、苏丹草及混播均能显著改善耕层土壤物理性质,综合来看,苏丹草单播的效果优于长武怀豆单播和二者混播。  相似文献   

11.
Protecting soil structure against compaction—proposed solutions to safeguard agricultural soils To safeguard the ecological soil functions and the functions linked to human activities, measures against harmful changes to the soil are required, in line with the precautionary principle. The German Federal Soil Protection Act sets obligations for precaution in agricultural land use and, if harmful changes to the soil are foreseeable, measures for averting a danger. The results of a research project of the Federal Environmental Agency show that it is possible to describe an impairment of the soil structure, using methods of soil analysis. But this as a sole information would not qualify for the identification of harmful changes to the soil in the context of the Soil Protection Act, which requires an assessment of the severity of disruption of soil functions and the respective subject of protection. This would make additional soil investigations on site mandatory. Approaches in agricultural engineering and soil physics have introduced procedures to preserve the soil structure, in accordance with the precautionary principle. But these procedures have different goals and different ranges of application and hence offer partial solutions to safeguard against soil compaction. The assessment model of “trafficability by measuring the rut depth” provides information about the compaction status of the soil under applied conditions for farming gear, without providing detailed information about affected soil layers. The soil‐physical model of classifying soils into “risk classes for harmful soil compaction” focuses on the relationship between topsoil compaction and crop yields. The soil‐physical models “precompression stress” and “loading ratio” provide information for the assessment of subsoil compaction and a prognosis of a possible impairment of the soil structure at the water content of field capacity. It is necessary to validate the individual models with additional regional data about soil structure before a final assessment of the prognoses is made.  相似文献   

12.
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   

13.
The concept of soil health has been extensively reviewed in the scientific literature, but there is only patchy and inconsistent information available to farmers and growers who are concerned about the declining condition of their soils and are looking for appropriate test methods and management interventions to help reverse it. Although there are well‐established laboratory methods for soil chemical analysis, and a range of laboratory and field methods for measuring soil physical properties, only now are methods starting to emerge for soil biological analysis. This study provides an overview of the methods that are currently available commercially (or are close to commercialization) for farmers and growers in the UK. We examine the science underpinning the methods, the value of the information provided and how farmers and advisors can use results from such assessments for informed decision‐making in relation to soil management.  相似文献   

14.
15.
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   

16.
土壤因子研究综述   总被引:4,自引:0,他引:4  
介绍了国内外土壤因子的研究方法及研究成果,指出我国目前土壤因子研究中存在的问题,并结合我国土壤因子研究现状,认为继续土壤水蚀机理的研究是今后土壤因子研究的内容之一,同时,随着GIS和RS技术发展,应用GIS和RS技术研究区域土壤因子也将成为潮流。  相似文献   

17.
基于30年长期定位试验,通过测定黑土光谱反射率和不同腐殖质组分含量,探究了不同施肥对黑土土壤腐殖质含量、土壤颜色及二者之间的关系。试验设置5个处理:(1)休耕(Fallow);(2)不施肥处理(CK);(3)单施化肥(NPK);(4)有机肥部分替代化肥(NPKM);(5)秸秆部分替代化肥处理(NPKS)。结果表明:与NPK处理相比,Fallow、NPKS、NPKM分别显著提高49.7%,74.3%,27.0%的土壤有机碳含量(p<0.05)。NPKM处理中胡敏酸(HA)含量最高为3.9 g/kg,随后依次为CK、NPKS、NPK、Fallow。NPKM、NPKS和Fallow处理中土壤富里酸(FA)含量为2.2~2.3 g/kg,显著高于NPK和CK。NPKM处理中胡敏素(HM)含量为18.6 g/kg,显著高于其他处理(p<0.05)。不同处理间土壤光谱反射率由高到低依次为NPK>Fallow、CK>NPKS>NPKM,与CK处理相比,NPK土壤光谱反射率在平均提高6.5%,NPKS和NPKM则分别降低11.1%和15.1%。根据线性相关分析结果,黑土土壤光谱反射率与土壤HAHM均呈显著负相关关系(p<0.01),相关系数(r)分别为-0.858,-0.681。综合上述结果,长期有机物料投入可以显著提高黑土腐殖物质含量,降低黑土光谱反射率,使黑土颜色加深,而长期化肥施入则使黑土光谱反射率提高,出现"褪色"现象,有机粪肥在黑土中对土壤有机质和腐殖质含量的提升效果优于秸秆。  相似文献   

18.
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   

19.
X. Y. WANG  Y. ZHAO  R. HORN 《土壤圈》2010,20(1):43-54
Depth distribution of soil wettability and its correlations with vegetation type, soil texture, and pH were investigated under various land use (cropland, grassland, and forestland) and soil management systems. Wettability was evaluated by contact angle with the Wilhelmy plate method. Water repellency was likely to be present under permanently vegetated land, but less common on tilled agricultural land. It was mostly prevalent in the topsoil, especially in coarse-textured soils, and decreased in the subsoil. However, the depth dependency of wettability could not be derived from the investigated wide range of soils. The correlation and multiple regression analysis revealed that the wettability in repellent soils was affected more by soil organic carbon (SOC) than by soil texture and pH, whereas in wettable soils, soil texture and pH were more effective than SOC. Furthermore, the quality of SOC seemed to be more important in determining wettability than its quantity, as proofed by stronger hydrophobicity under coniferous than under deciduous forestland. Soil management had a minor effect on wettability if conventional and conservation tillage or different grazing intensities were considered.  相似文献   

20.
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   

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