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1.
宁南旱区沟垄覆盖改善土壤水热状况提高马铃薯产量   总被引:9,自引:1,他引:9  
垄覆塑料地膜沟内覆盖集雨种植模式可影响土壤水热状况,促进作物生长,提高作物的产量和水分利用效率。为探讨旱作条件下沟垄二元覆盖的土壤水热效应对马铃薯产量的影响效果,于2015年在宁南旱区设置垄覆地膜沟内覆盖不同材料(普通塑料地膜、玉米秸秆、生物降解膜、麻纤维地膜及液态地膜),以垄覆地膜沟不覆盖为对照,研究沟垄二元覆盖模式对土壤水分、耕层土壤温度、马铃薯生长、产量及水分利用效率的影响。结果表明:垄覆地膜沟覆地膜处理在马铃薯前期、中期土壤蓄水量较对照显著增加(P0.05),垄覆地膜沟覆秸秆处理在马铃薯生育后期土壤蓄水量最高(P0.05)。垄覆地膜沟覆地膜处理增温效果明显,马铃薯全生育期0~25 cm土壤温度较对照显著增加(P0.05),而垄覆地膜沟覆秸秆处理较对照显著降低(P0.05)。在马铃薯整个生育期,垄覆地膜沟覆秸秆处理植株株高和茎粗均明显高于对照处理(P0.05),在马铃薯生育后期垄覆地膜沟覆秸秆处理的地上部生物量显著高于对照处理(P0.05)。沟垄二元覆盖模式下马铃薯增产效果以垄覆地膜沟覆秸秆处理最为显著,较对照增产56.1%(P0.05),且水分利用效率最高(81.1kg/(hm2·mm))。总之,垄覆地膜沟覆秸秆处理对改善土壤水热状况,提高马铃薯水分利用效率和产量的效果显著,建议在宁南旱区进行推广应用。  相似文献   

2.
沟垄二元覆盖对渭北旱塬区土壤肥力及玉米产量的影响   总被引:3,自引:0,他引:3  
李荣  侯贤清  贾志宽 《土壤学报》2017,54(5):1259-1268
探讨沟垄二元覆盖对旱地土壤肥力及作物生产力的影响,对完善半湿润区作物微集水栽培技术具有重要的理论和实践意义。2007—2011年在渭北旱塬进行5年定位试验,设置垄上覆地膜,沟内分别覆普通地膜、生物降解膜、玉米秸秆、液体地膜和沟不覆盖等不同沟垄覆盖模式,以传统平作为对照。结果表明,2011年春玉米收获后各处理土壤有机质及速效养分含量随土层的加深而降低,与2007年试验处理前相比,沟垄二元覆盖各处理土壤养分含量明显增加,而垄覆地膜+沟不覆盖和传统平作处理有所下降。垄覆地膜沟覆秸秆处理0~20 cm层土壤有机质、碱解氮、有效磷和速效钾含量均显著高于对照,垄覆地膜沟覆地膜和垄覆地膜沟覆生物降解膜处理有机质和碱解氮含量较对照有所增加,而其有效磷和速效钾含量显著增加。20~60 cm层土壤有机质和速效养分含量各沟垄二元覆盖处理均略高于对照。各沟垄覆盖处理表层(0~20 cm)土壤脲酶、磷酸酶和蔗糖酶活性均较对照增加,且以垄覆地膜沟覆秸秆处理土壤酶活性最高,垄覆地膜沟覆生物降解膜和垄覆地膜沟覆地膜处理次之。垄覆地膜沟覆生物降解膜、垄覆地膜沟覆地膜和垄覆地膜沟覆秸秆处理较对照显著增产41.1%、42.1%、39.3%,水分利用效率显著提高38.0%、39.6%、37.0%。在渭北旱塬区进行沟垄二元覆盖对提高土壤肥力、酶活性及春玉米产量和水分利用效率有显著提高作用,以垄覆地膜沟覆秸秆处理最佳,垄覆地膜沟覆地膜和垄覆地膜沟覆生物降解膜次之。可见,垄覆地膜沟覆地膜、生物降解膜或秸秆的沟垄全覆盖种植在渭北旱塬雨养农业区春玉米生产栽培具有一定的可行性和应用价值。  相似文献   

3.

Background

Ridge and furrow (RIFU) systems and associated soils are a widespread legacy of medieval agriculture, are archives of historical land use, and might affect recent ecosystems. Open questions about RIFU formation and potential legacy effects still exist, especially related to physical soil properties.

Aims

Our aims were (1) to characterize the soil properties of RIFU soils and (2) to compare the drought sensitivity and the growth resistance in extremely dry years of trees growing on ridges and furrows, respectively.

Methods

We studied soil physical (bulk density, saturated soil hydraulic conductivity, and texture) and chemical (soil pH, soil organic matter, and nitrogen content) properties and the climate sensitivity of tree growth on RIFU systems for three study sites in Prignitz, Germany.

Results

RIFU systems showed a high spatial heterogeneity of soil stratigraphy due to ridge construction and increased accumulation of soil moisture and organic matter in furrows due to post-abandonment pedogenesis. Slight spatial differences in soil physical properties were found, with increased air capacity in ridge soils and higher available water contents in furrow soils. No differences in drought sensitivity were observed for trees growing on ridges and furrows, except for a wet site, where trees in furrows showed a higher sensitivity. Resistance in dry years tended to be similar or increase from furrows to ridges.

Conclusions

The results reflect a spatial differentiation of stratigraphy and post-abandonment pedogenesis on abandoned RIFU systems and suggest an adaption to different moisture conditions through RIFU construction. Differences in drought sensitivity of tree growth with relative land surface could only be detected for one of the three sites, where trees were found to be less drought sensitive on ridges.  相似文献   

4.
为了提高干旱区春小麦垄作沟灌的灌水质量,建立灌水技术参数优化模型,本试验研究了垄沟参数(垄坡、垄宽、沟深、沟宽)、灌水技术参数(沟长、沟坡、入沟流量)之间的组合对垄作沟灌小麦的生长指标、产量及水分利用效率的影响。结果表明:在其他参数不变的情况下,垄宽与小麦株高呈负增长的变化趋势;沟长50 m、垄宽40 cm、入沟流量1.0 L/s、田面坡度1/500的参数组合的小麦在整个生育期内的总光合势最高,为0.018 (m2·d)/m2,在其他参数不变的情况下,随着垄宽的增大,小麦在整个生育期的总光合势降低,沟长与小麦的总光合势呈负相关的关系;沟长50 m、垄宽40 cm、入沟流量1.5 L/s、田面坡度1/1 000的参数组合的小麦产量最高,为9 142.87 kg/hm2,同时水分利用效率亦最高为29.18 kg/(hm2·mm),为试验区提出适宜的春小麦高产栽培管理技术。  相似文献   

5.
垄沟集雨对紫花苜蓿草地土壤水分、容重和孔隙度的影响   总被引:6,自引:1,他引:5  
在旱作条件下, 将垄沟集雨措施应用于紫花苜蓿种植, 研究沟垄宽比和覆膜方式对2年龄紫花苜蓿草地土壤水分状况、土壤容重及孔隙度的影响。结果表明: 全越冬期, 膜垄和土垄处理0~120 cm土壤水分平均散失量分别低于CK(平作)28.43 mm和13.61 mm。膜垄处理整个集雨期的蓄墒增加率为59.03%~99.27%, 产流效率为53.43%~91.72%; 2009年集雨前期(4月上旬~6月上旬)土垄处理的蓄墒增加率、产流效率分别为1.92%~2.74%和1.71%~2.55%, 2009年集雨中后期(6月中旬~9月下旬)土垄处理的蓄墒增加率、产流效率较集雨前期显著升高, 分别为8.85%~36.77%和8.01%~35.82%; 膜垄和土垄处理的蓄墒增加率、产流效率均随垄面宽度增加而显著增加, 且膜垄的蓄墒增加率、产流效率显著高于土垄处理。垄沟集雨种植能够显著降低0~40 cm土壤层容重, 且0~20 cm土壤层容重降幅表现为膜垄大于土垄。垄沟集雨种植也能够显著增加0~40 cm土壤层孔隙度, 且0~20 cm土壤层孔隙度增幅表现为膜垄大于土垄。  相似文献   

6.
垄沟耕作条件下滴灌冬小麦田间土壤水分的动态变化   总被引:2,自引:0,他引:2  
试验在池栽条件下研究了滴灌与垄沟耕作条件下冬小麦田间土壤水分的动态变化。结果表明:滴灌对0~60cm土壤水分含量影响比较明显,由于受土壤蒸发和作物根系吸收水分的影响,0~30cm土壤水分含量在整个生育时期内变化最为剧烈,其次是30~60cm层次的土壤,90~120cm层次的土壤整个生育时期水分含量最为稳定。灌溉后土壤水分0~120cm土层中呈现“Z”型分布,且与垄作相比,灌溉对沟播处理各层次的影响更大。另外,通过对不同生育时期各个层次土壤水分含量的分析可以看出,冬小麦的灌浆期是其活跃的耗水期,其次是抽穗期。不灌溉处理的耗水深度主要集中在土壤下层,灌溉处理的耗水程度变化较复杂。与畦播处理相比较(见讨论部分),灌溉后沟播处理土壤水分上升最明显,垄作处理次之,畦播最小。灌溉一周后畦播土壤水分下降最快,垄作次之,沟播最小。而就灌溉后土壤水分运动而言,垄作与沟播处理快于畦播处理。  相似文献   

7.
适宜灌水施氮方式提高制种玉米产量及水氮利用效率   总被引:5,自引:2,他引:3  
为通过不同灌水施氮方式调控干旱区作物收获指数提高资源利用效率,以制种玉米"金西北22号"为供试材料,进行了为期2 a的田间试验。试验采用灌水方式(交替灌水、固定灌水、均匀灌水)与施氮方式(交替施氮、固定施氮、均匀施氮)完全随机组合设计,测定生育期内作物耗水量(evapotranspiration,ET)和成熟期植株的生物量、籽粒产量及其构成(穗长、穗粗、行粒数和千粒质量等)和作物吸氮量,折算收获指数(harvest index,HI)、水分利用效率(water use efficiency,WUE)和氮利用效率(nitrogen use efficiency,NUE)。结果表明,灌水施氮方式只对行粒数有显著影响。ET只受灌水方式影响,交替灌水较其他灌水方式显著减小ET。WUE表现为:灌水方式相同时,交替施氮和均匀施氮大于固定施氮;施氮方式相同时,交替灌水>均匀灌水>固定灌水。玉米的吸氮量、HI和NUE与WUE表现出相似的规律。2013年交替灌水均匀施氮下制种玉米的HI、WUE和NUE最大,较均匀灌水均匀施氮分别增加5.46%、11.41%和19.73%。交替灌水交替施氮(水氮同区)的表现与交替灌水均匀施氮相似。2014年的结果与2013年一致。综上,交替隔沟灌溉均匀施氮和交替隔沟灌溉交替施氮(水氮同区)有利于提高制种玉米的产量和水氮利用效率。  相似文献   

8.
[目的]研究马铃薯田间不同深度土壤含水率的空间分布规律及其合理采样数,为大型喷灌条件下精准灌溉制度的制定提供科学依据。[方法]在约34 hm~2的农田中采用固定与随机相结合的方法布设了116个取样点,分别测定了0—20 cm和20—40 cm深度的土壤含水率,采用经典统计学与地统计学相结合的方法,研究喷灌前后马铃薯生长期内土壤含水率的空间分布特征及其合理采样数。[结果] 0—20 cm深度灌溉前和灌溉后的平均土壤含水率的变化范围7.61%~13.79%,20—40 cm深度灌溉前和灌溉后的平均土壤含水率的变化范围为8.71%~16.12%;总体上土壤含水率变异系数变化范围为16.47%~28.55%,均表现为中等程度的变异性,20—40 cm深度的土壤含水率变异程度略高于表层。连续2 a马铃薯各时期土壤含水率总体表现为中等程度的空间相关性,土壤含水率空间变异受随机因素与结构因素共同影响。田间水分总体上呈斑块状分布,灌水后期土壤含水率的分布较灌前更为分散。地统计学得出田间合理采样数为87个。[结论]在大型喷灌条件下马铃薯田间土壤含水量存在中等程度的空间变异性,并且地统计学与传统统计学两种方法均适用于确定农田平均土壤含水率的最优采样数量。  相似文献   

9.
基于加权灰色关联模型优选夏玉米沟灌方式   总被引:2,自引:1,他引:1  
该文建立加权灰色关联综合评价模型,基于夏玉米耗水量、产量及其构成因素(穗长、穗周长、穗粒数、穗行数、百粒质量和产量)对沟灌方式进行优选。结果表明,同一水分控制下限,无论是产量综合评价,还是耗水及水分利用效率综合评价,宽垄沟灌种植模式的灰色关联综合评价均优于常规沟灌种植模式;其中灌水控制下限为田间持水量的70%(field water holding capacity, FC)的宽垄沟灌种植处理在第2层综合评价中耗水评价虽然位次第3,但产量评价和水分利用效率评价位次第1,在第1层综合评价中灰色关联度最大(0.852),故灌水控制下限为70%(70%FC)最佳;其次为灌水控制下限为60%(60%FC)的宽垄沟灌种植处理,关联度为0.788,60%FC与70%FC二者关联度相差较小。加权灰色关联综合评价模型的评判结果与大田试验结果相吻合。因此,最终方案的最终选定可根据当地水资源状况而定,对于水资源相对丰富地区建议采用W70灌水方式,对于水资源相对匮乏地区建议采用W60灌水方式。研究可为灰色关联度方法在节水灌溉研究中的应用提供参考。  相似文献   

10.
Engineering and operation of a lysimeter station for the estimation of pesticide leaching through soil profiles An above ground, air-conditioned, lysimeter station was constructed for measuring pesticide leaching into soil profiles (Fluvisol; Cambisol). Specially transport in soil macropores was investigated by using sprinkler irrigation simulating high precipitation. Twelve soil monoliths (30 diameter, 100 cm depth) can be investigated simultaneously. Engineering and operation of this station are described. The lysimeters consist cf stainless steel cylinders with a special leaching water collector and low pressure equipment. In the soil monolith tensiometers with electronic pressure transducer and temperature sensors are installed. Measured data are recorded with a PC continously.  相似文献   

11.
斥水土壤中的水热运动规律与数值模型   总被引:5,自引:2,他引:5  
斥水土壤很难被雨水湿润,影响种子发芽出苗而造成农业减产。由于地表干燥而引起风蚀水蚀,造成土地退化。这一问题在澳大利亚、荷兰、新西兰与美国引起重视。斥水土壤中水分分布往往是无规律的“指状”,到目前为止,没有成功的数学模型。作者从研究斥水土壤地区的耕作工程实践出发,采用沟种之后,水分的分布就有了规律性。开沟播种时,耕作机械把表层斥水性特别强的土壤推到垄上而形成几乎不透水的垄,下雨时雨水只能从沟中渗入形  相似文献   

12.
李芬  侯贤清  李荣 《核农学报》2019,33(12):2472-2481
为探讨旱作区沟垄二元覆盖模式下土壤水分、阶段耗水特性及对马铃薯产量和水分利用效率的影响效果,于2016年在宁夏南部山区通过设置垄覆地膜,沟内分别覆盖普通地膜(DD)、秸秆(DJ)、生物降解膜(DS)、液态地膜(DY)、麻纤维地膜(DM)和沟不覆盖(DB)等6种沟垄二元覆盖模式,以传统平作为对照(CK)。结果表明,DJ处理的马铃薯整个生育期土壤蓄水量最高,明显改善了马铃薯生育期土壤水分状况。在马铃薯整个生育期0~200 cm土层土壤含水量以DJ处理最高,尤其耕层(0~40 cm)土壤含水量最为显著。各处理阶段耗水量、耗水强度、耗水模系数在马铃薯各生育阶段表现不同,总体呈生育前期较低、中期增加、后期降低的趋势。在播种-苗期阶段、块茎形成-块茎膨大期阶段以DS处理的马铃薯耗水量、耗水强度和耗水模系数最大,DJ处理最低;苗期-现蕾期阶段以DD处理的耗水量、耗水强度和耗水模系数最大,其次为DM处理,DS处理最小;现蕾期-块茎形成期阶段以DY处理的耗水量、耗水强度和耗水模系数最大,DJ处理次之,DM处理最小。沟垄二元覆盖模式能够提高马铃薯产量和水分利用效率,以DJ和DD处理的增产效果最显著,分别较CK增产47.77%、44.84%;DJ处理的水分利用效率最高(68.2 kg·hm-2·mm-1),较CK显著提高58.97%。综上可知,垄覆地膜沟覆秸秆种植模式可显著改善马铃薯中后期0~200 cm土层土壤水分状况,使前期耗水少,中后期耗水增多,且能显著提高产量和水分利用效率。本研究结果为宁南旱作马铃薯覆盖种植高产技术提供了科学依据。  相似文献   

13.
垄膜沟灌对旱区农田土壤盐分及硝态氮运移特征的影响   总被引:4,自引:2,他引:2  
引黄水量的执行性削减加剧了河套灌区农业水资源的紧缺程度及土壤次生盐渍化问题。采取合理的节水灌溉模式对缓解河套灌区农业用水紧张、改良盐渍化土壤、营造适宜作物生长的土壤环境具有重要意义。为明晰垄膜沟灌对河套灌区土壤盐分及硝态氮运移特征的影响及调控效果,通过4次田间沟灌试验,对比研究了高水、中水、低水及高肥、低肥6个组合处理条件下土壤盐分以及土壤硝态氮的变化特征。结果表明:垄膜沟灌条件下灌水量对土壤全盐量的影响高于施肥量,中水处理土壤全盐量始终维持在一个适宜且稳定的水平。灌水量和施肥量对土壤硝态氮含量均有不同程度的影响,中、低水处理后期硝态氮的淋溶显著低于高水处理。垄膜沟灌种植模式下中水低肥处理增加了土壤水分的有效性,抑制了土壤反盐,减少了垄上硝态氮的淋溶,在节水节肥的基础上为作物的生长发育提供了一个适宜的土壤环境,利于生物量的累积及最终产量的形成,在一定程度上解决了河套灌区引黄灌溉配额减少与漫灌洗盐方式严重浪费水资源之间的矛盾,为当地垄膜沟灌技术的推广提供了一定的理论依据与技术支撑。  相似文献   

14.
以石羊河流域民勤地区为例,采用典型土壤实测土壤水分运动参数,应用Hydrus软件模拟不同沟型、不同垄宽条件下沟灌土壤水分运动,并研究了湿润锋推进过程,建立了沟灌土壤水分二维入渗模型,分析了灌水均匀度。结果表明:沟形相同条件下,竖向湿润锋的推进距离与沟底宽及水深呈正相关关系;水平湿润锋的推进距离由沟中水位决定;沟灌累计入渗量由灌水沟湿周的大小决定,入渗初期符合幂函数形式,入渗后期符合线性形式;同种土壤在沟深与水深相同时,V型沟横向灌水均匀度高于梯形沟,且水位越高均匀度越高。  相似文献   

15.
阴山丘陵地区土壤水分状况是限制该地区马铃薯发展的主要因素,如何对天然降雨进行高效、永续利用,提高马铃薯对自然降水的利用率,是该地区马铃薯生产发展的战略考虑。本研究提出了微垄覆膜沟播的种植模式,结果表明:(1)微垄覆膜沟播种植模式明显提高土壤0~60 cm土层贮水量,在马铃薯需水关键时期,出苗后35 d和55 d,微垄覆膜沟播土壤贮水量分别比平作覆膜和露地平作提高25.68%、14.26%和28.92%、18.47%。(2)微垄覆膜沟播种植模式可明显提高马铃薯产量及对降雨的利用效率。(3)微垄覆膜沟播种植模式下的马铃薯每公顷吸收的水分数量比平作覆膜和露地平作分别高25.70%和33.52%。因此,微垄覆膜沟播种植模式可以明显提高马铃薯产量及对自然降水的利用效率,可作为发展内蒙古阴山丘陵地区旱作马铃薯的有效途径。  相似文献   

16.
Crusting and hardsetting phenomena are major problems in the emergence of delicate seedlings through weak structured soils. When a hard layer develops on the surface, it can retard seedling emergence and the trapped seedlings may perish unless the hard layer is broken or weakened. The development of natural desiccation cracks on the soil surface creates a route by which seedlings can emerge. The work conducted by the same authors suggested that the compaction of soil strips over the seed rows creates longitudinal cracks along the planting lines to improve seedling emergence. This study is an attempt to develop an alternative method to create the linear cracks using the effect of surface micro‐relief. Preliminary experiments showed that the creation of small furrows (50 mm deep) on the soil surface caused the appearance of cracks mainly at the bottom of the furrows. Monitoring the movement of aggregates during drainage, where small depressions are formed on the soil surface, revealed that the aggregates on either side of the turning point of the depression move in opposite directions as a result of the greater water tension developed in the ridges causing development of cracks at the turning point. Laboratory experiments indicated that the radius of curvature at the turning point of the depression, the spacing between depressions and the shape of ridges either side of the depressions are key factors influencing crack development at the bottom of depressions. A field experiment in semi‐arid central Iran confirmed the feasibility of the technique by the use of a backward raked shaper to develop small ridge and furrows on the surface of the seedbed which resulted in the creation of longitudinal cracks in the furrow bottoms, coincident with the seed row. An outline design of a press wheel is given.  相似文献   

17.
滴灌与沟灌马铃薯覆膜效应研究   总被引:10,自引:0,他引:10  
田间对照试验研究薄膜覆盖对滴灌土壤水分分布与消散过程及滴灌和沟灌马铃薯生长的影响结果表明 ,马铃薯生长前期覆膜能明显减少表层土壤蒸发 ,并使表层土壤维持较高的含水量。马铃薯生长中后期蒸腾作用占主导地位 ,覆膜对减少表层土壤蒸发作用较小。气温较高时覆膜对马铃薯生长产生明显抑制作用  相似文献   

18.
Field experiments over a 3 y period were conducted in a winter wheat‐maize double‐cropping system at the Dongbeiwang Experimental Station, Beijing, China. Three different treatments of irrigation (sprinkler “suboptimal” and “optimized”; conventional flood irrigation) and N fertilization (none, according to Nmin soil tests, conventional) were studied with respect to effects on soil water balance, nitrate leaching, and grain yield. Under sprinkler irrigation, evaporation losses were higher due to a more frequent water application. On the other hand, in this treatment nitrate leaching was smaller as compared to flood irrigation, where abundant seepage fluxes >10 mm d–1 along preferential flow paths occurred. For quantifying nitrate leaching, passive samplers filled with ion‐exchange resins appeared to be better suited than a method which combined measurements of suction‐cup concentrations with model‐based soil water fluxes. As a result of the more balanced percolation regime (compared to that under conventional flood irrigation), there was a tendency of higher salt load of the soil solution in the rooting zone. Given a seepage rate of 50 mm, a winter wheat grain production of 5–6 t ha–1 required a total water addition of about 430 mm. Fertilizer treatments >100 kg N ha–1 did not result in any additional yield increase. An even balance between withdrawing and recharge of groundwater cannot be achieved with “optimized” irrigation, but with a reduction of evapotranspiration losses, adapted cropping systems, and/or by tapping water resources from reservoirs in more distant areas with surpluses.  相似文献   

19.
为有效应对灌溉水资源短缺,明确麦田微喷灌水量的土壤贮水耗水特征,在山西临汾盆地采用大区对比方法,开展了微喷灌水量对土壤贮水耗水及水分利用效率影响的研究。结果表明:返青期、拔节期、灌浆期及成熟期0—100,0—200,100—200cm土层土壤贮水量基本呈现随微喷灌水量的增加而提高,微喷灌水量150mm与75mm、150mm与0mm、75mm与0mm处理间返青期至成熟期0—200cm土层贮水量均存在显著性差异;播前至成熟期阶段0—100,0—200,100—200cm土层的土壤耗水量呈现随灌水量的增加而减小,其中浅层(0—100cm)耗水量所占0—200cm耗水量比例各处理均大于深层(100—200cm)耗水量所占0—200cm耗水量比例,随灌水量的增加浅层(0—100cm)耗水所占比例提高,而深层(100—200cm)耗水所占比例则降低,不同微喷灌水量0—100,100—200cm土层在不同生育阶段的耗水量与该阶段的初始贮水量均分别呈正相关和负相关;在微喷灌水量0~150mm范围内,水分利用效率和产量均随微喷灌水量的增加而提高,当灌水量达525mm时,产量虽有增加但水分利用效率下降,而灌溉水利用效率则表现为随灌水量的上升而下降。研究结果可为水资源短缺对小麦生产系统的影响提供理论依据和技术支撑。  相似文献   

20.
With a computer model, pesticide behavior in soil after spring application to a sandy loam field with a potato crop, was simulated. Special attention was paid to the risk of leaching through the upper meter of soil in catchment areas. Unsaturated water flow resulting from rainfall was modeled in some detail. Uptake of water and solute by the developing root system of the annual crop was included in the model. The computations were carried out for hypothetical pesticides with first-order decomposition rate constants in soil of 0.03, 0.01, 0.003, and 0.001 day–1 at 20°C. Adsorption decreased with increasing soil depth and the adsorption coefficient for the top layer ranged from 0.0 to 10.0. For 20 combinations of decomposition rates and adsorption strengths, the extent of leaching from a top layer 1 m thick was computed. With a decomposition rate constant at 20°C of 0.03 day–1 or higher, leaching was extremely low; with 0.01 days–1 leaching was 1.7% of the dosage or lower. For compounds with a high persistence and mobility, leaching from the soil ranged up to about 10% of the dosage or more. Besides decomposition, uptake by plants was an important factor in reducing leaching, particularly for the weakly adsorbed and comparatively persistent compounds.  相似文献   

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