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1.
Abstract. Because of the observed variability in soil available P (Olsen) contents, phosphorus budgets were used to predict changes in the soil P status of an intensively managed 6 ha grassland catchment in Northern Ireland. The P accumulation rate of approximately 24 kg/ha/y suggested an increase of soil available P (Olsen) of 1.0 mg P/kg/y. Soluble reactive phosphorus concentrations in drainflow measured on a daily basis for a two year period (January 1981 — December 1982) were compared with the two year period January 1990 — December 1991. The median concentration had increased by 10.0 μg P/1 in 1990/91 compared with 1981/82. This difference was only apparent in mean concentrations for the two time periods, after data associated with high flow events, which were more frequent in 1981/82, were excluded from the comparison. This rate of increase of 1.1 μg P/1/y, which was interpreted as reflecting an increase in soluble reactive phosphorus concentration in soil solution, is comparable to the increase in background soluble reactive phosphorus of 1.5 ± 0.54 μg P/1/y which was reported recently over a 17 year period from diffuse sources in the much larger (4400 km2) Northern Ireland catchment of Lough Neagh.  相似文献   

2.
应用DRAINMOD农田排水模型对地下水位和排水量的模拟   总被引:4,自引:6,他引:4  
农田排水工程在防御涝渍灾害、促进农作物正常生长和改善田间耕作管理等方面起着积极的作用,合理的排水系统设计是保证排水系统正常运行、作物正常生长的关键。以水平衡理论为基础建立的DRAINMOD模型,可用于研究排水系统对作物生长和各水文要素的影响,适用于浅地下水位和较湿润地区。该文对模型的基本原理和参数输入要求进行了详细描述,采用加拿大安大略省南部Eugene F. Whelan试验站自由排水和控制排水-地下灌溉两种水位管理条件下,1992~1994年6~8月地下水埋深观测值、3年地表径流和地下排水水量观测值对模型进行了模拟验证。图形显示和统计参数指标分析表明,模拟值与观测值拟合较好,表明模型具有良好的水文模拟性能,可用于预测地下水埋深、地表和地下排水量,是农田排水工程设计和水管理的有效工具。  相似文献   

3.
Experiments were conducted to study drainage and runoff losses of selenium (Se) from two seleniferous soils (from Simbly containing total Se 850 μg [kg soil]–1 and from Barwa containing 1310 μg [kg soil]–1) under simulated rainfall (250–260 mm in three rainstorms) conditions. Rainfall intensities ranged from 56 to 120 mm h–1 with uniformity coefficients ranging from 70.6% to 84.2%. Selenium lost through drainage (sum of drainage from initially saturated soil for 24 h and through dry and wet runs) was 0.15% and 0.11% of total Se content in the two soils. In soils having similar pH and organic‐C content, losses of Se through drainage as well as runoff were defined by total Se, water‐soluble Se, CaCO3 content, and texture of the soils. The amount of runoff water was almost two times in the soil with fine texture and less infiltration rate than in the other and that same trend was observed with respect to loss of sediment. The soil with higher CaCO3 content and water‐soluble Se lost more Se with moving water both through leaching and runoff, whereas the other soil with fine texture lost greater amount of Se with the sediment. Total Se lost through drainage as well as runoff was 0.29% of the native Se present in both the soils suggesting that significant amount of Se could be lost from seleniferous soils during irrigation and rainfall events.  相似文献   

4.
农田土壤溶质的地表径流流失是农业面源污染的重要组成部分,为了更加有效预测和控制农田土壤溶质的流失,该文将水迁移率考虑为随土壤侵蚀变化而变化的函数,并修改Hydrus-1D代码数值求解土壤溶质的地表径流浓度值。利用两组已经发表的试验数据对改进的模型进行校验,研究结果表明该文模拟值与观测数据的相关系数r≥0.81,残差绝对均值和均方根差与原模型的模拟值相比,分别平均减少了35.42和60.77 mg/L,该文改进的模型能更好地模拟土壤溶质的地表径流流失规律。该文的研究成果将为实际预防和控制农业面源污染提供参考。  相似文献   

5.
中国云南滇池流域农田径流磷污染负荷影响因素研究   总被引:10,自引:1,他引:10  
Effects of factors such as slope, surface soil texture, fertilization and crop cover with different rainfall intensities on phosphorus (P) losses in farmland runoff of the Dianchi Lake Watershed in Yunnan Province of China were studied through a rainfall simulation test using a red soil, one of the most widely distributed soils of the study area. Results showed that the runoff concentrations of total phosphorus (TP) and P losses differed with the slope, being highest when the slope was 18°. At two different rainfall intensities, the runoff TP and P losses had a similar decreasing trend as the surface soil texture became coarser, therefore applying the grit would decrease P in runoff from soils of farmland on slopes with heavier textures. With wheat as a crop cover the runoff TP concentrations and P losses were significantly lower than those of the bare soil. This showed that plant cover would greatly decrease P in runoff from the farmland of the study area. The TP concentration in runoff from the soil two days after fertilization doubled when compared with that from the non-fertilized soil, indicating that fertilization could mean a dramatic rise in P runoff if irrigation or heavy rainfall occurred immediately after application and that no fertilization before a rain and no irrigation immediately after fertilization would reduce runoff P loss from the farmland of the study area.  相似文献   

6.
基于GIS的福建农田氮磷地表径流流失与污染风险评估   总被引:1,自引:2,他引:1  
为了掌握福建省农田氮磷地表径流流失特征,以福建省的9个地级市为研究边界,通过对其辖区1985—2016年间农田氮、磷化肥施用量的调查,计算农田化肥氮磷的地表径流流失量,并在耦合农田化肥地表径流流失量、降雨和河网密度3个因素的基础上,分析福建省各地级行政区域农田化肥氮磷的污染风险等级,应用地理信息系统(GIS)分析其氮、磷污染的空间分布。结果表明:32年间福建省化肥施用量由4.911×105 t增加到1.239×106t,年均增长3.03%;漳州市氮肥和磷肥的施用强度最大,分别达880.40 kg×hm~(-2)和429.21 kg×hm~(-2);氮磷地表流失量较高的区域主要集中在漳州市,其氮、磷地表流失强度分别达8.71kg×hm~(-2)和1.99kg×hm~(-2)。从氮、磷污染风险等级看,南平市氮、磷肥的流失风险值均最高,分别达63.19%和63.37%,属于高氮磷污染风险区域;厦门市氮、磷肥的流失风险值均最低,分别为0.53%和0.53%,属于低污染风险区域;其他市处于两者之间。可见,漳州市农业发展中应注重氮、磷肥的减量化;南平市则注重对农田氮、磷地表径流流失的风险防范;全省应加大力度发展生态农业,以助力福建省生态文明先行示范区、生态文明试验区的建设。  相似文献   

7.
Minimizing slurry phosphorus (P) losses in runoff requires careful management in the context of both soil P surpluses and changing patterns in rainfall. Increasing the time interval between slurry application and the first rainstorm event is known to reduce P loss in runoff although the risk period for elevated P concentrations in runoff can extend for weeks. This study investigated the impact of increasing the time interval between slurry application and first rainstorm event on P concentrations in runoff. Simulated rainfall (40 mm h−1) was applied at 2, 4, 10, 18, 30 and 49 days after dairy slurry was surface-applied to a grassland sward in Ireland. Increasing time to runoff resulted in a decrease in dissolved reactive P concentrations from 5.0 to 1.0 mg P L−1 and a P signal in runoff for 18 days. Beyond 18 days, elevated P concentrations were observed in runoff collected from natural rainfall that preceded the day 49 rainstorm event. A published surface phosphorus and runoff model (SurPhos) was used to understand the slurry P dynamics controlling P interactions with runoff. Dissolved reactive P in runoff was predicted with accuracy by SurPhos, R2 = .89. The SurPhos model implied that slurry P mineralization occurred during the experimental period that resulted in a small spike in P concentrations beyond the defined risk period. This study shows that the experimental data have the potential to be extrapolated to different weather scenarios using SurPhos and could test when and where slurry P could be most safely spread.  相似文献   

8.
植被过滤带对地表径流中污染物的净化效果   总被引:15,自引:3,他引:15  
植被过滤带是控制非点源污染的“最佳管理措施”之一。为了探讨植被过滤带在中国西北地区的实际应用,该文作者在陕西小华山水库岸坡地建设了3条不同配置方式的植被过滤带,通过试验测定了植被过滤带对地表径流中几种污染物的净化效果,并分析其影响因素。结果表明,植被过滤带对地表径流中的颗粒态氮、颗粒态磷、总氮、总磷和化学需氧量浓度削减率分别达到82.02%、77.13%、46.05%、73.28%和60.48%以上,负荷削减率分别达到89.98%、87.25%、69.93%、85.11%和77.97%以上,并能有效地削减溶解态氮和溶解态磷的负荷量;自然草地过滤带和沙棘-草本过滤带对地表径流中这几种污染物的削减主要发生在前10 m。过滤带内的植被条件、入流流量和入流污染物浓度是影响过滤带净化效果的重要因素。  相似文献   

9.
洱海流域农田径流氮磷污染严重,大量氮磷污染物随雨水进入洱海,导致洱海水质雨季下降。为从源头控制氮磷污染物的输出,该研究采用人工模拟降雨的方法,探究5、10、15、20、25 cm 5种不同高度的排水口对农田径流氮磷流失的控制作用。结果表明,农田排水口较低会造成产流初期硝态氮和颗粒态氮浓度升高,将排水口高度提高到15 cm以上可有效降低径流中各形态氮磷浓度,并稳定在较低水平;排水口高度从5 cm提高至15~25 cm产流中总氮、颗粒态氮、铵态氮、硝态氮流失量分别降低了85.60%~93.13%、88.39%~95.77%、84.59%~91.72%、63.05%~65.15%,总磷、颗粒态磷流失量分别降低了86.75%~92.66%,61.64%~94.61%,且排水口设置在15 cm高度处氮、磷流失量削减效果突出,在15 cm基础上继续提高排水口不会对氮磷流失量产生明显影响。综上所述,将排水口提高到15~25 cm对农田径流污染控制效果优越。结合洱海流域多年降雨资料及建设成本,推荐将农田排水口设置于距土壤表面15 cm高度处,对控制农田养分流失,减少面源污染起到显著效果。  相似文献   

10.
农业小流域毛沟布置方式对氮素径流流失的影响   总被引:1,自引:0,他引:1  
A comparison experiment was performed, by designing one field ditch (D1 treatment), two field ditches (D2 treatment), three field ditches (D3 treatment), and no field ditch (CK treatment), in an upland of a small agricultural watershed in Nanjing-Zhenjiang hilly regions to observe the farmland surface runoff and N loss characteristics under the different layouts of field ditch. As the layout density of field ditch increased, the drainage effect was improved, the timing of the runoff peak was advanced, and also the peak flow was augmented. At the same time, both the concentration and accumulated transfer flux of total nitrogen (TN) were improved, and thereinto the accumulated transfer fluxes of TN under D3, D2 and D1 treatments were increased by 1.46, 1.34 and 1.16 times, respectively, than that under CK treatment. However, the accumulated transfer fluxes of nitrate-nitrogen (NO3-N) and ammonium-nitrogen (NH+4 -N) under D3, D2 and D1 treatments were reduced by 33.9%, 21.4% and 8.6%, and 35.8%, 24.7% and 12.2%, respectively, compared with those under CK treatment. Under CK treatment, the NO3-N and NH+4-N concentrations were more sensitive to rainfall intensity than the TN concentration. There were significant linear relationships between the transfer fluxes of TN, NO3 -N and NH+4 -N and the runoff flux, with the correlation coefficients of 0.942, 0.899 and 0.912, respectively. In addition, this correlation was also influenced by the layout density of field ditch. Therefore, the environmental effect should be taken into account when designing and constructing field ditches. Especially in the regions of severe fertilizer loss, the approaches of properly increasing the drainage area and decreasing the layout density of field ditch could be adopted under the precondition of avoiding crops from waterlogging.  相似文献   

11.
Abstract. This article examines some of the factors that influence the relative risk of Escherichia coli pollution of surface waters from grazing animals compared to cattle slurry application. Drainage water from pipe‐drained plots grazed with sheep (16 sheep + lambs per hectare) from 29 May to 17 July 2002 had average E. coli counts of 11 c.f.u. mL?1 or 0.4% of estimated E. coli inputs over the grazing period. Drainage water from plots on the same site treated with cattle slurry (36 m3ha?1 on 29 May 2002) had lower average E. coli counts of 5 c.f.u. mL?1 or 0.03% of estimated faecal input. Sheep (16 lambs per hectare) grazing under cooler, moister conditions from 24 September to 3 December 2001 gave drainage water with much higher average E. coli counts of 282 c.f.u. mL?1 or 8.2% of estimated input, which is more than twice the average E. coli counts previously reported under such conditions (Vinten et al. 2002 Soil Use and Management 18, 1–9). Laboratory studies of runoff from soil slabs after slurry application showed that the mobility of E. coli in surface soil decreased with time, suggesting that increased attachment to soil or migration to ‘immobile’ water also provides at least part of the physical explanation for the relatively higher risk of pollution from grazing animals compared with slurry. Sampling for E. coli in field drainflow and in streamwater during a storm event in the predominantly dairy Cessnock Water catchment, Ayrshire, Scotland supported the hypothesis that E. coli transport is linked to grazing animals. For a 7‐mm rainfall event, roughly 14% of the estimated daily input from grazing livestock was transported to the river, even though little slurry spreading had occurred in the catchment in the previous month. Spot sampling of field drains in grazed fields and silage fields in the same catchment also showed that grazing animals were the principal source of E. coli and faecal streptococci.  相似文献   

12.
风水两相侵蚀对坡面产流产沙特性的影响   总被引:1,自引:0,他引:1  
为了研究黄土高原风蚀水蚀交错区两相侵蚀的交互作用,该试验采用风洞和模拟降雨相结合的方法,探讨了风水两相侵蚀条件下坡面降雨入渗、产流产沙特征。结果表明:相对于未风蚀处理,中度风蚀处理(风速14m/s)使坡面产流时间延长,轻度风蚀处理(风速11m/s)对产流时间影响不大(P>0.05);风蚀处理(风速11m/s、14m/s)使坡面入渗率降低2.9%~10.0%,径流强度增加4.5%~21.7%,侵蚀率增加7.3%~39.0%,不同风速间差异不显著(P>0.05),且影响程度均随雨强的增大而降低;风力、水力两种侵蚀营力相互促进导致坡面糙度增大,风速14m/s、雨强100mm/h时,坡面糙度是风速11m/s、雨强60mm/h时的3倍。研究结果为评价风水两相侵蚀效应提供理论依据。  相似文献   

13.
降雨径流是流域地表过程的主要驱动力,是众多地表模型的基础。该文在充分考虑流域气象及下垫面等要素空间异质性的基础上,提出了一个面向地表过程模拟的、基于DEM的分布式次降雨径流模型。模型将流域离散为栅格计算单元,并按水流特性将栅格划分为坡面单元和河网单元;模型考虑了降雨、植被截流和入渗等产流过程,利用运动波分级汇流的方式进行汇流演算。模型在江西躁口水流域进行了检验和应用。结果表明:该模型模拟的流量过程精度较高;模拟的径流深度及径流搬运力的空间分布符合水文规律。模型结构简洁、参数较少,具有较好的实用价值;为土壤侵蚀及非点源污染等以流路为基础的复杂地表过程研究奠定了基础。  相似文献   

14.
Abstract. The dual porosity soil water and contaminant transport model MACRO was tested for its suitability to represent water flows and leaching of phosphorus (P) through field drains following spreading of slurry. These flows are characterized by very high loadings of P, including a high proportion in colloidally attached form, for about one week following winter spreading of slurry, followed by quite a rapid decline to the low background level. Use was made of the option in MACRO for representing colloid facilitated contaminant transport. The model simulates transport through macropores and soil matrix pores (micropores) of contaminant carrying colloids, as well as trapping of colloids by straining and filtration using an adaptation of standard filtration equations. Calibration involved selecting soil hydraulic parameters, colloid filtration coefficients and P sorption characteristics for two soils from measured and literature values. Both P in solution and P attached to colloids were represented in simulated outputs. Reasonable agreement was found between simulated and measured water and leached P flows. Work with the model suggests that macropore flow through the soil to field drains of colloidally transported P is an important component of water pollution associated with slurry spreading  相似文献   

15.
坡地开垦的径流泥沙响应   总被引:2,自引:0,他引:2  
Land use and land cover change is a key driver of environmental change. To investigate the runoff and erosion responses to frequent land use change on the steep lands in the Three Gorges area, China, a rainfall simulation experiment was conducted in plots randomly selected at a Sloping Land Conversion Program site with three soil surface conditions: existing vegetation cover, vegetation removal, and freshly hoed. Simulated rainfall was applied at intensities of 60 (low), 90 (medium), and 120 mm h 1 (high) in each plot. The results indicated that vegetation removal and hoeing significantly changed runoff generation. The proportion of subsurface runoff in the total runoff decreased from 30.3% to 6.2% after vegetation removal. In the hoed plots, the subsurface runoff comprised 29.1% of the total runoff under low-intensity rainfall simulation and the proportion rapidly decreased with increasing rainfall intensity. Vegetation removal and tillage also significantly increased soil erosion. The average soil erosion rates from the vegetation removal and hoed plots were 3.0 and 10.2 times larger than that in the existing vegetation cover plots, respectively. These identified that both the runoff generation mechanism and soil erosion changed as a consequence of altering land use on steep lands. Thus, conservation practices with maximum vegetation cover and minimum tillage should be used to reduce surface runoff and soil erosion on steep lands.  相似文献   

16.
水土保持对偏关河径流和泥沙的影响分析   总被引:2,自引:0,他引:2       下载免费PDF全文
 偏关河流域水土保持面积从1959年的1万1593hm2增加到1996年的5万5338hm2,占流域面积的28.90%。年径流量、常水径流量与年份和各类水土保持措施之间,均呈极显著负相关,年径流量与年降水量、汛期降水量和有效降水量,均呈显著正相关,而常水流量与年降水量、汛期降水量和有效降水量关系很弱;偏关河流域小型蒸发器测定的蒸发量与年份呈显著负相关,但径流和泥沙变化并没有增加,说明水土保持是引起径流量和泥沙量变化的主要原因。洪水径流量、年输沙量和洪水输沙量变化一致,与年降水量、汛期降水量和有效降水量均呈显著正相关,而与水土保持措施面积呈不显著的负相关。  相似文献   

17.
黄土区径流调控技术体系   总被引:1,自引:0,他引:1       下载免费PDF全文
 地处黄土高原干旱山区的甘肃省定西市安定区,其经济社会发展长期受干旱缺水和水土流失的制约,因此,如何高效利用水资源和有效防治水土流失成为该区域发展的关键问题。依据径流调控理论,提出径流调控技术体系的概念,并在九华沟流域水土保持径流调控中具体应用。结果表明:经过5年的径流调控,流域的水资源不仅得到了高效利用,而且有效地控制了水土流失,促进了区域经济的持续发展。其中林草覆盖率由24.0%提高到57.1%,土壤侵蚀模数由5400 t/(km2.a)降低到15t/(km2.a),土地利用率由63.0%提高到81.7%,流域治理程度由44.9%提高到86.3%;流域年总收入由502.65万元增加到1404.64万元,农民人均年纯收入由757元增加到1 486元,人均年产粮由427 kg增加到654kg;径流调控技术在农业总产值的总增量中,科技进步贡献率占56.71%,对流域内农民的脱贫致富起到了关键性的作用。  相似文献   

18.
农业氮磷养分流失已经成为地下水污染的重要原因之一,为了探究和比较麦稻两熟农田和杨树林地氮磷流失对地下水的影响,本文在洪泽湖河湖交汇区设置农田和杨树林监测小区和监测井,进行了为期1年的地表养分流失和地下水水质监测。结果表明:1)林地雨前雨后表层土壤含水量均小于麦田,麦田土壤含水量较雨前平均提高8.95%,林地提高4.05%。2)麦田和杨树林地表层土壤硝态氮、铵态氮及有效磷流失总量分别为63.53 mg·kg-1、5.61 mg·kg-1及57.43 mg·kg-1和16.78 mg·kg-1、2.45 mg·kg-1及0.73 mg·kg-1,稻季田面水硝态氮、铵态氮、可溶性磷和颗粒态磷流失总量为8.32 mg·L-1、27.44 mg·L-1、2.39 mg·L-1和2.99 mg·L-1,监测期内杨树林氮磷流失总量明显低于农田。3)农田表层养分流失量与降雨量存在密切关系,基本随降雨量增大呈对数增长,而杨树林几乎不受降雨影响。4)农田产生径流的理论最小降雨量(麦田:3.3 mm;稻田:4.2 mm)远小于杨树林地(22.8 mm),麦田铵态氮、正磷酸盐浓度,稻田和杨树林地总氮、硝态氮、铵态氮、总磷、可溶性磷、正磷酸盐浓度与降雨量存在显著相关性。5)农田径流中养分浓度与地下水氮磷含量存在显著相关性(P<0.05),而杨树林地地下水氮磷含量保持在相对稳定水平,与径流中养分浓度无明显相关性。与农田相比,林地能够更好地控制径流养分流失,缓解地下水污染,有利于农业面源污染的控制。  相似文献   

19.
为了寻找一种既能使作物高产、优质又环境友好的施肥模式,在天然降雨条件下,通过田间小区试验,研究了5种不同施肥模式(不施肥、纯施化肥、生物黑炭与化肥共施、有机无机肥配施、有机无机肥配施添加生物黑炭)对玉米产量、品质、肥料利用率及氮磷径流损失的影响。结果表明:与纯施化肥相比,生物黑炭与化肥共施和有机无机肥配施对玉米产量无明显影响,有机无机肥配施添加生物黑炭可使玉米产量显著提高21.14%;与纯施化肥相比,生物黑炭与化肥共施、有机无机肥配施、有机无机肥配施添加生物黑炭均可提高粗蛋白含量和氮、磷肥利用率,其中对粗蛋白含量提高幅度为12.14%~19.64%,并以有机无机肥配施添加生物黑炭对其提高幅度最大;与纯施化肥相比,生物黑炭与化肥共施、有机无机肥配施、有机无机肥配施添加生物黑炭均可显著减少氮、磷径流损失量,降幅分别为30.47%~59.69%和12.08%~31.22%,其中,有机无机肥配施添加生物黑炭的氮素径流损失降幅最大,生物黑炭与化肥共施的磷素径流损失降幅最大。因此,从提高玉米产量、品质,氮、磷肥利用率以及减少土壤氮、磷径流损失的角度综合考虑,在旱地作物种植施肥模式中推荐有机无机肥配施添加生物黑炭施肥模式。  相似文献   

20.
基于小流域产流特征的磷流失关键源区识别   总被引:1,自引:3,他引:1  
以密云区石匣小流域为研究区,根据不同降雨类型,采用超渗产流机制的径流曲线模型(SCS-CN)和蓄满产流机制的变源曲线模型(CN-VSA)进行产流特征分析,并利用磷指数模型识别不同产流机制下石匣小流域的磷流失关键源区。结果表明:1)中雨量、高雨强的降雨类型导致的超渗产流机制,使流域的东部、南部土壤较为湿润的区域以及流域的东北部和西部的易产流的耕地区域产流量较高,产流量介于15~30 mm,产流面积约占整个流域面积的14.2%;北部林地区域产流量较低,产流量低于15 mm,产流面积约占整个流域面积的85.8%;2)低雨量、低雨强的降雨类型导致的蓄满产流机制,使流域几乎所有区域不出现产流,产流量低于15 mm的区域面积占比达99.9%;高雨量、中雨强降雨类型导致的蓄满产流机制,使水库及流域水系周围产流量最高,产流量高于30 mm,其区域面积占14.6%、产流量介于15~30 mm之间的区域面积占17.7%、产流量低于15 mm的区域面积占67.7%;3)该研究区土壤侵蚀程度较弱,部分地区产流量较高,存在较高产流风险;4)超渗产流机制下,石匣小流域南部有磷流失风险,约占1.4%的面积;蓄满产流机制下,石匣小流域南部及北部有磷流失风险,约占2.3%的面积,蓄满产流机制下的磷流失风险较大。总体来说,石匣小流域磷流失风险较低,研究区域的南部靠近密云水库附近的区域为磷流失关键源区,需重点治理。  相似文献   

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