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1.
生物固体对土壤氮循环和硝态氮淋洗的影响   总被引:4,自引:0,他引:4  
根据近20余年有关生物固体对土壤中氮循环及硝态氮淋洗的献综述了有关的研究结果。从生物固体中氮的形态,矿化作用,氮被植物的摄取,氨的挥发,氮的固定与储存,硝化作用,反硝化作用及铵的淋洗介绍了氮的循环,从林地及农田的生物固体施用量,植被,季节及土壤的特征介绍了硝酸盐的淋洗状况,这对于生物固体合理的土地利用,发挥其正效应,以及保护环境可供参考与研究。  相似文献   

2.
旱地土壤硝态氮残留淋溶及影响因素研究   总被引:29,自引:1,他引:29  
王朝辉  李生秀  王西娜  苏涛 《土壤》2006,38(6):676-681
在我国北方旱地,施入土壤而未被作物吸收利用的肥料N,主要以NO3--N的形式残留于土壤中。残留的NO3--N如不及时被作物吸收利用,在降水或灌水的作用下,会淋入土壤深层,或随径流进入地表水体,或经反硝化形成N2O进入大气,对土壤、水体和大气环境构成严重威胁。本文分析了旱地农田生态系统中,NO3--N在土壤剖面的残留淋溶与施肥、灌溉/降水、耕作、土壤、植物等因素的关系。提出在今后的研究工作中应特别注意的问题:①建立长期定位试验,确定NO3--N淋溶阈值,评价和预测NO3--N残留和淋失的趋势;②优化作物栽培和养分资源管理措施,提高作物利用土壤NO3--N的能力;③改进N肥施用技术,加强N素管理,防止NO3--N在土壤中大量累积。  相似文献   

3.
旱地土壤硝态氮与氮素平衡、氮肥利用的关系   总被引:4,自引:5,他引:4  
利用长期肥料试验资料研究了土壤氮素平衡、氮肥利用率和土壤硝态氮之间的相互关系。结果表明,小麦不同施肥处理的氮肥利用率(NUE)为30.9%~65.8%,平均53.6%;土壤硝态氮累积率2.3%~44.1%,平均13.2%;氮素表观损失率25.0%~42.7%,平均33.2%。一般情况下,氮素盈余值与氮肥用量呈正相关,与磷肥用量呈负相关;土壤中硝态氮的数量与氮素盈余值呈正比,与氮肥利用率呈反比。黄土旱塬地区,小麦在经济合理施氮条件下,氮素盈余值为13.79 kg/hm2,硝态氮累积量为23.00 kg/hm2,说明过量施用一定数量的氮肥对保持作物生产力和土壤氮素营养是必要的。  相似文献   

4.
潮土硝态氮移动规律及对环境的影响   总被引:7,自引:0,他引:7  
  相似文献   

5.
不同水氮处理对菠菜硝酸盐累积和土体硝态氮淋洗的影响   总被引:13,自引:0,他引:13  
利用土柱模拟方法,研究了两种水分供应条件下的5种氮素水平对菠菜生长、植株叶柄硝酸盐累积及土体硝态氮淋洗的影响。结果表明,低供水量抑制了波菜的生长,极大地限制了作物根系对氮素的吸收利用。而在水分供应量较高的条件下,植株干重随肥用量的增加而增大,同时体内硝酸盐含量也随之升高。土柱施氮(N)量达1.33g时,植株体内硝酸盐含量超过了3000mg.kg^-1的蔬菜限量标准。  相似文献   

6.
土壤中硝态氮含量的影响因素研究   总被引:22,自引:0,他引:22  
采用田间试验及人工渗滤池试验方法,研究了土壤中硝态氮含量的影响因素。结果表明,影响大田土壤中硝态氮因素很多,程度不一,其中土壤类型决定着硝态氮基础含量,是内因,而施肥及施氮量是影响硝态氮含量最大的外界因素,其次是土壤湿度和氮肥品种,土壤温度对其影响不明显。  相似文献   

7.
氮肥投入水平对蔬菜地硝态氮淋洗特征的影响   总被引:7,自引:1,他引:7  
通过3年的田间定位试验研究了不同施N条件下蔬菜地NO3--N淋洗浓度及淋洗量的变化。结果表明:在农民习惯的传统施N处理(花椰菜为450kg/hm2,苋菜为100kg/hm2,菠菜为309kg/hm2)下蔬菜地NO3--N的淋洗浓度明显高于2个优化施N处理下蔬菜地的NO3--N淋洗浓度。在花椰菜、苋菜和菠菜生长期内,2个优化施N处理下蔬菜地NO3--N平均淋洗量分别是传统施N处理下蔬菜地NO3--N平均淋洗量的19%、18%、9%和13%、34%、21%。试验期间传统施N处理下蔬菜地NO3--N年季平均累积淋洗量约占年季平均施N量的一半,其中休闲期NO3--N平均累积淋洗量占年季平均累积施N量的20%;而其他2个优化施N处理NO3--N年季平均累积淋洗量是年季平均累积施N量的27%,休闲期NO3--N平均淋洗量占年季平均累积施N量的6%,而处理间蔬菜产量并未受到明显影响。  相似文献   

8.
9.
  目的  探讨宁夏引黄灌区日光温室集约种植区地下水硝态氮污染现状及其与土壤硝态氮含量之间的关系,为有效防治地下水硝态氮污染及土壤盐渍化提供理论依据。  方法  通过抽样调查方法,采集7个典型日光温室集约种植区不同时期的214个地下水样及102个0 ~ 20 cm土壤样品,分析了地下水和土壤的硝态氮含量及电导率等。  结果  地下水样本硝态氮含量超过Ⅲ类水标准的达53.3%;近80%的土壤样本呈现出不同程度的盐渍化,其中中度盐化土占57%。当地下水硝态氮含量大于40 mg L?1时,地下水电导率、土壤电导率和土壤硝态氮含量均随地下水硝态氮浓度增加而急剧增加。土壤电导率与土壤硝态氮含量之间呈极显著线性函数关系,决定系数达0.376。土壤硝态氮含量与地下水硝态氮含量之间呈极显著的指数函数关系,土壤电导率与地下水电导率之间呈极显著的线性函数关系。  结论  宁夏典型日光温室集约种植区的地下水硝态氮污染和次生盐渍化严重,并与土壤硝态氮含量和盐渍化密切相关。  相似文献   

10.
不同施肥措施对土壤硝态氮垂直分布的特征影响   总被引:16,自引:1,他引:16  
通过田间试验研究了冬小麦收获后NO3--N在土壤剖面中的累积状况。研究结果表明:不论是单独施用无机、生物有机肥还是无机、有机肥混施都会造成硝酸盐在土壤中的积累,但有机肥本身产生的硝酸盐累积量极微。生物有机、元机肥混施后减少了无机肥料中硝态氮深层累积。在0-100cm土层中,硝态氮的累积量呈递减趋势,在0-40cm的累积量最高。砂质土壤比牯质土壤更有利于硝态氮的深层迁移。  相似文献   

11.
保护地菜田土壤硝酸盐积累及其调控措施的研究进展   总被引:44,自引:5,他引:44  
本文概述了近年来国内外有关保护地菜田土壤硝酸盐积累方面的研究结果 ,就土壤硝酸盐积累的影响因素、调控措施做了较为详尽的评介  相似文献   

12.
本文综述了影响蔬菜硝酸盐累积的因素,并提出了硝酸盐累积的调控措施以及一些新的建议。  相似文献   

13.
应用灰色关联分析法,对红壤旱地几种新型耕作制度的综合效益,按生态效益、经济效益和社会效益各项指标进行综合评价。结果表明:"白菜/马铃薯/玉米-芝麻"灰色关联度最高,能兼顾社会、经济和生态效益,保证增产和农民增收,实现农业生产的可持续发展,是适宜在旱地上推广应用的"两高一优"耕作制度模式。  相似文献   

14.
Summary The effect of liming on in-situ N transformations was studied in two stands of different ages of each of Scots pine (Pinus sylvestris L.), Douglas fir [Pseudotsuga menziesii (Mirb.) Franco], and common oak (Quercus robur L.). The stands were located on acid sandy soils in an area with high atmospheric N input. The organic matter of the upper 10-cm layer of the soil, including the forest floor, had a relatively high N content (C: N ratio <25) in all stands. Using a sequential core technique, N transformations were measured in both control plots and plots that had been limed 3 years previously with 3 t ha-1 of dolomitic lime. Limed plots had a higher net NO inf3 sup- production and a higher potential for NO inf3 sup- leaching than the controls in all stands except that of the younger oak. Net N mineralization did not differ significantly between limed and control plots in oak stands and younger coniferous stands but was significantly lower in the limed plots of the older coniferous stands. It is concluded that long-term measurements of net N mineralization in limed forest soils are needed to evaluate the effect of liming with respect to the risk of groundwater pollution.  相似文献   

15.
Abstract. Nitrate leaching was measured for four years at the Royal Agricultural College 's Coates Farm in the Cotswolds, England. Coates is a typical Cotswold mixed farm with thin, well-drained calcareous soils especially prone to leaching. Over the duration of this study there were dairy, sheep and arable enterprises on the farm. A 'Farm Gate' nitrogen (N) budget was constructed. Small 120 m × 20 m 'farmlets' were sited in ten fields across the farm, covering all parts of the rotation, as the sites for detailed measurements. Each farmlet received the same management as the rest of the field in which they were situated. Using ceramic probes inserted to 60 cm, soil water was sampled every two weeks throughout the winter drainage season. The annual drainage varied from 135 mm under grassland in 1996/7 to 600 mm under cereals in 1998/9. Average N losses by leaching were determined mostly by rainfall and were 65 kg N ha–1 yr–1, accounting for 25% of the N inputs. Especially leaky parts of the rotation were the ploughing out of a lucerne ley and the grazing of stubble turnips with sheep, both typical Cotswold farm practices. The research highlights some of the difficulties in developing practicable, profitable management practices to decrease nitrate losses.  相似文献   

16.
Abstract. Nitrate leaching measurements in Denmark were analysed to examine the effects of husbandry factors. The data comprised weekly measurements of drainage and nitrate concentration from pipe drains in six fields from 1971 to 1991, and weekly measurements of nitrate concentration in soil water, extracted by suction cups at a depth of 1 m, from 16 fields in 1988 to 1993. The soils varied from coarse sand to sandy clay loam.
The model used for analysing the data was: Y = exp (1.136–0.0628 clay + 0.00565N + crop ) D0.416, with R2= 0.54, where Y is the nitrate leaching (kg N/ha per y), clay is the % clay in 0-25 cm depth (%), N is the average N-application in the rotation (kg/ha/y) and D is drainage (mm/y). The most important factor influencing leaching was the crop type. Grass and barley undersown with grass showed low rates of leaching (17-24 kg/ha/y). Winter cereal following a grass crop, beets, winter cereals following cereals and an autumn sown catch crop following cereals showed medium rates of leaching (36-46 kg/ha/y). High rates of leaching were estimated from winter cereals following rape/peas, bare soil following cereals and from autumn applications of animal manure on bare soil (71-78 kg/ha/y). Estimates of leaching from soil of 5, 12 and 20% clay were 68, 44 and 26 kg/ha/y, respectively. Leaching was estimated to rise significantly with increasing amounts of applied N.
The model is suitable for general calculations of the effects of crop rotation, soil type and N-application on nitrate leaching from sandy soil to sandy clay loarns in a temperate coastal climate.  相似文献   

17.
Arable fields of 10 organic farms from different locations in The Netherlands were sampled in three subsequent years. The soil samples were analysed for disease suppressiveness against Rhizoctonia solani AG2.2IIIB in sugar beet, Streptomyces scabies in radish and Verticillium longisporum in oilseed rape. In addition, a variety of microbial, chemical and physical soil characteristics were assessed. All data were correlated by multiple regression and multivariate analyses with the objective to find correlations between soil suppressiveness and biotic or abiotic soil characteristics. Significant differences in soil suppressiveness were found between the fields for all three diseases. Multiple regression indicated a significant correlation between suppressiveness against Rhizoctonia and the number of antagonistic Lysobacter spp., as well as with % active fungi and bacterial diversity. Grass-clover stimulated Rhizoctonia suppression as well as the presence of antagonistic Lysobacter spp. (mainly L. antibioticus and L. gummosus) in clay soils. Streptomyces suppression correlated with the number of antagonistic Streptomyces spp., % of active fungi and bacterial population size. The presence of antagonistic Streptomyces spp. correlated with a high fungal/bacterial biomass ratio. Verticillium suppression was only measured in 2004 and 2005, due to the inconsistent suppressiveness along the years. Nevertheless, a significant correlation with pH, potential nitrogen mineralization and bacterial biomass was found. Bacterial and fungal PCR-denaturing gel electrophoresis fingerprinting of bacterial and fungal communities, in general, did not significantly correlate with disease suppression. Highly significant explanatory factors of the composition of the dominating bacterial and fungal populations were % lutum, pH, C/N quotient, biomass and growth rate of bacteria. Additionally, the % of organic matter and years of organic farming were explaining significantly the composition of the bacterial population.Thus, significant correlations between several soil characteristics and suppressiveness of different soil-borne pathogens were found. For two of the three pathogens, suppression correlated with biotic soil characteristics combined with the presence of specific bacterial antagonists. Probably the soil suppressiveness measured in the organic fields is a combined effect of general and specific disease suppression.  相似文献   

18.
With regard to the low cation-exchange capacity and large saturated hydraulic conductivity of sandy soils, a field experiment was carried out in 2006–2007 to determine the impact of zeolite on nitrogen leaching and canola production. Four nitrogen (N) rates (0, 90, 180, and 270 kg ha–1) and three zeolite amounts (3, 6 and 9 t ha?1) were included as treatments. The results demonstrated that the highest growth parameters and seed yield were attained with 270 kg N ha?1 and 9 t zeolite ha?1. However, the highest and the lowest seed protein percentage and oil content were obtained with 270 kg N ha?1 accompanied by 9 t zeolite ha?1, respectively. Nitrate concentration in drained water was affected by nitrogen and zeolite. The lowest and highest leached nitrate values were found in control without N and zeolite (N0Z0) and in treatments with the highest N supply without zeolite (N270Z0), respectively. In general, nitrogen-use efficiency decreased with an increase in N supply. Application of 9 t zeolite ha?1 showed higher nitrogen use efficiency than other zeolite amounts. Also, application of more N fertilizer in soil reduced nitrogen uptake efficiency. In total, application of 270 kg N ha?1 and 9 t zeolite ha?1 could be suggested as superior treatment.  相似文献   

19.
华北山前平原农田土壤硝态氮淋失与调控研究   总被引:6,自引:5,他引:6  
本文依托中国科学院栾城农业生态系统试验站小麦-玉米一年两熟长期定位试验, 应用土钻取土和土壤溶液取样器取水的方法, 研究了不同农田管理措施下土壤硝态氮的累积变化, 计算了不同氮肥处理通过根系吸收层的硝态氮淋失通量。结果表明, 小麦-玉米生长季土壤硝态氮累积量和淋失量随着施氮量的增加显著增加, 相同氮肥水平下增施磷、钾肥增加了作物的收获氮量, 施磷肥增加的作物收获氮量最高可达123kg·hm-2·a-1, 施钾肥增加的作物收获氮量最高为31 kg·hm-2·a-1。不同灌溉水平下0~400 cm 土体累积硝态氮随着灌溉量的增加而降低, 控制灌溉(小麦季不灌水, 玉米季灌溉1 水)、非充分灌溉(小麦季灌溉2~3 水, 玉米季按需灌溉)、充分灌溉(小麦季灌溉4~5 水, 玉米季按需灌溉)各处理剖面累积硝态氮量分别为1 698 kg·hm-2、1148 kg·hm-2 和961 kg·hm-2。与非充分灌溉和充分灌溉处理相比, 控制灌溉在100~200 cm 土层硝态氮累积量显著高于其他层次, 2003~2005 年间控制灌溉剖面增加的硝态氮量占施肥总量的23%; 非充分灌溉处理剖面增加的硝态氮量占施肥总量的22%; 充分灌溉处理剖面增加的硝态氮量占施肥总量的47%。免耕措施降低了作物产量, 影响土壤水的运移, 增加了硝态氮的淋失风险。根据作物所需降低氮素投入(N 200 kg·hm-2·a-1), 增施磷、钾肥, 控制灌溉量是减少华北山前平原地区硝态氮淋失, 保护地下水的有效措施。  相似文献   

20.
 Delaying cultivation and incorporation of arable crop residues may delay the release of NO3 and hence reduce leaching. The objective of this study was to investigate the effect of timing of cultivation on the mineralization and leaching of NO3 from an arable crop residue. Overwinter N leaching and periodic measurements of soil inorganic N were combined to estimate net N mineralized after ploughing a crop residue into a free-draining loamy sand soil in central England on six dates from June 1994 to January 1995. The crop residue was whole green barley with approximately 2% N. N leaching in the two following winters was increased by the addition of crop residues. Early residue application also tended to increase N leached in the first winter, largely as a consequence of relatively large losses early in the drainage period. Thus, early incorporation of crop residues presents a greater leaching risk. The amount of N leached in the second (drier) winter was similar for all dates of incorporation. At the end of the first winter, inorganic N derived from the crop residue was greatest for earlier additions: June (40% N applied) > September (30% N applied) > August (20% N applied) > October (19% N applied) > November (11% N applied) > January (3% N applied). However, at the end of the experiment, there was no evidence that the residues which had mineralized least by the end of the first winter had, to any significant degree, caught up, and this was confirmed by the parameters of the equation for first-order decomposition in thermal time. These results indicate that the effect of temperature, particularly in the early stages of residue mineralization, is complex and interacts with other soil processes in terms of the fate of the N mineralized. Received: 19 July 1999  相似文献   

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