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1.
在施钾条件下灌溉水稻的养分吸收和利用效率研究   总被引:1,自引:0,他引:1  
HU Hong  WANG Guang-Huo 《土壤圈》2004,14(1):125-130
Potassium is one of the most important nutrients for rice production in many areas of Asia, especially in southeast China where potassium deficiency in soil is a widespread problem. Field experiments were conducted for four consecutive years in Jinhua City, Zhejiang Province, to determine utilization of nutrients (N, P and K) by inbred and hybrid rice and rice grain yields as affected by application of potassium fertilizer under irrigated conditions. Grain yield and nutrient harvest index showed a significant response to the NPK treatment as compared to the NP treatment. This suggested that potassium improved transfer of nitrogen and phosphorus from stems and leaves to panicles in rice plants. N and P use efficiencies of rice were not strongly responsive to potassium, but K use efficiency decreased significantly despite the fact that the amount of total K uptake increased. A significant difference between varieties was also observed with respect to nutrient uptake and use efficiency. Hybrid rice exhibited physiological advantage in N and P uptake and use efficiency over inbred rice. Analysis of annual dynamic change of exchangeable K and non-exchangeable K in the test soil indicated that non-exchangeable K was an important K source for rice. Potassium application caused an annual decrease in the concentration of available K in the soil tested, whereas an increase was observed in non-exchangeable K. It could be concluded that K fertilizer application at the rate of 100 kg ha-1 per season was not high enough to match K output, and efficient K management for rice must be based on the K input/output balance.  相似文献   

2.
A field microplot experiment was conducted in the red soil hilly region of South China to evaluate plant phosphorus (P)uptake under soybean and citrus monoculture and the soybean-citrus intercropping system using the 32P tracer technique. P fertilizer was applied at three depths (15, 35, and 55 cm). The experimental results showed that the planting pattern and 32P application depth significantly affected the characteristics of P uptake by soybean and citrus. Under the soybean-citrus intercropping system, considerable competition was observed when the 32P fertilizer was applied to the topsoil (15 cm); therefore, the 32P recovery rate declined by 41.5% and 14.7% for soybean and citrus, and 32P supplying amount of topsoil to soybean and citrus decreased by 346.8 and 148.1 mg plot-1, respectively, compared to those under the monoculture. However, 32P recovery of soybean was promoted when 32P fertilizer was applied to the deeper soil layers (35 and 55 cm)under soybean-citrus intercropping. Under the soybean monoculture, 32P fertilizer could hardly be used by soybean when 32P fertilizer was applied at the 55 cm depth or below, with the recovery rate being less than 0.1%; it was up to 0.253% by soybean under intercropping. The higher P recovery of soybean under soybean-citrus intercropping when P was applied in the deeper soil layers was because part of the P nutrient that the citrus absorbed from the deeper soil layers could be released into the topsoil and then it could be used by the soybean.  相似文献   

3.
伊朗西部地区哈马丹市农业土壤钾地位的多元统计分析   总被引:2,自引:0,他引:2  
M. JALALI 《土壤圈》2010,20(3):293-303
Multivariate statistical technique was used to determine the potassium (K+) status and to assess soil fertility and K leaching potential in some calcareous soils. Water-soluble K+ (H2O-K) and ammonium acetate-extractable K+ (NH4OAc-K) ranged from 0.019 to 0.590 (mean value 0.095) and 0.390 to 3.320 (mean value 0.954) cmolc kg-1, respectively. The nitric acid-extractable K+ (HNO3-K) varied from 1.03 to 13.63 (mean value 5.37) cmolc kg-1. The proportion of H2O-K ranged from 0.34% to 14.8% of HNO3-K, and 2.2% to 53.2% of NH4OAc-K. The proportion of NH4OAc-K ranged from 5.8% to 80% of HNO3-K (mean value 23% of HNO3-K). The tendency of the soil to lose K+ by leaching was examined by determining K+-Ca2+ exchange isotherms. The soils mostly had moderate to high values of K+ sorption capacity, ranging from 10% to 58% (mean value 28%) of added K+. The Gapon coefficient varied widely from 1.1 to 12.0 (L mol-1)-1/2. Clay minerals were dominated by illite, smectites and vermiculite with small amounts of kaolinite. Principal component analysis (PCA) showed that the first four components accounted for 27.7%, 21.4%, 13.8%, and 8.9% of total variation, respectively. The non-hierarchical cluster analysis (k-means clustering) grouped 75 sampling sites into six clusters, based on the similarity of soil quality characteristics. The results suggested that such classes could form a basis for variable-rate application to maintain an adequate K+ status for crop production and to reduce potential K+ loss from soil by leaching.  相似文献   

4.
接种食细菌线虫对小麦生长和N、P吸收的影响   总被引:1,自引:0,他引:1  
LI Hui-Xin  HU Feng 《土壤圈》2001,11(1):57-62
A 40-day gnotobiotic microcosm experiment was carried out to quantify the effect of bacterial-feeding nematode on plant growth and nutrient absorption. The results showed that inoculation of bacterial-feeding nematode Protorhabditis sp. stimulated the growth of wheat (Triticum aestivum) and the uptake of N. By the end of the 40-day incubation wheat biomass and N uptake in the treatment with nematode and bacteria (Pseudomonas sp.) increased by 6.5% and 5.9%, respectively, compared with bacteria alone treatment. The presence of nematode mainly accelerated the growth of aboveground of wheat, while it slightly inhibited the root development. There was little difference in plant tissue N concentration between treatments. P concentration and uptake of wheat, however, were generally reduced by nematode. It appears that the enhancement of plant growth and nitrogen uptake is attributed to the enhancement of nitrogen mineralization induced by nematode feeding on bacteria, and the reduction of phosphorous uptake is the result of weak root status and competition by bacteria immobilization.  相似文献   

5.
Field experiments were carried out with rice variety of Shennong 91 of short culms and erect panicles to study nutrient contents in high-yielding rice plants and to increase rice yield by appropriate fertilization. Nitrogen, phosphorus, potassium, magnesium, zinc, manganese, iron and copper contents in rice plants varied with different treatment factors. The relationship between the nutrient contents and treatment factors could be simulated using a multiple quadratic equation. The nutrient contents in plants should be appropriate for high-yielding rice. If the mean nutrient content in rice plants producing 11 t ha-1 or more of grain (μj) was set as the standard value and the standard deviation (σj) was set as the range of variation, the nutrient content in high-yielding rice plants should be μj ± 1.99σj. Rice leaves were sensitive to the nutrient elements. Heavy nitrogen dressing increased the content of nitrogen in rice plants. Sparse transplanting also increased nitrogen content. Improper application of nitrogen, phosphorus and potassium could affect the nutrient contents and decrease the grain yield.  相似文献   

6.
A growth experiment on agar medium and a hydroponics experiment were carried out to study the nitrogen (N) metabolism of a low-N tolerant mutant (lnt1) of Arabidopsis thaliana under different N levels as compared with the wildtype (WT) Arabidopsis. On the agar medium, no apparent growth differences were observed between the lnt1 and WT plants under a normal N level of 9 mmol L-1 NO3-. However, under a low N level of 0. 18 mmol L-1 NO3-, the growth of the WT plants was greatly retarded, while the lnt1 plants were not affected by low-N stress and showed similar growth with those grown under a normal N level. In the hydroponics experiment, the lnt1 mutant had higher activities of glutamine synthetase (GS) and NADH-dependent glutamate synthase (NADH-GOGAT) in both leaves and roots under N-deficient conditions. Moreover, they accumulated less ammonium (NH4+) but more free amino acids in leaves compared with the WT plants. These observations suggest that better N assimilation might contribute to the low-N tolerant phenotype of the lnt1 mutant.  相似文献   

7.
Cropland (CP), native grassland (NG) and two shrub land treatments which were converted from cropland in 1985:seabuckthorn (Hippophae rhamnoides L. ) (ST), and branchytamarisk (Tamarix ramosissima) (BT) were investigated to evaluate effects of land use conversion on soil organic carbon (SOC) and soil nutrients in the semi-arid region of the Loess Plateau of China. Total organic carbon (TOC), light fraction organic carbon (LFOC), heavy fraction organic carbon (HFOC), total N (TN), nitrate nitrogen (NO3--N) and nitrite nitrogen (NO2--N), ammonium nitrogen (NH4+-N), total P, and available P (AP) were measured. The results showed that SOC in NG, ST and BT were 12.7%, 27.7% and 34.8% higher than that of the cropland, respectively. LFOC, light fraction (LF) dry matter, ratio of TOC to TN (C/N) and the ratio of TOC to AP (C/P) were higher in the shrub land or native grassland than in the cropland. Cropland had the highest TN, the sum of NO3--N and NO2--N, TP and AP due to the use of chemical fertilizers. TOC significantly correlated with LFOC, HFOC and C/N. LFOC significantly correlated with dry matter of the LF and C/N. TN, the sum of NO3--N and NO2--N and AP were significantly negatively correlated with TOC and LFOC. Therefore, land use conversion from cropland to shrub land, or maybe grassland, contributed to SOC sequestration and improved soil nutrients stabilization.  相似文献   

8.
硝态氮促进水稻生长和氮素吸收的生理机制   总被引:2,自引:0,他引:2  
Rice is being increasingly cultivated in intermittently irrigated regious and also in aerobic soil in which Nitrate (NO3-) plays important role in nutrition of plant. However, there is no information regarding the influence of nitrate on the overall growth and uptake of nitrogen (N) in rice plant. Solution culture experiments were carried out to study the effects of NO3- on the plant growth, uptake of N, and uptake kinetics of NH4+ in four typical rice (Oryza sativa L.) cultivars (conveutioual indica, conventional japonica, hybrid indica, and hybrid japonica), and on plasma membrane potential in roots of two conventional rice cultivars (indica and japonica) at the seedling stage. The results obtained indicated that a ratio of 50/50 NH4+-N/NO3--N increased the average biomass of rice shoots and roots by 20% when compared with that of 100/0 NH4+-N/NO3--N. In case of the 50/50 ratio, as compared with the 100/0 ratio, total N accumulated in shoots and roots of rice increased on an average by 42% and 57%, respectively. Conventional indica responds to NO3- more than any other cultivars that were tested. The NO3- supply increased the maximum uptake rate (Vmax) of NH4+ by rice but did not show any effect on the apparent Michaelis-Menten constant (Km) value, with the average value of Vmax for NH4+ among the four cultivars being increased by 31.5% in comparison with those in the absence of NO3-. This suggested that NO3- significantly increased the numbers of the ammonium transporters. However, the lack of effect on the Km value also suggested that the presence of NO3- had no effect on the affinity of the transporters for NH4+. The plasma membrane potential in the roots of conventional indica and japonica were greatly increased by the addition of NO3-, suggesting that NO3- could improve the uptake of N by roots of the rice plant. In conclusion, the mechanisms by which NO3- enhances the growth and N uptake of rice plant was found by the increased value of Vmax of NH4+ and increased plasma membrane potential. Thus promotion of nitrification in paddy soil is of great significance for improving the production of rice.  相似文献   

9.
A long-term (21-year) field experiment was performed to study the responses of soil inorganic P fractions and P availability to annual fertilizer P application in a calcareous soil on the Loess Plateau of China. Soil Olsen-P contents increased by 3.7, 5.2, 11.2 and 20.6 mg P kg-1 after 21-year annual fertilizer P application at 20, 39, 59, and 79 kg P ha-1, respectively. Long-term fertilizer P addition also increased soil total P and inorganic P (Pi) contents significantly. The contents of inorganic P fractions were in the order of Ca10-P > Ca8-P > Fe-P > Al-P > occluded P > Ca2-P in the soil receiving annual fertilizer P application. Fertilizer P application increased Ca8-P, Al-P and Ca2-P contents as well as their percentages relative to Pi. Pi application increased Fe-P and occluded P contents but nor their percentages. Soil Ca10-P content remained unchanged after fertilizer P application while its percentage relative to Pi declined with increasing fertilizer P rate. All Pi fractions but Ca10-P were correlated with Olsen-P significantly. 90% of variations in Olsen-P could be explained by Pi fractions, and the direct contribution of Ca8-P was predominant. Long-term annual superphosphate application would facilitate the accumulation of soil Ca8-P, and thus improve soil P availability.  相似文献   

10.
施用辐照处理的污水污泥对作物产量和土壤氮的影响   总被引:1,自引:0,他引:1  
A field experiment was conducted to study the feasibility of irradiated and non-irradiated sewage sludge as a fertilizer for the growth of wheat and rice. The irradiated and non-irradiated sewage sludge were applied at rates of 0 (CK), 75, 150, 225 and 300 kg N ha-1 for wheat, and 0 (CK), 112.5, 225, 337.5 and 450 kg N ha-1 for rice, respectively. (NH4)2SO4 at a rate of 150 kg N ha-1 for wheat, and 225 kg N ha-1 for rice were added to the control treatments. Additionally, 20 kg 15N ha-1 in the form of (NH4)2SO4 was added to each treatment for wheat to study the effect of sewage sludge on chemical nitrogen fertilizer recovery. The results showed that the irradiation of sewage sludge by gamma ray at a dosage of 5 kGy increased crop yield by 11%~27% as compared to the non-irradiated treatments. Irradiation stimulated mineralization of organic nitrogen in the sludge and improved seedling growth. It was found that addition of irradiated sludge could reduce the leaching loss of chemical nitrogen fertilizer. Both irradiated and non-irradiated sewage sludge could increase the content of soil total nitrogen. Based on the preliminary results, it was concluded that irradiated sewage sludge could partly substitute for chemical nitrogen fertilizer in crop production.  相似文献   

11.
施氮和不同品种水稻对紫色水稻土钾素形态的影响   总被引:3,自引:1,他引:2  
通过盆栽试验研究了施氮水平和不同品种水稻对四川盆地 3种典型紫色水稻土 5种钾形态的影响以及各种土壤钾形态对水稻钾素营养的贡献。结果表明 ,4个紫色水稻土供钾能力均属中下水平 ,全钾含量为 1.29%~2.62% ,其中矿物钾量平均占 96.82% ,速效钾和非交换性钾仅平均占 0.62%和 2.56% ,土壤供钾能力以中性紫色水稻土 石灰性紫色水稻土 酸性紫色水稻土。施氮 (N 0~ 150mg/kg)促进 4个紫色水稻土钾素的释放 ,提高水稻对非交换性钾和矿物钾的吸收利用 ,使矿物钾和非交换性钾的贡献占植株吸钾的 80.3% ,速效钾仅为 19.7%。中性紫色土供试 4个品种水稻的吸钾能力为开优 5号 汕优 63Ⅱ优 6078引佳 1号。施氮后4个品种水稻吸自非交换性钾和矿物钾量平均占植物吸钾量的 66.9% ,以施中氮 (N 150mg/kg)时植株吸钾量最高 ;而低氮或高氮水平都不利于植物对钾的吸收和土壤钾的释放  相似文献   

12.
水生植物堆肥替代部分氮肥提高水稻产量与稻田土壤肥力   总被引:2,自引:0,他引:2  
为评价太湖流域水生植物堆肥对水稻产量及稻田土壤肥力效应,在太湖流域典型稻田连续进行4a的田间定位试验,比较在等氮条件下不同比例的水生植物有机堆肥替代处理(有机氮替代率分别为0、20%、40%、60%、80%和100%)引起的水稻籽粒产量、产量构成因子、氮磷钾吸收量以及土壤碳氮含量和pH值变化.结果表明:与单施尿素相比,水生植物有机堆肥与尿素配施利于水稻产量的提高,并随着有机肥替代率增加,水稻产量呈先增后降;当有机肥替代率达40%和60%时产量最高.单施有机肥和单施尿素处理水稻籽粒产量相当.单施有机肥显著降低了有效穗数,有机肥和尿素配合施用则可减轻甚至消除这一效应;有机肥替代率在40%和60%时,有效穗数、穗粒数和结实率均较高.随着有机肥施用量增加,水稻秸秆氮浓度降低,籽粒氮浓度无影响;水稻磷浓度和吸收量均无显著差异;有机肥与尿素配施均显著提高了秸秆钾吸收量,有机肥替代率在80%时可显著提高籽粒钾吸收量.表层土壤全氮和有机碳含量及土壤pH值均与有机肥替代率呈显著正相关关系.有机肥-尿素配施处理下土壤全氮和有机碳均较4a前显著提高.有机肥替代率为80%和100%,土壤pH值较试验前土壤分别显著升高.由此可见,水生植物有机肥与尿素配施可以提高太湖稻作区水稻产量,增加土壤有机质含量和减缓土壤酸化程度,可作为太湖稻作区一项环保型施肥技术.  相似文献   

13.
试验探索了前作(冬季)种植蔬菜的情况下,不同氮磷肥施用量与配施植物/土壤调理剂对水稻产量和产量性状的影响。研究结果表明,水稻产量与N、P肥施用量呈抛物线型关系,土壤植物调理剂在提高水稻N、P肥吸收利用率方面效果显著。本试验条件下,667m2施N5.9kg+P2O54.1kg+K2O5kg+土壤植物调理剂33kg,能获得高产。对于高需N、P品种,在合理施肥的同时配合使用土壤植物调理剂能充分发挥其产量优势。  相似文献   

14.
水稻根系形态与氮素吸收累积的相关性分析   总被引:9,自引:1,他引:9  
【目的】氮肥过量施用,不仅造成氮肥大量流失,还增加了农业生产成本,对生态环境带来了巨大的威胁。水稻根系形态作为影响养分吸收和利用的主要因素之一,明确其与氮素吸收累积的相关性是提高氮素利用效率、降低环境污染的有效途径。【方法】利用营养液培养方法,研究了 55 个水稻品种在 NH4+-N 和 NO3–-N 供应条件下苗期植株生物量、氮含量和氮素累积量及其与根系形态指标的相关性。【结果】在 NH4+-N 培养下,水稻营养指标与根系形态指标的相关性高于其在 NO3–-N 培养下的相关性。在相同供氮水平下,供应 NH4+-N 的水稻苗期平均生物量为 55.77 mg/plant,比供应 NO3–-N 的量高 4.94 mg/plant;水稻苗期平均氮含量为 4.22%,比供应 NO3–-N 的高 0.72%;水稻苗期平均氮累积量为 1.91 mg/plant,比供应 NO3–-N 的苗期平均氮累积量高 0.67 mg/plant。在 NH4+-N 和 NO3–-N 两种氮素形态培养条件下,水稻根系形态指标品种间根尖数变异系数最大,平均根系直径变异系数最小。总根体积、总根面积、总根长、分枝数四个形态指标与植株生物量、植株氮含量、植株氮累积量相关性最为显著,且相关系数 (r) 呈总根体积 > 总根面积 > 总根长 > 分枝数的规律。在 NH4+-N 培养下的水稻营养指标与根系形态指标的相关性要高于其在 NO3–-N 培养下的相关性。【结论】水稻苗期总根体积、总根面积、总根长、分枝数可作为水稻氮高效评价的重要指标。  相似文献   

15.
实时实地氮素管理对水稻产量和氮素吸收利用的影响   总被引:5,自引:2,他引:3  
以扬两优6号和培两优3076水稻为材料,通过田间试验比较研究了基于SPAD值的氮素管理对水稻氮素吸收、产量和氮肥利用率的影响。结果表明,随着SPAD预设阈值的增加,氮肥用量增加,籽粒产量和氮素吸收也随之增加。实时氮素管理条件下,水稻扬两优6号和培两优3076均以SPAD值为41处理获得较高的籽粒产量和氮素利用率,该处理在籽粒产量不降低的同时节约了氮肥用量12. 8% ~33.3%;而实地氮素管理条件下,水稻扬两优6号和培两优3076均以SPAD值为39~41处理获得较高的籽粒产量和氮素利用率,该处理在籽粒产量不降低的同时节约了23.1%的氮肥用量。鉴于实地氮素管理在田间易于操作,因此建议采用39~41作为水稻关键生育期指导氮肥施用的SPAD阈值。  相似文献   

16.
氮素施用比例对双季超级稻产量和氮素吸收、利用的影响   总被引:2,自引:0,他引:2  
以超级早、晚稻品种淦鑫203和淦鑫688为材料,研究了氮素基蘖肥:穗肥的施用比例对产量及氮肥利用率的影响.结果表明,在早稻180 kg/hm2和晚稻232.5 kg/hm2的施氮水平下,早稻在N(8∶2)和N(7∶3)、晚稻在N(6∶4)时的生物产量、稻谷产量、总吸氮量、氮肥利用率最高.  相似文献   

17.
In order to produce an effective organic fertilizer, cattle manure was cocomposted with chemical fertilizer. And the kinetics of nitrogen uptake by rice plants from the co-compost was investigated using the 15N labelled co-composts on either cattle manure or chemical fertilizer. As a control, nitrogen kinetics from the mixture of cattle manure and chemical fertilizer without co-composting was investigated. At the early stage, rice growth may have been promoted by co-composting, while, it may have been promoted by the larger N-content of cattle manure at the harvesting stage. The ratios of nitrogen uptake by rice plants and residual nitrogen in soil from the cattle manure and chemical fertilizer were determined by measuring 15N -atom%. The N -uptake ratios by rice plants from the cattle manure in the co-composted plot were about 2–4 times higher than those from the cattle manure without co-composting. However, the N -uptake ratios from the chemical fertilizer in the co-composted plot were lower than those from the chemical fertilizer without co-composting. The N -content of the rice plants derived from chemical fertilizer without co-composting decreased consistently after 28 d. The nitrogen from chemical fertilizer in the co-compost was absorbed again in the latter period of rice growth. The total nitrogen uptake by rice plants from cattle manure and chemical fertilizer was similar regardless of co-composting. However, co-composting would be advantageous at least· in terms of the following aspects: increase of the N -uptake by rice plants from cattle manure, slow-release ability of nitrogen from chemical fertilizer, decrease of nitrogen loss by denitrification.  相似文献   

18.
氮肥运筹模式对双季稻北缘水稻氮素吸收利用及产量的影响   总被引:35,自引:7,他引:35  
在双季稻北缘地区,以常规品种早籼65和杂交组合香两优68为试验材料,在施氮量150.kg/hm2的条件下,研究了不同氮肥运筹模式对早稻产量及氮素吸收利用特性的影响。结果表明:减少基、蘖肥,提高穗肥比例可增加抽穗成熟期的叶片含氮量,使SPAD值维持较高水平,提高齐穗后的绿叶面积和有效叶面积率,提高群体光合势,有利于促进干物质积累而提高产量和氮素吸收,常规稻和杂交稻均以基∶蘖∶穗=50∶25∶25运筹模式产量最高;前氮后移增施穗肥因能为水稻整个生育期提供比较平衡的氮素供应,可促进氮素的吸收;氮肥当季利用效率随穗肥比例提高而增加,但氮肥的农学利用率与产量有更好的对应关系。基∶蘖∶穗=50∶25∶25的运筹模式是双季稻北缘地区早稻合理的施肥技术。  相似文献   

19.
有机无机配施对水稻产量及氮肥残效的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
为揭示有机无机配施条件下15N尿素在稻田土壤中的残效状况,在我国北方棕壤性水稻土上进行盆栽试验,结合土壤氮素供应及水稻对肥料氮的吸收利用,探寻最佳的施肥方式.设置空白(CK)、尿素(N)、秸秆+尿素(NS)、猪粪+尿素(NM)、稳定性尿素(NI)、秸秆+稳定性尿素(NIS)、猪粪+稳定性尿素(NIM)7个处理.结果 表...  相似文献   

20.
不同施氮水平下水稻的养分吸收、转运及土壤氮素平衡   总被引:19,自引:7,他引:12  
【目的】为解决东北地区水稻合理施用氮肥问题,系统研究了不同施氮水平条件下,东北水稻产量及构成因素、养分吸收、转运、氮肥利用效率及土壤氮素平衡的变化,并探讨各养分间及其与产量间的关系,为东北地区水稻合理施氮提供理论基础。【方法】于2012~2013年在吉林省松原市前郭县红光农场,选用当地主栽水稻品种富优135和吉粳511为材料,设置施N 0、60、120、180和240 kg/hm25个水平。于水稻返青期、分蘖期、抽穗期、灌浆期及成熟期采集植株样本,分为茎鞘、叶片和籽粒三部分,测定氮、磷、钾含量,计算水稻主要生育期植株养分吸收、转运、氮素利用特性的相关参数及各养分吸收、转运与产量间的关系。水稻移栽前和收获后采集0—100 cm土壤样品,每20 cm为一层(共5层),测定铵态氮、硝态氮含量,并根据各层土壤容重计算0—100 cm土体无机氮积累量,分析土壤氮素平衡状况。【结果】施氮量60~180 kg/hm2范围内,水稻产量随着施氮水平的提高而增加,氮肥用量超过180 kg/hm2水稻产量下降。结合当年水稻和肥料价格,根据水稻产量(y)和施氮量(x)拟合方程,得出最高产量氮肥用量分别为212.8 kg/hm2和220.6 kg/hm2,施氮范围在202.2~231.6 kg/hm2之间,最佳经济产量氮肥用量分别为203.0和209.1 kg/hm2,施氮范围在192.9~219.6 kg/hm2之间。施用氮肥可显著提高水稻主要生育期氮、磷、钾吸收量,且能提高水稻抽穗期氮、磷、钾养分向籽粒的转运,施氮量180 kg/hm2处理抽穗期各养分累积量与籽粒转运量呈正比,当氮肥用量超过180 kg/hm2后,氮、磷、钾养分向籽粒转运出现负效应。氮素农学利用率和偏生产力随着施氮水平的提高而显著下降,氮肥当季回收率以施氮量180 kg/hm2处理最高。相关分析表明,水稻主要生育期氮、磷、钾的吸收、转运与产量间均存在显著或极显著的正相关性,其中灌浆期氮、磷、钾的吸收状况与产量间的相关系数最大。施用氮肥可显著提高收获后0—100 cm土壤中残留无机氮(Nmin),氮素表观损失量随施氮水平的提高而增加。【结论】适宜的氮肥用量可显著提高水稻产量,各生育时期养分吸收总量,提高水稻生育后期秸秆中氮、磷、钾向籽粒的转运量,并能降低土壤氮素表观损失量。综合考虑提高水稻产量、效益、氮肥当季回收率及维持土壤氮素平衡等因素,在本试验条件下,施氮范围在192.9~219.6 kg/hm2。  相似文献   

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