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911.
水氮互作对旱地春小麦氮肥利用效率和经济产量的影响   总被引:2,自引:0,他引:2  
为明确水氮互作对旱地春小麦氮素利用效率和经济产量的影响,通过盆栽试验分析了不同水氮处理下春小麦关键生育期茎秆、叶片、麦穗(不含籽粒)和籽粒的全氮含量及经济产量。结果表明,水氮互作下,春小麦茎秆、叶片和麦穗(不含籽粒)的全氮含量均随生长发育进程的推进而呈现下降趋势;正常水分条件(土壤含水量为最大持水量的75%~85%)下,春小麦茎秆、叶片、麦穗(不含籽粒)和籽粒的全氮含量均表现为中氮处理(每公斤土壤施纯氮0.15 g)>高氮处理(每公斤土壤施纯氮0.25 g)>空白对照(不施氮肥),且中氮处理的氮肥利用率、农学效率和生产效率均显著高于高氮处理(P<0.05),但经济产量却显著低于高氮处理(P<0.05);水分胁迫条件(土壤含水量为最大持水量的35%~45%)下,春小麦茎秆、叶片、麦穗(不含籽粒)和籽粒的全氮含量均表现为高氮处理>中氮处理>空白对照,但中氮处理的氮肥利用率、农学效率和生产效率及经济产量均显著高于高氮处理(P<0.05)。说明正常水分条件下,增加氮肥用量有利于提高旱地春小麦的经济产量,而水分胁迫条件下,减少氮肥用量更有利于旱地春小麦的生产。  相似文献   
912.
密肥组合对稻茬晚播小麦籽粒产量和效益的影响   总被引:2,自引:0,他引:2  
为筛选适宜南方晚播稻茬中筋小麦高产高效栽培的密肥组合,以中筋小麦品种扬麦20为材料,研究了江苏淮南地区晚播(11月20日之后播种)条件下密度、施氮量、氮肥基追比对稻茬小麦籽粒产量和效益的影响.结果表明,晚播小麦密度与籽粒产量、效益均呈二次曲线关系,密度为315×104株·hm-2时,籽粒产量最高,达6 721.65~7 884.91 kg·hm-2,效益达3 783.6~5 111.55元·hm-2;施氮量为270 kg·hm-2时籽粒产量极显著高于施氯量210 kg· hm-2处理.在本试验条件下,基本苗为315×104株·hm-2、总施氮量270 kg·hm-2、基肥∶壮蘖肥∶拔节肥∶孕穗肥为3∶1∶3∶3时,晚播小麦的籽粒产量和效益最高.  相似文献   
913.
为了解应用遥感技术估测滴灌小麦氮肥利用效率的可行性,以新春17号、新春6号和新春22号为材料,通过大田试验,分析了不同施氮处理下小麦干物质氮肥偏生产力(RDN)和干物质氮肥农学效率(DMA En)与光谱参数的相关关系,并建立小麦RDN和DMAEn的光谱参数估算模型.结果表明,在分蘖、抽穗和开花期RDN与绿度植被指数和比值植被指数呈极显著正相关,在拔节和抽穗期DMAEn与土壤调整比值植被指数和归一化差值植被指数呈显著正相关.光谱参数估算模型的均方根误差为7.64~33.31,说明利用光谱参数可以有效地估算小麦氮肥利用效率.  相似文献   
914.
以杂交稻F优498为材料,研究了高、低土壤肥力下麦秆覆盖与氮肥运筹对杂交稻主要生育期氮素吸收利用特征、产量及米质的影响,并探讨了不同土壤肥力下麦秆覆盖和氮肥运筹对结实期剑叶SPAD值与稻米品质的形成的影响。结果表明,不同土壤肥力下,麦秆覆盖均有效促进杂交稻各生育时期氮素积累,提高了氮素利用效率以及稻谷产量,增加了稻米蛋白质含量、稻米胶稠度,显著降低了稻米垩白度以及垩白粒率,且高土壤肥力下麦秆覆盖优于低土壤肥力下麦秆覆盖处理。同时,不同土壤肥力下麦秆覆盖处理,均以m基肥∶m蘖肥∶m穗肥为3∶3∶4的氮肥运筹模式最优,均能有效调节水稻灌浆结实期叶片SPAD值,提高水稻氮素吸收利用效率及稻谷产量;但稻米品质方面,高土壤肥力以m基肥∶m蘖肥∶m穗肥为5∶3∶2时最佳;而低土壤肥力可适当提高氮肥后移比例,以m基肥∶m蘖肥∶m穗肥=3∶3∶4最佳。相关分析表明,水稻灌浆期剑叶SPAD值与稻米出糙率、整精米率以及蛋白质含量显著或极显著正相关(r=0.47*~0.90**);与垩百度、垩白粒率负相关,但相关未达显著水平;而高土壤肥力下稻米品质各项指标分别与齐穗后19~27d剑叶SPAD值,低土壤肥力下麦秆覆盖与齐穗后13~19d剑叶SPAD值相关系数最大。  相似文献   
915.
氮磷钾肥对越橘的产量效应及优化分析   总被引:1,自引:0,他引:1  
以五年生高丛越橘品种“蓝丰”为试材,采用三因素二次通用旋转组合设计方法,建立了氮、磷、钾肥与越橘产量间的效应模型,经检验二次回归模型拟合性较好。对肥料主效应的分析结果表明:氮、磷、钾肥对越橘的增产作用依次为氮肥>磷肥=钾肥。两因素交互效应分析结果:氮钾、氮磷、磷钾之间存在一定程度的交互效应。经模拟寻优,获得氮、磷、钾的最佳施肥组合方案为N 34.15-40.59 g/株、P2O515.02-19.35 g/株、K2O 15.02-19.35 g/株。  相似文献   
916.
对采用树脂包膜技术制作的控释尿素Ⅰ(CRUⅠ)和控释尿素Ⅱ(CRUⅡ)进行了玉米田间试验,并与普通尿素(CU)进行了肥效对比。结果表明:施肥处理的土壤硝态氮含量显著高于不施肥处理(ck),在玉米成熟期,控释尿素土壤硝态氮含量仍然保持着很高的数值,CRUⅡ3土壤硝态氮含量为11.62 mg/kg。从苗期到抽雄期,施氮肥各处理的土壤铵态氮含量与ck和ck1处理之间差异显著,土壤铵态氮含量在玉米成熟期比吐丝期增多,但各氮肥处理之间无显著差异,CRUⅡ3土壤铵态氮含量为14.93 mg/kg。控释尿素显示了良好的养分控释效果。施用控释尿素后,控释尿素Ⅱ(CRUⅡ2)处理玉米产量达到了10678.60 kg/hm2,比对照(ck)增产6197.98 kg/hm2,增收3 182.39元/hm2,产投比达到了1.78∶1,且穗粒数、百粒重、经济效益均较对照增加显著,是一类很有发展前景的新型控释肥料。  相似文献   
917.
应用非饱和土壤水运动理论,建立膜下滴灌条件下土壤水分运动二维数值模拟模型,研究了田间层状土壤在膜下滴灌条件下土壤水分运动特征.应用不同小区不同灌水处理的实测值与模拟值进行对比,同时对模型做了精度分析,结果表明符合精度要求,这说明所建立的模型能客观地反映实际土壤条件下的水分运动情况.研究结果表明:土壤剖面30~40 cm粘土层使土壤水分运动具有很大的差异,0~30 cm变化明显,而40 cm以下土壤水分运动的变化较小. 膜下滴灌应该采取灌水量小,频度大的灌溉模式.  相似文献   
918.
  • 1. Current monitoring strategies of governmental organizations tend to be focused on relatively large flowing and standing waters, and until recently those polluted by point sources. Consequently areas of high conservation interest tend to be understudied, and defining reference conditions, as required by current legislation, is difficult to achieve.
  • 2. In order to address this imbalance, water samples have been collected and analysed once in each of four seasons during 2003 from 72 locations within a 100 km2 area of the oligotrophic River Spey catchment in NE Scotland. The sampling design included examples of running water (headwater streams and the main rivers) and standing water (lochs, lochans, pools, ditches, backwaters, bogs). Altitude ranged from 220 to 980 m and incorporated a climatic regime from cool temperate to sub‐alpine. Each sampling campaign targeted low‐flow conditions to evaluate steady‐state nutrient concentrations.
  • 3. Concentrations of the major soluble nutrients nitrogen and phosphorus demonstrated high spatial and temporal variability, with soluble organic and molybdate unreactive forms generally being dominant. Concentrations of ammonium‐N, nitrate‐N and soluble reactive phosphorus were extremely small, with 50% of samples falling below 8, 5 and 1 µg L?1, respectively, during spring and summer.
  • 4. Sampling sites were grouped either by water‐body type or by the properties of their immediate biophysical zone. Together these two groupings explained 33–38% of the variance in water chemistry. Certain changes were detectable across most habitats and biophysical zones.
  • 5. A decline in the concentration of nitrate that occurred in reaches downstream from certain headwater streams draining the mountain areas indicated the potential for its within‐stream utilization. Inorganic N dynamics differed between small streams and large rivers.
  • 6. Landscape‐scale patterns were recorded in spring and summer nutrient availability with inorganic N and P thresholds (arbitrarily defined) of 10 and 1 µg L?1, respectively.
Copyright © 2006 John Wiley & Sons, Ltd.  相似文献   
919.
ABSTRACT

We compared the protein and oil contents, seed yields, and natural abundance of 15N (σ15N) of seeds from the plants of the cultivar Enrei, which has moderate nodulating ability (Enrei) with those of its two near-isogenic lines (NILs), a super-nodulating genotype of Enrei, i.e., En-b0-1, and a non-nodulating genotype of Enrei, i.e., En1282. Plants of these three genotypes were grown on four types of field plots with different types of urea coated slow-release nitrogen (N) fertilizers (CUSLNFs) which delivered N in different manners during plant growth . The seed yield of the En1282 plants was similar to that of the Enrei plants but much greater than that of the En-b0-1 plants when the plants were grown on the field to which a CUSLNF with a long lifespan was applied. The amounts of protein per seed were positively correlated with those of oil per seed in the case of En1282 plants irrespective of the field N conditions. The seed protein contents were proportional to the seed weight in both En1282 and Enrei plants. Such a relationship was not observed in the En-b0-1 plants, and the protein and oil contents in the seeds of En-b0-1 plants were negatively correlated with each other. These observations suggested that the N supply to maturing seeds was a key to the protein contents in the En1282 and Enrei plants and that the C supply to maturing seeds was a key to the protein contents in the En-b0-1 plants. The comparison of the σ15N values, protein contents, and seed yields of seeds from En1282 plants suggested that the Enrei plants assimilated considerable amounts of N from the soil during the late plant growth. We concluded that high N2 fixation activity depressed the amounts of oil per seed and changed the protein and oil contents in soybean seeds.  相似文献   
920.
ABSTRACT

The present studies were conducted to evaluate the effect of different nutrient management practices under two tillage options in wheat. The experiments were laid out in split-plot design with a combination of two varieties (WH 1105 and HD 2967) and two tillage options (Conventional and No tillage) in the main plot and six precision nutrient management practices [absolute control, site-specific nutrient management with Nutrient Expert for wheat (SSNM-NE)(170 kg nitrogen (N)/ha), SSNM NE+GreenSeeker (GS)(153/158 N kg/ha), N120 (120 kg N/ha) before irrigation, N120 after irrigation and N Rich (180 kg N/ha)] in subplot replicated thrice. The grain yield and quality characters in no tillage (NT) and conventional tillage (CT) were similar but agronomic efficiency was higher in NT. Both the varieties (WH 1105 and HD 2967) gave similar grain yield and quality. Wheat variety WH 1105 recorded significantly higher sodium dodecyl sulfate sedimentation (SDS) and gluten index. The treatment SSNM NE+GS had resulted in 107.1% higher grain yield than no nitrogen control but similar to enriched N plot (180 kg N/ha). The grain protein, SDS and gluten index in need-based nutrient management (SSNM+GS) treatment were found to be similar as recorded in SSNM-NE (170 kgN/ha) and N enriched plot (180 kg N ha?1). The agronomic efficiency and recovery efficiency in SSNM+GS were also better than SSNM NE.  相似文献   
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