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1.
氮肥运筹对晚播冬小麦氮素和干物质积累与转运的影响   总被引:12,自引:0,他引:12  
氮素平衡对干物质积累与分配的影响是农业生态系统研究的重要内容,在保障产量前提下减少氮肥施用量可减少环境污染与温室气体排放。以晚播冬小麦为研究对象,设置4个施氮量水平:0 kg/hm2(N0)、168.75 kg/hm2(N1)、225 kg/hm2(N2)、281.25 kg/hm2(N3),每个施氮量水平下设置2个追氮时期处理:拔节期(S1)、拔节期+开花期(S2),研究了氮肥运筹对晚播冬小麦氮素和干物质积累与转运及氮肥利用率的影响。结果表明:拔节期追施氮肥(S1)条件下,在225 kg/hm2(N2)基础上增施25%氮肥(N3)对开花期氮素积累总量和营养器官氮素转运量无显著影响;拔节期+开花期追施氮肥(S2)条件下,随施氮量增加,开花期氮素积累总量和花后营养器官氮素转运量升高;S2较S1显著提高成熟期籽粒及营养器官氮素积累量、花后籽粒氮素积累量及其对籽粒氮素积累的贡献率。同一施氮量条件下,S2较S1提高了成熟期的干物质积累量、开花至成熟阶段干物质积累强度和花后籽粒干物质积累量。同一追氮时期条件下,籽粒产量N2与N3无显著差异,氮肥偏生产力随施氮量增加而降低;同一施氮量条件下,S2较S1提高了晚播冬小麦的籽粒产量和氮肥吸收利用率。拔节期+开花期追施氮肥,总施氮量225kg/hm2为有利于实现晚播冬小麦高产和高效的最优氮肥运筹模式。  相似文献   

2.
为倡导减量施用化学氮肥,探索科学施肥模式,以达到绿色、稳产、高产的种植目标,通过田间试验,以空白处理(CK0)、常规施氮(CK1)为对照,设置减氮比例和配施有机肥两因素试验,减氮比例设减氮20%(A1)、减氮40%(A2);配施有机肥设:不配施有机肥(B0)、配施普通有机肥(B1)、配施生物有机肥(B2),研究了减氮配施不同种类有机肥对玉米物质积累分配、转运及产量的影响,为玉米化学氮肥减量增效技术提供科学依据。结果表明:随化学氮肥施用量的减少,玉米干物质积累量及产量降低;配施有机肥显著提高了干物质积累量、籽粒分配比例、吐丝后干物质对籽粒的贡献率和产量;减氮20%配施普通有机肥、生物有机肥处理较不配施有机肥处理,两年干物质积累量平均分别提高了31.38%和46.29%(P<0.05);产量分别提高了19.57%和23.78%,较常规施氮处理产量分别提高了7.15%和10.95%;减氮40%配施普通有机肥、生物有机肥处理较不配施有机肥处理,两年干物质积累量平均分别提高了19.68%和35.13%;产量分别提高了6.33%和7.48%(P<0.05),而产量较常规施氮处理分别降低了10.42%和9.44%(P<0.05);适量减氮并配施有机肥可促进玉米物质积累,改善穗部性状,最终提高产量;本试验条件下,配施1500 kg·hm^-2有机肥可实现化学氮肥减量20%并使玉米增产,且配施生物有机肥增产效果最好。  相似文献   

3.
马忠明  杜少平  薛亮 《生态学杂志》2015,26(11):3353-3360
通过田间试验研究了不同氮肥运筹方式对砂田西瓜产量、品质及氮素和干物质积累与转运的影响.结果表明: 基肥氮过低或过高均不利于砂田西瓜苗期生长,伸蔓期或膨果期不施氮肥则限制了西瓜“源”或“库”的形成,在相同的施氮量水平下,T4(30%基肥+30%伸蔓肥+40%膨瓜肥)和T6\[100%基肥+长效复合肥添加剂(NAM)\]处理较传统施肥模式T1(30%基肥+70%伸蔓肥)西瓜坐果后茎叶干物质和氮素积累量显著降低,而果实干物质和氮素积累量显著增加.其中,T4处理的氮素运转率和氮素贡献率分别达到33.6%和12.0%,T4和T6处理的氮素收获指数、氮肥偏生产力和氮肥利用率较传统施肥模式T1分别显著提高14.1%和12.7%、11.6%和12.5%、5.3%和8.7%.T4和T6处理较T1西瓜分别增产11.6%和12.5%,可溶性糖含量分别显著提高16.5%和11.7%,有效酸度分别提高4.5%和2.8%,糖酸比分别提高19.4%和13.4%,Vc含量分别提高35.6%和19.0%.因此,T4和T6处理为砂田西瓜高产优质的较优氮肥运筹模式,若减轻砂田施肥难度,延长砂田使用年限,可采用100%基肥+NAM(T6)的施肥方式.  相似文献   

4.
为探索贵州黄壤区施用新型肥料对辣椒种植的增产效应,通过盆栽试验研究了保水型(BSX)、稳定性(WDX)、包膜型(BMX)缓释肥和长效氮肥(CXDF)4种新型肥料对‘博辣5号’辣椒的干物质、氮素积累与分配,以及氮素利用效率的影响.结果表明: 施用新型肥料可以明显影响辣椒干物质和氮素的积累与分配,辣椒氮素积累快速增长开始时间和结束时间较干物质分别提前17~26 d和28~45 d,且氮素积累快速增长持续期也较干物质缩短7~23 d,表明氮素积累的发生时间要先于干物质积累;与普通复合肥(FHF)处理相比,新型肥料处理的干物质和氮素积累均出现明显滞后,以BMX处理的滞后时间最长,但是WDX处理的快速增长持续期较短且最大积累速率最高,说明稳定性缓释肥可实现养分短时间内的高效利用;BSX和BMX处理的花后干物质和氮素积累量占总干物质和总氮的比例分别为62.9%和20.1%、73.3%和20.5%,而WDX处理则分别为59.3%和11.6%,说明保水型和包膜型缓释肥相对有利于辣椒花后干物质积累和氮素同化,而稳定性缓释肥则更有利于花前干物质和养分积累;与FHF处理相比,施用新型肥料(保水型、稳定性和包膜型缓释肥)可显著提高辣椒的氮素利用效率,以稳定性缓释肥的氮肥偏生产力、氮肥农学效率和氮肥表观利用率最高,分别为66.74 kg·kg-1、44.28 kg·kg-1和54.6%.新型肥料适用于贵州辣椒种植栽培,以稳定性缓释肥的施用效果最佳.  相似文献   

5.
氮肥处理对氮素高效吸收水稻根系性状及氮肥利用率的影响   总被引:12,自引:0,他引:12  
2011—2012年在土培条件下,以氮素吸收效率差异较大的15个常规籼稻为供试材料,研究氮肥运筹对不同氮效率品种根系性状、成熟期吸氮量及氮肥利用率的影响,分析影响氮高效水稻氮素吸收的主要根系性状。结果表明:(1)各氮肥处理下,成熟期吸氮量均表现为氮高效品种氮中效品种氮低效品种。适量增施氮肥及基肥+促花肥处理有利于氮高效品种吸氮量的增加,氮素吸收受品种、氮肥处理的显著影响。(2)在施氮量处理下,氮高效品种单株不定根数、单株根干重、单株不定根总长大或较大,单株根活力在常氮(N2)、高氮(N3)处理下有一定的优势;在施氮时期处理下,氮高效品种单株不定根数、单株不定根总长、单株根干重、单株根系总吸收面积、单株根系活跃吸收面积、抽穗期冠根比多数处理有优势;增施氮肥有利于促进氮高效品种单株不定根总长和单株根活力的提高,适量施氮有利于单株不定根数、单株根干重增加,前期施氮可促进不定根的发生和伸长,后期施氮有利于不定根的充实和根系生理性状的提高。此外,增施氮肥可提高各类品种冠根比;(3)在常氮、高氮处理下,氮高效品种氮肥利用率大于氮中效、氮低效品种。(4)提高单株不定根数、单株不定根总长、单株根活力及抽穗期冠根比有利于各类品种吸氮量的提高,增加根干重对氮高效品种吸氮量的提高也有显著的促进作用。结合相关分析与通径分析结果,抽穗期冠根比及单株不定根数、单株根活力、单株不定根总长、单株根干重是影响氮高效品种吸氮能力的主要根系性状。  相似文献   

6.
The effects of either organic (urea and glutamine) or inorganic nitrogen forms (nitrate and ammonium) on dry matter accumulation in shoots and roots and on nitrogen assimilatory enzyme activities were studied in two Catasetum fimbriatum genotypes. Both genotypes, which had inverse patterns of dry matter partitioning between shoots and roots, were aseptically incubated in gelled culture media containing 6 mol m−3 of nitrogen and incubated in growth chamber for 30 and 60 days. In vivo nitrate reductase, glutamine synthetase, glutamate dehydrogenase activities as well as free ammonium contents were determined in shoots and roots of plants grown in four different nitrogen sources. Nitrogen assimilatory enzyme activities showed the highest values in the genotype that accumulated dry matter predominantly in the shoots. The nitrogen sources supplied affected dry matter accumulation in shoots and roots of both C. fimbriatum genotypes; however, they were not enough to change the characteristic pattern of dry matter partitioning of each genotype. On the other hand, the differences in the root/shoot ratio found among nitrogen treatments were relatively higher in the genotype that directed dry matter mainly to roots than in the genotype that allocates biomass to shoots. Our results suggest that NADH-dependent glutamate dehydrogenase plays an important role in ammonium assimilation in C. fimbriatum plants, particularly in the root system. Nitrogen metabolism and the dry matter partitioning of the two genotypes are discussed.  相似文献   

7.
Werker  A. Rik  Jaggard  Keith W.  Allison  Marc F. 《Plant and Soil》1999,207(1):97-106
In the UK sugar beet is grown on contrasting soils that vary both in their nutritional status and water-holding capacities. Water shortage and low nitrogen reduce canopy growth and dry matter production, which is compensated in part by an increase in the fraction of assimilates partitioned to storage. Conversely, high nitrogen and ample water encourage growth of the canopy, increase assimilation of carbon dioxide but reduce the proportion of assimilates stored as sugar. This paper sets out to examine simple relationships between sugar yield, total dry matter and soil nitrogen in rain-fed and irrigated sugar beet crops (Beta vulgaris L.) from 46 field experiments spanning 12 years and a range of soil types, in order to improve prediction of sugar yields. Two partitioning functions were fitted to the data. The first represents a useful alternative formulation of the allometric growth function that overcomes some of the difficulties in the interpretation of the parameters. This model adequately described the seasonal progress of sugar yield (Y) in relation to total dry matter (W), but it was difficult to postulate biological mechanisms as to how the parameters should vary in relation to varying soil nitrogen or to drought. The second partitioning function, given by Y = W − (1/k) log(1 + kW), also described the data well, but had the more useful parameter, k, the decay rate of the fraction of assimilates partitioned to structural matter. This was shown to be greater in crops which had experienced significant drought and was inversely proportional to the amount of nitrogen taken up by the crops. Relationships between k and amounts of nitrogen fertilizer applied and/or amounts of residual nitrogen in the soil at sowing, however, were more variable. These could be improved by additionally taking account of soil type and rainfall following nitrogen fertilizer application in late spring. The models are a useful extension to yield forecasting models because they provide a simple means of estimating sugar yield from total dry matter in relation to factors that affect partitioning of assimilates such as drought and soil nitrogen availability. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

8.
为探明种植翻压山黧豆绿肥与减施氮肥下的水稻生产潜力,通过3年田间定位试验,设置冬闲+不施肥(NF)、山黧豆绿肥(GM)、冬闲+常规氮肥(100%N,CK)、山黧豆绿肥+80%常规氮肥(GM+80%N)、山黧豆绿肥+70%常规氮肥(GM+70%N)、山黧豆绿肥+60%常规氮肥(GM+60%N)6个处理,研究不同处理对水稻生长、养分吸收及产量的影响。结果表明:(1)与CK相比,翻压山黧豆绿肥并减施氮肥处理均能够显著提升水稻株高、增加水稻分蘖数、提高水稻干物质积累量,其中以GM+70%N施肥处理提升效果最为明显。(2)GM+70%N施肥处理下,不同生育时期水稻株高、有效分蘖数分别较对照常规施肥(100%N)提升了13.32%~ 15.73%和33.98%~59.47%,水稻干物质积累量提高了23.19%~144.18%,且随着生育时期的推进增加速率依次降低。(3)种植翻压山黧豆绿肥并减施氮肥处理下水稻产量均有所提高,其中GM+70%N和GM+80%N处理显著提高,增产分别达13.84%,7.25%,且GM+70%N处理下水稻植株和籽粒养分吸收更为全面。研究发现,种植翻压山黧豆并适量减施氮肥能有效促进水稻生长和养分的吸收积累,显著提高水稻产量,说明翻压山黧豆绿肥可替代稻田30%~40%的氮肥施入量,并可在避免水稻旺长的同时实现水稻高产,是四川水稻种植较好的耕作措施。  相似文献   

9.
在大田条件下,研究了水稻秸秆还田和施氮量对晚播小麦产量、养分积累、秸秆养分释放及养分平衡的影响.结果表明: 水稻秸秆还田并配施适当的施氮量有利于提高晚播小麦籽粒产量.晚播小麦全生育期的干物质、氮、磷、钾积累量均随施氮量增加而显著增加,相同施氮量(270 kg N·hm-2)下,秸秆还田处理的干物质、磷、钾积累高于不还田处理,氮积累则呈相反趋势.随着施氮量增加,秸秆腐解和养分释放率增加,且拔节后秸秆养分释放量占总释放量的比例降低;随生育进程的推进,秸秆的干物质、磷、钾释放量呈倒“N”型变化趋势,而氮释放量则呈“V”型变化趋势.计算养分表观平衡结果表明,秸秆还田并增加施氮量,养分总盈余量显著升高;在获得较高产量的施氮条件下,氮、钾素显著盈余,磷素投入较为合理.晚播小麦实行秸秆还田后,可适当增加氮肥用量至257 kg·hm-2,并减少钾肥投入.  相似文献   

10.
Many crop models relate the allocation of dry matter between shoots and roots exclusively to the crop development stage. Such models may not take into account the effects of changes in environment on allocation, unless the allocation parameters are altered. In this paper a crop model with a dynamic allocation parameter for dry matter between shoots and roots is described. The basis of the model is that a plant allocates dry matter such that its growth is maximized. Consequently, the demand and supply of carbon, nitrogen, and water is maintained in balance. This model supports the hypothesis that a functional equilibrium exists between shoots and roots.This paper explains the mathematical computation procedure of the crop model. Moreover, an analysis was made of the ability of a crop model to simulate plant dry matter production and allocation of dry matter between plant organs. The model was tested using data from a greenhouse experiment in which spring wheat (Triticum aestivum L.) was grown under different soil moisture and nitrogen (N) levels.Generally, the model simulations agreed well with data recorded for total plant dry matter. For validation data the coefficient of determination (r2) between simulated and measured shoot dry weight was 0.96. For the validation treatments r2 was slightly lower, 0.94. In addition to dry matter production the model succeeded satisfactorily in simulating the dry weight of different plant organs. The response of simulated root to shoot ratio to the level of soil moisture was mainly in accordance with the measured data. In contrast, the simulated ratio seemed to be insensitive to the changes in the levels soil N concentration used in the experiment.The data used in the present study were not extensive, and more data are needed to validate the model. However, the results showed that the model responses to the changes in soil N and water level were realistic and mostly agreed with the data. Thus, we suggest that the model and the method employed to allocate dry matter between roots and shoots are useful when modelling the growth of crops under N and water limited conditions.  相似文献   

11.
通过大田试验,以水稻(品种‘F优498’)-小麦(品种‘内麦863’)轮作体系为研究对象,根据成都平原稻麦种植体系常规施氮水平,设7个不同猪粪施用处理:对照(CK,无化学氮肥,无猪粪)、常规化肥(T1,无猪粪)、化肥减量25%+猪粪2500 kg·hm-2(T2)、化肥减量50%+猪粪5000 kg·hm-2(T3)、猪粪10000 kg·hm-2(T4)、猪粪15000 kg·hm-2(T5)和猪粪20000 kg·hm-2(T6),研究添加猪粪对稻麦干物质、氮素积累及分配特征、籽粒产量和氮素利用率等的影响.结果表明: 猪粪配施化肥对稻麦各生育期干物质积累均有促进作用,稻麦成熟期作物地上部干物质积累量均以高量猪粪施用处理(T6)最高,但其干物质积累及氮素分配向茎叶富集,且籽粒干物质积累及氮积累分配率显著低于T2处理;随着配施猪粪用量的增加,稻麦氮肥偏生产力、氮肥农学利用率、籽粒产量均呈现先增加后减少趋势,其中水稻季以T3处理最优,较常规化肥处理提高11.4%、55.4%、11.4%,小麦季则以T2处理最优,较常规化肥处理提高14.0%、29.1%、14.0%.本试验条件下,2500~5000 kg·hm-2猪粪+化肥减量25%~50%处理,有利于促进稻麦干物质积累、氮素向籽粒运移,达到增产及提高氮素利用率的效果,超量施用猪粪(15000~20000 kg·hm-2)后,土壤氮素供应过量,干物质向经济器官运移受阻,氮素向茎秆富集,贪青晚熟现象严重,稻麦籽粒产量显著下降.  相似文献   

12.
Vos  J.  van der Putten  P.E.L. 《Plant and Soil》1997,195(2):299-309
In temperate climates with a precipitation surplus during autumn and winter, nitrogen catch crops can help to reduce nitrogen losses from cropping systems by absorbing nitrogen from the soil and transfer it to a following main crop. The actual and potential accumulation of dry matter and nitrogen in catch crops were studied in the field during four seasons with winter rye (Secale cereale) and forage rape (Brassica napus ssp. oleifera (Metzg.) Sinsk) or oil radish (Raphanus sativus spp. oleiferus (DC.) Metzg.). Sowing dates were end of August and three and six weeks later. Potential nitrogen accumulation, Y (g m-2), could be summarized with Y = 96 –0.34 X, where X is the day number in the year of the sowing date (range: late August till end of September). Species were compared in their performance, looking at differences in specific leaf area, leaf weight ratio, leaf area ratio, light extinction and persistence during frost. The rate of dry matter accumulation in intervals of 14 days appeared to be determined primarily by the amount of radiation intercepted. A regression, forced through the origin, gave as a common slope 1.12 g dry matter accumulated per MJ intercepted global radiation, irrespective of season, species, sowing date or nitrogen treatment (period from ca. day 250 to day 310). From this result the inference is made that leaf expansion is a key process, determining the performance of catch crop species under varying environmental conditions.  相似文献   

13.
Summary Two trials were established to investigate the supply of nitrogen from ammonium and nitrate fertilizers, slow release nitrogen fertilizers, an organic nitrogen fertilizer and a legume, at two phosphate levels, to eight grass cultivars on colliery spoil. Spoil nitrogen supply and chemical characteristics and herbage dry matter and nitrogen yields were monitored for up to seven years. pH and conductivity fell at both sites. pH trends appeared to be independent of nitrogen treatment. Nitrogen in the ammonium form gave better yields than in the nitrate form when 125 kg N ha–1 was supplied in a season but there was no difference when 62.5 kg N ha–1 was applied. Slow release forms of nitrogen gave better yields more evenly distributed over the season than one application of ammonium sulphate per season. Once established white clover (Trifolium repens) plots had a more consistent nitrogen supply, more evenly distributed yield and better quality herbage than nitrogen fertilizer plots.Lolium perenne yielded poorly at low fertility.Festuca rubra andAgrostis castellana, although establishing slowly, yielded well under high and low fertility.  相似文献   

14.
膜下滴灌水氮调控对南疆棉花产量及水氮利用率的影响   总被引:2,自引:2,他引:0  
为探明水氮调控对膜下滴灌棉花的生长特性、产量构成因素以及水氮利用效率的影响,设置了3个灌溉水量和5个氮素水平进行大田棉花膜下滴灌试验.结果表明: 随着灌溉水量的增加,棉花的株高、主茎叶数、果枝数和叶面积指数显著增加,棉花叶、茎干物质积累增加,但抑制了根系生长,与低(4950 mm·hm-2)和高(6750 mm·hm-2)灌水量处理相比,中灌水量(5850 mm·hm-2)处理平均单株有效铃数和单铃质量分别增加0.96、0.4个和0.22、0.11 g.与其他施氮处理相比,施氮量为300 kg·hm-2时棉花茎直径显著增加,促进了棉花蕾、铃和根系的发育,而且在灌水量为5850 mm·hm-2条件下,棉花干物质由营养器官向生殖器官的分配比灌水量为4950和6750 mm·hm-2处理分别增加5.1%和29.6%.灌溉水量对棉花产量有显著影响,对衣分率影响不显著,而施氮量对棉花产量和衣分率都有一定的影响,但灌溉水量过低会抑制氮肥增产效应的发挥.在本试验条件下,灌水量为5850 mm·hm-2、施氮量为300 kg·hm-2时,棉花生长健壮,株型结构优化,显著促进了干物质向生殖器官的运转,有效铃数、单铃质量和衣分增加,产量达到最高(6992 kg·hm-2),水分利用效率和氮肥利用率分别达1.45 kg·m-3和45.9%.  相似文献   

15.
富士苹果幼树生长与氮素积累和利用动态   总被引:1,自引:0,他引:1  
以6年生烟富3/SH6/平邑甜茶为试材,用整株破坏性解析的方法,研究了萌芽期至果实成熟期7个时期下的树体生长和氮素积累动态,并借助15N同位素示踪技术研究了树体对肥料氮的吸收利用和分配特性,以期阐明苹果树的氮积累动态和肥料氮的最大效率期,从而为科学施氮提供理论依据.结果表明: 萌芽期(3月25日)至果实成熟期(萌芽后210 d)红富士苹果幼树整株干物质净积累量为4.51 kg,其中果实占66.5%,叶梢(叶片与新梢,下同)占20.2%,多年生器官占13.3%;叶梢干物质积累量在萌芽后30~60 d增长幅度较大,占其整个处理时期的42.9%;果实干物质积累量在萌芽后120~180 d增长幅度大,占整个处理时期的70%.整株氮素净积累量为29.1 g,在萌芽后30~60 d和120~180 d增长较快,分别为7.2和12.8 g,占整个处理时期的24.7%和44%;叶梢在萌芽后0~60 d氮积累速率较快,占其整个时期的69.1%;果实的氮积累量在萌芽后120~180 d最快,占其整个时期的60.8%;多年生器官的氮积累量在处理周期内呈先下降后上升的趋势,并在萌芽后 60 d到达最低水平.树体在不同时期的15N利用率差异显著,分别在萌芽后30~60、120~150和150~180 d处于较高水平,15N利用率分别为2.3%、4.1%和4.0%;多年生器官在各个时期的15N分配率均呈现较高水平,新生器官的15N分配率均为先上升后下降的趋势,其中叶片新梢在萌芽后30~60 d达到最高水平,为38.4%;果实在萌芽后120~150 d和150~180 d到达最高水平,分别为15.0%和16.6%.因此,叶片和新梢氮素积累的关键时期为萌芽后30~60 d;果实氮素积累的关键时期为萌芽后120~180 d;树体对肥料氮的最大效率期为萌芽后30~60 d和120~180 d.  相似文献   

16.
J. Hassink 《Plant and Soil》1995,175(2):159-166
I tested whether the non-fertilizer N supply of grassland soils (NFNS; N uptake on unfertilized plots) affects the relationships between N uptake and dry matter production, N application and N uptake, N application and dry matter production, as well as the optimum fertilizer application rate.At low N uptake rates the amount of dry matter production per kg of N uptake was negatively correlated with NFNS; at higher N uptake levels the correlation was not significant. The apparent nitrogen recovery of fertilizer N was not correlated with NFNS. The optimum fertilizer application rate was correlated positively with the maximum dry matter production (Max DM) and negatively with NFNS. The relationship optimum fertilizer application = –81–0.8 × NFNS + 0.0375 × Max DM accounted for 89% of the variance in optimum fertilizer application rate between soils at a marginal N effect of 7.5 kg dry matter per kg N applied. So an increase in NFNS of 100 kg N resulted in a decrease of the optimum N application rate of 80 kg N.  相似文献   

17.
以直播稻为对象,在上海农场进行了猪场处理废水基肥和穗肥不同用量组合的田间试验,研究猪场废水对水稻磷养分吸收利用与氮磷生态化学计量的影响。结果表明:施用猪场处理废水对直播水稻干物质积累、植株磷含量有显著影响。水稻拔节期、齐穗期和成熟期干物质积累量以及产量随废水施用量增加而增加;拔节期、齐穗期和成熟期植株、秸秆及籽粒含磷量与废水用量皆呈显著正相关;不同施肥处理在整个生育期水稻植株N∶P为3.13~5.10,在拔节期、齐穗期、成熟期分别为3.13~4.83、3.42~4.35、3.98~5.10,总体上以齐穗期N∶P值较低;成熟期秸秆N∶P值变动较大(4.30~6.57),而籽粒变化较小(3.85~4.37);齐穗期植株、成熟期秸秆、籽粒和植株的N∶P值与废水施用总量皆呈显著正相关,表明废水施用对直播稻氮素吸收的促进作用大于磷素。  相似文献   

18.
The growth of lucerne var. Europe was examined in the fieldduring 1976. The annual dry matter production of unirrigatedlucerne during 1976, with no nitrogen fertilizer application,was 82.5 per cent greater than unirrigated S.24 perennial ryegrass,with a nitrogen application of 384 kg ha–1. The mean aboveground growth rate of lucerne was 7.3 g DM m–2 day–1between March and early June, of which stem material contributeda maximum of 76.5 per cent. Significant losses of leaves andstems occurred from the end of April, indicating a loss of potentialforage material. Nitrogen analyses of the above ground crop suggested that in56 days lucerne yielded 10.7 per cent more nitrogen than didS.24 annually with a nitrogen fertilizer addition of 280 kgha–1. Between 13 and 57 per cent of the daily photosynthate is translocatedbelow ground. Medicago sativaL, lucerne, dry matter production, canopy structure, nitrogen analyses  相似文献   

19.
施用纳米碳对烤烟氮素吸收和利用的影响   总被引:9,自引:0,他引:9  
为明确纳米碳在提高烤烟氮素吸收利用方面的效果,在盆栽条件下,研究了纳米碳不同用量对烤烟根系生长发育、干物质积累和氮素吸收利用的影响。结果表明,在常规肥料中添加纳米碳能够促进烤烟根系生长发育,明显提高烟株根系活力和单株根系生物量,增加植株干物质积累量。施用纳米碳增加了烤烟植株成熟期各器官氮素含量和积累量,而未明显影响氮素在植株不同器官的分配。施用纳米碳不仅增加了植株对肥料氮的吸收量,还增加了对土壤氮的吸收量,这与其促进烤烟根系生长发育、提高根系吸收能力有密切关系。纳米碳无论做基肥还是做追肥,均显著提高了氮肥利用率,提高幅度分别达到14.44%和9.62%,有效降低了氮素土壤残留和损失。  相似文献   

20.
Green manure application may benefit subsequent crops not only by improving nitrogen (N) fertility but also via non-nutritional mechanisms. The quantification of the latter effect, however, is complicated by the confounding effect of N fertility. Two experiments were conducted in controlled environments to partition the yield response of barley to green manure between N and non-nutritional effects. Each experiment included a factorial of fertilizer N application rates and green manure application rates. The fertilizer was labelled with 15N to facilitate discrimination between N sources. Approximately 24% of the N applied in green manure was assimilated by barley after 45 days (Experiment 1) and 32% was recovered by barley grown to maturity (Experiment 2). Apparent recovery of green manure-N by barley was not appreciably affected by fertilizer application. Regression analysis of the relationship between dry matter yield and plant N uptake demonstrated that yield responses to green manure application were not entirely attributable to improved N fertility. For a given amount of N assimilated by the crop, yields were higher in green manure-amended treatments than in those receiving no green manure. In barley grown to maturity, barley response to N and non-nutritional effects were estimated to be 5.3 and 2.2g pot−1, respectively. The relationship between dry matter yield and N uptake is suggested as a method for distinguishing nutritional and non-nutritional yield responses. This approach assumes that no other nutrient is limiting growth. The presence of non-nutritional benefits observed in this study demonstrates that the agronomic value of green manure is not limited to N release and casts doubt on the assumptions inherent to calculation of fertilizer equivalents. Contribution 3879132 Contribution 3879132  相似文献   

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