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1.
不同覆盖方式对旱作水稻氮肥肥效的影响   总被引:6,自引:0,他引:6  
通过田间小区和微区框15N示踪试验,研究了水稻旱作秸秆覆盖、旱作薄膜覆盖、旱作秸秆和薄膜双覆盖、旱作无覆盖与常规灌溉栽培方式的氮素吸收利用特性。结果表明,水稻常规灌溉栽培的氮肥利用率(15.30%)显著低于旱作无覆盖(23.56%)和旱作薄膜覆盖(23.10%);旱作秸秆薄膜双覆盖(19.07%)和旱作秸秆覆盖(18.41%)显著低于旱作溥膜覆盖。旱作水稻根、茎叶、子粒各器官的NDFF值(即各器官N含量来自化肥N所占的百分率)是覆盖栽培小于无覆盖栽培;而旱作栽培普遍高于常规灌溉栽培。旱作条件下,水稻产量覆盖栽培高于无覆盖栽培;无覆盖条件下,常规灌溉栽培显著高于旱作栽培。  相似文献   

2.
灌溉水平对冬小麦氮素吸收及氮素平衡的影响   总被引:5,自引:0,他引:5  
应用15N示踪技术对不同灌溉条件下冬小麦的氮素吸收及氮素平衡进行了研究 ,结果表明 ,冬小麦的氮素积累及对肥料氮的利用率均以高灌处理较高 ,而肥料氮的损失量则以低灌处理较多。在冬小麦的氮素积累过程中 ,低灌的影响主要表现为冬小麦对肥料氮的吸收持续时间较短 ,尤其是对追肥氮的吸收主要集中在施肥后 2 0d内。在肥料氮素损失过程中 ,低灌导致肥料氮在施肥初期损失量过大 ,这是造成低灌条件下的肥料氮素损失总量较大的主要原因  相似文献   

3.
不同耕作方式下水分管理对水稻氮素吸收利用的影响?   总被引:6,自引:2,他引:4  
2008年早季和晚季,以桂旱1号和金优253为试验材料,盆栽条件下利用15N示踪技术研究了湿润灌溉、交替灌溉、水层灌溉3种水分管理模式下和免耕、常耕2种土壤耕作方式下水稻氮素与吸收利用的差异。结果表明:(1)湿润灌溉栽培降低了2种耕作方式水稻的氮肥吸收量,其中对基肥和分蘖肥吸收量的降低达显著水平;(2)湿润灌溉栽培时施入稻田中的氮肥被当季水稻吸收利用的比率下降,在土壤中的残留比率增加;(3)常耕条件下,湿润灌溉水稻氮素吸收总量明显低于水层灌溉和交替灌溉水稻,但免耕条件下湿润灌溉对水稻氮素吸收总量的影响比较小;(4)湿润灌溉时水稻产量和氮素的生产效率下降。  相似文献   

4.
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   

5.
N肥深施深度对小麦吸收利用N的影响   总被引:12,自引:1,他引:12       下载免费PDF全文
本文应用^15N示踪技术,在川中紫色土上进行了聚土的表层施肥(施肥深度1-2cm)、中层施肥(深施25cm)、底层施肥(深施45cm)和平作表层施肥不同处理小麦吸N特性等的研究。结果表明:N肥利用率是“平+表施”〉“聚+底施”〉“聚+中施”〉“聚+表施”,处理间N肥利用率最高是23.78%,小麦一生有38.7-44.1%的N来自肥料。小麦拔节以前无论是聚土还是平作,其表层施肥地上部分NDFF值极显  相似文献   

6.
Efficient crop use of nitrogen (N) fertilizer is critical from economic and environmental viewpoints, especially under irrigated conditions. Cotton yield parameters, fiber quality, water‐ and N‐use efficiency responses to N, and irrigation methods in northern Syria were evaluated. Field trials were conducted for two growing seasons on a Chromoxerertic Rhodoxeralf. Treatments consisted of drip fertigation, furrow irrigation, and five different rates of N fertilizer (50, 100, 150, 200, and 250 kg N /ha). Cotton was irrigated when soil moisture in the specified active root depth was 80% of the field capacity as indicated by the neutron probe.

Seed cotton yield was higher than the national average (3,928 kg/ha) by at least 12% as compared to all treatments. Lint properties were not negatively affected by the irrigation method or N rates. Water savings under drip fertigation ranged between 25 and 50% of irrigation water relative to furrow irrigation. Crop water‐use efficiencies of the drip‐fertigated treatments were in most cases 100% higher than those of the corresponding furrow‐irrigated treatments. The highest water demand was during the fruit‐setting growth stage. It was also concluded that under drip fertigation, 100–150 N kg/ha was adequate and comparable with the highest N rates tested under furrow irrigation regarding lint yield, N uptake, and recovery. Based on cotton seed yield and weight of stems, the overall amount of N removed from the field for the drip‐fertigated treatments ranged between 101 and 118kg and 116 and 188 N/ha for 2001 and 2002, respectively. The N removal ranged between 94 and 113 and 111 and 144 kg N/ha for the furrow‐irrigated treatments for 2001 and 2002, respectively.  相似文献   

7.
为探明盐渍化农田不同施氮水平下向日葵氮素吸收利用规律,采用15N同位素示踪技术进行田间微区试验,以不施氮处理(N0)为对照,设计3种施氮水平(N1=150 kg/hm2、N2=225 kg/hm2、N3=300 kg/hm2),于向日葵成熟期测定植株和0—100 cm土层土壤15N同位素丰度及总氮含量,研究各处理肥料氮素的去向及其利用机制。结果表明:向日葵氮素吸收量随施氮量的增加而增加,成熟期作物氮素吸收量在N2水平较不施氮显著增加38.7%;土壤氮和肥料氮对作物当季氮素吸收的贡献比例为84.9%和15.1%。N2水平下,肥料氮的贡献比例较N1增加35.7%,土壤氮的贡献比例较N1降低4.3%。肥料氮残留量随土层深度增加而减少,土壤中47.4%的残留肥料氮主要集中在0—20 cm土层。不同施氮水平下肥料氮去向均表现为氮肥损失率>氮肥残留率>氮肥利用率,N2施氮水平下氮肥利用率较N1、N3显著提高22.7%和14.6%,土壤残留率较N1、N3减少8.5%和8.6%。综合考虑向日葵氮素吸收利用及土壤中氮素残留情况,225 kg/hm2施氮量下氮肥利用率为27.4%,氮肥残留率为32.3%,氮肥损失率为40.3%,是中度盐渍化农田较适宜的施氮量。  相似文献   

8.
以典型半干旱区干湿砂质新成土(Ust-Sandic Entisols)为供试土壤进行田间试验,研究地膜覆盖、施氮及补充灌水量对春玉米(Zea mays L.)产量、土壤矿质氮(NO3--N和NH4+-N)及氮素平衡的影响。结果表明,0—100 cm土体范围内,随着土层加深,播前和收获后土壤NO3--N含量呈降低趋势,NH4+-N有所增加,但变幅不大;总矿质氮量(NO3--N和NH4+-N)表现为下降。说明地膜覆盖和施氮并没有使NO3--N深层累积量增加,这可能与土壤本身供氮能力严重不足有关。与不施氮相比,施氮各处理氮肥表观损失量增加;与不覆膜相比,作物氮素累积量比不覆膜显著增加(P0.05)。在低灌(80 mm)覆膜和高灌(160 mm)覆膜条件下,玉米的氮肥利用率均比不覆膜均提高了18.8%,说明覆膜低灌在相同施氮条件下,可节约80 mm灌水。但低灌(80 mm)与高灌(160 mm)不覆膜间氮肥利用率差异不显著,表明在相同施氮条件下,覆膜可有效提高氮肥利用率,减少氮素损失。综合考虑籽粒产量和氮肥利用率,“覆膜+补灌80 mm+施氮90 kg/hm2”可能为本试验条件下较优的栽培模式。  相似文献   

9.
针对黄土高原旱作区糜子生产中氮肥种类单一、肥料利用效率低的问题,本试验以当地习惯施氮尿素N 120kg/hm2(TN)为对照,设置控释氮肥N 120kg/hm2(T1)、108kg/hm2(T2)、96kg/hm2(T3)、84kg/hm2(T4)、72kg/hm2(T5)和不施肥(T0)七个处理,探究不同控释氮肥处理下土壤全氮、微生物量氮、硝态氮和铵态氮含量的变化规律,分析糜子成熟期氮素积累分配、氮素利用效率及产量对控释氮肥的响应,以期为建立旱地糜子控释氮肥一次性基施轻简栽培技术提供支撑。结果表明:与施用尿素相比,等量控释氮肥可以提高糜子抽穗期和成熟期土壤全氮、微生物量氮、硝态氮和铵态氮含量分别达0.38%~5.51%、1.76%~7.63%、5.41%~11.80%和4.04%~14.77%,其中硝态氮和铵态氮含量两年均显著高于TN,随着控释氮肥减量糜子田各形态氮素均呈降低趋势,减氮量达20%以上时土壤硝态氮和铵态氮含量均显著低于TN处理。施用控释氮肥可以提高糜子成熟期氮素积累量1.97%~3.21%,增加糜子氮素向籽粒中的分配比例0.55%~1.18%,控释氮肥减量20%以上时糜子氮素积累量显著低于尿素全量基施处理。与普通尿素相比,控释氮肥提高了糜子氮肥表观利用率、氮肥偏生产力及氮肥农学利用率,增幅分别为3.29%~4.59%、3.88%~4.14%和5.01%~7.63%,其中氮肥偏生产力处理间差异达显著水平,随着控释氮肥减量糜子氮肥表观利用率、氮肥偏生产力及氮肥农学利用率均呈上升趋势。施用控释氮肥通过增加单位面积穗数和穗重显著提高了糜子产量两年分别达3.88%和4.47%,控释氮肥减量20%以下时糜子产量与尿素差异不显著。相关性分析结果表明,糜子氮素积累量与产量呈极显著正相关,氮素利用效率指标与土壤硝态氮含量相关性最强。综上所述,施用控释氮肥较尿素可显著提高糜子生育中后期土壤供氮能力,促进糜子对氮素的吸收利用进而增加产量,且在适量减氮20%时并未显著降低糜子产量,因此控释氮肥在糜子生产中有较大的应用前景及减氮潜力。  相似文献   

10.
太湖地区不同轮作模式下的稻田氮素平衡研究   总被引:3,自引:0,他引:3  
采用田间微区15N示踪,研究了太湖地区稻田不同轮作模式(紫云英-水稻轮作、休闲-水稻轮作、小麦-水稻轮作)和施氮水平(0、120 kg·hm?2、240 kg·hm?2、300 kg·hm?2)下水稻对氮肥的吸收利用效率及土壤氮素残留特征。结果表明,水稻吸收的氮素来自肥料的比例为20.9%~49.6%,休闲-水稻轮作模式下水稻产量的获得更加依赖无机氮肥的大量投入。当季水稻对肥料氮的利用率为25.0%~41.5%,肥料氮的土壤残留率为13.4%~24.6%,其中90%以上的土壤残留肥料氮集中在0~20 cm土层,在土壤剖面中的残留率随土层深度增加而迅速降低,30~40 cm土层的肥料残留量仅占氮肥施用量的0.2%~0.7%。紫云英?水稻轮作和休闲?水稻轮作模式下氮肥利用率和土壤残留率均在施氮240 kg·hm?2时达到最大值,其氮肥利用率显著高于小麦?水稻轮作55.6%和66.0%。稻季施氮240 kg·hm?2时,小麦-水稻轮作模式下的氮肥利用率、土壤残留率以及总回收率显著最低,损失率显著最大;紫云英?水稻轮作模式下的氮肥损失率最小,分别小于休闲?水稻轮作和小麦-水稻轮作13.9%、39.2%。不同轮作模式下,水稻籽粒产量随施氮量的增加而增加,稻季施氮240 kg·hm?2时,紫云英?水稻轮作下水稻籽粒产量显著高于休闲?水稻轮作和小麦?水稻轮作,小麦?水稻轮作籽粒产量虽略高于休闲?水稻轮作,但没有达到显著水平。本研究认为,选择紫云英还田配施氮肥240 kg·hm?2,既可以保证水稻氮肥利用率而获得高产,又能减少氮肥损失而带来的环境风险,是一种值得在当地大力推广的耕作制度。  相似文献   

11.
施氮量对双季稻产量及氮磷钾吸收利用的影响   总被引:5,自引:2,他引:3  
研究不同施氮量对双季稻产量、氮磷钾积累量及氮磷钾利用率的影响,同时探讨双季稻吸收利用氮、磷、钾素三者间的相互关系。通过田间试验研究施氮量不同、磷钾投入量相同条件下的双季稻产量、双季稻氮、磷、钾积累量、双季稻氮、磷、钾素利用效率及磷钾吸收利用与氮吸收利用的关系。结果表明:双季稻产量在一定范围内(早稻0~105 kg/hm~2,晚稻0~146 kg/hm~2)随施氮量的增加而提高,之后产量随施氮量增加而降低。本试验施氮条件下,早稻产量最高的处理为75%N(105 kg/hm~2),比CK(不施化肥)增产58.1%;晚稻产量最高的处理为100%N(146 kg/hm~2)处理,比CK增产67.6%。施氮水平对双季稻植株氮、磷、钾养分积累量有显著影响,早、晚稻稻谷氮、磷、钾积累量均以100%N处理最高。不同施氮水平对氮、磷、钾养分利用效率也有显著影响。适宜的施氮量可以增加双季稻产量,促进水稻对氮、磷、钾养分的吸收,同时提高双季稻的氮、磷、钾素利用效率。综合考虑双季稻产量效应及氮磷钾养分的有效吸收利用,双季稻施氮量为105~146 kg/hm~2较为适宜。  相似文献   

12.
[目的]研究寒地稻田不同水肥管理模式下的土壤供氮特征,为筛选环境友好型寒地稻作灌溉施肥模式提供支撑。[方法]在大田试验条件下,设置间歇灌溉、淹灌2种水分管理模式及4个供氮水平(0,75,105,135kg/hm~2),以龙庆稻2号为材料,研究水肥互作模式对水稻产量、土壤供氮特征及氮素利用率的影响。[结果]灌溉模式和供氮水平对水稻产量、地上部氮素积累量、水稻氮素利用率均有显著(p0.05)或极显著影响(p0.01)。间歇灌溉模式下,增加氮肥施用量有利于提高单位面积水稻有效穗数、籽粒产量、生物产量、籽粒氮素累积量,均以施氮105kg/hm~2处理最高;水肥互作对氮素利用率影响明显,水稻的氮肥利用率在21.4%~59.1%;氮肥生理利用率、氮肥农学效率及氮肥偏生产力均随着施氮量的提高而降低,施氮量75kg/hm~2处理的氮素吸收利用各项指标均高于其他处理。相关分析表明,水肥因素是影响氮素积累及氮素吸收利用效率的重要因子。[结论]综合考虑水稻产量及氮素利用率的矛盾,间歇灌溉配合适宜减氮模式应予以高度重视。  相似文献   

13.
China has the world''s highest nitrogen (N) application rate, and the lowest N use efficiency (NUE). With the crop yield increasing, serious N pollution is also caused. An in-situ field experiment (2011-2015) was conducted to examine the effects of three N levels, 0 (i.e., no fertilizer N addition to soil), 120, and 180 kg N ha-1, using integrated rice management (IRM). We investigated rice yield, aboveground N uptake, and soil surface N budget in a hilly region of Southwest China. Compared to traditional rice management (TRM), IRM integrated raised beds, plastic mulch, furrow irrigation, and triangular transplanting, which significantly improved rice grain yield, straw biomass, aboveground N uptake, and NUE. Integrated rice management significantly improved 15N recovery efficiency (by 10%) and significantly reduced the ratio of potential 15N loss (by 8%-12%). Among all treatments, the 120 kg N ha-1 level under IRM achieved the highest 15N recovery efficiency (32%) and 15N residual efficiency (29%), with the lowest 15N loss ratio (39%). After rice harvest, the residual N fertilizer did not achieve a full replenishment of soil N consumption, as the replenishing effect was insufficient (ranging from -31 to -49 kg N ha-1). Furthermore, soil surface N budget showed a surplus (69-146 kg N ha-1) under all treatments, and the N surplus was lower under IRM than TRM. These results indicate IRM as a reliable and stable method for high rice yield and high NUE, while exerting a minor risk of N loss. In the hilly area of Southwest China, the optimized N fertilizer application rate under IRM was found to be 100-150 kg N ha-1.  相似文献   

14.
栽培方式对水稻氮素吸收利用与分配特性影响的研究   总被引:6,自引:2,他引:4  
2006和2007年,在桶栽条件下,以早稻(三系籼型杂交稻金优253)为试材,应用15N示踪技术研究了稻草还田免耕、免耕、稻草还田常耕、常耕4种栽培方式对水稻氮素吸收利用与分配特性的影响。结果表明,1)水稻植株吸收的氮肥数量及其在体内的分配与土壤耕作方式密切相关; 免耕提高了水稻对肥料氮的吸收比率及在子粒和根中的分配比率,但降低了在叶和茎中的分配比率。2)免耕水稻产量和氮素吸收总量与常耕水稻差异不显著,但免耕水稻吸收的氮素中来源于肥料的比例比常耕水稻的大; 免耕水稻的氮肥回收效率高于常耕水稻,但氮素的稻谷生产效率差异不明显。3)稻草还田对氮肥的吸收利用有显著的影响。免耕条件下,稻草还田降低了基肥和分蘖肥氮素的积累量,增加了穗肥氮素积累量,氮肥总积累量呈下降趋势; 常耕条件下,稻草还田提高了各个时期的肥料氮素积累量,氮肥的总积累量增加显著。4)稻草还田提高了免耕水稻和常耕水稻产量,2007年其差异达显著水平。免耕条件下稻草还田降低了氮素的回收效率,但常耕条件下稻草还田提高了氮肥的回收效率。  相似文献   

15.
李世娟  诸叶平  孙开梦  鄂越 《核农学报》2003,17(6):472-475,480
用15N示踪技术研究了节水灌溉条件下冬小麦对不同施氮量的氮素吸收和氮素平衡 ,并比较了两种灌溉制度下小麦对节肥施氮量的吸收动态。结果表明 ,与常规施氮量处理相比 ,节水灌溉条件下节肥施氮量处理的氮肥损失率降低 ,氮肥当季利用率和土壤残留率提高 ;基施氮肥的利用率高于追施氮肥 ;土壤肥料氮的残留率在 2 9%~ 41 %之间 ,分布于 1m土层中 ,其中60 %以上集中在 0~ 2 0cm土层 ;在整个小麦生长季内 ,肥料氮并没有淋洗到 1 30m以下。节肥施氮量在常规灌溉下的当季利用率比在节水灌溉下降低 1 6 6%。  相似文献   

16.
Flat transplanting with flooded irrigation is commonly used for growing rice, but it results in ineffective use of applied fertilizer and water. The objective of this study was to compare nitrogen use efficiency and water saving of rice transplanted on beds and on flat ground. This field experiment was performed in randomized complete design for three continuous years and all treatments were repeated three times. Results showed that transplanting of four lines of rice nursery on bed and one line in furrow and nitrogen application at 150 kg ha?1 recorded 16.06, 21.81, 16.0 and 20.21% higher paddy yield, nitrogen (N) uptake in paddy, N use efficiency and N agronomic efficiency than traditional flat method at same N level. Without loss in yield, about 25 kg ha ?1 of N fertilizer and 24% of water can be saved with bed transplanting of rice as compared to flat method.  相似文献   

17.
缓/控释肥对双季稻产量、氮素吸收和平衡的影响   总被引:13,自引:0,他引:13  
在江西省双季稻区连续2年设置大田定位试验,设置不施氮(CK)、分次优化施肥(OPT)、一次性基施缓/控释肥(100CRF)和一次性基施80%缓/控释肥(80CRF)4个施肥处理,研究施用缓/控释肥对双季稻产量、氮素吸收与利用、土壤矿质氮累积以及系统氮素平衡的影响。结果表明:与OPT处理相比,100CRF、80CRF处理2年4季水稻产量均无显著差异,但100CRF处理水稻吸氮量显著提高(P0.05),在2013年早晚稻分别提升32.58%(P0.05)和15.41%(P0.05),80CRF处理与OPT处理无显著差异。施用缓/控释肥与分次优化施肥比较,能提高早晚稻氮肥表观利用率、氮肥表观残留率,降低土壤氮素损失率。在双季稻连作体系,土壤中矿质氮含量在同生育期均表现为早稻高于晚稻,100CRF、80CRF处理与OPT处理在分蘖期、抽穗期、成熟期均无显著差异,但土壤NO–3-N在晚稻成熟期100CRF处理显著高于OPT处理(P0.05)。2年平均100CRF和80CRF处理氮损失量比OPT处理分别减少65.34 kg/hm2(33.08%)和90.64 kg/hm2(45.89%)。氮盈余量分别减少51.63 kg/hm2(29.41%)和85.13 kg/hm2(48.49%)。因此缓/控释肥施用可促进双季稻获得高产,增加植株氮素吸收,维持了较高的土壤氮素水平并减少氮素损失,当前生产条件下,缓/控释肥减量20%,双季水稻在维持高产的同时氮肥利用率最高,氮素损失最低,是一种较为合适的施肥方式。  相似文献   

18.
尿素与复合氮肥增效剂配施对水稻氮素利用的影响   总被引:3,自引:0,他引:3  
采用^15N-尿素进行盆栽和田间试验,研究了复合氮肥增效剂用量、尿素与复合氮肥增效剂配施对水稻生长、籽粒产量和氮素吸收利用的影响。结果表明,适宜用量(施氮量的20%)的复合氮肥增效剂能显著促进水稻幼苗生长发育;尿素全量配施复合氮肥增效剂不影响水稻生长,能显著提高水稻植株Ndff%、氮吸收总量,氮素利用率和^15N的吸收量,尿素减量5%~15%(即减少施氮7.8~23.7kg/hm^2)配施复合氮肥增效剂基本上不影响水稻生长、籽粒产量和吸氮总量,能显著提高氮素的农学效率、生理效率和氮素利用率;植株吸氮总量、净吸收氮量和^15N总吸收量与不施增效剂的处理相当或有所提高。尿素减量达30%以上配施复合氮肥增效剂,对水稻植株生长和氮素吸收利用产生明显不利影响。尿素与施氮量20%的复合氮肥增效剂配施,不影响大田水稻植株生长和单季产量,能提高氮素利用率,节省氮肥投入达15%。  相似文献   

19.
The effects of 15N-labeled ammonium nitrate on yield, uptake of nitrogen (N) by sorghum (Sorghum sudanense, Piper), and on N remaining in the soil were studied in a field experiment with different N rates (0, 50, and 100 kg N ha?1) and with two irrigation water qualities, well water (WW) and treated wastewater (TWW). Treated wastewater irrigation increased dry matter and N yield compared to WW. At equal N rates, recovery of 15N-labeled fertilizer by plants increased with TWW irrigation compared to WW (36% versus 23%). Neither fertilizer rate nor water quality had an effect on the 15N-labeled fertilizer remaining in the 0- to 60-cm layer of soil. On average 41% in the TWW treatment (49–33%) and 38% in WW treatment was mostly present in the surface 20-cm layer. Losses of 15N-labeled fertilizer were unaffected by irrigation water quality (35%) and increased with N application rate in TWW (4% versus 31%).  相似文献   

20.
水稻强化栽培下不同氮肥管理对产量与氮素利用的影响   总被引:2,自引:0,他引:2  
以籼型单季超级杂交稻中浙优1号为材料,研究水稻强化栽培氮肥管理对产量与氮素利用率的影响。结果表明:水稻强化栽培与常规栽培对照比较,增产达11.1%-15.2%,氮肥回收率比对照高5.3%~26.9%,农学利用率比对照高67.2%~92.2%,生理利用率比对照高6.0%~80.5%。因此,在水稻生产上应用水稻强化栽培可以提高氮肥的利用,降低氮肥在环境中积累及对环境造成污染。此外,本文对水稻强化栽培下氮肥管理的高产机理进行了探讨。  相似文献   

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