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991.
氮肥运筹对潮土冬小麦/夏玉米产量及氮肥利用率的影响   总被引:6,自引:0,他引:6  
为探究适宜于黄淮潮土区的合理氮肥运筹方式,为中国化肥施用量零增长目标提供理论依据和技术支撑,在黄淮潮土农田定位试验地研究了氮肥运筹对冬小麦/夏玉米产量、氮肥利用率及经济效益的影响。试验设置4种氮肥运筹方式:基施控失尿素(T1)、基施普通尿素+追施普通尿素(T2)、基施控失尿素+追施普通尿素(T3)和基施普通尿素+追施控失尿素(T4),各氮肥运筹方式均包含0、80、160和240 kg·hm~(-2)(以N计,下同)4个施氮水平。结果表明,随施氮量增加,平均单季籽粒产量、周年产值及周年纯效益均表现为先增加后降低趋势,而氮肥利用效率则表现为逐渐降低趋势,其中以160 kg·hm~(-2)时效果较优。T1处理小麦季籽粒产量、周年产量、周年产值及周年纯经济效益均显著高于其他3个处理。效益分析表明,虽然T1处理在等氮条件下氮肥投入成本相对较高,但其较其他氮肥运筹减少了追肥人工成本,加之该处理产量相对较高,最终该处理纯效益相对较高。结合施氮量与产量曲线方程,在160~173 kg·hm~(-2)施用范围内一次性基施控失尿素符合当前研究地区农村劳动力缺乏的实际情况,且能保证产量收益。  相似文献   
992.
张萌  魏全全  肖厚军  赵欢  芶久兰 《土壤学报》2019,56(5):1201-1209
为探究生物质炭对贵州黄壤朝天椒减氮的施用效果,采用大田试验,研究了生物质炭与氮肥减量配施(CF_(100)B_0(化肥氮100%)、CF_(90)B_(10)(化肥氮90%+生物质炭氮10%)、CF_(85)B_(15)(化肥氮85%+生物质炭氮15%)、CF_(80)B_(20)(化肥氮80%+生物质炭氮20%))对贵州黄壤朝天椒产量、品质、养分积累和氮肥利用率的影响。结果表明:与常规施肥(CF_(100)B_0)处理相比,CF_(90)B_(10)处理可提高朝天椒产量,其中鲜椒增产7.3%、干椒增产2.5%,但是增产效果并不显著,而CF_(85)B_(15)和CF_(80)B_(20)处理的产量略有降低;生物质炭与氮肥减量配施处理可显著影响朝天椒果实中的硝酸盐和Vc含量,其中,CF_(90)B_(10)、CF_(85)B_(15)和CF_(80)B_(20)处理的硝酸盐含量降低了4.8%~8.9%,而CF_(90)B_(10)处理的Vc含量则较CF_(100)B_0处理提高了9.6%,但还原糖和游离氨基酸含量在各处理间无差异;此外,与CF_(100)B_0处理相比,生物质炭与氮肥减量配施可使氮肥偏生产力(PFP_N)提高2.08~2.62 kg·kg~(-1),以CF_(90)B_(10)处理最高,而氮肥农学效率(AE_N)和氮肥表观利用率(RE_N)则随着生物质炭替代化学氮肥比例的增加呈降低趋势,以CF_(90)B_(10)处理的AE_N和RE_N最高,分别为7.70 kg·kg~(-1)和40.3%。综上,生物质炭与氮肥减量配施可有效保证贵州朝天椒稳产增效,因此,短期条件下推荐生物质炭替代化学氮肥10%作为贵州黄壤朝天椒氮肥减施替代的最适比例。  相似文献   
993.
为实现华北平原夏玉米-冬小麦的高产及氮肥的高效利用,采用田间小区试验方法,研究了氮肥减量及其与有机肥配施对夏玉米-冬小麦轮作体系内土壤硝态氮分布及氮肥利用的影响。结果表明:与不施氮处理(CK)相比,施用氮肥增加了冬小麦和夏玉米的生物量和产量,而在农民习惯施氮基础上减量1/3不会显著影响到生物量和产量。其中减氮配施有机肥(ONM)处理的周年总产最高,相比习惯施氮(CN)和减氮处理(ON)分别提高了1.85%和3.78%。处理CN的0~180 cm土壤硝态氮累积量的周年变化均值达502.7 kg hm^-2,分别是处理CK、ONM、ON的2.95、2.17、1.56倍。与处理CN相比,处理ONM显著降低了剖面(0~180 cm)土壤中的硝态氮含量,其中在夏玉米季和冬小麦季的降低幅度分别为18.1%~66.7%和37.3%~87.2%。处理ON和ONM相比处理CN,植株周年总吸氮量无显著性差异,氮肥利用率却得到了显著提高。其中处理ONM的周年氮肥利用最高,比处理CN提高了36.9%。综合分析,减氮与有机肥配施不仅显著降低了0~180 cm土壤硝态氮含量,大幅度提高了氮肥利用率,且有助于增加冬小麦和夏玉米的生物量及产量。  相似文献   
994.
Field experiments were conducted to study the response of cotton genotypes (G. arboreum Bt cv. RCH 650 BGII; non-Bt cv. F 2228; G. herbaceum cv. FDK 124) and wheat and triticale genotypes (T. aestivum cv. PBW 622; T. durum cv. PDW 314; triticale cv. TL 2908) to direct and residual B application (0, 0.5, 1.0, and 2.0 kg B ha?1 as borax) using a Typic Ustrochrept, neutral, noncalcareous, loamy sand and B-deficient soil. A significant response of 218 and 231 kg ha?1 in seed cotton yield was recorded with an application of 1.0 kg B ha?1 to cotton and 2.0 kg B ha?1 to wheat. A significant response of 152 kg ha?1 grain yield of wheat was observed with the application of 0.5 kg B ha?1 to wheat, while no residual effect of B was observed when B was applied to cotton. On the basis of agronomic and B uptake efficiency, genotypes of cotton (RCH 650 BG II > FDK 124 > F 2228) and wheat (PDW 314> TL 2908> PBW 621) responded differentially to B application, thus indicating that yield of Bt cotton and durum wheat will be reduced more than the other cultivars under B deficiency.  相似文献   
995.
Soil tillage, a major agricultural management, could effectively alter soil structure and plant growth, particularly under groundnut plantations. To understand effects of different tillage measures on nitrogen(N), phosphorus(P) and potassium(K) absorptions and use efficiencies for peanut (Arachis hypogaea L.), four tillage treatments: no tillage (NT), deep loosing (DL), deep plow (DP), and shallow plow (SP), were examined for two growing years at three typical peanut-producing sites of Qishan, Wangcheng, and Xiadian in Shandong, China. Results showed that average soil bulk density under DL, DP, and SP at the three sites was decreased by 7.1–19.5% compared with NT treatment for the 2 years. Significantly higher average total N accumulations in underground peanut part patterned as DP (163 kg/ha) > SP (149 kg/ha) > DL (144 kg/ha) > NT (117 kg/ha), while total N in aboveground peanut part was 8.7–22.1% higher under DP than other treatments. Absorptions of N, P, and K in underground parts were extremely significantly contributed to high peanut yields (P < 0.01), whereas increase of N and P absorptions in aboveground parts did not promote peanut yields. Soil bulk density was significantly negatively correlated with plant macronutrient amounts in underground peanut parts and peanut yields (P < 0.01). Moreover, N:P, N:K, and P:K ratios were similar between NT and noncompaction stress treatments of DL, DP, and SP. These results indicate that DP is a rational tillage practice for promoting nutrient uptake amount, efficiency, and peanut yields by alleviating soil compaction stress in peanut-producing fields.  相似文献   
996.
Vertisols are characterized by deficiency of nutrients and recently, potassium (K), a major plant nutrient in crops, is gaining attention because of crop removal, fixation by clay minerals and leaching. A field experiment was conducted during the 2015 and 2016 main cropping seasons to test the effect of potash fertilizer on Vertisols of East Gojjam at Gudalima and Dejen/Tik sites using teff crop. The K rates (applied as muriate of potash) were 0, 50,100, and 150?kg ha?1. The experiment was laid out in a randomized complete block design in three replications. The results indicated that the plant height, panicle length, number of effective tillers, dry matter and grain yield of teff increased significantly (P?<?0.05) with applied K. The highest dry matter and grain yield (6966.4 and 2418.2 kg ha?1, respectively) were obtained from the application of 100 kg ha?1 KCl. Total uptake of N, P, and K were enhanced significantly with K treated plots than those without and K efficiency was improved due to the rate of K. The present study demonstrated the importance of K application to supplement NPS for optimum dry matter and grain yield of teff on Vertisols of the study sites.  相似文献   
997.
Manure urea pellets were produced and their nitrogen release rate was evaluated in soil incubation at different water contents of 90, 75, and 60% soil filed capacity (FC). In another experiment, sweet basil growth was evaluated during eight months (with three shoot harvests) under the pellet application. The nitrogen release and pellet dispersion rates were slow after two months or at lower soil water content (60% FC), but they were significant after four months of soil incubation, or at higher soil water content (75 or particularly 90% FC). Application of pelleted urea reduced plant growth and yield at first harvest than urea treatment. However, at second and particularly at third harvest (and the average of three harvests) significant improvement in growth parameters of SPAD value, leaf area, plant height, shoot fresh weight, pot yield, and` leaf N and K concentrations were achieved by application of pelleted urea fertilization.  相似文献   
998.
A 2-year field experiment using a randomized complete block design with the treatments arranged as split-split-plot with three replicates was conducted to investigate the effects of different sowing dates. Different irrigation regimes and different triticale cultivars were tested during 2014 and 2015 growing seasons. Under cutting off irrigation at the milk development stage, Sanabad with 46.2% had higher relative water content on December 3 sowing date. Assimilate remobilization in cutting off irrigation at dough development was more than that at milk development and Sanabad had the highest assimilate remobilization on 3 December sowing date in both years. In both years, Sanabad had the highest remobilization efficiency. The highest contribution of pre-anthesis assimilates to grain was obtained on 3 December sowing date in both years in Sanabad. Lower grain yield in Juanillo cultivar under cutting off irrigation, appeared to be due to reduction in remobilization efficiency, especially by cutting off irrigation at milk development stage in late sowing date. Overall, Sanabad was more tolerant to cutting off irrigation than Juanillo.  相似文献   
999.
施氮模式对玉-麦周年轮作系统产量和氮吸收利用的影响   总被引:3,自引:0,他引:3  
为明确适宜豫北平原夏玉米-冬小麦一体化种植的高效施氮管理模式,2016—2017年分别在豫北典型高产田区河南省鹤壁市和中产田区河南省原阳县开展了夏玉米-冬小麦周年轮作不同施氮模式对夏玉米与冬小麦产量、氮素吸收和利用效率影响的田间试验。共设5种处理:不施氮肥(T1)、普通尿素按210 kg(N)?hm?2一次性基施(T2)、普通尿素分次施用且总施氮量同T2(T3)、控释尿素与普通尿素配比氮素减量施用(T4)和控释尿素与普通尿素配比氮素足量施用(T5)。分别于夏玉米和冬小麦关键生育期测试叶片SPAD值、植株与籽粒氮含量及生物量等氮营养指标,并于成熟期测定产量和产量构成因子,分析计算植株氮积累量与吸收利用特征。结果表明,处理间,高、中产区夏玉米与冬小麦产量、产量构成因子及氮素营养指标整体变化趋势均为T5T4T3T2T1。产区间,各处理夏玉米和冬小麦产量性状及氮营养指标均表现为高产区显著优于中产区。综合各处理平均值,高产区夏玉米产量、植株氮含量和氮素积累量相比于中产区分别平均提高58.0%、19.2%和47.1%,冬小麦增幅则分别为34.7%、33.3%和85.9%。氮利用效率方面,高、中产田在氮肥表观利用率、氮肥农学效率和100kg籽粒需氮量变化趋势均表现为T5T4T3T2T1,处理间差异显著;氮素收获指数则与此相反。豫北平原夏玉米-冬小麦周年轮作制在作物稳产甚至增产条件下,采用尿素与缓释氮肥掺混配施的氮肥优化施用模式不仅可有效减少肥料用量,还能显著提升肥料利用率,降低氮肥损失。  相似文献   
1000.
氮是花生(Arachishypogaea)生长发育必需的大量元素之一,明确不同品种氮素利用特点,可为花生氮高效品种筛选、培育及节氮栽培提供依据。桶栽条件下,利用15N示踪技术,测定了19个花生品种产量、植株氮含量、氮素积累量及3种氮源供氮量等指标,并以供试品种的产量及氮效率平均值为基准,将品种划分为高产氮高效、高产氮低效、低产氮高效和低产氮低效4种类型,分析了4种类型品种氮素累积与利用特征。结果表明:1)不同类型花生品种氮效率存在较大差异,氮高效型品种荚果氮效率平均为25.0 kg·kg?1,比氮低效型品种平均值高13.6%。2)营养体氮含量中等的品种有利于产量和氮效率同时提高,生殖体和整株氮含量不同类型品种间差异不大;在植株有足够氮积累的前提下,提高氮向生殖体的分配比例是高产氮高效品种的基本特征。3)不同类型花生品种土壤氮和肥料氮供氮水平与氮效率一致,根瘤供氮水平与氮效率因品种产量水平而异;当氮效率相近时,根瘤供氮水平高,有利于产量形成;氮高效型土壤供氮比例略高于低效型,根瘤供氮比例与土壤供氮比例相反,土壤氮与根瘤氮有较好的补偿效应;不同类型品种肥料供氮比例相差不大。4)不同类型品种产量和氮效率与氮肥利用率和氮肥偏生产力高度一致,而不同类型品种间氮素生物效率差异较小。综上,不同类型花生品种产量和氮效率存在显著差异,选育产量和氮效率双高的品种不仅必要,而且可行,是未来花生节氮栽培的有效途径之一。  相似文献   
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