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1.
在如皋农科所进行黄瓜大棚试验,设置按常规施肥(计为100%,F)、减肥10%(F-10%)和减肥20%(F-20%)3个施肥水平,每个施肥水平下设置生物质炭添加量为0 t/hm2(CK)、5 t/hm2(C1)、10 t/hm2(C2)、20 t/hm2(C3)、30 t/hm2(C4)和40 t/hm2(C5)6个处...  相似文献   

2.
Commercial grade zinc (Zn) sulfate hepta hydrate (ZnSHH) is the most widely used source of Zn in India and several other countries for amelioration of Zn deficiency in crops. However, it releases water of hydration at temperature above 30°C and forms lumps on storage, which make it difficult to handle it and apply in fields. Therefore, conditioning of ZnSHH with ZnO and neem oil reduces the release of water of hydration and prevents lumps formation and can be well stored. Field experiments were conducted at the research farm of the Indian Agricultural Research Institute, New Delhi, India during rice growing seasons (July-November) of 2009 and 2010 to study the effect of conditioning ZnSHH with ZnO and neem oil on growth, productivity and Zn fortification of rice (Oryza sativa) grain and uptake by Basmati rice ‘Pusa 1121’. The experiment was conducted in a randomized block design with 3 replications comprised of 9 treatments of Zn fertilization. The present study shows that when conditioned with 2% ZnO and 4% neem oil ZnSHH improved yield attributes, grain and straw yields, Zn uptake and partial factor productivity (PFP), agronomic efficiency (AE), recovery efficiency (RE), and physiological efficiency (PE) of Zn in Basmati rice ‘Pusa 1121’. In general, ZnO was inferior to ZnSHH. Application of ZnSHH conditioned with 2% ZnO and 4% neem oil can be a better source of Zn for transplanted puddled Basmati rice on Zn deficient soils.  相似文献   

3.
To identify the best combinations of micronutrient-based fertilization treatments in terms of crop yield and nutrient uptake, three field experiments with greengram?fingermillet as the test sequence with 12 treatments on micronutrient-based fertilization [with recommended nitrogen (N)?phosphorus (P)?potassium (K) fertilizer] were conducted during 2005 to 2007 in a semi-arid Alfisol at Bangalore. The effects of treatments on available soil and plant uptake of nutrients [N, P, K, sulfur (S), iron (Fe), manganese (Mn), copper (Cu), zinc (Zn), boron (B), and molybdenum (Mo)] and yield of crops were assessed based on standard analysis of variance procedure. Using the relationships of yield with soil and plant nutrient variables, regression models of yield through soil and plant variables were calibrated and effects of variables on crop yields were assessed. The models gave high and significant yield predictability in the range of 0.87 to 0.98 through different variables. The model of plant uptake through soil nutrients indicated that soil S, Fe, and Zn had significant positive effects, whereas soil N, K, B, and Mo had negative effects on plant nutrient status in greengram. Similarly, soil P, Mn, and Zn had significant positive effects, whereas soil N, K, and Fe had negative effects on plant uptake of nutrients in fingermillet. Based on a relative efficiency index (REI) criteria, T2 for plant uptake and T12 for maintaining soil nutrients were found to be superior in greengram, whereas T2 for plant uptake and T8 for maintaining soil nutrients were found to be superior in fingermillet over years based on REI. The combined REI over soil and plant nutrients for both crops indicated that application of T8 for greengram and T2 for fingermillet could be prescribed for attaining maximum plant uptake of nutrients and productivity of crops in sequence, apart from maintaining maximum soil fertility of nutrients under semi-arid Alfisols.  相似文献   

4.
A field experiment was conducted to evaluate effect of biochar-amended urea on nitrogen economy of soil for improving the growth and yield of wheat under field condition. Experiment plan was comprised of twelve treatments with four replications including treatments without application of urea and biochar (control) and urea only. Biochar was applied at 1–10% of the weight of urea fertilizer applied each treatment. Results showed that application of biochar at 10% with recommended dose of urea significantly improved plant height, spike length, number of tillers, number of spikelet per spike, 1000 grain weight, grain yields, biomass yield, harvesting index, nitrogen (N) concentration and uptake in grain and straw, and agronomic efficiency of nitrogen by 6.0%, 11.1%, 32.0%, 55.3%, 5.4%, 38.0%, 19.0%, 9.0%, 19.0%, 26.0%, 65.0%, 50.0%, and 63.0%, respectively, as compared to treatment comprised of recommended rate of nitrogen without biochar.  相似文献   

5.
ABSTRACT

One would expect foliar applied phosphorus (P) to have higher use efficiencies than when applied to the soil, but limited information is available concerning this. Experiments were conducted in 2002, 2003, and 2004 to determine the effect of foliar applications of P on winter wheat grain yields, P uptake, and use efficiency. Twelve treatments containing varying foliar P rates (0, 1, 2, and 4 kg ha? 1 in 2002 and 2003 and additional 8, 12, 16, and 20 kg ha? 1 in 2004) with and without pre-plant rates of 30 kg ha? 1 were evaluated. Foliar applications of P at Feekes 7 generally increased grain yields and P uptake versus no foliar P. Use efficiency was higher when P was applied at Feekes 10.54. Results from this study suggested that low rates of foliar applied P might correct mid-season P deficiency in winter wheat, and that might result in higher P use efficiencies.  相似文献   

6.
为探究不同产量水平下减量施氮对杂交中稻产量和氮肥利用率的影响,以杂交中稻蓉优1015为试验材料,于2016-2017年在四川泸州和德阳进行大田试验,研究不同产量水平下减量施氮[常规施氮量(195 kg·hm-2,NCK)、减量23%(N-23%)、减量46%(N-46%)、不施氮(N0)]对杂交中稻产量、吸氮量、氮素收获指数、氮肥利用率的影响。结果表明,不同地点间杂交中稻产量差异显著,泸州点平均产量为8.54 t·hm-2(中产点),德阳点平均产量为11.60 t·hm-2(高产点)。杂交中稻产量和氮肥利用率对减量施氮的响应随产量水平的变化而变化。中产点:N-46%处理杂交中稻产量与NCK相当,但N-46%处理氮肥农学利用率、氮肥偏生产力、氮肥生理利用率、氮收获指数较NCK平均分别增加了93.4%、87.5%、123.4%、6.8个百分点;稻草吸氮...  相似文献   

7.
The present study is based on the hypothesis that different methods of supplying boron (B) may have different effects on the yield and quality performance of tobacco crop. A field experiment was conducted to study the effect of different methods of B fertilization on the yield, quality, and leaf composition of flue-cured Virginia tobacco (cv. K-399) in 2007 at the Pakistan Tobacco Research Station, Mansehra. Three different methods (i.e., foliar spray, soil application, and root dipping at the rates of 0.25 kg ha–1, 1 kg ha–1, and 0.5 mg B L–1, respectively) in the form of boric acid along with a control (where no B was applied) were used in a randomized complete block design and replicated four times. Results revealed that different methods of B application significantly affected tobacco yield, quality, and nutrient uptake compared to the control. Maximum leaf area of 707 cm2, green leaf yield of 18553 kg ha–1, cured leaf yield of 2314 kg ha–1, grade index of 79%, nicotine content of 2.54%, and sugar content of 18.35% were noted in the treatment plot where B was applied as a foliar spray; however, in a few cases, there was no significant difference found among different methods of B application. Chloride and potassium contents were not significantly affected by any method of B fertilization. The B fertilization increased the concentration of this element in tobacco leaf, and a maximum concentration of B 48.55 mg kg–1 was noted in the foliar spray treatment. Moreover, fertilizer-use efficiency for different methods of B application revealed that foliar spray is more efficient as compared to soil application and root-dipping methods. Nutrient ratios to B such as potassium (K) / B and chloride (Cl) / B considerably decreased in tobacco leaf with increases in the concentration of B in leaves. These ratios provided some indication of the interrelationship of B with these nutrients in tobacco plants. Results also revealed that K/B and Cl/B ratios closely correlated with the grade index of tobacco leaf, and good grades of tobacco were found to be at a K/B ratio of 682 and a Cl/B ratio of 148 under the experimental conditions. The overall results indicated that the B foliar spray at the rate of 0.25 kg ha–1 significantly increased the yield, quality, and the nutrient uptake by the tobacco crop under the prevailing conditions and was more effective than other methods of B application.  相似文献   

8.
不同比例有机肥替代化肥对水稻产量和氮素利用率的影响   总被引:9,自引:0,他引:9  
在江西双季稻区进行30 a的田间定位试验,比较不施氮肥(CK)、施用化肥(NPK)、等养分条件下70%化肥配合施用30%有机肥(70F+30M)、50%化肥配合施用50%有机肥(50F+50M)、30%化肥配合施用70%有机肥(30F+70M)施肥条件下水稻产量、氮素吸收、氮素利用率的变化。结果表明:与等养分量NPK处理相比,有机无机肥配施处理能显著提高30 a双季稻平均产量(P<0.05),增产幅度在2.47%~5.73%,其中30F+70M处理产量最高,且不同比例有机无机肥配施处理之间有显著差异,30F+70M处理显著高于50F+50M处理(P<0.05)。在不同时间段,不同有机无机肥配施处理产量表现不同,低量有机肥配施处理在试验前期具有明显的增产优势,高量有机肥配施处理在试验中后期增产效果明显。与等养分量NPK处理相比,有机无机肥配施处理30 a平均吸氮量无显著差异,不同施肥处理每生产1 t籽粒对氮素的需求不同,有机无机肥配施处理(20.57~20.94 kg)低于NPK处理(21.77 kg),其中30F+70M、70F+30M处理具有较高的氮素生产效率。有机无机肥...  相似文献   

9.
Field experimentation was conducted at Palampur, India during 2011–2012 in an acid Alfisol to quantify the influence of integrated use of arbuscular mycorrhizal fungi (AMF), Rhizobium and inorganic nitrogen (N) and phosphorus (P) on growth, productivity, profitability, and nutrient use efficiencies in garden pea (Pisum sativum L.). The experiment was laid out in randomized block design (RBD) replicated thrice comprising 13 treatments involving AMF (Glomus mosseae), Rhizobium (R. leguminosarum), and inorganic N and P fertilizers. The results revealed that dual inoculation of pea seed with AMF and Rhizobium enhanced the plant height, leaf area index, and dry matter accumulation significantly by 19.4 and 13.1, 10.7 and 10.7, and 16.6 and 16.7%, respectively at 60 and 120 days after sowing (DAS). Similarly, dual inoculation exhibited significant respective increases of 9.5 and 14.6% in absolute and crop growth rates over generalized recommended NP potassium (K) dose (GRD) during 60–120 DAS. The dual inoculation led to significant respective increases of 1.0 and 2.2, 1.06 and 1.74, 0.21 and 1.5, and 1.05 and 1.60 folds in partial factor productivity, crop recovery efficiency, physiological efficiency, and % recovery of applied N and P, respectively over GRD. The magnitude of increase in pea productivity, net returns, and boron to carbon (B:C) ratio following dual inoculation was to the tune of 20, 54.4, and 104.1%, respectively over GRD. Dual inoculation also exhibited significant increases of 19.4 and 53.1% in production and monetary efficiencies of pea over GRD. Overall, dual inoculation of AMF and Rhizobium with 75% soil-test-based N and P dose in pea has great potential in enhancing pea productivity, profitability, and nutrient use efficiency besides saving about 25% fertilizer N and P without impairing pea productivity in Himalayan acid Alfisol.  相似文献   

10.
The purpose of the present work was to evaluate effects of zinc application on growth and uptake and distribution of mineral nutrients under salinity stress [0, 33, 66, and 99 mM sodium chloride (NaCl)] in soybean plants. Results showed that, salinity levels caused a significant decrease in shoot dry and fresh weight in non-zinc application plants. Whereas, zinc application on plants exposed to salinity stress improved the shoot dry and fresh weight. Potassium (K) concentration, K/sodium (Na) and calcium (Ca)/Na ratios significantly decreased, while sodium (Na) concentration increased in root, shoot, and seed as soil salinity increased. Phosphorus (P) concentration significantly decreased in shoot under salinity stress. Moreover, calcium (Ca) significantly decreased in root, but increased in seed with increased salinization. Iron (Fe) concentration significantly decreased in all organs of plant (root, shoot, and seed) in response to salinity levels. Zinc (Zn) concentration of plant was not significantly affected by salinity stress. Copper (Cu) concentration significantly decreased by salinity in root. Nonetheless, manganese (Mn) concentration of root, shoot, and seed was not affected by experimental treatments. Zinc application increased Ca/Na (shoot and seed) ratio and K (shoot and seed), P (shoot), Ca (root and seed), Zn (root, shoot, and seed) and Fe (root and shoot) concentration in soybean plants under salinity stress. Zinc application decreased Na concentration in shoot tissue.  相似文献   

11.
旨在明确化肥减量条件下不同紫云英还田量对亚热带双季稻区早、晚稻产量及氮肥利用率的影响。以双季稻种植模式为研究对象,设置2个不同的减肥量处理配施不同的紫云英还田量,观察紫云英连续还田下不同处理对双季稻产量和养分利用率的影响。结果表明:与常规施肥处理(100%F)相比,20%减肥量各处理的早稻产量均得到显著提高,增产幅度为5.0%~13.2%;40%减肥量条件下,配施15 000~22 500 kg/hm~2紫云英早稻产量不减产,而配施30 000~37 500 kg/hm~2紫云英后早稻产量有显著提高,增产幅度为5.4%~8.5%。各减肥配施紫云英处理的晚稻产量均随紫云英还田量的增加而升高(P0.05)。各减肥配施紫云英处理早稻化学氮肥的农学利用率、偏生产力及回收率均较常规施肥处理显著提高,但晚稻的氮肥利用率无显著差异。将紫云英还田输入的氮纳入总氮素投入后,早稻总氮素的农学利用率和回收率均随紫云英还田量的增加而降低;与100%F相比,各减肥配施紫云英处理的农学利用率未显著降低,但紫云英还田量达到37 500 kg/hm~2及以上时会导致早稻的氮素回收率显著降低。各紫云英还田处理土壤全氮含量均高于100%F(P0.05),且土壤速效氮含量均显著高于100%F处理(P0.05)。亚热带双季稻种植模式下,长期紫云英还田配合减量施肥对早、晚稻产量和氮肥利用率均产生正面效应,且能提高土壤有机质含量和全氮含量,土壤速效氮含量显著高于常规施肥处理。因此,适量紫云英还田配施化肥除可减少化肥用量外,也是亚热带双季稻区兼顾提升稻米产量和培肥土壤的有效技术。本试验条件下,化肥减量40%配合22 500~30 000 kg/hm~2紫云英的配比综合效果较好。  相似文献   

12.
有机肥施用对菜地磷素径流流失及磷素表观利用率的影响   总被引:3,自引:1,他引:2  
采用田间小区定位试验(2011—2012年)研究了自然降雨条件下有机肥施用对太湖流域典型蔬菜地磷素径流流失、蔬菜产量及磷素表观利用率的影响。结果表明:冬瓜种植季内菜地径流水量可达1 800~3 528m~3/hm~2,且与降雨量呈显著线性正相关关系。单施化肥(T1)处理条件下,菜地磷素(TP)径流流失量和流失系数分别达3.45kg/hm~2和1.08%,有机肥施用(T2、T3)显著增加TP径流流失量达14.79%和115.36%,而流失系数却降低39.63%(P0.05)和9.11%(P0.05)。从冬瓜产量角度考量,较T1处理而言,有机肥施用(T2、T3)条件下,虽然经济产量和废弃物产量分别提高1.41%~2.88%和4.17%~6.20%,但冬瓜经济系数却稍有下降,但处理间差异不显著。同时,虽然有机肥施用(T2、T3)显著增加冬瓜磷素吸收量达27.27%和46.18%,但磷素表观利用率却显著降低36.79%和61.22%(P0.05)。有机肥施用显著增加菜地磷素盈余,T2、T3处理条件下,盈余量高达238.44~496.28kg/hm~2,分别达T1处理的2.60倍和5.42倍。  相似文献   

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