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1.
Potassium is one of the most important nutrients for rice production in many areas of Asia, especially in southeast China where potassium deficiency in soil is a widespread problem. Field experiments were conducted for four consecutive years in Jinhua City, Zhejiang Province, to determine utilization of nutrients (N,P and K) by inbred and hybrid rice and rice grain yields as affected by application of potassium fertilizer under irrigated conditions. Grain yield and nutrient harvest index showed a significant response to the NPK treatment as compared to the NP treatment. This suggested that potassium improved transfer of nitrogen and phosphorus from stems and leaves to panicles in rice plants. N and P use efficiencies of rice were not strongly responsive to potassium, but K use efficiency decreased significantly despite the fact that the amount of total K uptake increased. A significant difference between varieties was also observed with respect to nutrient uptake and use efficiency. Hybrid rice exhibited physiological advantage in N and P uptake and use efficiency over inbred rice. Analysis of annual dynamic change of exchangeable K and non-exchangeable K in the test soil indicated that non-exchangeable K was an important K source for rice. Potassium application caused an annual decrease in the concentration of available K in the soil tested, whereas an increase was observed in non-exchangeable K. It could be concluded that K fertilizer application at the rate of 100 kg ha^-1 per season was not high enough to match K output, and efficient K management for rice must be based on the K input/output balance.  相似文献   

2.
轮作体系下冬油菜养分利用效率的区域研究   总被引:1,自引:0,他引:1  
Fertilization is essential for oilseed rape because it is sensitivity to nutrient deficiency, especially for winter oilseed rape(Brassica napus L.). To investigate regional nutrient efficiency and nutrient uptake-yield relationship of winter oilseed rape in an intensive cropping system, this study used data from 619 site-year on-farm experiments carried out in the winter oilseed rape planting area of the Yangtze River Basin, China from 2005 to 2010, with large yield in the range of 179–4 470 kg ha~(-1). Currently recommended application rates of N, P and K fertilizers increased rapeseed yield at different levels of soil indigenous nutrient supply(INS) in this region. Boundary values of plant nutrient uptake were established to analyze the nutrient uptake-yield relationship of winter oilseed rape(internal nutrient efficiency), i.e., 128 kg N ha~(-1), 24 kg P ha~(-1), and 122 kg K ha~(-1). The internal nutrient efficiency declined by 48.2%–64.1% when nutrient uptake exceeded the boundary value, resulting in excessive nutrient uptake(i.e., low yield response with high nutrient uptake), especially for K. In the intensive cropping system, agronomic efficiencies of N, P, and K were 5.9, 3.4, and3.6 kg kg~(-1), and recovery efficiencies of N, P, and K were 35.6%, 24.1%, and 36.8%, respectively. These findings showed that the fertilization rate should be optimized by considering INS, nutrient status, and nutrient efficiency of winter oilseed rape. In this study,considering the lower yield improvement to high K uptake levels and low K fertilizer efficiency, application rate of K fertilizer should be reduced since soil K deficiency has already been mitigated.  相似文献   

3.
Paddy fields in the southeastern basin of Dianchi Lake have rapidly changed to greenhouses since 1999. A total of 61 surface soil samples, including 43 greenhouse soils, 12 upland soils, and 6 paddy soils, were collected from a flat lowland area mainly used for agricultural production fields in the southeastern basin of Dianchi Lake. Analyses of the soil samples indicated that the greenhouse soils were characterized by a lower organic matter content, lower pH, and higher soluble nutrients than the paddy soils in the area. The lower organic matter content of the greenhouse soils was ascribed to environmental or management factors rather than the clay content of the soil. Accumulation of soluble nutrients, especially inorganic N, was due to over-application of fertilizers, which also caused soil acidification. The average amount of readily available N, P, and K accumulated in the greenhouse soils was estimated to be equal to or higher than the annual input of these nutrients as a fertilizer, indicating that a reduction in fertilizer application was possible and recommended. In contrast, a very low available Si content was observed in the paddy soils, suggesting the need for Si application for rice production.  相似文献   

4.
半干旱地区土壤水分和养分对玉米生长和产量的耦合影响   总被引:2,自引:0,他引:2  
Interaction between soil water and nutrients plays an important role in sustainable crop management in semi-arid environments.On the basis of a field experiment conducted from 2000 to 2003,this study examined the coupled effects of irrigation and fertilizers on maize growth and yield in a semi-arid region of northeastern China.In terms of plant productivity,nitrogen fertilizer had the most significant effect followed by irrigation and phosphate levels.The combined application of nutrients and irrigation exerted a synergistic effect on the grain yield of maize plants.Regression analysis indicated that optimal levels of nitrogen and phosphate,in addition to adequate irrigation,could greatly improve the efficiency of grain production.Similarly,optimization of soil nutrient availability substantially increased water use efficiency.These suggested that for the most efficient and sustainable crop production,irrigation and nutrient management should be based on a quantitative understanding of water/nutrients interaction,particularly in semi-arid and arid regions.  相似文献   

5.
西红柿对聚烯烃控释肥这种新的施肥方法的反应   总被引:2,自引:0,他引:2  
The response of tomato (Lycopersicon esculentum) plants basically fertilized with 0.3 g N per plant of compound fertilizer with a N:P2O5:K2O ratio of 20:10:20 to sticks of polyolefin-coated fertilizer (POCF) (LongT0 with a N:P2Os:K2O ratio of 14:12:14) applied 23 d after transplanting was investigated using rooting boxes in the greenhouse. The results at 26 and 40 d after stick fertilizer treatment showed that the use of the stick fertilizer greatly increased the production of many new fine roots from the tomato plants. Compared to the unfertilized control, root length and root length density in the stick fertilizer treatment increased by 3.6-6.7 fold. In the soil zones near the stick fertilizer, root weight and root mass density were also significantly higher for the stick fertilizer treatment. Additionally, the use of the stick fertilizer increased the N, P and K concentrations in the leaves and stems of the tomato plants. The new fine roots growing near the stick fertilizer not only absorbed more nutrients and translocated them to the shoots, but also contained more nutrients within themselves. The soil ammonium and nitrate N data showed that N released from the stick fertilizer played a major role in inducing the production of new fine roots. These results indicated that stick fertilizer could be used as an alternative to the co-situs application technique to change and control the root distribution of crops as well as to increase the potential capacity of roots for water and nutrient absorption.  相似文献   

6.
Being divided into three groups-strong,moderate and weak-according to the different kinetic parameters (Fmax,km,Cmin) of potassium uptake by crops,21 cultivars of rice have been studied to find out the relationships between their potassium nutrition and the oxidation-reduction status in the rhizosphere soils. Results show that,with no application of K fertilizer,there were higher contents of active reducing substances and ferrous iron in rhizosphere soils planted with cultivars,such as Zhongguo 91,week in absorbing potassium than in soils cropped with cultivars,Shanyou 64,stronger in absorbing potassium.As a result of K application,however,these toxic substances were decreased appreciably in the soil,particularly in the root zone where weakly K-absorbing sultivars were growing,and the parameter of soil redox (pH pE) was increased,the most striking example of this being found in the rhizosphere soil where the more strongly K-absorbing sultivars were growing.On and close to the root surface in soils where rice plants were supplied with potassium fertilizer,rather more iron oxide had been accumulated compared with rice receiving no potash,and even greater amounts of red iron oxide precipitated on the rice root in neutral paddy soils.As shown by the concentration distribution of active reducing substances and ferrous iron in a microzone of the profile,the redox range of rice roots supplied with potassium may extend as far as several centimeters from the root surface.It can thus be seen that potassium nutrition exerts its effect first on the morphological properties of rice roots and their exudation of oxygen,then on the content of soluble oxygen and the count and species of oxygen-consuming microbes in the rhizosphere soil,and finally on the redox status of the soil.  相似文献   

7.
8.
Agronomic practices affect soil phosphorus(P) availability, P uptake by plants, and subsequently the efficiency of P use. A field experiment was carried out to investigate the effects of various agronomic practices(straw incorporation, paddy water management, nitrogen(N) fertilizer dose, manure application,and biochar addition) on soil P availability(e.g., soil total P(STP), soil available P(SAP), soil microbial biomass P(SMBP), and rice P uptake as well as P use efficiency(PUE)) over four cropping seasons in a rice-rice cropping system, in subtropical central China. Compared to the non-straw treatment(control,using full dose of chemical N fertilizer), straw incorporation increased SAP and SMBP by 9.3%–18.5% and 15.5%–35.4%, respectively;substituting half the chemical N fertilizer dose with pig manure and the biochar application increased STP, SAP, and SMBP by 10.5%–48.3%, 30.2%–236.0%, and 19.8%–72.4%,respectively, mainly owing to increased soil P and organic carbon inputs;adding a half dose of N and no N input(reduced N treatments) increased STP and SAP by 2.6%–7.5% and 19.8%–33.7%, respectively, due to decreased soil P outputs. Thus, soil P availability was greatly affected by soil P input and use. The continuous flooding water regime without straw addition significantly decreased SMBP by 11.4% compared to corresponding treatments under a mid-season drainage water regime. Total P uptake by rice grains and straws at the harvest stage increased under straw incorporation and under pig manure application, but decreased under the reduced N treatments and under biochar application at a rate of 48 t ha-1, compared to the control. Rice P uptake was significantly positively correlated with rice biomass, and both were positively correlated with N fertilizer application rates, SAP, SMBP, and STP. Phosphorus use efficiency generally increased under straw incorporation but decreased under the reduced N treatments and under the manure application(with excessive P input), compared to the control. These results showed that straw incorporation can be used to increase soil P availability and PUE while decreasing the use of chemical P fertilizers. When substituting chemical fertilizers with pig manure, excess P inputs should be avoided in order to reduce P accumulation in the soil as well as the environmental risks from non-point source pollution.  相似文献   

9.
A series of field experiments from 1990 to 1994 in Yingtan, Jiangxi Province, were conducted on an upland red soil derived from Quaternary red clay which had been reclaimed three years before the experiments, in order to study the fertility characteristics and fertilizer requirements of the newly reclaimed soil. The field experiments included that on nutrient characteristics and fertilizer effect, that on K-supplying potential and K-Mg relationship, that on fertilization rates of K and N, etc. The newly reclaimed upland soil was low in both N and P, and its responses to nitrogen and phosphate application were very significant. The K-supplying potential was also low, so the soil was highly responsive to K fertilizer. The effect of Ca and Mg fertilizers was not so great for the reason that certain amounts of Ca and Mg were incorporated into the soil through application of calcium magnesium phosphate during land leveling before the experiments. Among the four micronutrients, B, Mo, Zn and Cu, B had the greatest effect on the soil. The fertilizer requirements of the soil were in an order of P and N > K > lime and B > Mg > Mo, Zn and Cu. Eight crops tested had different fertilizer-requiring characteristics. Rapeseed was very sensitive to P and B fertilizers. Barely was especially sensitive to P and lime and it also responded to B, Mo, Zn and Cu. And sweet potato was especially sensitive to K.  相似文献   

10.
施用控释肥提高直播水稻氮的利用率   总被引:4,自引:0,他引:4  
Field trials on a silt-loamy paddy soil derived from shallow-sea deposit in direct seeding rice fields were conducted in Zhejing ,China,in 1996 to compare N efficiency of controlled release fertilizers (LP fertilizers) with the conventional urea.Six treatments including CK (no N fertilizer),conventional urea and different types of LP fertilizers at different rates were designed for two succeeding crops of early and late rice.A blend of different types of LP fertilizers as a single preplant “co-situs“ application released n in a rate and amount synchronizing with uptake pattern of direct seeding rice.A single preplant application of the LP fertilizers could meet the N requirement of rice for the whole growth period without need of topdressing,Using LP fertilizer blends ,equivalent grain yields could be maintained even if the N fertilization rates were reduced by 25%-50% compared with the conventional urea .Agronomi efficiency of the LP fertilizers was 13.6%-86.4% higher than that of the conventional urea in early rice and 100%-164.1% in late rice,depending on the amounts of the LP fertilizers applied.N fertilizer recovery rate incereased from 27.4% for the conventional application of urea to 41.7%-54.1%,for the single preplant “co-situs“ application of the LP fertilizers,Use of the LP fertilizers was promising if the increse in production costs due to the hihg LP fertilizer prices could be compensated by increase in yield and N efficiency,reduction in labor costs and improvement in environment.  相似文献   

11.
钾肥对杂交水稻养分积累以及生理效率的影响   总被引:24,自引:3,他引:24  
在浙江省金华市进行连续4年水稻钾肥田间试验,以研究钾肥对杂交水稻氮磷钾养分吸收和利用效率的影响。结果表明,钾肥可促进氮磷养分从水稻的茎叶部位向穗输送,增加水稻产量。同不施钾处理比较,施钾处理杂交稻氮的平均吸收总量增加7.1~9.3kg/hm2,磷增加0.9~1.1kg/hm2,钾增加38.3~56.6kg/hm2;氮和磷养分的利用效率无显著提高,而钾素的利用效率明显降低26.3%~28.9%。在养分的吸收和利用效率方面,杂交稻较常规稻表现出明显的生理优势。分析土壤交换性钾和缓效钾含量的年动态变化得出,杂交稻较常规稻消耗土壤中更多的缓效钾,施钾处理下的测试土壤速效钾含量逐年下降,而土壤缓效钾含量却有逐年上升的趋势。  相似文献   

12.
钾氮配施对生姜产量和养分吸收的影响研究   总被引:3,自引:0,他引:3  
1999~2001年在安徽省生姜产区淮北平原砂姜黑土上,连续三年多点开展钾氮配施对生姜产量及养分吸收的影响研究。结果表明:钾氮配合施用可以大幅度提高生姜的产量,施钾增产14.9~58.5%,平均增产率为29.8%。增施氮肥的增产效率为负数,钾肥的增产效率在两种氮肥水平下都较高,高N条件下增加钾肥施用量可以极大地提高钾肥的增产效率。施用钾肥提高了生姜地上部茎叶含氮量及茎叶、姜块和全株P、K养分含量,对全株氮素含量影响不大。两种氮肥水平下,生姜地上部茎叶、块茎和全株的吸K、吸N、吸P量都是随着钾肥施用量的增加而提高。钾氮配施大幅度提高了土壤有效P、K含量,有利于保持和提高土壤肥力。  相似文献   

13.
施钾条件下杂交水稻氮磷养分吸收利用特点   总被引:11,自引:0,他引:11  
胡泓  王光火 《土壤通报》2003,34(3):202-204
对浙江省金华市郊区石门农场灌溉稻区进行连续4年定位钾肥试验,结果表明,钾素促进氮磷养分向水稻穗部的输入,故在增产的基础上,同不施钾处理比较,施钾后杂交稻氮的总吸收量增加7.1~9.3kg/hm2,利用效率提高3.7~7.1%;磷的总吸收量增加1.0~2.0kg/hm2,利用效率提高2.0~7.7%。同常规稻比较,每季杂交稻氮和磷的平均总吸收量分别高出7.6kg/hm2和1.2kg/hm2;氮和磷的利用效率平均高出3.1kg/kg和34.7kg/kg;在养分的吸收、积累以及利用效率方面表现出明显的生理优势[1]。因此,在杂交水稻的生产实践中,应相对增加钾肥的施入量,从而提高氮肥和磷肥的利用效率。  相似文献   

14.
长期施用钾肥和稻草对红壤双季稻田土壤供钾能力的影响   总被引:4,自引:1,他引:3  
以红壤双季稻区长期定位施肥试验(1981―2012年)为基础,研究了长期施用化肥和稻草对双季稻集约化种植下水稻产量、作物吸钾量和土壤供钾能力的影响。结果表明,施钾能增加水稻稻谷和稻草的产量;水稻从土壤中的吸钾量随钾肥施用量的增加而显著增加,年平均吸钾量顺序为NPK+RS(施氮磷钾化肥+稻草)NPK(施氮磷钾化肥)NP+RS(施氮磷化肥+稻草)CK(不施任何肥料)NP(施氮磷化肥);长期不施用或施用不足量钾肥(CK、NP、NP+RS)会导致耕层土壤速效钾、缓效钾和全钾数量的亏缺。长期施用钾肥和稻草不仅有利于土壤伊利石含量的增加,而且有利于晶格不良伊利石向晶格良好伊利石的方向发展;施钾能增加土壤黏粒中的游离伊利石和伊利石的含量,长期施用钾肥和稻草会使土壤黏粒中的蛭石向伊利石转化。土壤钾素的容量-强度(Q/I)曲线参数可以解释长期施用钾肥和稻草处理土壤供钾能力强是由于这些处理的活性钾(-ΔK°)量高、专性吸附钾位(Kx)多、有效钾强度(AReK)强、紧吸持K+量多,而潜在缓冲容量(PBCK)、吉布斯自由能(-ΔG)和阳离子交换系数(KG)较长期不施钾肥处理低。综上,在施氮磷肥的基础上,配施钾肥和稻草还田不仅能提高水稻高产、稳产的能力,而且对促进水稻对钾的吸收量、增强土壤的钾吸持能力、保持农田钾素平衡以及提高土壤供钾能力有重要作用。  相似文献   

15.
不同施氮量对甜瓜养分吸收、分配、利用及产量的影响   总被引:12,自引:4,他引:8  
通过田间膜下滴灌栽培,研究不同氮素水平对甜瓜养分吸收、 分配及产量的影响。结果表明,增施氮肥显著提高了甜瓜的氮、 磷、 钾的积累量,特别是显著提高了甜瓜后期氮、 磷、 钾的积累量。在施P2O5 140 kg/hm2、 K2O 150 kg/hm2 的基础上施N 225 kg/hm2,甜瓜的养分吸收量和产量均为最高,各施氮处理甜瓜氮肥利用率在11%~29%之间,且随施氮量的增加而降低。甜瓜对钾的吸收量最高,氮次之,磷最少,表明甜瓜是喜钾作物。  相似文献   

16.
基于养分专家系统推荐施肥在东北玉米上的长期综合效应   总被引:2,自引:0,他引:2  
为明确养分专家系统推荐施肥对东北玉米产量与收益、肥料利用率与土壤养分的长期综合效应,于2012-2020年开展了田间定位试验,共设置5处理:分别为1)不施肥(CK);2)农民习惯施肥(FP);3)养分专家系统推荐施肥(NE);4)在NE基础上配施缓/控释氮肥(NER);5)土壤测试推荐施肥(ST)。探究9 a 产量与收益、肥料利用率、土壤养分和养分平衡的变化规律。结果表明,NE和ST处理较FP处理显著降低了氮磷肥用量(P<0.05),显著增加了钾肥用量(P<0.05)。与FP处理相比,NE、NER和ST处理提高了玉米产量、收益及其稳定性。其中均以NE处理最高,之后依次为ST和NER处理。NE、NER和ST处理肥料平均回收利用率、农学利用率和偏生产力较FP处理分别提高了29.0%~40.1%(P<0.05)、31.3%~44.3%(P<0.05)和22.0%~31.7%(P<0.05),且均以NE处理最高。与FP处理相比,NE、NER和ST处理提高了0~30 cm土壤无机氮含量,降低了30~90 cm土壤无机氮和0~30 cm土壤有效磷含量,而不同施肥处理土壤速效钾含量差异未达显著水平(P>0.05),其中NE处理与试验起始养分含量最为接近。9 a养分平衡结果显示,FP、NE、NER和ST处理氮、磷均表现为盈余,而钾素表现为亏缺,且NE处理氮、磷盈余量和钾亏缺量均为最低。综上,与农民习惯施肥和土壤测试推荐施肥相比,养分专家系统推荐施肥不仅可提高玉米产量、收益和肥料利用效率,并可保持土壤养分稳定。因此,它是一种适用于中国东北玉米的推荐施肥方法。  相似文献   

17.
黄土高原旱地长期施肥对小麦养分吸收和土壤肥力的影响   总被引:21,自引:7,他引:21  
通过定位试验研究了长期施肥对小麦子粒、秸杆养分吸收和土壤肥力变化的影响。结果表明,合理施用化肥不但增产幅度大,还在一定程度上增加了小麦N、P、K养分浓度。单施氮、单施磷肥能增加小麦子粒和秸杆的N、P、K吸收量,氮磷肥配施增加效果显著,其子粒吸收N、P、K增加了153.2%、157.1%和162.4%。施有机肥能补充土壤中的N、P、K含量,增加小麦子粒中的养分含量,使品质有大幅度的提高。单施磷肥的土壤有机质、全P、速效P含量增加,土壤全N、速效N含量减少,N素亏缺。氮磷肥配施加剧了土壤K的亏缺。有机肥培肥作用显著,有机肥和氮、磷肥配施的土壤有机质、全N、全P、速效N、速效P和速效K分别增加了69.0%5、7.5%、54.8%、73.1%、830.5%和119.1%。  相似文献   

18.
添加生化抑制剂是提高水稻肥料利用率的有效途径之一,本研究结合不同施肥模式探讨其节肥增效的养分利用特征,以期寻找适合黄泥田地区水稻高产高效的施用方式。采用二因素随机区组设计,研究生化抑制剂[脲酶抑制剂N-丁基硫代磷酰三胺(NBPT)和N-丙基硫代磷酰三胺(NPPT)及硝化抑制剂2-氯-6-(三氯甲基)吡啶(CP)]组合与施肥模式(一次性和分次施肥)互作对黄泥田水稻养分吸收、利用和分配的影响,并探讨各养分间及其与产量的相互关系。结果表明:生化抑制剂组合和施肥模式对水稻主要生育期N、P、K累积、转运和分配的影响均存在一定的互作效应,互作条件下各生育期养分间吸收存在协同效应。尿素分次施用处理水稻成熟期N、P、K吸收量较一次性施用处理分别提高11.0%、0.9%、4.2%;氮肥吸收利用率、氮肥农学利用率分别显著提高27.5%、70.8%。不同施肥模式下,配施抑制剂组合(NBPT、NPPT/+CP)显著增加水稻N、P、K吸收量,促进抽穗后干物质生产和N素积累,提高籽粒中的养分分配及N素利用效率。新型脲酶抑制剂NPPT单独施用及与CP配施的水稻养分吸收和利用与NBPT相似。相关分析表明,不同施肥模式下水稻成熟期N、P、K吸收量与籽粒产量均呈极显著正相关。总之,通过施肥技术和抑制剂配施的集成与优化,有利于抽穗后N、P、K的吸收、转运,促进养分积累,大幅度同步提高黄泥田水稻的产量和养分利用效率。  相似文献   

19.
不同钾肥品种和用量对花椰菜产量和品质的影响   总被引:9,自引:0,他引:9  
在不同肥力水平的土壤上,采用田间试验方法,研究了不同钾肥用量水平下硫酸钾和氯化钾对花椰菜产量和品质的影响。试验结果表明,钾肥可提高花椰菜花球产量,施钾增产效应达显著水平;但单位钾素(K2O)养分生产效率随钾肥用量提高而降低。氯化钾的产量效应低于硫酸钾,其效应受土壤氯离子含量和钾肥用量的影响。钾肥可提高花椰菜维生素C含量,用量过高则含量下降;增加和降低效果与土壤含钾量有良好的相关性。中、高用量硫酸钾效果优于氯化钾。钾肥可降低氨基酸总量和各种类氨基酸含量,氯化钾处理花椰菜氨基酸含量高于硫酸钾,特别是谷氨酸和丙氨酸含量。钾肥可促进花椰菜养分吸收,氯化钾更有利于钾素的吸收和积累,氮、钙和镁的转运,而不利于钾素从花轴转运到花蕾。不同钾肥品种的产量品质差异与钾肥陪伴氯离子与土壤氯离子含量关系密切。在土壤氯离子含量高的土壤上,硫酸钾可作为理想的钾肥肥源。  相似文献   

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