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1.
【目的】 薯麦轮作是我国甘薯种植的主要模式,施钾对甘薯、小麦都有较好的增产效果。本文研究了薯麦轮作中钾肥最佳运筹方案,以便更好地发挥钾肥效益。 【方法】 在江苏省农业科学院位于南京的六合基地连续进行了三年田间定位试验,在周年钾肥投入总量K2O 270 kg/hm2的前提下,设置5个甘薯 (S) /小麦 (W) 钾肥分配量处理,分别为 S0W270、S90W180、S135W135、S180W90、S270W0,重复三次。调查了产量、产量组成和生物量分配,测定了吸钾量、钾生理效率和钾表观平衡。 【结果】 钾肥分配量显著影响甘薯的块根产量、单株薯数、单个薯重、冠根比、吸钾量和钾生理效率,而对小麦产量、有效穗数、穗粒数、千粒重、草谷比、吸钾量、钾收获指数和钾生理效率均无显著影响。甘薯产量和周年产量均以钾肥全部施于薯季的S270W0处理最高,全部分配于麦季的S0W270处理次之,S270W0的甘薯产量和周年产量比薯麦两季分配的S90W180、S135W135、S180W90处理提高20.7%~24.5% (P < 0.05) 和17.8%~20.9% ( P < 0.01),S0W270的分别提高了9.9%~13.4% ( P > 0.05) 和8.2%~11.0% ( P > 0.05)。S270W0处理的单株薯数和单个薯重分别比钾肥施两季的处理高5.2%~10.4%和8.5%~30.6% ( P < 0.01),是其产量增加的主要原因;S0W270处理的单株薯数比 这三个处理高18.9%~24.8% ( P < 0.001),但单薯重低于其他处理,较高的单株薯数是该处理甘薯增产的主要原因。S180W90和S270W0处理甘薯整株吸钾量比S90W180和S0W270高出9.7%~16.1% ( P < 0.05)。随薯季施钾量增加,甘薯冠根比先增后减 ( P < 0.001)、钾生理效率先减后增 ( P < 0.01)、钾收获指数和商品率变化较小 ( P > 0.05)。甘薯吸钾量平均为K 2O 228.0 kg/hm2,是小麦的2.3倍;钾收获指数平均为0.55,是小麦的5.5倍。薯蔓中储存的钾占甘薯吸钾量的46.6%,薯蔓还田可满足小麦对钾的需求;麦秸中贮存的钾占小麦吸钾量的91.0%,麦秸还田只能满足甘薯吸钾量的39.5%。本研究施钾量下,秸秆不还田,甘薯和小麦年均携出土壤的钾达K2O 327.9 kg/hm2,年末土壤速效钾呈快速下降,三个轮作周期后土壤速效钾降低49.2%;秸秆和薯蔓完全还田条件下,薯麦轮作施钾量为K2O 134.3 kg/hm2时即可保持土壤钾素平衡。 【结论】 薯麦轮作中,以钾肥单施于甘薯上,可显著增加单株薯数和单个薯重,增加甘薯产量和周年产量。全部钾肥施于甘薯上,薯蔓还田可以满足小麦的钾素营养。麦秸和薯蔓完全还田条件下,可适当减少钾肥的投入,年施K2O 134.3 kg/hm2时即可保持钾素平衡。供试地区土壤和管理条件下,钾肥的管理模式建议为“秸秆还田 + 适宜施钾量 + 钾肥全部施于薯季”。   相似文献   

2.
通过田间试验研究不同氮肥用量对膜下滴灌冬马铃薯生长、产量和经济效益的影响,通过分析马铃薯产量、经济与农学效益随氮肥用量的变化趋势提出冬马铃薯生产上适宜的氮肥用量范围。结果表明,膜下滴灌条件下,马铃薯生育期随氮肥用量的增加逐渐延长,马铃薯叶面积指数、单株结薯数、单株薯重和块茎产量随氮肥用量的增加呈先增加后降低的趋势,均在345 kg/hm~2施氮量时最高,且株高和大薯重高于其他处理。施氮量在0~420 kg/hm~2时对马铃薯出苗率影响不大,而施氮量达495 kg/hm~2时出苗率和块茎产量显著降低;施氮效益、施氮纯收入、氮肥产投比和农学效率在施氮量195~345 kg/hm~2时均随氮肥用量的增加而增加,超过345 kg/hm~2施氮量时逐渐下降,施氮量为495 kg/hm~2时显著降低。马铃薯产量对氮肥用量的反应通过二次多项式模型分析得出,马铃薯最高产量施氮量和经济最佳施氮量分别为341.7、327.1 kg/hm~2,而最高产量与经济最佳产量二者相差不大。因此,在本试验条件下,膜下滴灌冬马铃薯适宜的氮肥用量应该控制在270~327.1 kg/hm~2之间,可获得较高的产量和经济效益。  相似文献   

3.
This study evaluated soil health in fields of wheat (Triticum aestivum L. cv Shatabdi) and potatoes (Solanum tuberosum L.) irrigated by different blends of municipal wastewater (hereafter called wastewater). The crops were grown with and without added fertilizers over three consecutive years. The wastewater contained high concentrations of organic carbon (C), nitrogen (N), phosphorus (P), sodium (Na), potassium (K), calcium (Ca), magnesium (Mg), sulphur (S), zinc (Zn) and boron (B). It also contained negligible concentrations of a few heavy metals. Irrigation by wastewater resulted in an increase in the porosity of the surface soil and thus a reduced bulk density. Wastewater enhanced the saturated hydraulic conductivity and water retention capacity of the soils. The organic carbon, total N, available P and S, and exchangeable Na, K, Ca and Mg of the soils increased proportionately with the quantity of applied wastewater. C, N and K increased significantly (α = 0.05) when fields were irrigated using raw wastewater after applied fertilizers; the other elements accumulated in the soil insignificantly under both fertility levels. Electrical conductivity (EC) and pH of the upper 0–20 and 20–40 cm soil layers increased with the application of wastewater; the increase was significant only under raw wastewater irrigation. In the 40–60 cm soil layer, both EC and pH remained unchanged. The applied inorganic fertilizers raised EC but reduced soil pH. The wastewater contained large counts of total coliform (TC: 17.2 × 106 cfu/100 mL) and faecal coliform (FC: 13.4 × 103 cfu/100 mL). Irrigation using municipal wastewater is proposed for improving soil fertility as well as for alleviating water scarcity with the exception of some crops whose edible parts come in direct contact with wastewater and/or are eaten uncooked.  相似文献   

4.
Abstract

Efficient crop use of nitrogen (N) fertilizer is critical from economic and environmental viewpoints, especially under irrigated conditions. Nitrogen fertilizer (15N‐labeled urea) and irrigation methods (drip and furrow) were evaluated on spring and fall potato cultivars under Syrian Mediterranean climatic conditions. Field experiments were conducted in the El‐Ghab Valley near Hama in fall 2000 and spring 2001 on a heavy clay soil. Four N‐fertilizer applications (70, 140, 210, and 280 kg N/ha) were applied in five equally split treatments for both irrigation methods. Potato was irrigated when soil moisture in the specified active root depth reached 80% of the field capacity as indicated by the neutron probe.

Higher marketable tuber yield of spring potato was obtained by fertigation compared to furrow irrigation; the magnitude of tuber yield increases was 4, 2, 31, and 13%, whereas for fall potato the tuber yield increases were 13, 27, 20, and 35% for N fertilizer rates of 70, 140, 210, and 280 kg N/ha, respectively. Shoot dry matter and tuber yields at the bulking stage were not good parameters to estimate marketable tuber yield. The effect of N treatments on potato yield with furrow irrigation and fertigation was limited and not significant. Drip fertigation improved tuber yield of fall potato relative to national average yield. Nitrogen uptake increased with increasing N input under both irrigation methods. Reducing N input under both irrigation methods improved N recoveries. Increasing N input significantly increased total N content in plant tissues at the bulking stage. Spring potato yields were almost double those of fall potato under both irrigation methods and all N treatments.

Nitrate (NO3) movement in the soil solution for fall potato was monitored using soil solution extractors. Furrow irrigation resulted in greater movements of NO3‐N below the rooting zone than drip fertigation.

Harvest index did not follow a clear trend but tended to decrease upon increasing N fertilization rates beyond 140 kg N/ha under both irrigation methods. Drip fertigation improved field water‐use efficiencies at the bulking and harvest stages. Fertigation increased specific gravity of potato tubers relative to furrow irrigation. Higher N input decreased specific gravity of potato tubers under both irrigation methods.  相似文献   

5.
Management of nutrients, especially nitrogen (N), is one of the most important factors in potato production. Cattle manure and mineral fertilizers are two sources of N that can affect the quality and quantity of potato yield. The effects of the use of cattle manure (5, 10, 15, and 20 ton ha?1), N fertilizer (50, 100, and 150 kg ha?1), and their interaction on tuber yield, chlorophyll content, and glycoalkaloid concentration were evaluated during field experiments in Iran in 2008 with a randomized complete block design with a factorial arrangement of three experimental replications. At the time of flowering, chlorophyll a, b, and total (chlorophyll) were recorded by spectrophotometry. Furthermore, at the end of the growth season, tuber yield was calculated and tuber glycoalkaloids were measured by the colorimetric method for the assessment of quantitative and qualitative characteristics of potato. Chlorophyll a, b, and total content increased linearly and very significantly in response to the application of manure and N fertilizer. The interaction between manure and N fertilizer was also significant; somehow the maximum content of total chlorophyll [1.448 mg g?1 fresh weight (FW)] was obtained by using 150 kg N + 20 ton of manure per hectare. Cattle manure, N fertilizer, and their combination had a highly significant effect on tuber yield. Maximum tuber yield (36.8 ton ha?1) was obtained by the utilization of 20 ton manure + 150 kg N per hectare. Total glycoalkaloid content was affected by the N application only. It showed a linear increase in the presence of increased concentration of N fertilizer.  相似文献   

6.
A field experiment was conducted to study the effect of humic acid multinutrient fertilizers like Grow Flow 45H and HA-NPK complex on crop yield, nutrient content and uptake, and nutrient use efficiency of potato. Application of Grow Flow 45H (humic acid multinutrient liquid fertilizer) at recommended dose increased the tuber yield by 9.3% as compared to chemical fertilizer. Nitrogen (N), phosphorus (P) and potassium (K) content of the Grow Flow 45H treated plants were 2.89, 0.33 and 1.58% in shoots and 1.89, 0.21 and 1.03% in tubers, respectively which were significantly higher than the other treatments. Grow Flow 45H increased the N, P and K use efficiencies by 16.4%, 9.3% and 18.3% respectively over chemical fertilizer. Though HA-NPK complex fertilizer (developed in the laboratory) was not significantly different from chemical fertilizer in respect of yield, the contents and uptake, and use efficiencies of N, P and K; however the former was found better than the latter.  相似文献   

7.
A 2-year field trial was conducted in processing grade potato cv. Kufri Chipsona-3. The treatments comprised recommended dose of fertilizer (RDF) (200:150:150 N:P2O5:K2O kg ha?1) with or without boron (B) application (soil and foliar). The results revealed that B fertilization significantly increased tuber number and yield. Three sprays of 0.1% boric acid (at 40, 50 and 60 days after planting) produced the maximum number and yield of tubers and enhanced B uptake in potato tuber, haulm as well as in total plant accounting 85.8, 182.0 and 169.8% more than control, respectively. The same treatment came up with greatest net return and benefit: cost ratio. B fertilization exerted significant influence on available N and B status of post-harvest soil, while the effect was non-significant on available P and K. Results suggest that right dose and method of B application is vital for optimizing tuber yield and B-use efficiency for processing grade potato.  相似文献   

8.
氮肥形态对马铃薯氮素积累与分配的影响   总被引:3,自引:1,他引:2  
采用田间试验的方法,研究了不同氮肥形态对氮素在马铃薯不同器官中的吸收和运转分配及产量的影响。试验结果表明:铵态氮肥对马铃薯地上干物质积累量的增加作用最明显,施氮处理马铃薯块茎干物质积累量比对照增加50.37%~71.38%;马铃薯各器官中含氮量随生育期推进逐渐下降,其中,茎和叶下降幅度较大;马铃薯各器官中氮含量生育前期表现为叶片>地上茎>根,进入块茎形成期以后,则叶片>根>地上茎>块茎。施氮在马铃薯生育前期有利于茎对氮素的吸收和储存,后期又可以促进茎中的氮素向叶片和块茎转移。施氮各处理产量较对照增加19.28%~63.86%,NH4+-N处理对氮的吸收、积累与分配影响最大,且产量最高,达到39 410.2 kg.hm-2。  相似文献   

9.
典型黑土不同施氮量对马铃薯产量和氮素利用率的影响   总被引:1,自引:2,他引:1  
  【目的】  我国马铃薯生产中养分不平衡施用问题严重,过量施氮不利于农业可持续发展和生态环境保护。在养分专家系统 (Nutrient Expert,NE) 推荐施肥量基础上,研究不同施氮量对马铃薯产量、养分吸收和氮肥利用率的影响,为马铃薯推荐施肥提供科学依据。  【方法】  于2017―2018年,分别在黑龙江克山县不同地块进行2个田间试验,在NE系统推荐施肥量 (N180) 的基础上,设减施推荐施氮量的50% (N90)、25% (N135) 和增施25% (N225)、50% (N270) 4个处理,并以不施氮肥的处理作对照 (N0)。测定马铃薯产量、养分吸收量、肥料利用率等指标。  【结果】  017和2018年马铃薯产量均以NE系统推荐的N180处理最高,较N0处理两年平均增产40.4%。N90和N135处理低施氮水平 (≤ 180 kg/hm2) 下,随着施氮量的增加,马铃薯产量也明显增加,当施氮量超过NE系统推荐的施肥量 (180 kg/hm2) 后,继续增施氮肥对产量增加无明显作用。与N0处理相比,两年N180处理的块茎、秸秆和全株氮素吸收量平均增幅分别为49.8%、58.2%和52.0%,磷素吸收量平均增幅为36.3%、52.2%和39.8%,钾素吸收量平均增幅为26.4%、46.8%和31.3%,生产1 t块茎 (鲜重) 所需要的氮、磷、钾养分分别为4.6、1.1和5.8 kg。N180处理的产量和氮磷钾养分吸收量均为最高,氮素农学效率和回收率与N90和N135处理差异不显著。  【结论】  在不超过马铃薯氮素需求条件下,增加氮肥投入可显著增加马铃薯产量和氮素吸收量,NE系统能够指导马铃薯科学施肥,保障马铃薯产量,提高氮肥利用效率。  相似文献   

10.
宁夏马铃薯氮、 磷、 钾养分的吸收累积特征   总被引:11,自引:4,他引:7  
【目的】马铃薯氮、 磷、 钾养分吸收累积特点国内外已有不少报道,但在宁夏地区的生产条件下尚缺乏系统研究,马铃薯配方施肥技术推广中也缺少施肥参数,难以确定合理的施肥量。因此,针对宁夏地区马铃薯种植基地的土壤条件,系统分析马铃薯干物质累积和氮、 磷、 钾养分含量,探明其对氮、 磷、 钾养分吸收累积特点,以期为马铃薯的精准施肥提供科学依据。【方法】采用田间试验和室内测定相结合的方法。于2012年分别在宁夏西吉县、 原州区、 红寺堡和同心县马铃薯种植基地进行肥料田间试验,按照当地推荐的施肥量统一施肥量和施肥方法(农家肥、 70%氮肥、 全部磷、 钾肥基施,30%氮肥在现蕾期追施),在马铃薯不同生育期采集植株样品,测定不同器官干重和氮、 磷、 钾含量,分析不同生育期马铃薯干物质累积量、 氮、 磷、 钾含量及其吸收累积量的变化特点。【结果】1)从不同种植基地来看,红寺堡区马铃薯干物质累积量最高,其次是原州区和西吉县,同心县最低;马铃薯干物质累积量随生育期的推进而增加,符合Logistic曲线,幼苗期、 块茎形成期、 块茎膨大期和淀粉累积期的干物质累积量分别占总累积量的5%、 20%、 40%和35%。2)马铃薯植株氮含量随生育期而降低,其变异系数较大; 磷、 钾含量随生育期呈先增后减的变化态势,但变异系数较小; 氮、 磷含量叶片高于其他器官,钾含量茎秆中较高。3)马铃薯氮、 磷、 钾吸收累积量在红寺堡区最高,原州区和西吉县居中,同心县最低;苗期氮、 磷、 钾的吸收量分别占全生育期总吸收量的11%、 6%、 8%,块茎形成期占28%、 23%、 31%,块茎膨大期占36%、 39%、 41%,淀粉积累期占25%、 31%、 20%;成熟期块茎中氮和磷的累积量分别占各自总累积量的60%以上,钾的累积量占50%。【结论】供试土壤条件下,马铃薯干物质累积量及养分吸收量因种植基地、 生育期和器官不同而异。从不同种植基地来看,红寺堡区马铃薯的干物质及氮、 磷、 钾累积量较高,原州区和西吉县居中,同心县最低;干物质及氮、 磷、 钾累积量随生育期的变化符合Logistic曲线,具有明显的阶段性特点,块茎膨大期累积最多,块茎形成期和淀粉积累期次之;马铃薯根、 茎和叶中吸收累积的氮、 磷、 钾占同期总累积量的比例随生育期而降低,但块茎则相反,氮、 磷、 钾吸收累积量随生育期而增加,成熟期块茎中吸收累积的养分量占全株的一半以上。  相似文献   

11.
【目的】分析马铃薯品种(系)产量和品质在不同栽培条件下与养分吸收及利用的关系,为马铃薯科学施肥提供理论基础。【方法】在宁夏固原和甘肃定西开展马铃薯品种(系)田间试验,宁夏收集了76份品种(系),甘肃收集了83份,马铃薯试验均采用当地水肥管理技术。成熟期测定产量及产量构成因素,取样分析马铃薯品质和氮磷钾养分含量,以及土壤有机质和速效养分含量。【结果】两地马铃薯块茎产量差异不显著。将马铃薯产量分为<30 t/hm2 (低)、30~45 t/hm2 (中)和>45 t/hm2 (高) 3个等级,宁夏种植的76个品种(系)中低产、中产、高产的占比分别为27.6%、34.2%、38.2%,甘肃种植的83个品种(系)中的占比分别为15.7%、49.4%、34.9%。随着不同马铃薯品种(系)产量的不断增加,干物质和淀粉含量呈现增加趋势,而蛋白质含量则呈现降低趋势。无论产量水平高低,每生产1 t马铃薯块茎需吸收N 2.9 kg、P 0.5 kg、K 4.0 kg。产量与氮磷钾养分吸收量呈显著正相关,维生素C和蛋白质含量与氮磷...  相似文献   

12.
This study evaluated the physicochemical changes in the soil of potato field that was irrigated by fresh water, differentially diluted wastewater and undiluted wastewater (hereafter called wastewater). The potato crop was cultivated for consecutive three seasons under fertilized and unfertilized conditions. The wastewater contained higher concentrations of organic carbon (C), nitrogen (N), phosphorus (P), potassium (K), sodium (Na), calcium (Ca), magnesium (Mg), sulfur (S), zinc (Zn) and boron (B) and lower concentrations of heavy metals. In this study, properties of wastewater-irrigated soil were compared with fresh water-irrigated soil. The application of wastewater reduced the bulk density of the surface soil by 2.83% and augmented the porosity by 6.02%. The unsaturated hydraulic conductivity and water retention capacity of the soil were improved under wastewater irrigation. Soil pH increased due to wastewater application but decreased, to a smaller extent, due to fertilizer application. Soil EC increased both with wastewater and fertilizer application; both parameters changed significantly in the top 0–15 cm soil layer. But, at the deeper layers, they were not affected by wastewater application. The organic C, total N, available P and S of the soils increased significantly (p = 0.05) when potato field was irrigated with raw wastewater. The organic C increased by 23.80% under wastewater irrigation in the top soil layer. The N content of the soil showed similarities with the organic C contents. Exchangeable Na, K, Ca, Mg; Zn and B of the soil also increased significantly with wastewater application. So, irrigation with urban wastewater is suggested to improve soil fertility as well as to ease pressure on the fresh water in the area of water scarcity.  相似文献   

13.
14.
Sweet potato productivity in India is either stagnated or lowering down over the past many years. The main reasons for low yield are conventional blanket recommendation of fertilizers, lower nutrient-use efficiency and imbalance in the use of fertilizers. Recommendation of major nutrients, nitrogen, phosphorus, and potassium (NPK), based on quantitative approaches will augment sweet potato production per unit area by increasing the nutrient-use efficiency. The present study calibrated the Quantitative Evaluation of Fertility of Tropical Soils (QUEFTS) model for the estimation of NPK requirements and fertilizers recommendations for different target yields of sweet potato. The QUEFTS basically works on the principle of NPK nutrient interactions and climate-adjusted yield potential of a region. Published data sets from several field experiments related to NPK carried out till date were collected to reflect the environment variability. The results of the present study showed that to produce one ton tuber, 16:6:18 kg N, P, and K, respectively, would be needed with the internal efficiencies of 61:167:57 kg tubers kg?1 NPK removed. The maximum accumulation and dilution (kg tuber kg?1 nutrient removed) of N (40, 80), P (96, 272), and K (30, 85) were also derived as standard parameters in QUEFTS for optimum fertilizer recommendation in tropical and subtropical regions of India. The observed yields of sweet potato with different amounts of nutrients were in agreement with the values predicted by the model. Therefore, it is utmost important to have the results of the study validated in major growing environments of India for fertilizer recommendation in sweet potato.  相似文献   

15.
马铃薯块茎顶端优势与主茎数及产量组分的相关性   总被引:1,自引:0,他引:1  
马铃薯块茎产量性状复杂,由多个产量组分构成.为探究马铃薯块茎不同顶端优势类型、植株主茎数和产量组分的相关性,本研究对国际马铃薯中心引进的102份高代品系块茎的发芽情况进行筛选,以12个顶端优势强弱程度不同的马铃薯品系为试验材料,在马铃薯植株盛花期测定主茎数;收获期统计小区产量、小区大薯产量、小区小薯产量、单株产量、单株...  相似文献   

16.
水氮耦合对膜下滴灌马铃薯产量、品质及水分利用的影响   总被引:21,自引:3,他引:21  
该文通过田间试验,研究在西北旱区对膜下滴灌条件下水氮耦合效应及其对马铃薯产量、品质和水分利用效率的影响,从而确定马铃薯适宜的水氮用量,以求达到节水、节肥和高产优质的目的。试验设置2个土壤湿润比水平:40%(P1)和70%(P2),5个施氮水平:90(N1)、135(N2)、180(N3)、225(N4)、270kg/hm2(N5),共10个处理。试验结果表明:相同水分条件下,马铃薯块茎质量、块茎淀粉含量、块茎维生素C含量、耗水量、产量和水分利用效率都随施氮量的增加而呈抛物线趋势变化,块茎蛋白质含量随施氮量的增加呈增加趋势。相同氮肥条件下,湿润比P2处理的马铃薯块茎质量、块茎淀粉含量、块茎维生素C含量、块茎蛋白质含量均高于湿润比P1,湿润比P2处理的耗水量比湿润比处理P1高11%,湿润比P2处理的产量比湿润比处理P1高5%,但是湿润比P1处理的水分利用效率比湿润比P2处理高5.4%。其中,P2N3处理的马铃薯单株块茎质量、块茎维生素C含量表现最好,P1N5处理的马铃薯块茎蛋白质含量最高,P2N2处理的马铃薯块茎淀粉含量和产量表现最优,产量最高为54187kg/hm2,P1N2处理的水分利用效率最高为12.86kg/m3。P2N3处理的马铃薯高产优质,且水分利用效率较高,是西北旱区膜下滴灌条件下马铃薯生产中适宜的水氮组合。  相似文献   

17.
【目的】近年来,在内蒙古阴山北麓的马铃薯产量,45000 kg/hm2以上已屡见不鲜,但由于高产马铃薯磷素吸收规律的研究缺乏,磷肥使用不合理导致高产不能持续,磷肥利用率偏低。因此深入研究高产马铃薯群体的磷素营养规律,配合滴灌可为马铃薯持续高产提供科学依据。【方法】采用大田滴灌试验,以克新1号原种为试材,设置当地农户栽培模式与高产创建田生产模式,对2年的试验结果进行分析,研究滴灌条件下高产马铃薯群体磷素吸收、利用和分配特性。【结果】与农户模式相比,高产模式马铃薯单株结薯数(8.2 No./plant)提高了9.3%,商品薯率(96.0%)提高了2.3%;从块茎形成期到块茎膨大期,高产马铃薯群体磷素日积累量达到0.67~0.78 kg/hm2,较农户模式提高了37%,整个生育期马铃薯群体磷素的积累量达到44.3~55.3 kg/hm2,较农户模式高10.0~12.1kg/hm2,磷素转运率达85%~87%,也显著高于农户模式。高产马铃薯1000 kg块茎需磷量为1.95~2.10 kg,磷肥利用率21.6%~23.6%。【结论】在磷肥总量减少的情况下,利用滴灌分6次施用,与农户模式相比,显著提高结薯数量及单薯重,在块茎形成至膨大的关键时期以较快速率持续吸收磷素保证了植株在减量供磷条件下吸收磷素的高效性,分期供磷使磷肥利用率有了明显提高。  相似文献   

18.
  【目的】  研究滴灌施肥条件下不同马铃薯品种的滴灌量和施肥量优化组合,以建立马铃薯生长、产量、品质、水肥利用效率和经济效益最优的水肥管理组合技术。  【方法】  采用正交试验设计方法布置马铃薯小区试验。试验设3个滴灌水平:W1 (100%ETc)、W2 (80%ETc)、W3 (60%ETc),其中ETc为作物蒸散量;3个施肥(N–P2O5–K2O)水平:F1 (240–120–300 kg/hm2)、F2 (180–90–225 kg/hm2)、F3 (120–60–150 kg/hm2 );3个马铃薯品种:V1 (费乌瑞它)、V2 (陇薯7号)、V3 (青薯9号),设1个不施肥对照处理(W3F0V1),共10个处理。在主要生育期测定了马铃薯光合指标和耗水量,在成熟期测定马铃薯产量、产量组成和品质,分析水分利用效率(WUE)、肥料偏生产力(PFP)和经济效益。  【结果】  滴灌量、施肥量和品种对马铃薯产量组成、WUE、PFP和净收益有极显著影响(P<0.01)。F2水平下马铃薯产量、干物质累积量、淀粉含量、维生素C含量、粗蛋白含量和净收益比F1水平的下分别提高了19.28%、1.13%、1.62%、3.79%、8.79%和34.64%,比F3水平下提高了21.48%、3.07%、6.27%、6.08%、11.18%和27.94%。随着滴灌量的增加,产量、产量组成、淀粉含量、维生素C含量、粗蛋白含量、PFP和经济效益呈单峰曲线变化趋势,还原糖含量随着灌水量的增加呈先减少后增加趋势。青薯9号的叶片叶绿素含量、淀粉含量、粗蛋白含量、维生素C含量、WUE、PFP均高于其余两个品种。通过熵权法和TOPSIS分析得出排名前三的优化处理依次为:F2W2V3、F1W1V1和F3W2V1。F2W2V3处理的产量、单株块茎重、商品薯重、最大单个块茎重、粗蛋白含量、WUE和净收益最大,分别为49.22 t/hm2、1096.7 g、794.3 g/plant、433.9 g、0.214 mg/g、20.21 kg/m3和44832元/hm2。F1W1V1 和F3W2V1 依次排在第二和第三,其产量分别为41.79和37.67 t/hm2,单株块茎重分别为906.5和836.7 g, 商品薯重分别为711.4和607.3 g/plant,最大单个块茎重分别为395.6和357.1 g, 净收益分别为34584和32023元/hm2。  【结论】  在陕北旱区春季马铃薯生产中,3个马铃薯品种的最优灌溉和施肥组合均为80%ETC和N–P2O5–K2O 180–90–225 kg/hm2,该组合可同时兼顾高产、优质、高水肥利用效率和高经济效益的多重目标,其中品种青薯9号各指标均优于其他两个品种。  相似文献   

19.
氮肥减量分施促进甘薯根系分化与块根膨大   总被引:1,自引:0,他引:1  
【目的】研究减氮运筹对甘薯根系生长发育、块根分化建成的影响,并讨论其与产量形成的关系,为高产高效甘薯栽培提供理论和技术依据。【方法】2016年和2017年在安徽省农业科学院本部试验基地黄棕壤上以商薯19和徐薯22为供试材料进行盆栽试验。以常规习惯基施氮100 kg/hm2 (FP) 为对照,在减氮20%的条件下,设置3种氮肥施用方式:全部基施 (JS)、全部块根形成期 (移栽后35 d) 追施 (KS)、50%基施+50%块根形成期追施 (FS)。于移栽后35 d(块根分化建成后期)、80 d(块根膨大期) 和收获期挖根取样,调查不定根数、不定根根长、粗根和单株有效薯块的根径范围、根尖数、根表面积、根体积等,测定根系活力、地上部和根系生物量。【结果】与FP处理相比,JS处理降低了单薯重,使块根产量显著降低,KS处理显著增加了单株有效薯块数,使块根产量分别提高7.61%(商薯19) 和11.74%(徐薯22),FS处理提高了单株有效结薯数和单薯重,使块根产量分别增加22.10%(商薯19) 和21.37%(徐薯22)。同时,FS处理较FP处理增加了块根形成期和块根膨大期根系总长度、根系表面积、根系体积和根尖数目,增强了根系活力,提高了地上部、根系及有效薯块干重和根系/地上部干重比值。相关分析表明,块根膨大期甘薯根系形态特征参数均与单薯重和产量呈显著或者极显著正相关。【结论】将施氮量由100 kg/hm2减至80 kg/hm2,并将其中一半氮肥在块根形成期追施,可有效促进甘薯根系生长和有效薯块的早期形成,保证单株结薯数,同时还可维持生育后期较高的根系活力,提高块根膨大期生物量和分配比例,有利于薯块的膨大和产量的增加。  相似文献   

20.
Farmers are applying very high amounts of N fertilizer (sometimes >900 kg N/ha), commonly (NH4)2SO4, to irrigated potato (Solanum tuberosum, L.) grown on sandy textured soils in the Cappadocia region of Turkey. To obtain information on potato yield, N uptake, N fertilizer residue in the soil and the portion of N fertilizer leached below 200 cm soil depth, nine field experiments were conducted at three different locations in 1992, 1993 and 1994. The N rates used in these experiments were 0, 200, 400, 600, 800 and 1,000 kg N/ha within a completely randomized block design with three replicates. N fertilizer was applied in two equal portions; one at planting and one just before the first irrigation. Although all yield data were used to find out the marketable tuber yield, the N rate response curve and the fate of applied fertilizer N was determined only for the 400 and 1,000 kg N/ha rates. Isotope microplots were established where 15N-labelled (NH4)2SO4 was applied at 5.0 atom % and 2.5 atom % excess enrichments for the 400 kg N/ha and 1,000 kg N/ha rates, respectively. At harvest, marketable and dry tuber yield was determined for all N rates. Dry tuber and leaf plus vine yields were determined for the isotope microplots and they were analysed for the % N and 15N atom % excess. The % N derived from fertilizer and N use efficiency (%NUE) were calculated for the plant samples. The 15N-labelled residue left in 0-200 cm soil was also determined. The amount of N fertilizer leached below 200 cm soil depth was also calculated. 15N-labelled NO3- and total NO3- of the groundwater from wells were determined at different dates. Our results show that the optimum marketable tuber yield was obtained with 600 kg N/ha. Tuber N uptake was increased slightly, while leaf plus vine N uptake increased considerably when the N rate was increased from 400 to 1,000 kg N/ha. The %NUE values decreased nearly by half and the amount of N fertilizer in the 0-200 cm soil layer increased more than 3 times when the N rate was increased from 400 to 1,000 kg N/ha. Nearly half of the applied fertilizer N (45.6%) at 400 kg N/ha and more than half of the applied fertilizer N (60.8%) at 1,000 kg N/ha was still in the 0-200 cm soil layer after harvest. Four times more N fertilizer was leached below 200 cm soil depth when 1,000 kg N/ha N was applied instead of 400 kg N/ha. Our results also indicate that there is a potential contamination of groundwater due to leaching of the applied N fertilizer.  相似文献   

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