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1.
影响水稻纹枯病流行、危害的因子分析   总被引:8,自引:1,他引:7  
以连作早稻为研究对象,对影响水稻纹枯病发生、危害有关的因子,即品种、施氮肥量、气象因素、为害损失、发病时间、病情程度及药剂等作了系统的定量研究.结果表明,品种间存在抗病性和危害损失程度上的差异;施氮肥量与发病程度关系密切;气象因素中以日均温和雨日频率与病害流行速率关系密切;发病时间与为害损失率相关性不明显,药剂防治效果与控病时间、病情基数有关.  相似文献   

2.
几种控释氮肥减少氨挥发的效果及影响因素研究   总被引:25,自引:4,他引:21  
采用“静态吸收法”和“土柱淋溶法”、室内模拟试验,研究几种控释氮肥施入土壤后的氨挥发损失情况、N溶出速率、土壤脲酶活性及pH值变化的关系.结果表明,施氮450mg·kg^-1土时,3种控释氮肥氨挥发损失氮总量分别比普通尿素减少49.7%、28.0%和71.2%;施氮600mg·kg^-1土时,3种控释氮肥氨挥发损失氮总量分别比普通尿素减少34.6%、12.3%和69.9%.控释氮肥能显著降低土壤氨挥发量,减少因施肥而引起的大气环境污染.控释氮肥氨挥发量与不同氮肥引起的土壤脲酶活性、pH值、土壤中氮溶出速率密切相关.土壤的氨挥发总量与肥料在土壤中溶出总量的相关系数达到0.9533,在肥料施入的前期土壤氨挥发量同土壤脲酶活性、pH值的相关系数达到0.9533和0.9908。  相似文献   

3.
氮肥施用与蔬菜硝酸盐积累的相关研究   总被引:78,自引:0,他引:78  
蔬菜是一种容易富集硝酸盐的作物,人体摄入的硝酸盐有81.2%来自蔬菜,而 酸盐是强致癌物---亚硝胺的前体物。硝酸盐在一定条件下可墨迹为亚硝酸盐,对人体前直接破坏血红蛋白中的Fe^2+等危害。为获高产,不合理地超量施用化学氮肥,使得蔬菜硝酸盐积累量剧增,品质退化。研究表明:筛选出氯化铵、硫酸铵两种氮肥品种,氮素施用剂量以300kg/hm^2为临界值;氮肥施用安全始期以施氮后8d为宜;化学氮肥与有机  相似文献   

4.
施肥与摘蕾对棉蚜、棉叶蝉种群数量及棉花产量的影响   总被引:6,自引:2,他引:4  
分析比较了不同施氮水平(0-450kg·hm^-2)与不同摘蕾处理(0-12个·株^-1)对转Bt基因棉花(GK-12)和常规棉花(泗棉3号)的棉蚜、棉叶蝉种群数量以及棉花产量的影响.结果表明,两个品种的棉蚜、棉叶蝉种群数量和有效铃量没有显著性差异。在本实验水平下,施肥和摘蕾与施肥的交互作用对两种棉花的棉蚜数量有显著性的影响,而摘蕾、施肥和两者的交互作用对两种棉花的棉叶蝉数量没有显著影响.在花铃期,施氮肥能增加两种棉花的有效铃数.线性回归分析表明,两种棉花的棉蚜、棉叶蝉的数量与施氮肥量和摘蕾量成正相关关系;有效铃量与施氮肥量呈正相关,与摘蕾量呈负相关.  相似文献   

5.
肥水管理对稻田主要害虫种群及产量的影响   总被引:20,自引:1,他引:19  
试验结果表明,在自然情况下,杂交中稻田害虫及天敌的种群密度,随着施氮量的增加而增加,其幅度因年度而异,中等发生年大于大发生年。在同一施氮量下,田水深浅对害虫的效应,因害虫种类而不同,白背飞虱和褐稻虱明显,稻纵卷叶螟和稻蓟马没有差异。杂交中稻在不防治害虫的情况下,因受害虫为害而造成的损失,与施氮量呈正相关。多施氮肥区比药剂保护区减产5成以上;一般施氮水平减产3成;少施氮肥的减产2成左右。  相似文献   

6.
【目的】桃蛀螟Conogethes punctiferalis(Guenée)已经成为黄淮海玉米穗期的重要害虫,本研究的目的是探究桃蛀螟发生危害与玉米镰孢穗腐病发病程度和玉米产量损失之间的关系。【方法】在玉米吐丝、灌浆和乳熟期,通过人工接种法将桃蛀螟初孵幼虫及拟轮枝镰孢菌Fusarium verticillioides单接或复合接种到玉米果穗上,收获时调查果穗上桃蛀螟为害级别、镰孢穗腐病发病率及病情指数,测定玉米产量。【结果】在玉米果穗的不同发育阶段,镰孢穗腐病病情指数均以复合接种处理最高,单接虫次之,单接菌最低。在单接虫处理中,镰孢穗腐病的发生程度及桃蛀螟为害级别均以吐丝期最重。拟轮枝镰孢菌与桃蛀螟复合侵染危害后,使得玉米产量性状发生改变,导致产量下降,以吐丝期危害影响最大,单穗损失率为33.09%,灌浆期和乳熟期分别为22.50%和10.13%。【结论】玉米穗期桃蛀螟的为害明显会加重镰孢穗腐病的发生,从而导致了更严重的玉米产量损失。  相似文献   

7.
二斑叶螨为害对菜豆生理指标的影响   总被引:1,自引:0,他引:1  
二斑叶螨(Tetranychus urticae)是为害菜豆的重要害虫。本文研究了二斑叶螨不同密度和不同时间为害对菜豆各种生理指标的影响。结果表明:在二斑叶螨2头·叶-1的低密度和为害少于5 d的短时期内,菜豆叶片叶绿素a、叶绿素b和叶绿素总含量变化不大,但随着二斑叶螨为害时间的延长和密度的增大,叶绿素含量下降明显增加;总糖和还原糖的含量与二斑叶螨的为害程度关系密切,即为害时间越长、受害程度越严重,还原糖降低幅度越大,总糖的含量则先升高再降低;随着二斑叶螨为害程度的加重,菜豆叶片中全磷、全钾损失显著,全氮含量变化不显著。  相似文献   

8.
长期施肥对黄土高原黄绵土氮肥利用率的影响   总被引:1,自引:0,他引:1  
氮肥利用率是确定推荐施氮量和施氮效果评价的关键参数.本文通过黄土高原黄绵土区持续34年(1981—2015年)的长期定位试验,研究了长期不同施肥处理对氮肥当季利用率和累积利用率的影响及氮肥当季利用率与累积利用率的关系.结果表明: 除试验起始年(1982)外,不同施肥处理对小麦、油菜和胡麻3种作物氮肥的当季利用率和累积利用率都有显著影响,其中小麦以氮磷钾配施(NPK)处理平均氮肥当季利用率最高,其次为氮磷配施(NP)处理,分别较单施氮肥(N)处理提高了77.7%和62.0%;油菜也以氮磷钾配施(NPK)处理平均氮肥当季利用率最高,其次为有机肥与氮磷钾配施(MNPK)处理,分别较单施氮肥处理提高了93.7%和65.6%.有机肥与氮肥配施(MN)处理氮肥当季利用率较单施氮肥(N)处理显著增加,而有机肥与氮磷配施(MNP)和氮磷钾配施(MNPK)处理氮肥当季利用率较相应氮磷配施(NP)和氮磷钾配施(NPK)处理明显降低.氮肥当季利用率与作物籽粒产量存在显著的线性正相关关系,而累积利用率与作物籽粒产量的相关关系不明显.表明与氮肥累积利用率相比,当季利用率能较及时地反映特定土壤肥力、作物种类、品种和环境条件下的肥料利用率特征.  相似文献   

9.
氮、钾营养对烤烟产量、产值和优质烟叶比例的影响   总被引:22,自引:0,他引:22  
通过田间小区试验,研究氮素和钾素对烤烟产量、产值及优质烟叶(中上等烟叶)比例的影响,结果表明:(1)烤烟产量与施钾肥量具有显著正相关,并与施氮肥量有关;(2)产值与施氮肥量呈显著二次曲线相关性;(3)中上等烟比例与施肥比例(N/K)呈显著负相关,与施钾量、烟叶含钾量、土壤供钾能力有关。试验区烤烟优质、适产,要求施氮量(N)105一l12.8kg/hm2,施钾量(K)217.95—261.45kg/hm2,施肥比例(N/K比)0.40—0.48(N:K=1:2.1—2.50或N:K2O=1:2.5—3.0)。  相似文献   

10.
机插超级粳稻产量、品质及氮肥利用率对氮肥的响应   总被引:9,自引:0,他引:9  
在大田机插条件下,以5个超级粳稻品种为材料,设置0、150、187.5、225、262.5、300、337.5 kg·hm-2等7种施氮水平,研究氮肥用量对超级粳稻产量、品质及氮肥利用率的影响,并比较机插条件下各超级粳稻最高产施氮量与经济最佳施氮量的差异.结果表明:随氮肥用量的增加,超级粳稻产量均先增加后下降,5个超级稻品种均在300 kg·hm-2施氮条件下获得最高产量,达10.33~10.60 t·hm-2.产量的增加主要取决于较高的群体颖花量,在300 kg·hm-2施氮条件下,各超级粳稻品种的群体颖花量均达到最大值.随氮肥用量的增加,5个超级粳稻品种的糙米率、精米率、整精米率及蛋白质含量均增加,337.5 kg·hm-2氮肥处理比不施氮处理分别高3.3%~4.2%、2.9%~6.0%、4.4%~33.7%和23.8%~44.3%;直链淀粉含量、胶稠度和食味值均下降,337.5 kg·hm-2氮肥处理比不施氮处理分别低12.4%~38.9%、10.3%~28.5%和20.3%~29.7%;垩白度呈现先增加后下降的趋势,而垩白率的变化因品种不同略有差异.随氮肥用量的增加,5个超级粳稻品种的氮肥吸收利用率、氮肥农学利用率和氮肥生理利用率下降,而籽粒吸氮量显著增加.根据水稻产量与氮肥用量的效应方程,5个超级稻的理论最高产量为9.99 t·hm-2,对应的施氮量为299 kg·hm-2;如果考虑氮肥的投入成本,则经济最佳施氮量为275.68 kg·hm-2,对应的产量为9.97 t·hm-2.因此,对于现有的超级水稻生产,可根据高产、优质、高效和低投入等不同目标分类进行氮肥的综合管理.  相似文献   

11.
15N标记水稻控释氮肥对提高氮素利用效率的研究   总被引:42,自引:0,他引:42  
本文应用^15N示踪技术研究了水稻对空控释氮肥和尿素氮吸收利用效率的影响以及氮的去向,结果表明:施肥后11天内,水稻控释氮肥和尿素的NH3挥发损失分别占施入氮量的0.69%和1.81%,NH3的挥发损失在施肥后第5天时达到最大值,此后逐渐降低。水稻控释氮肥和尿素氮的淋溶损失分别占施入氮量的0.95%和1.02%,水稻控释氮肥氮的淋溶损失在水稻整个生长期间均比较平缓,施肥后40天时略有上升,此后又缓慢降低。用氮素平衡帐中的亏缺量和缺量扣除氨的损失量后计为硝化-反硝化损失量的结果表明,水稻控制氮肥氮的硝化-反硝化损失量占施氮量的3.46%,而尿素氮在硝化-反硝化损失量却高达37.75%,肥料氮在土壤中的残留主要集中在0~35cm的土层中,达91.4%-91.5%,残留在35cm以下土层中的氮甚微,水稻控制氮肥残留在土壤中的氮量略高于尿素处理。水稻控释氮肥利用率高达73.8%,比尿素高出34.9%,水稻控释氮肥氮利用率高的原因是因氮从颗粒中缓慢释放、受淋溶、氨挥发、尤其受硝化-反硝化途径损失的氮较少。在施等氮量的条件下,施用水稻控制氮肥的稻谷产量比尿素的增产25.5%,达到p=0.05的显著水平。  相似文献   

12.
辽河下游平原不同水分条件下稻田氨挥发   总被引:5,自引:0,他引:5  
应用通气密闭室法,研究了辽河下游平原不同水分条件下潮棕壤稻田生态系统施用氮肥后的NH3挥发.结果表明稻田施用氮肥后有明显NH3挥发损失,整个生长期间总挥发量为11.64~34.01 kg N·hm-2,占施氮量的4.66%~11.66%;不同施肥时期的损失量为分蘖期>孕穗期>移栽前,挥发高峰出现在施氮肥后的2~4 d内.稻田水分状况对NH3挥发损失具有重要影响,田面积水条件下NH3挥发总量和肥料氮损失率都较大,且不同施氮水平间差异显著(P<0.05),挥发量随施氮量的增加而增加;田面不积水条件下NH3挥发量相对较小.氮肥用量、田面水NH4 浓度和pH是影响NH3挥发的重要因素;氮肥用量为180 kg N·hm-2时,不同磷水平对NH3挥发的影响不显著.  相似文献   

13.
Witt  C.  Cassman  K.G.  Olk  D.C.  Biker  U.  Liboon  S.P.  Samson  M.I.  Ottow  J.C.G. 《Plant and Soil》2000,225(1-2):263-278
The effects of soil aeration, N fertilizer, and crop residue management on crop performance, soil N supply, organic carbon (C) and nitrogen (N) content were evaluated in two annual double-crop systems for a 2-year period (1994–1995). In the maize-rice (M-R) rotation, maize (Zea mays, L.) was grown in aerated soil in the dry season (DS) followed by rice (Oriza sativa, L.) grown in flooded soil in the wet season (WS). In the continuous rice system (R-R), rice was grown in flooded soil in both the DS and WS. Subplot treatments within cropping-system main plots were N fertilizer rates, including a control without applied N. In the second year, sub-subplot treatments with early or late crop residue incorporation were initiated after the 1995 DS maize or rice crop. Soil N supply and plant N uptake of 1995 WS rice were sensitive to the timing of residue incorporation. Early residue corporation improved the congruence between soil N supply and crop demand although the size of this effect was influenced by the amount and quality of incorporated residue. Grain yields were 13-20% greater with early compared to late residue incorporation in R-R treatments without applied N or with moderate rates of applied N. Although substitution of maize for rice in the DS greatly reduced the amount of time soils remained submerged, the direct effects of crop rotation on plant growth and N uptake in the WS rice crops were small. However, replacement of DS rice by maize caused a reduction in soil C and N sequestration due to a 33–41% increase in the estimated amount of mineralized C and less N input from biological N fixation during the DS maize crop. As a result, there was 11–12% more C sequestration and 5–12% more N accumulation in soils continuously cropped with rice than in the M-R rotation with the greater amounts sequestered in N-fertilized treatments. These results document the capacity of continuous, irrigated rice systems to sequester C and N during relatively short time periods. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

14.
Agronomic studies were conducted to examine the effect of fertilizer N on black point incidence in Fielder soft white spring wheat (Triticum aestivum L. em Thell.). Black point incidence rose with increases in the amount of N supplied either as fertilizer applied during the growing season in irrigation water or as soil N, specifically nitrate, from fertilizer N application in previous years. A comparison of four different irrigation regimes demonstrated that black point incidence was highest under frequent irrigation (irrigate to field capacity at 75% available moisture) and lowest under conventional irrigation (irrigate to field capacity at 50% available soil moisture). In each irrigation regime, disease incidence increased as N rates were raised from 0 to 120 kg ha-1. A residual fertilizer-N study demonstrated in 1985 and 1986 that black point incidence generally rose with increasing levels of nitrogen from either preplant applications in the spring or soil nitrate from the previous year. However, additions of fertilizer N were shown to slightly reduce black point incidence at soil nitrate levels above 150 kg ha-1. A two-year fertilizer N study demonstrated that in treatments receiving the same amount (90 kg ha-1) of fertilizer N, the amount broadcast as a preplant treatment versus the amount applied in irrigation water in a fertigation treatment had no effect on black point incidence, but all fertilized treatments had significantly higher levels of disease than the unfertilized check.Contribution no. 3879016  相似文献   

15.
基于文献数据,研究了南方不同稻区水稻生长期氧化亚氮排放(N2O排放)、硝态氮或铵态氮淋洗(N淋洗)、硝态氮或铵态氮径流(N径流)、氨挥发(NH3挥发)的差异及其影响因素.结果表明: N2O排放、N淋洗和N径流主要发生在长江流域单季稻区,损失量分别为1.89、6.4和10.4 kg N·hm-2,损失率分别为0.8%、3.8%和5.3%,较高施氮量和稻田土壤干湿交替可能是主要原因;NH3挥发主要发生在华南晚稻,损失量和损失率分别为54.9 kg N·hm-2和35.2%,晚稻生长期较高的温度可能是NH3挥发较大的主要原因.田间优化管理措施减少某一途径氮损失的同时可能会增加另一种途径氮素损失,实际生产中应综合考虑田间管理措施对各种活性氮损失的影响,活性氮损失量随着水稻产量水平的提高而增加,主要是因为施氮量也在逐渐增加.随着氮肥偏生产力的增加,N2O排放、N淋洗和N径流损失率逐渐下降,因此,努力减小单位产量的氮损失,是协同提高作物产量和氮肥利用效率的重要途径.  相似文献   

16.
Two pilot composting experiments were conducted to investigate the effect of low initial C/N ratio on the composting of swine manure with rice straw by measuring physical and chemical parameters. The results showed that the thermophilic duration of bin 1 and bin 2 was long enough to satisfy the sanitary standard, and swine manure could reach maturity. Bin 1 containing larger amount of swine manure and less amount of rice straw showed a higher nitrogen loss (8%), shorter thermophilic phase, and longer maturity time (about 2 weeks) than bin 2. However, economical analysis showed a lower initial C/N ratio (20) could reduce 172 kg rice straw per ton fresh swine manure than a higher C/N ratio (25), and more swine manure could also be treated. Therefore, a low initial C/N ratio (20) could be suggested in the composting of swine manure with rice straw.  相似文献   

17.
稻田氮肥的氨挥发损失与稻季大气氮的湿沉降   总被引:56,自引:6,他引:50  
通过田间小区与大田试验,对稻季期间氮肥的氨挥发损失和大气氮湿沉降状况进行了收集和监测。结果表明,每次施肥后的1~3日内氨挥发损失达到最大值,氨挥发损失受当地气候条件(如光照、温度、湿度、风速、降雨量)、施肥时期以及田面水的NH4^+-N浓度等因素的影响,大气氮湿沉降与施肥量和降雨量有关,稻季内由湿沉降带入土壤或地表水中的氮为7.51kg·hm^-2。其中,NH4^+-N的比例为39.8%~73.2%,平均为55.5%;稻季中总氨挥发量与湿沉降的NH4^+-N平均浓度和总沉降量的相关系数分别达到0.988和0.996,呈显著相关性。  相似文献   

18.
施肥对巢湖流域稻季氨挥发损失的影响   总被引:6,自引:0,他引:6  
采用通气法对巢湖流域稻季土壤氨挥发原位监测,研究了不同施肥量及秸秆还田处理对稻季氨挥发的影响。结果表明,氨挥发峰值发生在施肥后的第1-3 天,氨挥发损失主要集中于施肥后的1周。2010年整个稻季氨挥发净损失量为7.22-14.20 kg/hm2,占氮肥施用量的4.59%-6.64%,基肥期是主要的氨挥发时期,约占总氨挥发量的60%,穗肥期氨挥发总损失量最小。常规施肥处理氨挥发总损失量最大,与常规施肥相比,优化施肥、减量化施肥均能减少稻田土壤氨挥发损失1%-2%,氮磷肥减量同时秸秆还田处理氨挥发量最小,其总氨挥发量占常规处理的54%。施肥后的1-2d内田面水中的NH4+-N浓度达到最大值,且各施肥处理的氨挥发量与同期田面水中的NH4+-N浓度呈线性正相关。结合经济效益和环境效应分析发现,秸秆还田处理可减少氨挥发损失,同时获得较高的经济效益,适宜在巢湖流域水稻季推广。  相似文献   

19.
Cissé  Madiama  Vlek  Paul L. G. 《Plant and Soil》2003,250(1):95-104
Nitrogen losses are notoriously high in flooded rice fertilized with urea. An Azolla intercrop can reduce such losses by immobilizing urea-N during periods of potentially high N-loss. The reduction in N loss linked with the absorption and remobilization of urea-N by Azolla, was studied in two greenhouse experiments conducted in Goettingen (Germany). Grain yield and N recovery were positively influenced by Azolla more than doubling grain yield and N uptake as compared to the split application of 300 mg N pot–1 alone (Exp. 1). In the second experiment, the yield increase was 78.3% with single applications of 97.5 and 68.4% after a split-application of a total of 195 mg N pot–1. In both years the effect of urea and Azolla combined exceeded that of the sum of the factors alone, a clear positive synergistic effect on yield and N uptake by rice. Azolla effectively competed with the young rice plants for applied urea, capturing nearly twice the urea-N than the rice plants up to tillering in experiment 1. In the second experiment, 64.6 mg N of the 97.5 mg applied early in the season was immobilized by Azolla within 2 weeks. This represented 63.1% of the total N accumulated in the Azolla. The fraction of Azolla-N derived from urea sank to 36.4 mg within 4 weeks and only 27.2 mg at maximum tillering as a result of Azolla senescence and N-release. Of this 64.6 mg urea N immobilized 28.7% is eventually taken up by the standing rice plant, representing 43.1% of the remineralized, urea-derived Azolla N. Following the second urea application, only 17.9 mg N were immobilized in the Azolla biomass during the 2 weeks, of which 6.9 mg pot–1 were still retained in the Azolla at maturity. At this stage, rice is the more effective competitor for applied N. As much as 42.1% of this immobilized N finds its way into the rice by maturity. Thus, Azolla contributed to the conservation of N in the system, particularly of the urea applied early in the season. Loss of N from the system amounted to no more than 15%. Although the early-applied N directly recovered by the rice plant was low (20%), 2/3 of the N captured by Azolla following this first urea application was released to the system by the time of rice harvest, over 40% of which was available to the rice plant. Azolla thus appears to act as a slow release fertilizer.  相似文献   

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