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1.
腐植酸尿素对玉米生长及肥料氮利用的影响 总被引:13,自引:5,他引:8
2.
Availability of N from Casuarina residues and inorganic N to maize, using 15N isotope techniques 总被引:1,自引:0,他引:1
The contribution of N from Casuarina equisetifolia (casuarina) residues to maize with inorganic N (ammonium sulphate) supplementation was studied in a pot experiment using
15N labelling techniques. A single rate of N application of 100 mg N kg–1 soil was applied as N-ammonium sulphate in combination with casuarina residues in the proportions 100 : 0; 75 : 25; 50 : 50;
25 : 75 and 0 : 100, respectively. The directly 15N-labelled casuarina residue and indirect labelling (unlabelled casuarina + 15N soil) were compared to estimate the proportion and amount of N derived from the residue and fertilizer. The application
of ammonium sulphate at a high rate significantly affected shoot dry matter (P<0.05) and likewise reduced the contribution of soil-derived N compared to residues. Total recoveries by maize of residue
N and applied fertilizer N averaged 11% and 24%, respectively. Residue and fertilizer use efficiencies were not influenced
by the addition of different rates of fertilizer or residue. The estimation of the contribution of N from different sources
showed that direct measurement of the 15N-labelled organic source was more reliable.
Received: 10 September 1997 相似文献
3.
不同来源氮素配合施用提高东北春玉米氮素利用与改善土壤肥力的可持续性研究 总被引:4,自引:2,他引:2
4.
施氮方式对玉米氮吸收及土壤养分、N2O排放的影响 总被引:2,自引:0,他引:2
通过3年定位试验,研究不施氮肥、农民传统施氮、比传统施氮减量20%、减氮20%配合秸秆还田、减氮20%施用包膜尿素处理对玉米年际产量、植株氮吸收、土壤养分变化及N2O排放的影响。结果表明:包膜尿素处理产量最高,比空白处理增产18.50%,比产量次高的秸秆还田处理仅增产0.51%,二个处理间产量差异不显著;包膜尿素处理和秸秆还田处理可增加植株氮的吸收固定;秸秆还田处理的肥料利用率和植株总氮积累量高于包膜尿素处理,但其氮收获指数最低,为0.606,从注重品质角度,包膜尿素处理的效果略好于秸秆还田处理;各施肥处理都比空白处理提高了土壤主要养分含量,但从有机质、全氮、有效磷和速效钾含量提升综合评价,包膜尿素处理和秸秆还田处理对土壤的培肥作用好于农民习惯施肥处理;秸秆还田处理的N2O-N季节排放总量和排放系数都最高,分别为N 1.50 kg·hm-2·季-1和0.27。因此,从保产稳产、培肥地力、提升品质、减少N2O排放综合考虑,建议推广比农民习惯施肥量减少氮量20%的包膜尿素一次性施入在玉米生产中的应用。 相似文献
5.
不同氮肥水平下水稻产量以及氮素吸收、利用的基因型差异比较 总被引:55,自引:13,他引:55
采用田间试验在施氮量为06、0、120、1802、40、3003、60.kg/hm27个水平下研究了不同水稻子粒产量、产量构成因子以及氮素吸收和利用的差异。结果表明,水稻品种4007的子粒产量在各个施氮水平下显著高于品种ELIO对氮肥的响应度高。施氮水平显著影响子粒产量构成因子。有效穗数与子粒产量存在显著正相关:ELIO和4007的相关系数(r)分别为0.839**和0.933**,表明有效穗数对水稻子粒产量起着非常重要的作用。本试验条件下,ELIO和4007获得最高产量所需的有效穗数分别为332、561个/m2;两者的氮素吸收效率在各施氮素水平下差异很小,均随着施氮量的增加而增加,而氮素利用效率均随着施氮量的增加而下降。4007的氮素利用效率在各个施氮水平下显著高于ELIO,较高的氮素收获指数(NHI)是主要原因之一。水稻氮素利用效率与成熟期茎秆、叶片的氮含量显著负相关,说明开花期后植物将吸收的氮素从营养器官有效地转运到子粒中是氮素利用效率高的重要原因之一。 相似文献
6.
为解决季节性干旱导致云南省烤烟减产的问题,开展了烟秆生物炭改善云南典型植烟土壤持水性的研究,进而为生物炭在烟叶生产中的推广应用提供依据。通过盆栽试验研究了穴施不同用量生物炭(0%、1%、4%、7%、11%干土重)对黄红壤(YR)、黄棕壤(YB)、赤红壤(LR)、水稻土(PD)和紫色土(PE)5种典型植烟土壤持水性的影响。结果表明:施用生物炭显著提升5种土壤持水性,一次浇水周期较对照延长1~5 d,对烤烟产量的影响因土壤类型而异。其中,1%~11%范围内,YR土壤持水性随着生物炭用量增加而降低,施用生物炭1%土壤持水性最好,与对照相比,烤烟生育期总补水量显著降低59.5%,土壤含水量平均下降速度显著下降50.4%,水分利用效率显著提高32.3%。但施用生物炭导致烤烟最高减产37.9%。YB土壤持水性随着生物炭用量增加呈升高趋势,施用生物炭11%最好,相比对照,烤烟生育期总补水量显著降低41.3%,水分利用效率显著提高93.3%,产量无显著提高。随着生物炭用量增加,LR土壤持水性先增加后降低,施用生物炭4%效果最好,烤烟产量和水分利用效率分别较对照显著提高46.2%和68.8%。随着生物炭用量增加,PD和PE的土壤持水性及烤烟产量呈现先增加后降低趋势,施用生物炭7%效果最佳,与对照相比,烤烟产量分别显著提高17.0%和55.6%,总补水量分别显著降低40.3%和26.8%,土壤含水量平均下降速度分别显著降低37.4%和36.5%,水分利用效率分别显著提高94.4%和121.7%。烟秆生物炭对于云南典型植烟土壤的保水效果明显,其最佳施用量视土壤类型而异。 相似文献
7.
Zunqi Liu Na Xu Ting Cao Zhengfeng An Xu Yang Tianyi He Tingting Yang Jun Meng 《European Journal of Soil Science》2023,74(4):e13403
Soil nitrogen (N) transformation is vital in determining farmland N availability. Although many studies have investigated the effect of biochar on N retention and loss via leaching and gaseous emissions, few have determined the dynamics of gross N transformation during crop growth in long-term biochar-amended soils and compared the effect of the biochar with that of its feedstock. In this study, we conducted a five-time field measurement of soil gross N turnover rates via 15N isotope pool dilution during maize growth in 2021. Three treatments were employed, including no amendment, biochar and straw applied annually at rates of 2.63 and 7.50 t ha−1, respectively, since 2013. The results showed that biochar did not change the rate of gross N mineralisation when compared with no amendment, but straw increased it by 139% in August, resulting in significantly higher cumulative gross N mineralisation than biochar and no amendment (701 vs 489 and 499 mg kg−1 in 200 d). The inconsistent influence was attributed to the fact that inherent biochar-N was recalcitrant and could not be mineralized like the straw. The gross nitrification rate was decreased by 72.9% and 77.4% by biochar and straw application, respectively, in June relative to no amendment, but then it increased from July to August in the straw treatment as a result of the elevated gross N mineralisation rate. The decreased nitrification in the biochar treatment was an outcome of the synergetic effect of a low ammonium pool (−59.4%) and a high gross ammonium immobilisation rate (+263%), which was likely due to excessive fertilizer N loss and abiotic adsorption to biochar. Meanwhile, biochar amendment inhibited bacterial 16S and fungal ITS genes, as well as ureC and bacterial and archaea-amoA gene copies. In conclusion, straw is more effective than biochar at improving soil N transformation and availability in the long term. 相似文献
8.
施氮对不同土壤肥力下玉米氮素吸收和利用的影响 总被引:19,自引:7,他引:19
采用田间试验,研究了吉林省高、低肥力条件下不同氮肥用量对春玉米产量及氮素吸收和利用的影响。结果表明,范家屯和榆树试验点的最高产量施氮量分别为N 251和206 kg/hm2,最佳经济施氮量分别为N 227和134 kg/hm2。两试验点的最高产量和最佳经济产量均表现为范家屯试验点高于榆树试验点。适宜增加施氮量可显著提高范家屯低肥力试验点玉米氮素最大吸收速率和吸收总量,提前最大吸收速率出现的天数。玉米收获后030 cm土层残留的硝态氮呈现出随着施肥量的增加而增加的趋势,其中榆树高肥力试验点土壤硝态氮积累明显高于范家屯低肥力土壤。范家屯低肥力试验点氮素的农学利用率、表观回收率和偏因子生产力高于榆树高肥力试验点。范家屯低肥力条件下可通过增施氮肥提高产量; 而榆树高肥力条件下则可通过控制氮肥用量达到提高产量和氮肥利用率的双重目标。 相似文献
9.
Alpha Y. Kamara Sylvester U. Ewansiha Abebe Menkir 《Archives of Agronomy and Soil Science》2013,59(2):195-207
Maize (Zea mays L.) is an important food crop in the Guinea savannas of Nigeria. Despite its high production potential, drought, Striga hermonthica parasitsim, and poor soil fertility particularly nitrogen deficiency limit maize production in the savannas. Breeders at IITA have developed drought- and Striga-tolerant cultivars for testing, dissemination, and deployment in the region. Information on the response of these cultivars to N fertilization is, however, not available. This study evaluated grain yield, total N uptake (TNU), N uptake (NUPE), N utilization (NUTE), and N use efficiency (NUE) of selected maize cultivars along with a widely grown improved maize cultivar at two locations in the Guinea savannas of northern Nigeria. Maize grain yield increased with N application. The average grain yield of the maize cultivars was 76% higher at 30, 156% higher at 60, and 203% higher at 120 kg N ha?1 than at 0 kg N ha?1. This suggests that N is a limiting nutrient in the Nigerian savannas. Five drought-tolerant cultivars produced consistently higher yields when N was added at all levels. These cultivars had either high NUPE or NUTE confirming earlier reports that high N uptake or NUTE improves maize grain yield. The study also confirms earlier reports that maize cultivars that are selected for tolerance to drought are also efficient in uptake and use of N fertilizer. This means that these cultivars can be grown with application of less N fertilizer thereby reducing investment on fertilizers and reduction in environmental pollution. 相似文献
10.
We did a pot experiment with three different fertilized soils (no fertilizer (No-F), inorganic fertilizer nitrogen, phosphorus and potassium (NPK), manure plus inorganic fertilizer (MNPK)) from a 19-year fertilizer trial. Three N treatments, (1) no N, (2) 100 mg/kg urea-15N (N), (3) 50 mg/kg urea-15N + 50 mg/kg corn straw-N (1/2N + 1/2S), were applied to each soil. The residual soil from the same treatments was used to grow second wheat crop. The MNPK soil had significantly higher nitrogen use efficiency (NUE) in the first growing season, and lower N loss than the NPK, and No-F soils. The 1/2N + 1/2S treatment decreased NUE on each soil, even though the MNPK soil still had highest NUE and lowest N loss. The residual 15N use efficiency (RNUE) in 1/2N + 1/2S treatment of MNPK soil was higher than NPK and No-F soils. We concluded that long-term application of manure plus inorganic fertilizer increased NUE and decreased N loss. 相似文献
11.
施氮对春玉米氮素利用及农田氮素平衡的影响 总被引:17,自引:8,他引:17
田间试验研究了玉米对不同土壤氮素供应水平下作物氮素吸收利用、土壤氮素供应以及农田氮素平衡的影响。结果表明,玉米产量随施氮量的增加而显著提高,当施氮量高于N 240 kg/hm2时,产量有减少趋势;氮素当季利用率随施氮量的增加逐渐降低。土壤中硝态氮含量在玉米整个生育时期呈现先迅速下降后缓慢升高的趋势;玉米成熟期,施氮处理的各层土壤中硝态氮含量显著高于不施氮处理,各层硝态氮含量基本随施氮量的增加而升高。适量施氮促进玉米对氮素的吸收和利用,进而提高玉米生物量和产量;过量施氮导致硝态氮在土壤中大量累积,提高了硝态氮淋溶风险。施氮处理显著提高了收获后土壤中残留无机氮(Nmin),土壤残留Nmin随施氮量的增加而增加;当施氮量高于N 240 kg/hm2时,残留Nmin有下降趋势。氮素表观损失随施氮量的增加而增加。在本试验条件下,综合产量、氮肥利用率和土壤硝态氮累积情况考虑,合理施氮量应控制在N 1802~40 kg/hm2左右。 相似文献
12.
不同施肥深度红地球葡萄对15N的吸收、分配与利用特性 总被引:2,自引:0,他引:2
【目的】研究不同施肥深度葡萄对氮素吸收、 利用和分配的影响,为指导葡萄科学合理地施用氮肥提供依据。【方法】以河北葡萄主产区怀来地区15年生红地球葡萄为试材,通过不同深度(0 cm、 20 cm、 40 cm)春施15N-尿素,分析葡萄树体15N的吸收、 分配和利用规律。【结果】20 cm中层施肥红地球葡萄的产量最优,达22.77 t/hm2,果实Vc含量最高,达117.2 mg/kg,与表层(0 cm)施肥(产量16.22 t/hm2和Vc 103.8 mg/kg)和40 cm深层施肥(产量19.32 t/hm2和Vc 102.3 mg/kg)均存在显著差异;各生育期细根及其他各器官的Ndff 20 cm中层施肥均显著高于表层(0 cm)和深层(40 cm)施肥; 3个施肥深度,植株各器官在同一时期的15N分配率无显著差异,且整个生育期各器官15N分配率表现出相同的趋势,可见不同的施肥深度对 15N在各器官间的迁移和分配影响较小; 植株对15N-尿素的利用率随物候期的推移均呈升高的趋势,盛花期最低,且20 cm中层施肥葡萄树体对氮素的吸收能力最强,氮素利用率最高,四个时期分别为7.36%、 14.70%、 20.24%和24.54%,均大于表层撒施(7.05%、 10.74%、 12.70%和16.54%)和40 cm深层施肥(5.39%、 7.31%、 10.93%和13.62%);果实膨大期,整株15N利用率为后部中部前部,且地上部为叶果干枝,地下部为细根粗根主根,各施肥深度表现一致,且3个不同施肥深度,同一部位植株的果实、 叶、 枝、 干和根的15N利用率均以20 cm沟施最高,显著高于表施和40 cm沟施。【结论】20 cm中层施肥葡萄树体对氮素的吸收征调能力最强,各器官的氮素利用率最高,施肥深度对红地球葡萄树体氮素的吸收、 利用具有显著的影响,对树体氮素的分配影响较小,综合考虑,河北主产区红地球葡萄以20 cm施肥深度为最佳。 相似文献
13.
通过田间试验研究了生物炭不同施用量(0、10、20、40、80 t/hm2)对玉米茎秆中的钾含量、茎秆形态特征、茎秆质量性状及产量的影响。结果表明:土壤中施加生物炭能够促进玉米茎秆各节的钾含量,并且生物炭的施入矮化了蜡熟期玉米茎基部3~5节的节间长,增大了玉米茎粗,增强了茎秆弹力和茎秆外皮穿刺力,增加了茎秆干物质积累,使茎秆粗壮、坚韧。随着生物炭施用量增加对玉米茎秆钾含量、茎秆性状及产量的影响均表现出先增大后降低的趋势。施炭量40 t/hm2为最优施用量,产量达13261 kg/hm2,较对照提高了25.99%。当施炭量为80 t/hm2时茎秆中的钾含量、茎秆形态特征、茎秆质量性状及产量的提高幅度略有下降。 相似文献
14.
用15N研究吉林黑土春玉米对氮肥的吸收利用 总被引:3,自引:1,他引:3
用1 5N示踪技术在吉林省中部黑土地区进行田间微区试验 ,研究不同氮肥追施深度与次数对氮肥利用率的影响。结果表明 ,两次深追肥处理 ( 1 0~ 1 5cm)比当地传统的垄上一次浅追肥处理 ,肥料氮的利用率从 2 4 5 %提高到 39 0 % ,氮肥深施并增加追肥次数能有效地提高利用率 ;肥料氮的总损失为 1 6%~ 2 7% ,土壤残留率为 34%~ 5 4 % ;吸收的标记肥料氮中有 1 /2是在 8月 1日以后籽粒形成期被玉米吸收利用的 ;氮肥损失的 70 %~ 90 %是在追肥以后 35天期间发生的 ;施肥的激发效应较弱 相似文献
15.
氮肥减量后移对玉米产量和氮素吸收利用及农田氮素平衡的影响 总被引:16,自引:1,他引:16
田间试验研究了不同土壤氮素供应水平和底追比例对玉米籽粒产量、土壤硝态氮和农田氮素平衡的影响.与农民习惯施肥(N 240 kg·hm-2,基肥和大喇叭口追肥为1∶2)相比,氮肥减量10%(N 216 kg· hm-2)和20% (N 192kg·hm-2)处理的玉米产量并没有降低,而氮肥利用效率显著增加.氮肥减量后移可使耕层无机氮供应较好地与作物吸收同步,降低收获期0~100 cm土层的硝态氮积累,减少氮素的田间表观损失,提高氮肥利用效率.在本试验条件下,氮肥减量20%(N 192 kg·hm-2),基追比例1∶3∶1处理的植株产量、地上部植株氮肥吸收利用率、氮肥农学利用率均较高,0~100 cm土层未出现硝态氮明显累积,氮素表观损失量最少,是最佳施氮运筹模式. 相似文献
16.
潮土长期施用生物炭提高小麦产量及氮素利用率 总被引:6,自引:1,他引:6
该文于2011年起在黄淮海典型潮土区建立的秸秆炭化还田定位试验的基础上,系统观测了2011至2017年时间段秸秆生物炭连续施用下小麦生长及氮吸收情况,分析了产量构成因素,地上干物质及氮累积,关键生育期叶面积指数(LAI)、叶绿素相对含量(SPAD值)和群体数量等与小麦增产的关系,并监测了长期生物炭施用下土壤有机碳(SOC)与全氮(TN)含量的变化。该试验采用小麦/玉米周年轮作,设每季0、2.25、6.75和11.25 t/hm2四个秸秆生物炭处理(分别表示为BC0(对照)、BC2.25(低)、BC6.75(中)和BC11.25(高))。结果表明,与BC0相比,BC2.25仅在2015/2016季提高小麦产量,对其他5季无明显效果;BC6.75则在2014/2015、2015/2016和2016/2017的后3季显著提高小麦产量;而BC11.25提高了2014/2015和2015/2016季小麦产量。尽管生物炭处理对各季小麦产量影响各异,但6季各处理平均产量数据显示低、中、高量生物炭处理均可提高小麦产量7.0%~8.5%、生物量5.2%~10.8%和氮肥偏生产力6.8%~8.6%,且3个处理间并无差异;中、高量生物炭处理还可提高小麦秸秆产量11.4%~12.6%、穗数10.1%~11.2%、籽粒氮积累量9.4%~11.2%、秸秆氮积累量17.4%~23.8%、地上部氮积累量13.3%~20.9%。生物炭施用在促进小麦生长和氮吸收利用的作用方面与其增加小麦生育期LAI和SPAD值一致,具体表现为低、中、高量生物炭处理均可明显增加2015/2016和2016/2017两季小麦主要生育期群体数量以及增加两季拔节期、抽穗期SPAD值和LAI值。3个生物炭处理对提高2011/2012土壤SOC含量和2011—2014年土壤TN含量无明显效果,中、高量生物炭处理可增加2012—2017年土壤SOC含量32.6%~215.6%和2014—2017年土壤TN含量20.0%~36.8%。研究表明,合理施用生物炭能够促进黄淮区潮土农田冬小麦籽粒产量和氮肥偏生产力以及促进小麦生长和地上部氮素吸收,进而起到提高土壤肥力和增加土壤固碳的作用。 相似文献
17.
生物炭与氮肥配施对土壤肥力及红枣产量、品质的影响 总被引:11,自引:4,他引:11
18.
针对科尔沁地区粮饲兼用玉米高产栽培中氮肥用量偏多的问题,研究氮肥施用对科尔沁地区粮饲兼用玉米氮素积累及氮效率的影响。2012~2013年两个玉米生长季,以"金山10"为试验材料,设5个施肥处理:不施氮肥(CK);低氮180 kg/hm2(L);推荐施氮量260 kg/hm2(R);氮肥配施有机肥,总施氮量260 kg/hm2(C);农民传统施氮270 kg/hm2(F)。结果表明:在5个施肥处理中,以氮肥配施有机肥处理玉米产量最高,该处理生物产量和经济产量分别比其它施肥处理增加了3.52%~62.77%和6.29%~56.02%。氮肥利用效率表现为CK处理最高,氮肥施用量高时氮肥利用效率低。氮肥配施有机肥处理氮肥回收效率、生理效率和农学效率高于其它施肥处理,该处理这3项指标和其它施肥处理间差异达到极显著水平(P0.01),该处理氮肥回收效率、生理效率和农学效率分别比低氮处理高10.70%~16.22%、2.81%~6.21%和5.16%~6.90%,比推荐施氮处理高3.44%~7.36%、1.62%~4.49%和3.42%~3.50%,比农民传统施氮处理高4.89%~8.60%、1.11%~5.70%和3.79%~4.49%。增施氮肥和氮肥配施有机肥提高了粮饲兼用玉米氮素积累量,后者氮素积累总量比其它施肥处理分别高1.88~11.42g/m2(2012年)和0.86~11.88 g/m2(2013年),比推荐施氮和农民传统施氮处理分别高0.89~1.71 g/m2和0.86~1.93 g/m2。科尔沁地区粮饲兼用玉米高产栽培中,氮肥配施有机肥有利于提高粮饲兼用玉米的产量,增加氮素积累量,是该地区比较合理的施肥方式,上述研究以期为科尔沁地区粮饲兼用玉米的合理施肥提供理论依据。 相似文献
19.
氮肥减量后移对土壤氮素供应和夏玉米氮素吸收利用的影响 总被引:21,自引:10,他引:21
采用田间试验研究了氮肥减量后移对土壤氮素供应和夏玉米氮素吸收利用的影响。结果表明,与农民习惯施肥(N 240 kg/hm2,基肥和大喇叭口追肥为1∶2)相比,氮肥减量后移(N 168 kg/hm2,基肥、大喇叭口肥和吐丝肥为1∶3∶1)处理的产量、植株干物质积累量、植株氮积累量和积累速率均没有降低,而氮肥利用率显著增加。氮肥减量后移可使耕层无机氮供应较好地与作物吸收同步,降低收获期0—100 cm土层硝态氮积累,减少氮素的田间表观损失。基于夏玉米不同生育阶段的氮素吸收特征进行氮肥减量后移可节省氮肥30%,是较为理想的氮素施用方式。 相似文献
20.
Waqas Ahmad Minhas Noman Mehboob Ahmad Nawaz Sami UL-Allah 《Journal of plant nutrition》2020,43(9):1356-1368
AbstractThis study was designed to investigate the effect of biochar on maize production and nutrient retention with recommended full and half dose of nitrogen (N) and phosphorus (P) nutrition in loamy soil. In the first study, maize was grown in pots with four levels of biochar (0, 2, 4, and 6?t?ha?1) under two levels of NP fertilizer, viz. recommended (200–150?kg?NP?ha?1) and it’s half (100–75?kg?NP?ha?1) dose. The prominent improvement in plant roots traits, leaf area, plant growth, morphological and yield-related parameters were observed with addition of biochar at 2 and 4?t?ha?1; while, plant height, number of grains per cob, grains and biological yield decreased with biochar addition 6?t?ha?1 along with full dose of NP nutrition. In subsequent field studies, two levels of biochar along with control (0, 2, 4?t?ha?1) were investigated. The more improvement in root growth, leaf area and crop growth was observed when biochar was applied at 2?t?ha?1 with full NP nutrition. Biochar application at 2?t?ha?1 with full NP nutrition produced the highest grain yield (6.64?t?ha?1); however, biochar addition (2?t?ha?1) with half NP nutrition resulted in better grain yield than full dose of NP to enhance maize production as compared with full dose of NP without biochar. Therefore, biochar addition (2?t?ha?1) with half-recommended dose of NP prominently improved the maize productivity in loamy soil and serve as better in replacement of full dose of NP fertilizer. 相似文献