共查询到18条相似文献,搜索用时 46 毫秒
1.
生长后期不同断根及追钾对云南烤烟含钾量的影响 总被引:5,自引:0,他引:5
田间试验研究生长后期不同断根及追钾对云南烤烟含K量的影响结果表明 ,不同断根时间、断根部位和断根数量以及断根时追K与否及追施K素的形态等均对烤烟烟叶含K量的影响不同 ,烟株生长后期实施断根和追施K肥等措施可提高根系吸收活力和增加烟叶含K量。其中打顶时断根同时追施速效钾肥为最佳处理 ,其烟株各部位叶片含K量和上部叶片干物质量增幅最高 ,且易于实际操作。 相似文献
2.
应用86Rb研究烤烟分次施硝酸钾的钾素营养效应,结果表明:两次追施硝酸钾比全基肥,烤烟脚叶成熟期吸收硝酸钾中钾素提高45.08%;吸收土壤中钾素提高46.99%;吸收总钾量提高45.91%;烤烟干物质重量提高23.11%,烟叶含钾量提高34.55%.烤烟不同生育期钾素营养效应:两次追施硝酸钾烤烟前期(现蕾期)烟叶中含钾量比后期(脚叶成熟期)高出32.08%,硝酸钾中钾素利用率后期比前期高出40.44%,烤烟前期吸收钾素主要来自硝酸钾、烤烟后期吸收钾素主要来自土壤. 相似文献
3.
打顶时不同追钾对云南烤烟含钾量的影响 总被引:1,自引:0,他引:1
田间试验研究打顶时不同追K对云南烤烟含K量的影响结果表明 ,打顶时追施K肥可提高烤烟叶片含K量和烟株吸K量。烤烟田间土壤补施K肥 (包括根部集中施用K2 SO4、KNO3 和缓效钾 )处理其提高烟叶含K量效应明显优于叶面喷施K肥 (包括叶面喷施KH2 PO4、KNO3 和K2 SO4)处理 ,而 3种土壤追施K肥处理以施K2 SO4和KNO3 效果最佳 ,烤烟生育后期追施K肥提高中、上部叶片含K量效果最佳 ,顶叶含K量由对照的 2 .6 %增至3.2 %。 相似文献
4.
烤烟分次施硝酸钾的钾素营养效应研究 总被引:5,自引:0,他引:5
应用^86Rb研究烤烟分次施硝酸钾的钾素营养效应,结果表明:两次追施硝酸钾比全基肥,烤烟脚叶成熟期吸收硝酸钾中钾素提高45.08%;吸收土壤中钾素提高46.99%;吸收总钾量提高45.91%;烟干物质重量提高23.11%,烟叶含钾量提高34.55%。烤烟不同生育期钾素营养效应:两次追施硝酸钾烤烟前期(现蕾期)烟叶中含钾量比后期(脚叶成熟期)高出32.08%,硝酸钾中钾素利用率后期比前期高出40.4 相似文献
5.
为了探讨根区施用钾肥对黄淮烟区石灰土烤烟产量和钾素吸收利用的影响,采用田间试验,研究根区枸溶性钾肥与硫酸钾配施对烟叶产量、钾含量以及钾素吸收利用的影响。试验共设9个处理,分别为CK、CP_1、CP_2、WP_1、WP_2、CW_(1-50%)、CW_(2-50%)、CW_(1-75%)与CW_(2-75%)(CK表示对照,CP表示只施用枸溶性钾肥,WP表示只施用硫酸钾,CW表示枸溶性钾肥与硫酸钾配施;数字1、2表示施用量分别为225、300 kg/hm~2,百分数表示硫酸钾的配施比例)。结果表明,烟叶钾含量随生育期推进呈下降趋势,不同施肥处理各时期烟叶钾含量均高于CK;不同施肥处理下土壤钾素在垂直和水平方向上迁移距离较小,根区钾肥施用可直接有效的增加根区土壤速效钾含量;施钾(K_2O)300 kg/hm~2与225 kg/hm~2相比,可显著提高烟叶钾含量和钾肥利用效率(P0.05);CW_(2-75%)处理下烟叶钾含量、土壤速效钾含量和钾肥利用率最高,而CW_(2-50%)处理下烟叶产量最高。综上所述,根区施用含75%硫酸钾的枸溶性钾肥300 kg/hm~2(CW_(2-75%)处理)可有效改善黄淮烟区石灰土钾素养分,提高该区烤烟产量、钾含量与钾肥利用效率,达到优质高产。 相似文献
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水钾一体化对烤烟钾素吸收及生长的影响 总被引:5,自引:1,他引:4
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旨在探究钾用量与灌溉方式互作对土壤-烤烟系统钾素变化及烟叶质量的影响问题。采用大田裂区设计,研究了不同灌溉方式与钾用量互作对土壤-烤烟系统钾素及烟叶内在化学成分的影响。同一灌溉方式下,增施钾肥显著提高土壤钾素含量,土壤速效钾和缓效钾含量随钾肥用量的增加而增加;与不施钾相比,施钾显著提高烟叶钾含量,但常规施钾与高量施钾处理间烟叶钾含量差异不显著。相同施钾量下,3种灌溉方式相比,以交替对1/2区域灌水处理土壤速效钾和缓效钾含量最低,烟叶钾含量以固定对1/2区域灌水处理最高,但与交替对1/2区域灌溉处理差异不显著。烟叶采收结束时,9个处理的土壤速效钾含量均随土层深度的增加,呈先降低再增加的趋势,至60~100 cm土层趋于稳定。灌水方式和钾用量互作对烟叶化学成分有一定影响,以常规施钾与固定1/2区域灌水处理组合的烟叶化学成分协调性最佳。在常规施钾量下,固定1/2区域灌水处理不仅改变了钾素在不同土层的分布,而且提高了烟叶钾含量,且减少了灌溉用水,建议可在黄淮烟区进行示范应用。 相似文献
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以晒烟品种大叶黄为材料,通过大田试验研究了不同钾肥处理土壤p H值、有效硫、速效钾等5种土壤养分指标在晒红烟整个生育期内的变化规律以及烟叶钾素含量及积累量,并就土壤养分含量与烟叶钾素状况进行相关分析,找出提高晒红烟烟叶钾积累量的最佳钾肥配施组合及影响烟叶钾素积累的关键土壤因子。结果表明,生物钾肥和硫酸钾配施处理(T4)土壤养分含量最有利于烟株生长及烟叶钾积累量增加,烟叶干物质积累量达143.5 g/株,烟叶钾含量13.39 mg/g,烟叶钾积累量1.92 g/株;土壤有效硫是影响当地晒红烟生长前期钾含量的关键土壤因子,土壤速效钾含量与整个生育期内烟叶钾素积累量均呈显著或极显著正相关关系,且能显著提高中后期烟叶钾含量。 相似文献
9.
为宁夏引黄灌区水稻钾肥合理施用提供参考,2013~2014年以"节3号"水稻为试验材料,采用单因素随机区组设计研究不同施K2O量(0、30、60、90、120 kg/hm2)对水稻产量、成熟期钾素分配比例、钾肥利用效率及土壤钾素平衡的影响,以明确宁夏引黄灌区水稻生产钾肥适宜用量。结果表明:施用钾肥显著提高水稻实粒产量和秸秆产量,平均增产率分别为10.0%、16.9%和19.0%、8.3%,降低空秕粒产量15.9%、34.7%。钾肥用量和水稻籽粒产量之间有极显著的二次曲线关系,两年中最高产量施钾量分别为129.6、122.5 kg/hm2,最佳经济产量施钾量分别为110.7、111.4 kg/hm2。成熟期水稻秸秆钾素分配比例占80%以上,其次为实粒13.2%~15.5%、14.0%~17.6%,空秕粒低于3%。实粒钾素累积量两年趋势相似,K120处理累积量最高,较对照提高13.9%、50%。空秕粒钾素累积量随着钾肥用量的增加而降低,较对照均有显著差异。水稻地上部钾素累积量两年均以K90处理最高,较对照提高22.5%、20.2%。水稻钾肥利用效率范围为28.6%~46.0%,16.6%~46.3%,两年均为K90处理最高。钾肥偏生产力和农学利用率随施钾量的增加而下降。施用钾肥各处理土壤钾素均表现为匮缺,其中120 kg/hm2施钾处理土壤亏缺量最低,较对照分别降低42.7%、39.5%。生产中实施秸秆还田后对土壤的钾素补充范围分别为160.2~203.1、173.4~205.7 kg/hm2,实施秸秆还田后施钾量高于60 kg/hm2以上可以维持钾素平衡。综合考虑提高水稻产量、钾肥利用效率及维持土壤钾素平衡等因素,在目前的生产条件下,宁夏引黄灌区水稻施钾量在110.7~129.6 kg/hm2范围内为宜。 相似文献
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包膜氯化钾一次基施对棉花生长周期钾素供应、 产量及品质的影响 总被引:2,自引:0,他引:2
【目的】钾是影响棉花生长发育和纤维品质的重要因素,本文旨在探究一次基施控释钾肥对棉花产量、 品质和钾肥利用率的影响,为棉花合理施用钾肥提供理论依据。【方法】以国欣棉3号为试验材料,在氮磷肥相同的条件下,连续2年盆栽试验。设6个处理: 1)不施钾肥(CK); 2)一次基施普通氯化钾(KCl); 3)40%基施+60%初花期追施氯化钾(KClD); 4)一次基施硫酸钾(KS); 5)40%基施+60%初花期追施硫酸钾(KSD); 6)一次基施控释氯化钾(CRK),每个处理重复四次。测定了苗期、 蕾期、 初花期、 盛花期、 始絮期和收获成熟期土壤速效钾含量和棉花株高、 茎粗,调查了籽棉产量,分析了品质指标和钾素吸收量。【结果】控释钾肥一次性基施(CRK)较普通钾肥显著提高了初花期、 盛花期、 始絮期及收获期的土壤速效钾含量。CRK较KCl处理增产23.6%,比KS处理增产15.6%,比KClD处理增产16.0%,与KSD处理差异不显著。CRK较KCl处理显著提高了衣分值,其余处理间单铃重及衣分差异不显著。CRK显著提高纤维长度、 伸长率和断裂比强度,但马克隆值和整齐度与其他处理差异不显著。速效钾肥追施较一次基施处理显著增加了生物量和吸钾量,但均低于控释钾肥处理。CRK处理的钾素利用率较KCl处理显著提高41.9%~50.9%,较KS处理提高27.3%~29.9%,较KClD处理提高21.1%~25.2%。【结论】本试验采用的控释钾肥钾素释放高峰期(80~110天)与棉花养分吸收高峰基本吻合,在棉花上一次基施对不同生育期的钾素供应优于普通钾肥一次性基施,也好于普通钾肥基施加追施,较速效钾肥显著提高了棉花的产量、 品质和钾肥利用率。 相似文献
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《Soil Science and Plant Nutrition》2013,59(1)
Original Papers (pp. 805–810) K2Ca2Si2O7, the major component of fused potassium silicate fertilizer, released potassium (K), calcium (Ca) and silicon (Si) in a slow manner. The 10% of K in K2Ca2Si2O7 was quickly solubilized in water. Further K dissolution was very slow. The amounts of dissolved Ca and Si in water were much smaller than that of K. The decrease of the Ca and Si concentration in water indicated the occurrence of a re-deposit of Ca and Si at a later stage. The surface imaging method was used in order to study the slow-release process of K2Ca2Si2O7 in water. The surface analysis of K2Ca2Si2O7 particles after dissolution in water for 30 min showed that there were Ca- and Si-rich particles stuck on the fertilizer surface. The results of the analysis of the cross section of K2Ca2Si2O7 particles showed that the K content was lower than those of Ca and Si in the surface boundary layer. On the other hand, the mole ratio of K, Ca and Si was same inside the fertilizer particle. In the portion between the inside and the surface of the fertilizer particle, the content of K and Ca was lower than that of Si. These results indicated that the order of dissolution of fertilizer components from K2Ca2Si2O7 particle was first K, then Ca, and Si last. From the results mentioned above, the process of slow-release K was speculated to be as follows: 1) K on the particle surface was released quickly by an ion exchange reaction with hydrogen ions in water. 2) K inside the particle was released slowly because of dissolution through Si-O-Si bonds. 相似文献
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以云烟87为材料,通过小区田间试验,研究了优质烤烟对不同种类钾肥的吸收效应。结果表明,与不施钾对照相比,施钾增加了烟株干物质积累。不同钾肥品种间相比,在移栽60 d以后,以生物包膜缓释钾肥处理干物质积累量最高。施钾提高了土壤速效钾含量和烟株钾含量,在移栽后45 d以前,以碳酸钾处理对土壤速效钾和烟株钾含量的提高效果最好;在移栽60 d以后,土壤中速效钾和烟株各部位钾含量均以生物包膜缓释钾肥处理最高。收获期与常规硫酸钾处理相比,生物包膜缓释钾肥处理和碳酸钾处理钾素利用率分别提高16.81和7.93个百分点。从烤后烟叶钾含量分析,生物包膜缓释钾肥处理和碳酸钾处理均显著提高了烟叶钾含量。综合分析,以生物包膜缓释钾肥和碳酸钾肥代替常规硫酸钾肥能提高钾素利用率和烟叶钾含量,建议在生产上推广应用。 相似文献
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土壤非交换态钾与结构态钾能够区分吗? 总被引:2,自引:0,他引:2
Nonexchangeable K (NEK) is the major portion of the reserve of available K in soil and a primary factor in determining soil K fertility. The questions of how much NEK is in soils and how to quantify total NEK in soils are so far still unclear due to the complicated effects of various minerals on K fixation. In this study, the NEK in 9 soils was extracted with sodium tetraphenylboron (NaBPh4) for various time periods longer than 1 d. The results showed that the NEK extracted by NaBPh4 gradually increased with time, but showed no more increase after the duration of extraction exceeded 10--20 d. As the temperature increased from 25 to 45 oC, the duration to obtain the maximum extraction of NEK was reduced from 20 to 10 d, and the maximum values of NEK released at both temperatures was almost the same for each soil. The maximum NEK (MNEK) of the 9 soils extracted by NaBPh4 varied from 3 074 to 10 081 mg kg-1, accounting for 21%--56% of the total soil K. There was no significant correlation between MNEK released by NaBPh4 and other forms of K, such as NH4OAc-extracted K, HNO3-extracted K and total K in soils, which indicates that NEK is a special form of K that has no inevitable relationship to the other forms of K in soils. The MNEK extraction by NaBPh4 in this study indicated that the total NEK in the soils could be differentiated from soil structural K and quantified with the modified NaBPh4 method. The high MNEK in soils made NEK much more important in the role of the plant-available K pool. How to fractionate NEK into different fractions and establish the methods to quantify each NEK fraction according to their bioavailability is of great importance for future research. 相似文献
16.
《Communications in Soil Science and Plant Analysis》2012,43(4):371-385
Abstract Although the basic chemistry and behavior of potassium in the soil is well understood, little of this knowledge is used in soil testing and practical soil fertility mangement. In this study the K buffer behavior of three individual soils (Hagerstown silt loam (Typic Hapludalf), Gatesburg sand (Entic Haplorthod) and Gilpin channery silt loam (Typic Hapludult)) was investigated. The buffer relationships determined indicated very different K behavior for these soils even though exchangeable K soil tests indicated similar K levels. It was also determined that for these soils the buffer relationship was apparently independent of previous K management, indicating that the K buffer behavior could be included as part of soil characterization data. The role of nonexchangeable K in determining K buffer behavior was also investigated. It was found that the levels of solution K where the release of nonexchangeable K becomes measurable (0.27 ‐ 0.83 × 10‐4 M) are similar to solution K levels reportedly required for crop growth (0.02 ‐ 0.95 × 10‐4 M). It was also found that these soils were capable of maintaining a relatively high level of exchangeable K even after extraction of significant amounts of nonexchangeable K with sodium tetraphenyl boron. It was concluded that K buffering behavior of individual soils could and should be included in K management decisions involving corrective soil treatments and/or crop removal estimation. Otherwise, based on current soil tests, soils with very different K buffer behavior will be treated similarly. 相似文献
17.
《Communications in Soil Science and Plant Analysis》2012,43(7-8):913-921
Abstract A greenhouse experiment was conducted to study the minimal exchangeable potassium (minimal K) status of fifteen smectite dominant soils and its relationship with K uptake and plant mobilization rate of soil reserve K. Exchangeable K reached minimal level decreasing about 35% from initial K status after 350 days of continuous cropping. Soils with high clay content and initial K status showed higher minimal exchangeable K. Cumulative K uptake by six successive crops varied from 160 mg kg‐1 to 823 mg kg‐1 and plant mobilization of soil reserve K varied from 0.151 mg kg‐1 day‐1 to 1.880 mg kg‐1 day‐1 among soils. Minimal K explained well the variation in total K uptake (r=0.85) and plant mobilization rate (r=0.83) as compared to initial exchangeable K status of soils (r=0.67 and 0.59, respectively) suggesting that the former is a better index of K supplying capacity of soils than the later. 相似文献
18.
利用功能叶片钾含量作为水稻钾营养诊断指标的可行性研究 总被引:1,自引:0,他引:1
【目的】植株组织分析是广泛应用的营养状况评价方法。水稻主茎从上往下的第二功能样品采集方便,对水稻植株损伤较小;叶片以全展开叶的状态存在于整个生育期。本文探讨了利用第二功能叶钾含量作为水稻钾营养诊断指标的可行性,为水稻种植提供一种操作性强且准确性高的钾营养诊断方法及指标。【方法】采用田间试验,设置施钾量(K2O)0、60、120、180、240、300和360 kg/hm27个处理,测定各生育期第二功能叶的钾含量和成熟期收获的稻谷产量,对各处理的产量进行显著性检验及肥效模型的拟合,并根据肥效模型对水稻产量进行分级;结合产量分级指标与钾含量和产量的回归方程,最终计算出水稻不同生育期的钾营养诊断指标值。【结果】施用钾肥显著增加稻谷产量,施钾量和稻谷产量适合用二次加平台模型拟合,满足营养诊断的要求。第二功能叶钾含量随施钾量的增加而显著增加,随生育进程先上升后下降,在拔节期达到最大;从分蘖初期到齐穗期,第二功能叶钾含量变化范围为0.85%~2.72%。各生育期第二功能叶钾含量与稻谷产量和施钾量具有极显著的相关性,可以作为诊断指标来预测稻谷产量及反映钾肥施用水平。按小于最佳产量的85%、85%~90%、90%~95%、95%~100%将产量分为5个等级,和大于100%,根据钾含量与产量回归方程计算出各时期的不同产量等级对应的钾含量分级指标,当临界产量为最佳产量的95%时,各时期对应的第二功能叶钾含量分别为1.34%、1.58%、1.98%、2.09%、1.33%和1.27%。【结论】第二功能叶钾含量与施钾量和水稻产量相关极显著,其关系可用二次加平方程模拟,故可作为水稻不同生育期的钾营养诊断指标;以最佳产量的95%作为产量临界值标准,当第二功能叶钾含量在分蘖初期、分蘖盛期、有效分蘖临界期、拔节期、孕穗期和齐穗期分别低于1.34%,1.58%,1.98%,2.09%,1.33%和1.27%,则水稻植株处于钾素缺乏水平,需要补充钾肥以维持其正常的钾素需求。 相似文献