930 resultados para POTASSIUM
Resumo:
The feasibility of biodiesel production from soapstock containing high water content and fatty matters by a solid acid catalyst was investigated. Soapstock was converted to high-acid acid oil (HAAO) by the hydrolysis by KOH and the acidulation by sulfuric acid. The acid value of soapstock-HAAO increased to 199.1 mg KOH/g but a large amount of potassium sulfate was produced. To resolve the formation of potassium sulfate, acid oil was extracted from soapstock and was converted to HAAO by using sodium dodecyl benzene sulfonate (SDBS). The maximum acid value of acid oil-HAAO was 194.2 mg KOH/g when the mass ratio of acid oil, sulfuric acid, and water was 10:4:10 at 2% of SDBS. In the esterification of HAAO using Amberylst-15, fatty acid methyl ester (FAME) concentration was 91.7 and 81.3% for soapstock and acid oil, respectively. After the distillation, FAME concentration became 98.1% and 96.7% for soapstock and acid oil. The distillation process decreased the total glycerin and the acid value of FAME produced a little.
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选用9 a生盛果期矮化密植梨枣树为试验材料,研究乙酰丙酸钾叶面喷施对黄土高原山地红枣生长发育及产量品质的影响。结果表明:叶面喷施稀释800倍的乙酰丙酸钾,对枣树的生长发育、产量和品质都有明显的促进作用,建议在黄土高原区红枣实际生产中采用稀释800倍的乙酰丙酸钾喷施。
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为探讨黄土高原草地植被演替过程活性有机碳的变化规律,揭示草地退耕后的分布特征,在云雾山草原区采集不同草地群落土壤,采用高锰酸钾氧化法对0~100 cm土层活性有机碳进行分析。结果表明:不同草地群落土壤活性有机碳含量均高于坡耕地,活性有机碳含量大小顺序为:长芒草(Stipa bungeanaTrin.)群落>大针茅(Sti-pa grandisP.Smirn.)群落>铁杆蒿(Artemisia gmeliniiWeb.ex Stechm.)群落>百里香(Thymus mongolicusRonn.)群落>退耕草地>坡耕地,且群落间差异达极显著水平(P<0.01);在恢复初期(坡耕地-退耕草地-百里香)活性有机碳含量增加较多,恢复到长芒草群落活性有机碳含量达到最大值,趋于稳定;活性有机碳的密度与含量表现出相同的变化规律,并随着土层的加深而呈现减小趋势。相关性分析表明,活性有机碳含量与土壤总有机碳含量呈极显著线性正相关关系(r=0.9742),土壤活性有机碳比总有机碳更能反映草地植被恢复初期土壤有机碳库的变化。
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采用盆栽试验与室内分析相结合的方法,研究了6种低分子有机酸和一种有机酸盐对辣椒生长发育和叶片活性氧代谢的影响。结果表明:柠檬酸、乙酰丙酸和有机酸钾处理不仅可显著提高辣椒根系干质量,增加辣椒vC含量,而且提高了辣椒的产量。甲酸、柠檬酸、乙酰丙酸和有机酸钾处理使根系活力比对照分别提高83%、93.8%、96.75%和99.5%。柠檬酸、乙酰丙酸和有机酸钾处理提高了辣椒叶片的SOD和POD活性,降低了膜脂过氧化产物MDA含量,延缓了叶片衰老。但是低分子有机酸处理对CAT活性的影响较小。
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以长期定位施肥试验为平台,研究在施用氮磷肥条件下,配施钾肥、有机肥对黄土塬区春玉米光合生理特性和产量的影响。结果表明:配施钾肥在灌浆前期降低了LAI、WUE、叶片水势、干物质积累量、叶片光合和蒸腾速率,但在灌浆后期提高了LAI、WUE、干物质积累量和叶片光合速率,且与对照间达显著差异,这说明配施钾肥对春玉米生长的影响主要表现在生育后期;配施钾肥可显著提高整个生育期的SPAD(叶绿素相对含量)、株高;可促进同化向籽粒的转移,使籽粒产量增加;但收获指数下降了3.2%。而配施有机肥可显著提高春玉米整个生育期的LAI、株高、SPAD、光合速率和蒸腾速率等生理指标(WUE和水势除外)和产量,使籽粒产量和生物产量增加,与对照、钾肥间差异均达到显著水平(P<0.05)。在富含钾素的黄土塬区,配施有机肥对春玉米光合生理特性和产量的作用优于配施钾肥。
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试验研究了不同施肥处理对小麦产量及肥料、水分利用率的影响。结果表明:氮磷配施对产量的贡献率最高,产量达5 099.8 kg/hm2,增产率达21.5%,较氮、磷肥单施产量分别增产14.0%和18.4%,具有正交互效应;单施有机肥较NM、PM、NPM增产率分别达到6.63%、4.12%、11.3%。化肥配施可显著提高旱地小麦的肥料利用率和水分利用效率,氮磷有机肥配施肥料氮、磷肥的利用率分别较氮、磷肥单施提高1.71和12.55个百分点;氮磷配施可同时提高氮肥、磷肥肥效,此时氮贡献率为15.53%,磷贡献率达12.26%,且水分利用率提高了24.1%,耗水系数降低了17.57%。
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在黄土高原南部旱地长期肥料定位试验的基础上研究了土壤钾素空间分布特征及其有效性。结果表明:长期施肥后土壤中特殊吸附性钾(SAK)和非特殊吸附性钾(NSAK)储量增加,但水溶性钾(WSK)和非交换性钾(NEK)则有明显的下降,单施N水溶性钾下降了48.24%,单施P下降32.32%,NP配施和NPK配施分别下降10.61%和17.93%,非交换性钾降幅为8.56%~24.91%。增施钾肥可以缓解因长期施肥作物生长所携出的钾素,增加耕层土壤中的水溶性钾、非特殊吸附性钾及特殊吸附性钾。相关分析结果表明,土壤不同形态钾素对速效钾的重要性依次为WSK>NSAK>SAK>NEK,土壤速效钾与水溶性钾、非特殊吸附性钾呈显著相关,与特殊吸附性钾和非交换性钾无显著相关性。
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采用2种不同夏玉米基因型(陕单9号,抗旱品种;陕单911,不抗旱品种)的盆栽试验,研究了长期水分胁迫下氮、钾对各生育期叶片净光合速率、蒸腾速率、胞间二氧化碳浓度和叶绿素含量的影响,旨在从光合生理特性揭示这些因子的抗旱机理。结果表明,长期水分胁迫下叶片净光合速率,蒸腾速率、胞间二氧化碳浓度(除成熟期)和叶绿素含量显著降低,不抗旱品种降幅更甚。抗旱品种的净光合速率和叶绿素含量大于不抗旱品种,而蒸腾速率和胞间二氧化碳浓度则相反。两品种苗期光合作用较弱,净光合速率和叶绿素含量均较低,抽雄期达到高峰。施氮能不同程度降低水分胁迫下玉米叶片的蒸腾速率,增加叶绿素含量.提高净光合速率,从而减缓水分胁迫对光合作用的伤害。随氮肥用量增加,不抗旱品种净光合速率和叶绿素含量显著升高,蒸腾速率和胞间二氧化碳浓度明显降低,两种氮肥用量间有显著差异;抗旱品种在低氮用量时效果显著,但高低氮用量间无显著区别。钾对受水分胁迫的玉米表现出比氮肥更突出的效果。相反,在适量供水条件下,氮、钾肥的作用明显下降。以上结果表明,适当用量的氮、钾肥可以有效地改善水分胁迫下作物叶片的光合特性,从而增强作物的抗旱性。
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目的:研究氮、磷、钾及其配比对膜荚黄芪生长发育及有效成分的影响。方法:通过田间试验,采用氮、磷、钾3因素2次D-饱和最优设计,研究氮、磷、钾及其配比对膜荚黄芪生长及有效成分的影响。结果:施肥促进了膜荚黄芪幼苗的生长,从而为生育后期膜荚黄芪根生长、产量形成及有效成分的累积提供充足的营养基础。氮、磷、钾各元素及其配比明显促进了茎叶及根干物质积累,氮、磷、钾对膜荚黄芪干物质累积总量的影响程度依次为氮>钾>磷;对膜荚黄芪茎叶干物质累积量的影响程度依次为氮>磷>钾;对根干物质累积量的影响程度依次为氮>钾>磷。施肥明显提高了膜荚黄芪根产量,氮、磷、钾对根产量影响程度依次为氮>钾>磷。氮、磷、钾各元素及其配比使黄芪多糖、黄芪甲苷含量明显增加,对总黄酮含量影响不明显。氮、磷、钾对黄芪多糖含量影响程度依次为钾>磷>氮;对黄芪甲苷含量的影响程度依次为氮>钾>磷。结论:氮、钾对膜荚黄芪生长发育,产量形成及多糖,黄芪甲苷含量有重要的影响。根类中药材黄芪的栽培过程中应该注重氮、钾肥的施用,并注意氮、磷、钾的配合施用。
Resumo:
为了给黄土旱地经济合理施肥、粮食增产提供科学依据。[方法]在长期定位试验的基础上,研究了不同施肥对小麦产量、各生育期钾素营养和肥料利用率的影响。[结果]不同施肥小麦增产效果差异显著。单施氮肥小麦增产75.3%,单施磷肥小麦产量则降低24.7%,NM、PM、NPM配施小麦增产75.9%~92.9%;小麦钾素的吸收主要集中在生长发育前期,孕穗期以后因泌钾现象多表现为负吸收,施用有机肥,特别是无机肥与有机肥配施,促进小麦吸钾作用明显,小麦植株各器官含钾量明显提高;单施N肥、NP配施小麦钾素的吸收量、吸收速率较高,单施有机肥及有机无机肥配合施用小麦钾素吸收量和吸收速率比对照也有明显提高;单施N肥小麦氮肥利用率较高为76.73%,单施P肥小麦磷肥利用率较低仅为14.20%,NP配施与单施P肥相比,吸磷量、吸钾量分别增加112.53%和79.36%。施用有机肥可以显著提高作物氮、磷、钾吸收量,但肥料利用率却不高。[结论]施用有机肥以及有机无机肥配合施用,可以明显促进小麦对氮、磷、钾养分的吸收,提高小麦产量。
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The effect of a potassium overlayer on nitridation and oxidation of the InP(100) surface is investigated by core-level and valence-band photoemission spectroscopy using synchrotron radiation. In comparison with the K-promoted nitridation of the InP(110) surface obtained by cleavage in situ, we found that the promotive effect for the InP(100) surface cleaned by ions bombardment is much stronger and that the nitridation products consist of two kinds of complexes: InPNx and InPNx+y. The results confirmed that surface defects play an important part in the promotive effect. Furthermore, in contrast with K-promoted oxidation of InP(100) where bonding is observed between indium and oxygen, indium atoms did not react directly with nitrogen atoms during the K-promoted nitridation of InP(100). (C) 1995 American Vacuum Society.
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The effect of molecular nitrogen exposure on the surfaces of InP(100) modified by potassium overlayers is investigated by core-level and valence-band photoemission spectroscopy using Synchrotron radiation. In comparison with InP(110) surface, we found the promotion is much stronger for InP(100) surface due to the central role of surface defects in the promotion; furthermore, in contrast with K-promoted oxidation of InP(100) where the bonding is observed between indium and oxygen, indium atoms did not react directly with nitrogen atoms during the K-promoted nitridation of InP(100).
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A highly sensitive microstructured polymer optical fiber (MPOF) probe for hydrogen peroxide was made by forming a rhodamine 6G-doped titanium dioxide film on the side walls of array holes in an MPOF. It was found that hydrogen peroxide only has a response to the MPOF probe in a certain concentration of potassium iodide in sulfuric acid solution. The calibration graph of fluorescence intensity versus hydrogen peroxide concentration is linear in the range of 1.6 x 10(-7) mol/L to 9.6 x 10(-5) mol/L. The method, with high sensitivity and a wide linear range, has been applied to the determination of trace amounts of hydrogen peroxide in a few real samples, such as rain water and contact lens disinfectant, with satisfactory results.