987 resultados para 90-24-PC1


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The deglaciation of the continental shelf to the west of Spitsbergen and the main fjord, Isfjorden, is discussed based on sub-bottom seismic records and sediment cores. The sea floor on the shelf to the west of Isfjorden is underlain by less than 2 m of glaciomarine sediments over a firm diamicton interpreted as till. In central Isfjorden up to 10 m of deglaciation sediments were recorded, whereas in cores from the innermost tributary, Billefjorden, less than a meter of ice proximal sediments was recognized between the till and the 'normal' Holocene marine sediments. We conclude that the Barents Sea Ice Sheet terminated along the shelf break during the Late Weichselian glacial maximum. Radiocarbon dates from the glaciomarine sediments above the till indicate a stepwise deglaciation. Apparently the ice front retreated from the outermost shelf around 14.8 ka. A dramatic increase in the flux of line-grained glaciomarine sediments around 13 ka is assumed to reflect increased melting and/or current activity due to a climatic warming. This second stage of deglaciation was interrupted by a glacial readvance culminating on the mid-shelf area shortly after 12.4 ka. The glacial readvance, which is correlated with a simultaneous readvance of the Fennoscandian ice sheet along the western coast of Norway, is attributed to the so-called 'Older Dryas' cooling event in the North Atlantic region. Following this glacial readvance the outer part of Isfjorden became rapidly deglaciated around 12.3 ka. During the Younger Dryas the inner fjord branches were occupied by large outlet glaciers and possibly the ice front terminated far out in the main fjord. The remnants of the Barents Sea Ice Sheet melted quickly away as a response to the Holocene warming around 10 ka.

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“果蔬贮藏保鲜技术”项目分四个获奖组成部分:1、荔枝贮藏保鲜技术研究——研制出荔枝果实零上低温贮藏保鲜30-40天,好果率90%以上,货架期24小时和室温贮藏保鲜7-10天的新技术等;2、赤霉酸控制椪柑、蕉柑生理枯水的技术——采用采前用赤霉酸喷果或采后混和防腐剂加生长素浸果、晾干、薄膜单果包装技术,达到抑制枯水的效果;3、控制红桔枯水的研究——应用赤霉酸加防腐保险剂和生产素处理,结合薄膜包装和适时采收,获得控制红桔枯水保鲜的良好效果;4、伊迈唑对防治柑桔青、绿霉病的效果试验——伊迈唑有较好的抑制柑桔青、绿霉菌的能力,对抗性绿霉孢子有较好的抑菌力。

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本文应用植物引种驯化,栽培学及植物化学的理论方法对引入我国的迷迭香(Rosmarinus officinalisL.)精油和抗氧化剂进行了研究.主要结果如下; 1、昆明地区的生态气候条件最适宜迷迭香生长。南京地区局部良好环境也能满足迷迭香正常生长需要。北京地区在保护栽培的情况下,迷迭香才能够安全越冬。 2、用GC-MS和GC-IR鉴定了迷迭香精油的23种成分。不同采收期精油成分含量变化有3种类型,即似单峰曲线,似8曲线和w曲线。一年生与二年生苗在精油成分含量上略有差异。与主要栽培国相比,我国不同引种地精油成分化学类型各具特点,北京地区α—蒎稀(31.58%)含量很高,南京地区富含樟脑(14.86%)乙酸龙脑酯(7.97%)和龙脑(6.90%)含量也相对较高,昆明地区则是α—蒎稀(24.32%)和1.8—桉叶油素(24.43%)含量并重。 乙酸龙脑酯含量的高低对精油香气质量优劣起关键作用。北京地区雨季来临收获(7月初)精油香气质量最好。南京地区,11月初精油香气质量也属优质。本实验未能得到高质量的昆明地区精油。 3、从迷迭香蒸油残渣中分离得到三种抗氧化成分,迷迭香酚( Rosrmanol)、鼠尾草酚(Carnosol)和迷迭香双醛(R0smadial),并用质谱,核磁做了鉴定.硫氰铁酸法、TBA法、AOM法检测了三种成分的抗氧化效能.Rosmanol对多双键不饱和脂肪酸抗氧化效果显著,Carnosol和BHT在不同双键脂肪酸中抗氧化效果稳定,Rosmadial的抗氧化效果则随不饱和双键数目的增加而降低。在猪油中,抗氧化效能的强度顺序为Rosmanol >carnosol>BR>Rosmadial。 抗氧化物质在植株体内是不断积累的。不同引种地迷选香抗氧化效能的强弱差异表现为昆明>北京>南京。 迷迭香的正己烷,两酮提取物抗氧化效能都是随着添加量的增加而增强、丙酮提取物的抗氧化效能优于正己烷提取物。 对迷迭香抗氧化剂提取工艺做了探讨,得到R-1,R—2,R-3三种小试样品,R-2,R-3的抗氧化效果优于BHT.B—l接近于BET。

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采用PEG/DMSO融合法,从普通烟草(Nicotiana tabacum L.cv.Xanthi nc)叶肉和毛曼陀罗(Datura innoxia Mill.)茎或叶愈伤组织原生质体融合获得I5株花盆中健康生长的族间体细胞杂种植株;其中11株是在没有选择压力的条件下获得,4株则是在有IOA和R6G选择系统存在下获得。同时获得一株试管开花且形态异常的植株和一株花盆中生长的嵌合植株。lOmM IOA和I5μ g/ml R6G均能分别有效地抑制烟草叶肉和毛曼陀罗愈伤组织原生质体的分裂;10% DMSO能显著提高原生质体融合率;PEG种类并不重要,但浓度则很重要;BAP较ZT,KT对植株分化有更好的诱导效果。杂种的形态、细胞、同工酶、Southern杂交,花粉育性分析结果如下:1、l5株杂种较双亲普遍株型矮小,生长缓慢,形态接近烟草但不很正常,根据形态特征可分为两种类型:(1)共有8株,其叶片大小、形状、颜色、开花习惯、花类型(单花)等均与毛曼陀罗接近,但子房败育;(2)共有7株,其株型、叶片形状、颜色、光滑度、花形状、类型(圆锥状花序)、颜色更接近烟草,但少数杂种开单花或先单花后圆锥状花序或先单花后两种花并存,且开花时间不一,部分子房败育。2、杂种染色体数目大都在60~90之间,个别者较少(48条)或较多(125条),没有一株为双二倍体(2n=96),并全部为混倍体。3、15株杂种植株均有双亲的细胞色素氧化酶同工酶特征谱带;大部分都有双亲的过氧化物酶同工酶特征谱带,少都仅具烟草的谱带。4、Hae Ⅲ/水稻rDNA的Southern杂交分析表明杂种1较双亲多一条谱带,杂种2较双亲也多一条弱带,其它杂种尚待定。5、花粉活力测定表明毛曼陀罗(种子再生而来)的为99%,烟草(原生质体再生而来)为80~90%,而杂种的为24~61%,育性普遍低于双亲。

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Linearly polarized light at normal incidence injects a spin current into a strip of two-dimensional electron gas with Rashba spin-orbit coupling. The authors report observation of an electric current when such light is shed on the vincinity of the junction in a crossbar-shaped InGaAs/InAlAs quantum well Rashba system. The polarization dependence of this electric current was experimentally observed to be the same as that of the spin current. The authors attribute the observed electric current to the scattering of the optically injected spin current at the crossing. (c) 2007 American Institute of Physics.