994 resultados para 11-98


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A new copper-(Schiff-base) complex, derived from (S)-2-amino-1,1-di(3,5-di-t-butylphenyl)propanol, 2-hydroxy-5-nitrobenzaldehyde and copper acetate monohydrate, was used as an efficient catalyst for the cyclopropanation of styrene with diazoacetates, affording ees of up to 98%. (C) 2000 Elsevier Science Ltd. All rights reserved.

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从辽宁省大连海域分离到 1株海洋放线菌 ,编号MB 98,其产生的次生代谢产物对皮肤致病真菌白色念珠菌、石膏样毛癣菌、红色毛癣菌有很好的抑制作用。MB 98在大部分特征培养基上气丝为白色或白略粉 ,基丝为炒米黄或浅芒果棕 ,在所有培养基上均无色素产生 ,电镜观察MB 98孢子丝呈稀疏螺旋型 ,孢子呈椭圆或长圆柱型 ,孢子表面光滑 ,MB 98可以利用大部分碳源。根据分类鉴定研究 ,将MB 98定名为白色链霉菌海洋变种。

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通过野外天然降雨产流及人工模拟降雨试验,研究不同植被对坡面土壤侵蚀及土壤铜元素流失的影响及降雨过程中铜元素的流失规律。结果表明:(1)紫花苜蓿、绿豆、荒草3种植被覆盖小区的年径流量为5183.8,5 366.2,3 867.3 m~3/km~2,比裸地减少33%,30.8%和50.1%;侵蚀模数为379.18.482.3,15.78 t/km~2,比裸地减少34.7%,16.4%和97.2%;全年全铜流失量为12.9,25.5,0.46 kg/km~2,有效铜流失量为6.22,11.01,0.15 kg/ km~2,分别比裸地减少67.3%,35.3%,98.8%和54.6%,19.6%,98.9%;(2)在模拟降雨过程中,农地小区的产流产沙强度过程呈现波动上升趋势,产沙过程波动较产流过程剧烈。铜元素流失强度过程与产流产沙强度过程相似,但其峰值多于产流产沙过程,且最高峰出现时间不同。有效铜流失强度变化率略高于全铜。

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为了探索在小流域土壤侵蚀治理基础上的雨水集蓄利用模式和技术,以丘陵半干旱区国家重点治理小流域为试验区,遵循坡地水量平衡和雨水叠加利用理论,将小流域综合治理与雨水集蓄利用技术有机集成,研究确定了坡地集流梯田工程的集流潜力、集流效果及其断面参数;并对该工程集蓄径流提高土壤水分和增产增收效果进行了研究。结果表明,该地区坡耕地适宜修建1∶1平坡比的集流梯田工程;与坡耕地相比,集流梯田土壤含水量提高1.96~3.12个百分点,特别是7,8,9三个月的差异更大,比坡耕地平均提高3.62个百分点,集流梯田产量提高58.28%~76.02%;产值增加70.98%~114.30%。

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以隆德县李太平小流域为例,对比分析了退化小流域系统恢复重建过程中系统的生态经济要素变化,揭示系统演变趋势。应用能值方法分析了投入产出的动态变化,评价治理的生态经济效果。结果显示:农、林、牧业用地比例由1990年的6·2∶2·0∶1·0变为2003年的1·9∶1·4∶1·0,土地利用及种植结构趋于合理,农业产值所占比重由79·6%下降为54·8%,林业、牧业、副业产值比例分别由9·6%、9·6%、1·1%上升为22·7%、15·1%、7·4%,收入多样性指数也呈增加趋势,显示了流域收入构成的多元化,有利于生态经济系统的稳定。同时,恩格尔系数减小,表明人民生活水平日益提高。基于能值的流域生态经济系统投入产出效率动态研究结果表明在调整后的土地利用格局及种植结构下,净能值产出率由1990年的2·5增长到2003年的3·41,资源利用效率逐年提高,环境负荷率在1990、1995和2003年分别为2·55、2·44和2·11,呈减小趋势,能值持续性指数从1990年的0·98增加到2003年的1·62,经济与生态环境的协调性不断提高。研究结果表明该治理模式是成功的。

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开展城市绿化生态工程建设是保护城市生态环境、促进城市可持续发展的必由之路 .对城市绿化树种生态适应性及生态功能性相结合的综合评价 ,是构建城市生态工程、合理应用选择城市绿化植物的科学依据 .通过专家咨询评价的方法 ,从生态适应能力、绿化生态效益、美化效果、抗病虫害性、抗污染性、经济效益等方面全面系统地建立了沈阳市绿化树种生态功能与生态适应性评价应用的综合指标体系 ,并根据专家第一轮评价和沈阳市特定区域和范围 ,在对绿化树种的综合应用评价的基础上 ,选定耐寒性、耐旱性、耐瘠薄、抗病虫能力、抗污染能力、观赏性和生态效益 7项评价指标为主要的评价指标因子 ,对沈阳常见的 2 0 0种绿化树种进行了综合评判与分级 .评价结果表明 ,综合效能为 1级植物有 5 8种 ;2级植物为 93种 ;3级植物 38种 ;4级植物 11种 .

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对沈阳市苏家屯区露地和保护地土壤有效氮、磷、钾养分现状进行了调查 ,对露地土壤有效磷、钾在20年间含量变化进行了分析。结果显示 :露地土壤有效氮肥力水平较高 ,全区平均含量为98.96mg·kg-1 ;20年间 ,土壤有效磷含量递增 ,平均含量从1980年的4.96mg·kg-1 上升到2000年的11.61mg·kg-1;土壤有效钾呈递减趋势 ,平均含量从1980年的128.08mg·kg-1下降到2000年的79.90mg·kg-1,平均每年降低1.90%。保护地土壤有效氮、磷、钾含量随使用年限的增加呈上升趋势。

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利用陶瓷头土壤溶液收集器采集2006年7月~2007年8月间长白山阔叶红松天然林不同深度(15cm和60 cm)土壤溶液,探讨应用气液萃取平衡-气相色谱法测定森林土壤溶液中溶解性气体N_2O和CO_2浓度的可行性,并利用此方法研究林地不同深度土壤溶液中两种气体含量特征及其影响机理。研究结果显示观测期内林地15 cm和60 cm深度土壤溶液中溶解性CO_2浓度的变化范围分别为5.26~10.71μg·mL~(-1)(C)和3.13~6.16μg·mL~(-1)(C),溶解性N_2O浓度的变化范围分别为2.44~13.40 ng·mL~(-1)(N)和3.23~27.98 ng·mL~(-1)(N)。阔叶红松天然林土壤溶液中溶解性CO_2和N_2O浓度均呈现出明显的季节性变化。春融后的降水促进了土壤溶液中溶解性N_2O产生,尤其在60 cm深度。与60 cm深度相比,林地15 cm深度溶液中溶解性CO_2浓度的季节性变化更明显,尤其在植物生长旺季。逐步回归分析显示,水溶性有机碳含量可以解释林地不同深度溶液中溶解性CO_2浓度变化的29%;水溶性有机氮含量可以解释林地60 cm深度溶解性N_2O浓度变化的34%。因此,水溶性有机碳和有机氮分别是长白山阔叶红松林土壤溶液溶解性CO_2和N_2O形成的重要因子。同时研究结果表明本文实验方法对于测定林地不同深度土壤溶液中溶解性N_2O和CO_2含量均有较好的适用性,连续三次萃取后所获得的气体浓度可有效反映溶液中的实际气体浓度。

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研究了微过氧化物酶-11(MP-11)的聚集状态对其与Yb3+相互作用的影响。紫外-可见(UV-Vis)吸收光谱研究结果表明,在纯水溶液中,由于Yb3+与MP-11分子中血红素卟啉环上的2个丙酸基团的羧基氧发生强的键合作用,使血红素卟啉环的非平面性增加,π-π跃迁所需要的能量减少,但电子跃迁几率降低。因此,MP-11吸收光谱中的Soret带红移10nm,吸光度下降35%。

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Mg-4Al-4Nd-0.5Zn-0.3Mn alloy was prepared by metal mould casting method. Microstructure, aging behavior, mechanical properties and fracture morphology of the alloy were investigated. The results showed that alpha-Mg, Al-11 Nd-3, Al2Nd and Mg-32(Al,Zn)(49) phases were the main phases of the as-cast alloy. And the long rod-like Al-11 Nd-3 phase was decomposed to granular Al2Nd through T6 heat treatment. The tensile strength was also enhanced by T6 treatment. The yield strength was increased by 17% and 21% at RT and 150 degrees C, respectively. It was mainly because that the precipitates were refined through T6 treatment and this became more benefit to hinder dislocations slipping.

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The discovery of the icosahedral phase (i-phase) in rapidly quenched Ti1.6V0.4Ni1-xCox (x=0.02-01) alloys is described herein. The i-phase occurs in a similar amount relative to the coexisting beta Ti phase. The electron diffraction patterns show the distinct spot anisotropy, indicating that the i-phase is metastable. The electrochemical hydrogen storage performance of these five alloy electrodes are also reported herein. The hydrogen desorption of nonelectrochemical recombination in the cyclic voltammetric (CV) response exhibits the demand for electrocatalytic activity improvement.

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5,10,15,20-Tetra-[(p-alkoxy-m-ethyloxy)phenyl]porphyrin and [5-(p-alkoxy)phenyl-10,15,20-tri-phenyl]porphyrin and their holmium(III) complexes are reported. They display a hexagonal columnar discotic columnar Col(h)) liquid crystal phase and were studied by cyclic voltammetry, surface photovoltage spectroscopy (SPS), electric-field-induced surface photovoltage spectroscopy (EFISPS) and luminescence spectroscopy. Within the accessible potential window, all these compounds exhibit two one-electron reversible redox reactions. Quantum yields of Q band are in the region 0.0045-0.21 at room temperature. The SPS and EFISPS reveal that all the compounds are p-type semiconductors and exhibit photovoltaic response due to pi-pi* electron transitions.

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A fascinating 3D polycatenane-like metal-organic framework with two kinds of helical chains was reported, in which the helical chains exhibit multiple interweaving modes based on the unusual 2D -> 2D parallel -> 3D parallel interpenetration.

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In this paper, a quantum chemistry method was used to investigate the effect of different sizes of substituted phenanthrolines on absorption, energy transfer, and the electroluminescent performance of a series of Eu(TTA)(3)L (L = [1,10] phenanthroline (Phen), Pyrazino[2,3-f][1,10]phenanthroline (PyPhen), 2-methylprrazino[2,3-f][1,10] phenanthroline(MPP), dipyrido[3,2-a:2',3'-c]phenazine(DPPz), 11-methyldipyrido[3,2-a:2',3'c]phenazine(MDPz), 11.12-dimethyldipyrido[3,2-a:2',3'-c]phenazine(DDPz), and benzo[i]dipyrido[3,2-a:2',3'-c]phenazine (BDPz)) complexes. Absorption spectra calculations show that different sizes of secondary ligands have different effects on transition characters, intensities, and absorption peak positions.