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101.
102.
Kanaze FI Termentzi A Gabrieli C Niopas I Georgarakis M Kokkalou E 《Biomedical chromatography : BMC》2009,23(3):239-249
The flavonoid content of several methanolic extract fractions of Navel orange peel (flavedo and albedo of Citrus sinensis) cultivated in Crete (Greece) was first analysed phytochemically and then assessed for its antioxidant activity in vitro. The chemical structures of the constituents fractionated were originally determined by comparing their retention times and the obtained UV spectral data with the available bibliographic data and further verified by detailed LC-DAD-MS (ESI+) analysis. The main flavonoid groups found within the fractions examined were polymethoxylated flavones, O-glycosylated flavones, C-glycosylated flavones, O-glycosylated flavonols, O-glycosylated flavanones and phenolic acids along with their ester derivatives. In addition, the quantitative HPLC analysis confirmed that hesperidin is the major flavonoid glycoside found in the orange peel. Interestingly enough, its quantity at 48 mg/g of dry peel permits the commercial use of orange peel as a source for the production of hesperidin. The antioxidant activity of the orange peel methanolic extract fractions was evaluated by applying two complementary methodologies, DPPH(*) assay and the Co(II)/EDTA-induced luminol chemiluminescence approach. Overall, the results have shown that orange peel methanolic extracts possess moderate antioxidant activity as compared with the activity seen in tests where the corresponding aglycones, diosmetin and hesperetin were assessed in different ratios. 相似文献
103.
Degradation of acridine orange (AO) in aqueous solution by Fenton's reagent (Fe2+ and H2O2) was investigated. The effects of different reaction parameters such as initial AO concentration, pH value of solution, ferrous concentration, hydrogen peroxide concentration, and the presence of chloride ion on the oxidative degradation of AO were investigated. Under optimum conditions, 2 mM H2O2, 0.4 mM Fe2+ and pH 3.0, the initial 0.2 mM AO solution was reduced by 95.8% within 10 min. The primary intermediates of the degradation reaction of AO were identified. The analytical results indicated that the N‐de‐methylation degradation of AO dye took place in a stepwise manner to yield mono‐, di‐, tri‐, and tetra‐N‐de‐methylated AO species generated during the Fenton process. The probable degradation pathways were proposed and discussed. 相似文献
104.
通过高温真空烧结法和水热反应法成功制备了表面负载有二氧化钛纳米线的开孔泡沫钛镍合金电极. 多孔钛镍合金的烧结温度为1473 K, 时间为2 h; 水热反应温度为373 K, 反应时间为16 h. 利用X射线粉末衍射分析(XRD)和扫描电镜(SEM)对负载二氧化钛纳米线开孔泡沫钛镍合金进行了表征. 将该泡沫电极作为阳极, 泡沫镍为阴极组成串联水处理装置, 并利用甲基橙溶液研究了该装置电解净化污水的能力. 利用紫外-分光光度法研究了不同阳极电压下钛镍合金对甲基橙的分解能力. 研究表明, 在阳极氧化电压大于30 V的条件下, 甲基橙溶液以200 mL/min的流速一次性流经该装置便可使甲基橙的脱色率达90%以上. 相似文献
105.
基于高光谱的GA和SPA算法对赣南脐橙叶绿素定量分析 总被引:4,自引:0,他引:4
用遗传算法(GA)和连续投影算法(SPA)分别提取了赣南脐橙叶片高光谱图像的有效信息,对叶绿素的含量用偏最小二乘法(PLS)进行建模定量分析。高光谱图像标定后,提取感兴趣区域(ROI)的平均光谱,用GA和SPA算法分别选出了27和8条特征波长,然后用PLS对叶绿素含量建模。GA-PLS与SPA-PLS模型得到的预测集相关系数分别为0.80和0.83,均方根误差分别为2.45和2.30。结果表明:SPA-PLS模型具有较高的优势,可以结合高光谱技术对赣南脐橙叶绿素含量快速、无损的定量分析。 相似文献
106.
荧光可逆调控研究CdTe量子点-吖啶橙-小牛胸腺DNA的相互作用及分析应用 总被引:1,自引:0,他引:1
水相合成了谷胱甘肽(GSH)修饰的CdTe 量子点(QDs). 在PH=7.4的Tris-HCl缓冲溶液中, 吖啶橙(AO)通过静电引力吸附到GSH-CdTe QDs 的表面, 与GSH-CdTe QDs形成了基态复合物, 导致GSH-CdTe QDs的荧光猝灭. 在GSH-CdTe QDs-AO体系中加入小牛胸腺DNA (ctDNA), ctDNA诱导AO从GSH-CdTe QDs表面脱落嵌入其双螺旋结构中, 导致GSH-CdTe QDs的荧光恢复. 根据GSH-CdTe QDs荧光的猝灭和恢复, 实现了量子点荧光的可逆调控. ctDNA引起GSH-CdTe QDs-AO体系荧光恢复强度与ctDNA浓度成良好的线性关系, 检出限为0.13 ng•mL-1, 据此提出了简便快捷、准确、高灵敏测定ctDNA的新方法. 还结合共振瑞利散射(RRS)光谱、吸收光谱和原子力显微镜照片研究了GSH-CdTe QDs-AO-ctDNA三者之间的相互作用, 对相互作用机理进行了讨论并提出了相应的作用模型. 相似文献
107.
以聚苯胺/凹凸棒石(PANI/ATP)为载体,采用液相还原法合成了负载型纳米零价铁(nZVI),用扫描电子显微镜(SEM)、透射电子显微镜(TEM)及X射线光电子能谱分析仪(XPS)等技术手段对纳米复合材料进行表征,考察了反应时间和pH值对甲基橙降解性能的影响,对降解过程进行了动力学分析,探讨了nZVI/PANI/ATP复合材料对甲基橙的降解机理。 结果表明,nZVI/PANI/ATP复合材料在较大pH值范围内能有效降解水中甲基橙并具有降解长效性,当催化剂用量1.0 g/L,降解体积50 mL,甲基橙的浓度20 mg/L,降解时间30 min时,复合材料对甲基橙的降解率达到95.8%以上,对甲基橙的降解过程符合准二级动力学模型。 相似文献
108.
以表面增强激光拉曼光谱技术快速检测了豆制品中碱性嫩黄Ⅱ、碱性橙Ⅱ和皂黄的含量,并以高效液相色谱-串联质谱法进行了确证。优化出最佳提取溶剂为甲醇-水(7+3)溶液,样品前处理采用快速溶剂萃取仪(ASE)提取和凝胶渗透色谱(GPC)净化,对ASE和GPC条件进行了优化,提高了提取效率、检测灵敏度、减少提取溶剂用量并且有效去除了基质中大分子的干扰物。对三种色素的表面增强拉曼谱中的特征峰进行了归属认证。碱性嫩黄Ⅱ、碱性橙Ⅱ和皂黄的定量特征峰分别为652,995和983 cm-1;方法检出限为3.0,1.0和4.0 mg·kg-1。三种色素定量特征峰与色素浓度呈良好的线性关系,实验的回收率在83.48%~92.59%范围内,相对标准偏差小于7.2%。该方法新颖、前处理、设备操作简单、分析速度快、重现性好、灵敏度高,成功的对食品中色素进行了定性和定量测定,为食品中色素的检测提供了可靠的参考。 相似文献
109.
The green synthesis of metallic nanoparticles paved the way to improve and protect the environment by decreasing the use of toxic chemicals and eliminating biological risks in biomedical applications. Plant mediated synthesis of metal nanoparticles is gaining more importance owing to its simplicity, rapid rate of synthesis of nanoparticles and eco-friendliness. The present article reports an environmentally benign and unexploited method for the synthesis of silver nanocatalysts using Trigonella foenum-graecum seeds, which is a potential source of phytochemicals. The UV–visible absorption spectra of the silver samples exhibited distinct band centered around 400–440 nm. The major phytochemicals present in the seed extract responsible for the formation of silver nanocatalysts are identified using FTIR spectroscopy. The report emphasizes the effect of the size of silver nanoparticles on the degradation rate of hazardous dyes, methyl orange, methylene blue and eosin Y by NaBH4. The efficiency of silver nanoparticles as a promising candidate for the catalysis of organic dyes by NaBH4 through the electron transfer process is established in the present study. 相似文献
110.
The catalysts of un‐doped, single‐doped and co‐doped mesoporous titanium dioxide (MTiO2) were prepared by a template method with tetrabutyltitanate (Ti(OC4H9)4) as a Ti source material and Pluronic P123 as a template. The photo‐absorbance of the obtained catalysts was measured by UV‐vis absorption spectroscopy, and the photocatalytic activities of the prepared samples under UV and visible light were estimated by measuring the degradation rate of methyl orange (MO) (50 mg/L) in an aqueous solution. It was shown that the co‐doped MTiO2 could be activated by visible light and could thus be used as an effective catalyst in photo‐oxidation reactions. The effect of Fe and Ce co‐dopants on the material properties was investigated by X‐ray diffraction (XRD), scanning electron microscopy (SEM) and N2 adsorption‐desorption isotherm measurement. The characterizations indicated that the photocatalysts possessed a homogeneous pore diameter of ca. 10 nm with high surface area of ca. 150 m2/g. The photocatalytic activity of MTiO2 co‐doped with Fe and Ce was markedly improved due to the synergistic actions of the two dopants. 相似文献