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Sonme Factors that Affect the Free Radical-scavenging Activity of Tea Extracts 被引量:9
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作者 Zhao Xinhuai ( Northeast Agricultural University, Harbin 150030 PRC) 《Journal of Northeast Agricultural University(English Edition)》 CAS 1999年第1期62-67,共6页
Some factors that affect the free radical-scavenging activety of two tea extracts were studied in vitro. It was found that concentration of tea extract or heating tea extract or treating with activated carbon and di... Some factors that affect the free radical-scavenging activety of two tea extracts were studied in vitro. It was found that concentration of tea extract or heating tea extract or treating with activated carbon and diatomite all had obvious effect on the scavenging activety of green tea extract ,but heating or treating with diaomite had less effect on the scavenging activity of black tea extract. Ascorbic acid, for having synergic effect with tea extracts, could enhance the scavenging activity of tea extracts markedly, and the contrary was cupric ion. Reducing sugars such as fructose and glucose also had some syncrgic effect to tea extracts. 展开更多
关键词 Tea extract. hydroxyl radical. free radival-scavenging activity
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Effects and mechanism of ozonation for degradation of sodium acetate in aqueous solution 被引量:1
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作者 De-min YANG Bing WANG +1 位作者 Hong-yang REN Jian-mei YUAN 《Water Science and Engineering》 EI CAS 2012年第2期155-163,共9页
The degradation efficiencies and mechanism of ozonation for the degradation of sodium acetate in aqueous solution were investigated under atmospheric pressure at room temperature (293 K). The effects of the initial ... The degradation efficiencies and mechanism of ozonation for the degradation of sodium acetate in aqueous solution were investigated under atmospheric pressure at room temperature (293 K). The effects of the initial pH value, reaction time, and concentrations ofHCO3^-, CO3^2- , CaC12, and Ca(OH)2 on the removal rate of chemical oxygen demand (COD) were studied. The results indicated that ozonation obviously improved the degradation rate of sodium acetate when the pH value of the solution was not less than 8.5. A suitable long reaction time may be helpful in increasing the COD removal rate, and a removal rate of 36.36% can be obtained after a 30-minute treatment. The COD removal rate increased firstly and decreased subsequently with the increase of the HCOj concentration (from 0 to 200 mg/L), and under the same experimental condition it reached the optimum 34.66% at the HCO3-^ concentration of 100 mg/L. The COD removal rate was 5.26% lower when the concentration of HCO3^- was 200 mg/L than when there was no HCO3^-. The COD removal rate decreased by 15.68% when the CO3^2- concentration increased from 0 to 200 mg/L. CO3^2- has a more obvious scavenging effect in inhibiting the formation of hydroxyl radicals than HCO3. CaC12 and Ca(OH)2 could increase the degradation efficiency of sodium acetate greatly, and the COD removal rates reached 65.73% and 83.46%, respectively, after a 30-minute treatment, 29.37% and 47.10% higher, was proved that the degradation of sodium acetate in the ozonation process followed the mechanismof oxidization with hydroxyl free radicals (.OH). 展开更多
关键词 OZONATION sodium acetate hydroxyl free radical chemical oxygen demand (COD)
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Preparation of Elemental Tellurium Nanoparticles-Sucrose Sol and Its Antioxidant Activity in Vitro
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作者 李云志 PAN Jie +4 位作者 JIANG Kun ZHOU Yanhui HUANG Jietao YE Jinxuan 白燕 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2013年第5期1048-1052,共5页
The elemental tellurium nanoparticles (TeNPs) - sucrose sol was prepared by the reaction of sodium tellurite with ascorbic acid in sucrose aqueous solution. The results indicated that TeNPs were dispersion excellent... The elemental tellurium nanoparticles (TeNPs) - sucrose sol was prepared by the reaction of sodium tellurite with ascorbic acid in sucrose aqueous solution. The results indicated that TeNPs were dispersion excellent in the TeNPs - sucrose sol and the morphology of TeNPs was needle-like with about 70 nm in width and 500 nm in length. The antioxidant activity of the TeNPs - sucrose sol in vitro was estimated by pyrogallol autoxidation method, Fenton method and oxygen radical absorbance capacity (ORAC) assay. The results showed that a certain amount of TeNPs - sucrose sol could effectively scavenge superoxide anion free radical and hydroxyl free radical with scavenging rates of 73 % and 57 %, respectively. ORAC assay was used to measure the total antioxidant capacity of TeNPs - sucrose sol. The order of ORAC values was 2.25 μmol.L-1 TeNPs - 0.025 % sucrose sol 〉 0.025 % sucrose 〉 2.25 μmol.L-1 Na2TeO3 〉 1.63 μmol.L-1 ascorbic acid. The results suggested that the TeNPs - sucrose sol had the excellent antioxidant activity and TeNPs were the dominating contributors to antioxidant capacity of the TeNPs - sucrose sol. 展开更多
关键词 tellurium nanoparticles - sucrose sol superoxide anion free radical hydroxyl free radical oxygen radical absorbance capacity (ORAC)
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Determination of Reactive Intermediates During Anodic Oxygen-transfer Reactions at Lead Dioxide
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作者 AIShi-yun ZHANGWen GAOMeng-nan GUFen-lin WANGQing-jiang JINLi-tong 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2004年第3期289-293,共5页
The anodic discharge of water to produce adsorbed hydroxyl free radicals(·OH) is considered to be a prerequisite to anodic O-transfer reactions at a PbO_2 electrode. In this work,a method was studied by means of ... The anodic discharge of water to produce adsorbed hydroxyl free radicals(·OH) is considered to be a prerequisite to anodic O-transfer reactions at a PbO_2 electrode. In this work,a method was studied by means of high-performance liquid chromatography(HPLC) combined with electrochemical detection(ED) so as to investigate the production of hydroxyl free radicals(·OH) in the process of the anodic discharge of H_2O at a PbO_2 electrode. The voltammetric data obtained at the PbO_2 electrode for the oxidation of salicylic acid to salicylate hydroxylation products(DHBAs) and the detection of DHBAs by means of HPLC-ED confirm the proposed mechanism. 展开更多
关键词 PbO_2 electrode Electrocatalysis hydroxyl free radical Salicylic acid HPLC
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