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锰化合物抗氧化及保护头发光损伤功效评价
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作者 陈丽媛 高合意 +2 位作者 唐金晶 刘作华 刘仁龙 《日用化学工业(中英文)》 CAS 北大核心 2023年第9期1044-1050,共7页
采用体外评价方法对甘氨酸锰(GlyMn)、硫酸锰(MnSO4)进行抗氧化及保护头发光损伤功效研究。通过测定GlyMn、MnSO4对超氧自由基和过氧化氢以及羟基自由基清除活性,考察GlyMn、MnSO4对活性氧自由基含量的影响,评价其抗氧化功效。采用模拟... 采用体外评价方法对甘氨酸锰(GlyMn)、硫酸锰(MnSO4)进行抗氧化及保护头发光损伤功效研究。通过测定GlyMn、MnSO4对超氧自由基和过氧化氢以及羟基自由基清除活性,考察GlyMn、MnSO4对活性氧自由基含量的影响,评价其抗氧化功效。采用模拟太阳光诱导头发光损伤的氧化损伤实验测试头发黑色素降解产生自由基含量,头发表面SEM表征评价锰化合物对头发的光保护作用。采用人体功效实验评价GlyMn、MnSO4洗发液的功能。结果表明,GlyMn、MnSO4对3种自由基均有明显的清除作用,其中3 mmol/L锰化合物能明显清除超氧自由基,清除能力相当于3 U/mL锰超氧化物歧化酶,当当锰化合物浓度在50 mmol/L时能明显降低头发中黑色素降解产生的自由基,能够有效保护头发光损伤,保护头发毛鳞片不受损害,表现出明显的抗氧化及头发光损伤保护功效。 展开更多
关键词 锰化合物 自由基 抗氧化 头发光损伤
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Oxidation behavior of ammonium in a 3-dimensional biofilm-electrode reactor 被引量:3
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作者 jinjing tang Jinsong Guo +3 位作者 Fang Fang Youpeng Chen Lijing Lei Lin Yang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2013年第12期2403-2409,共7页
Excess nitrogenous compounds are detrimental to natural water systems and to human health. To completely realize autohy- drogenotrophic nitrogen removal, a novel 3-dimensional biofilm-electrode reactor was designed. T... Excess nitrogenous compounds are detrimental to natural water systems and to human health. To completely realize autohy- drogenotrophic nitrogen removal, a novel 3-dimensional biofilm-electrode reactor was designed. Titanium was electroplated with ruthenium and used as the anode. Activated carbon fiber felt was used as the cathode. The reactor was separated into two chambers by a permeable membrane. The cathode chamber was filled with granular graphite and glass beads. The cathode and cathode chamber were inhabited with domesticated biofilm. In the absence of organic substances, a nitrogen removal efficiency of up to 91% was achieved at DO levels of 3.42 ± 0.37 mg/L when the applied current density was only 0.02 mA/cm^2. The oxidation of ammonium in biofilmelectrode reactors was also investigated. It was found that ammonium could be oxidized not only on the anode but also on particle electrodes in the cathode chamber of the biofilm-electrode reactor. Oxidation rates of ammonium and nitrogen removal efficiency were found to be affected by the electric current loading on the biofilm-electrode reactor. The kinetic model of ammonium at different electric currents was analyzed by a first-order reaction kinetics equation. The regression analysis implied that when the current density was less than 0.02 mA/cm^2, ammonium removal was positively correlated to the current density. However, when the current density was more than 0.02 mA/cm^2, the electric current became a limiting factor for the oxidation rate of ammonium and nitrogen removal efficiency. 展开更多
关键词 AUTOTROPHIC BIOFILM-ELECTRODE nitrogen removal AMMONIUM oxidation behavior
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