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双氧水-氢氧化钠结合对脱细胞猪真皮基质材料高度纯化的作用 被引量:1
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作者 肖世维 但年华 但卫华 《功能材料》 EI CAS CSCD 北大核心 2015年第7期7030-7034,7038,共6页
以可溯源性猪皮为原料,采用特殊的化学、物理及生化方法对猪皮进行高度纯化处理,通过观察实验中皮块厚度、面积、废液中胶原蛋白与非胶原蛋白含量及组织学形貌变化,得出脱细胞猪真皮基质碱膨胀的最佳方案为双氧水4%-氢氧化钠6%。并制备... 以可溯源性猪皮为原料,采用特殊的化学、物理及生化方法对猪皮进行高度纯化处理,通过观察实验中皮块厚度、面积、废液中胶原蛋白与非胶原蛋白含量及组织学形貌变化,得出脱细胞猪真皮基质碱膨胀的最佳方案为双氧水4%-氢氧化钠6%。并制备了高纯度脱细胞猪真皮基质,检测其抗张强度为7.2 MPa,吸湿性能好,不含重金属,无经口急毒,细胞除去干净且细胞毒性1级,为今后脱细胞猪真皮基质在生物医用材料领域的应用奠定基础。 展开更多
关键词 高度纯化 脱细胞猪真皮基质 胶原
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Purification and Characterization of a New Thermostable κ-CarrageenasefromtheMarineBacterium Pseudoalteromonas sp. QY203 被引量:10
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作者 LI Shangyong JIA Panpan +2 位作者 WANG Linna YU Wengong HAN Feng 《Journal of Ocean University of China》 SCIE CAS 2013年第1期155-159,共5页
A new extracellular κ-carrageenase, namely CgkP, 34.0 kDa in molecular weight, was purified from Pseudoalteromonas sp. QY203. CgkP showed relatively high activity at acidities ranging from pH6.0 to pH9.0 and temperat... A new extracellular κ-carrageenase, namely CgkP, 34.0 kDa in molecular weight, was purified from Pseudoalteromonas sp. QY203. CgkP showed relatively high activity at acidities ranging from pH6.0 to pH9.0 and temperatures ranging from 30℃ to 50℃ with the highest activity at 45℃ and pH7.2. Sodium chloride increased its activity markedly, and KC1 increased its activity slightly. The divalent and trivalent metal ions including Cu^2+, Ni^2+, Zn^2+, Mn^2+, Al^3+ and Fe^3+ significantly inhibited its activity, while Mg^2+ did not. CgkP remained 70% of original activity after being incubated at 40℃ for 48h, and remained 80% of the activity after being incubated at 45℃ for 1 h. It exhibited endo-κ-carrageenase activity, mainly depolymerizing the κ-carrageenan into disaccharide and tetrasaccharide. CgkP was more thermostable than most of previously reported κ-carrageenases with a potential of being used in industry. 展开更多
关键词 κ-carrageenase PURIFICATION CHARACTERIZATION thermostability PSEUDOALTEROMONAS
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Determination of Ultra Trace Level of Uranium in Electronic Materials by Fluorescence Spectrometry
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作者 Toshi Kawashima 《Journal of Chemistry and Chemical Engineering》 2010年第2期61-62,共2页
Using ultra high purity NaF-NaKCO3 in the Fluorescence spectrometry, determination of sub ppb levels of Uranium in the electronic materials has been achieved. The method could be applied to determination of Uranium in... Using ultra high purity NaF-NaKCO3 in the Fluorescence spectrometry, determination of sub ppb levels of Uranium in the electronic materials has been achieved. The method could be applied to determination of Uranium in any electronic materials. 展开更多
关键词 DETERMINATION URANIUM electronic materials fluorescence spectrometry.
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Preparation of high purity ruthenium nitrosyl nitrate from spent Ru-Zn/ZrO_(2)catalyst
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作者 LIU Kai-ming QIU Yun-ren LI Yan 《Journal of Central South University》 SCIE EI CAS 2024年第9期3014-3023,共10页
Preparation of high purity ruthenium nitrosyl nitrate using spent Ru-Zn/ZrO_(2)catalyst was studied,including melting and leaching to obtain potassium ruthenate solution,reduction,dissolving,concentrating and drying t... Preparation of high purity ruthenium nitrosyl nitrate using spent Ru-Zn/ZrO_(2)catalyst was studied,including melting and leaching to obtain potassium ruthenate solution,reduction,dissolving,concentrating and drying to obtain ruthenium trichloride,nitrosation and hydrolysis to obtain ruthenium nitrosyl hydroxide,removing of K^(+)and Cl^(-),and neutralization with nitric acid.The effects of temperature,concentration,time and pH on the yield and purity of intermediates and final product were studied,and the optimum process conditions were obtained.The yield of ruthenium nitrosyl nitrate is 92%,the content of ruthenium in high purity product is 32.16%,and the content of Cl^(-)and K^(+)are much less than 0.005%.The reaction kinetics of ruthenium nitrosyl chloride to ruthenium nitrosyl hydroxide was studied.The reaction orders of Ru(NO)Cl_(3)at 40,55 and 70℃are 0.39,0.37 and 0.39,respectively,while those of KOH are 0.16,0.15 and 0.17,respectively.The activation energy is-2.33 k J/mol. 展开更多
关键词 ruthenium nitrosyl nitrate spent catalyst high purity utilization of wastes reaction kinetics
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