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法罗培南钠热降解特性的研究及主要热降解产物的结构确证 被引量:6
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作者 赵霞 胡昌勤 金少鸿 《中国抗生素杂志》 CAS CSCD 北大核心 2005年第6期341-343,共3页
目的探讨法罗培南钠的热降解动力学特性,并推断其主要热降解产物的结构。方法通过加速试验探讨法罗培南钠的热降解动力学方程,进而确定其在60℃条件下的热降解反应级数;应用MS1、H-NMR1、3C-NMR、IR及UV推断其主要的热降解产物结构。结... 目的探讨法罗培南钠的热降解动力学特性,并推断其主要热降解产物的结构。方法通过加速试验探讨法罗培南钠的热降解动力学方程,进而确定其在60℃条件下的热降解反应级数;应用MS1、H-NMR1、3C-NMR、IR及UV推断其主要的热降解产物结构。结果法罗培南钠在60℃放置条件下的热降解动力学方程为LnC/C0=-0.0042t+0.35,r2=0.9911;其主要热降解杂质为5-四氢呋喃基-噻唑-4-甲酸钠。结论法罗培南钠的热降解特性符合一级化学反应动力学特性。 展开更多
关键词 青霉烯 法罗培南钠 热降解物 结构
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Nano-CaCO_3/PP/PS复合材料的热降解行为的研究 被引量:3
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作者 黄勇平 麦堪成 《合成材料老化与应用》 2006年第3期1-4,8,共5页
用密炼机制备了马来酸酐接枝PP(MPP)和丙烯酸接枝PP(FPP)增容的nano—CaCO3/PP/PS复合材料,用TCA研究复合材料的热降解行为。结果表明:加入nano—CaCO3有助于提高PP/PS共混物的热稳定性,对于提高复合材料的热稳定性,FPP、MPP... 用密炼机制备了马来酸酐接枝PP(MPP)和丙烯酸接枝PP(FPP)增容的nano—CaCO3/PP/PS复合材料,用TCA研究复合材料的热降解行为。结果表明:加入nano—CaCO3有助于提高PP/PS共混物的热稳定性,对于提高复合材料的热稳定性,FPP、MPP与nano—CaCO3不存在协同作用;nano—CaCO3/增容PP/PS共强物复合材料的DTC曲线在400℃~500℃间有两个失重速率峰,分别对应PS和PP的热降解。 展开更多
关键词 nano—CaCO3 PP/PS共混 降解行为
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PROPERTIES OF BIODEGRADABLE THERMOPLASTIC STARCH 被引量:1
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作者 高建平 王少敏 +1 位作者 王为 于九皋 《Transactions of Tianjin University》 EI CAS 1997年第2期92-96,共5页
Thermoplastic starch is a kind of modified starch produced by mixing starch with additives and processing the mixture in an extruder. The mechanical properties, including tensile strength and elongation at break, biod... Thermoplastic starch is a kind of modified starch produced by mixing starch with additives and processing the mixture in an extruder. The mechanical properties, including tensile strength and elongation at break, biodegradability and rheological properties were studied. Glycerol and urea, to some extent, can both decrease the tensile strength and increase percentage elongation at break, because the former acts as a plasticizer and the latter can break down interactions among starch macromolecules. Thermoplastic starch shows thermoplasticity and its melt behaves as a pseudoplastic liquid at a low shear rate. Its biodegrading extent is slightly higher than that of native starch. The molecular weight of starch displays a decreasing tendency after thermoplastic modification. 展开更多
关键词 thermoplastic starch BIODEGRADABILITY RHEOLOGY mechanical property
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Kinetic Parameters of Thermal Degradation of Polymers 被引量:2
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作者 朱新生 程嘉祺 《Journal of Donghua University(English Edition)》 EI CAS 2003年第1期54-57,共4页
The derivative expressions between activation energy (E) and the temperature at the maximum mass loss rate(Tmax) and between activation energy (E) and exponent (N) were deduced in the light of Arrhenius theory. It was... The derivative expressions between activation energy (E) and the temperature at the maximum mass loss rate(Tmax) and between activation energy (E) and exponent (N) were deduced in the light of Arrhenius theory. It was found that the increase of activation energy results in the decrease of exponent and the increase of Tmax. The kinetic parameters were involved in the analysis of the thermal degradation of several polymers. The degradation kinetics of these polymers well complied with the prediction of the derivative expressions for the polymer degradation with single mechanism dominated. 展开更多
关键词 Activation energy EXPONENT maximum mass loss rate thermal degradation
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Purification and characterization of manganese peroxidases from native and mutant Trametes versicolor IBL-04 被引量:4
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作者 Muhammad Asgher Muhammad Ramzan Muhammad Bilal 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2016年第4期561-570,共10页
Extracellular manganese peroxidases (MnPs) produced by native and mutant strains of Trametes versicolor IBL‐04 (EB‐60, EMS‐90) were purified by ammonium sulphate precipitation and dialysis, followed by ion‐exc... Extracellular manganese peroxidases (MnPs) produced by native and mutant strains of Trametes versicolor IBL‐04 (EB‐60, EMS‐90) were purified by ammonium sulphate precipitation and dialysis, followed by ion‐exchange and gel‐permeation chromatography. The purified enzymes elucidated a single band in the 43‐kDa region on sodium dodecyl sulphate‐polyacrylamide gel electrophoresis. The optimum pH and temperature of the purified enzymes were found to be 5.0 and 40 °C, respec‐tively. Mutant strain MnPs exhibited a broader active pH range and higher thermal stability than native MnP. Purified MnPs from selected mutants showed almost identical properties to native MnP in electrophoresis, steady‐state kinetics, and metal ion and endocrine‐disrupting compound (EDC) degradation efficiency. Although the fastest reaction rates occurred with Mn2+, MnPs displayed the highest affinity for ABTS, methoxyhydroquinone, 4‐aminophenol and reactive dyes. MnP activity was significantly enhanced by Mn2+and Cu2+, and inhibited in the presence of Zn2+, Fe2+, ethylene‐diaminetetraacetic acid and cysteine to various extents, with Hg2+ as the most potent inhibitory agent. MnPs from all sources efficiently catalyzed the degradation of the EDCs, nonylphenol and triclosan, removing over 80%after 3 h of treatment, which was further increased up to 90%in the presence of MnP‐mediator system. The properties of T. versicolor MnPs, such as high pH and ther‐mal stability, as well as unique Michaelis‐Menten kinetic parameters and high EDC elimination effi‐ciency, render them promising candidates for industrial exploitation. 展开更多
关键词 Manganese peroxidase Trametes versicolor IBL-04 PURIFICATION Characterization Thermo-stability BIODEGRADATION
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PREPARATION AND PROPERTIES OF POLY(LACTIC ACID-CO-GLYCOL TEREPHTHALIC ACID)COPOLYESTER 被引量:1
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作者 GAO Cuili JI Quan +1 位作者 KONG Qingshan XIA Yanzhi 《Chinese Journal of Reactive Polymers》 2006年第1期63-69,共7页
To obtain a kind of biodegradable polymer material with satisfactory properties, a new biodegradable copolyester poly(lactic acid-co-glycol terephthalate) (PETA), was synthesized from three monomers of lactic acid... To obtain a kind of biodegradable polymer material with satisfactory properties, a new biodegradable copolyester poly(lactic acid-co-glycol terephthalate) (PETA), was synthesized from three monomers of lactic acid, glycol and terephthalic acid. The resulting copolyesters, PETA, were characterized by FT-IR, ^1H-NMR, DSC, TGA and by the ways of weight loss rate to characterize their biodegradability. The findings in this work indicated that, the Tins and Tas of copolyesters PETA increased with increasing contents of the terephthalic acid units. From the biodegradation tests in natural soil, boiling water, acid buffer solution and alkali buffer solution, it was shown that the biodegradability of copolyesters PETA decreased with increasing contents of the terephthalic acid units. 展开更多
关键词 Lactic acid GLYCOL Terephthalic acid COPOLYESTER Thermal properties Biodegradability.
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Biodegradation Kinetics for Pre-treatment of Klebsiella pneumoniae Waste with Autothermal Thermophilic Aerobic Digestion 被引量:2
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作者 LIU Jingming SUN Dongdong +2 位作者 LIU Hui NIE Yingbin ZHU Zhirong 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2010年第6期905-909,共5页
Biodegradation parameters and kinetic characteristics for pre-treating waste strains of Klebsiella pneu-moniae were studied in laboratory scale with an insulated reactor by an innovative technique,autothermal thermo-p... Biodegradation parameters and kinetic characteristics for pre-treating waste strains of Klebsiella pneu-moniae were studied in laboratory scale with an insulated reactor by an innovative technique,autothermal thermo-philic aerobic digestion(ATAD) . Based on an Arrhenius-type equation,an empirical model was developed to corre-late the removal of total suspended solid(TSS) with the initial TSS concentration,influent reaction temperature,aeration rate and stirring rate. The reaction temperatures of the ATAD system could be raised from the ambient temperatures of 25 °C to a maximum temperature of 65 °C. The exponentials for the initial TSS concentration,aeration rate and stirring rate were 1.579,-0.8175 and-0.6549,respectively,and the apparent activation energy was 6.8774 kJ·mol-1. The correlation coefficient for the pre-exponential factor was 0.9223. The TSS removal effi-ciency predicted by the model was validated with an actual test,showing a maximum relative deviation of 10.79%. The new model has a good practicability. 展开更多
关键词 Klebsiella pneumoniae autothermal thermophilic aerobic digestion biodegradation kinetics empirical model
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De-polymerization of Waste Polymers to Produce Hydrocarbon Fuel Utilizing Thermal Degradation
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作者 Moinuddin Sarker Mohammad Mamunor Rashid Mohammed Molla Ashiquz Zaman 《Journal of Chemistry and Chemical Engineering》 2011年第2期129-134,共6页
Waste plastics are one of the biggest environmental concerns the world faces today. Waste plastics exposure to the environment is very hazardous. Over time waste plastics photo-degrade and become very tiny dust partic... Waste plastics are one of the biggest environmental concerns the world faces today. Waste plastics exposure to the environment is very hazardous. Over time waste plastics photo-degrade and become very tiny dust particles. These dust particles contain very harmful compounds including benzene, sulfur, carbon and many others. According to studies, waste plastic pollutions are one of the biggest reasons for the depletion of the ozone layer and contributor of global warming. Many scientists have been trying to figure out how to utilize these waste plastics and convert them into useful energy sources. It is possible to convert waste plastics into energy because they are made from petroleum. Scientists have succeeded in developing many methods including pyrolysis, catalytic cracking, thermal degrading and others. The purpose of this experiment is to convert these environmentally harmful waste materials into useful energy source using simple and viable methods. A particular thermal degradation process was successful in extracting fuel from waste plastics at 370-420 ~C. In this paper we will discuss our performed experiment and provide detailed analysis of the produced fuel. Thorough instrumental analysis of the produced fuel showed very considerable results including high energy contents, low levels of harmful emissions and compatibility with various types of existing appliances. 展开更多
关键词 Thermal degradation HYDROCARBON waste plastics FUEL
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