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1)  interaction solutions
混合解
1.
And a unified matrix is used to obtain the generalized Wronski solutions,including Matveev solutions,Complexitons and interaction solutions.
给出Wronski行列式元素所满足的一般矩阵方程,借助Wronskian技巧,证明Sine-Gordon方程具有广义Wronski解,并用统一的矩阵方法给出Wronski解的几种表达形式:Matveev解、Complexiton解及混合解
2)  mixed enzymolysis
混合酶解
1.
The best technological parameters of mixed enzymolysis were obtained as pH 4.
04%;在此基础上,通过L(934)正交试验,得到混合酶解最佳工艺参数为体系pH4。
3)  mixed degradation
混合降解
4)  mixed hydrolysis
混合水解
5)  co-pyrolysis
混合热解
1.
To obtain co-pyrolysis characteristics of medical wastes containing polyvinyl chloride(PVC) and biomass,co-pyrolysis experiment on mixture of tube for transfusion(TFT) and gauze,the main ingredient of which was PVC and cellulose respectively,was carried out in an atmosphere of N2 using thermogravimetric analyser(TGA).
为研究聚氯乙烯(polyvinyl chloride,PVC)类与生物质类医疗废物的混合热解特性,利用差热热重分析仪,在氮气气氛下,对输液管(tube for transfusion,TFT;含PVC)和纱布(含纤维素)样品进行了混合热解实验,并以其相互反应机制为依据,单组分热解模型为基础,建立了二者混合热解的动力学模型。
2.
Thermal-gravimetric analysis (TGA), gas chromatogram (GC) and mass spectrum (MS) method have been used to study the characteristics of sulphide pollutant that released from the co-pyrolysis of biomass and coal blends.
采用热重分析和色谱、质谱偶联技术,对三种秸秆类生物质与煤混合热解过程中产生的含硫气体进行了在线检测,研究生物质对煤热解析出的COS气体的影响。
3.
To obtain co-pyrolysis characteristics of medical wastes containing polyvinyl chloride(PVC)and biomass,co-pyrolysis experiments on mixtures of tube for transfusion(TFT)and gauze at different mass proportions,whose main ingredients were PVC and cellulose respectively,were carried out in an atmosphere of N2 using the thermogravimetric analyser(TGA.
为研究聚氯乙烯(polyvinyl chloride,PVC)类与生物质类医疗废物的混合热解特性,利用差热热重分析仪,在氮气气氛下,对输液管(tube for transfusion,TFT;含PVC)和纱布(含纤维素)样品在不同质量配比下进行了混合热解实验,深入研究二者混合热解的行为与规律。
6)  Mixed pyrolysis
混合热解
1.
An experimental study on mixed pyrolysis characteristics of typical MSW components was performed, and the reaction kinetics model was established by using least squares algorithms.
并列出了双组分混合热解实验部分的实验结果及模型计算结果,两者吻合较好,为进一步建立垃圾综合热解神经网络模型奠定了基础。
补充资料:酒化酶、醇酶、发酵酶
分子式:
CAS号:

性质:又称酒化酶、醇酶、发酵酶。从酵母中分离而得的一系列酶。不耐热。它能催化酒精发酵反应,与糖酵解有关,如磷酸化酶、醛缩酶、葡萄糖磷酸变位酶、葡萄糖6-磷酸酶等。

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