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高温分解

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On the basis of the investigations of combustion and pyrolysis characters of the combustibles in MSW, kinetic parameters such as activation energy and preexponential factor of each combustible were determined.

在对燃烧物动力学上的燃烧及高温分解的基本调查中,每种可燃物的动力学参数,如活化能和指数因数是确定的。

It is also discussed that the Ag powder was added into the electrode by utilizing the decomposition of AgNO_3, but the result is not so good. Scanning by SEM, the active material is broken with long time mixture or temperature is insufficient to decompose completely. The mixed conductive additive was put into the active material LiFePO_4 to improve the conductivity.

本论文还试探性的利用AgNO_3的高温分解性在电极中添加Ag粉,但结果却不令人满意,通过对机械球磨后的电池材料进行SEM扫描分析,发现电池容量衰减的原因是长时间的机械球磨使得活性物质的晶体破裂,还有一点可能是因为温度不够高,AgNO_3分解的不彻底,使得电池中还存在着AgNO_3,影响了电池的性能。

The flame retarding mechanism of MCA on POM was that formaldehyde and formate acid were absorbed by melamine resulting from melamine cyanurate pyrolysis and temperature of burning materials was reduced because melamine cyanurate sublimation absorbed heat and thermalplastic polyurethane absorbed formaldehyde and enhanced stability of POM composites.

热失重、红外和气质联用分析表明,MCA/TPU复合阻燃剂对聚甲醛的阻燃作用是由于三聚氰胺氰尿酸盐高温分解并吸热,降低材料燃烧区域的温度;另一方面MCA高温分解生成的三聚氰胺可吸收聚甲醛分解产生的甲醛和甲酸;此外,TPU可提高聚阻燃甲醛的热稳定性,有利于阻燃。

Basing on thermo-simulation in laboratory, experimental study was accomplished to analyze the function mechanism of foaming agent and the foaming influence of its decompound production. The results indicated: function of foaming agents was due to their decompound and inter-reaction at high temperature. And some decompound production of foaming agent can reinforce the foaming ability of refining slag.

采用实验室模拟的方法,针对钢包精炼炉常用发泡剂的作用机理以及发泡剂高温分解产物对熔渣泡沫化性能的影响进行了研究,结果表明:发泡剂的作用主要来源于其组成物质的高温分解以及相互反应;发泡剂分解后部分产物作为高熔点粒子存在于熔渣中,提高了精炼渣的泡沫化性能。

The decomposition and burning kinetics of waste plastics are one of the focal points in this work.

废弃塑料高温分解和燃烧的动力学是本研究工作的重点之一。

The results indicated that the copper complexes have the best catalytic effect, and the high temperature of decomposition is dropped 129.01℃at most, the second is nickel complexes, and the catalytic effect is the smallest for the plumbum complexes.

有的催化剂的加入改变了AP的热分解过程,使AP的低温和高温分解峰合并成了一个峰,如7#、13#含铜配合物和8#含镍配合物,对AP的催化效果比较有效。

The following experimental results are obtained:(1) Through the dissociation and ionization of sodium amide in a shock tube with a magic hole to provide sodium ions and electrons, the three-body recombination rate coefficient of sodium ion with electron is determined under the condition of argon atoms acting as the third body in the collision process:〓. The experimental temperature range is from 1400 to 2700K, extending the limitation of the flame method.

实验获得了如下结果:(1)在魔洞型单脉冲激波管上以氨基钠粉的高温分解和电离提供钠离子和电子,测定了以氩原子为碰撞第三体时钠离子与电子的三体复合速率系数〓,实验测量温度范围1400~2700K,拓宽了火焰方法测量结果的局限。

The easy generation of middle-and-steady-state and special phase under the hydrothermal condition, enable to form matter which is hard to form in low melting point, high-pressure steam and in the melting state, and enable to the crystallization generation under hydrothermal condition, such as the high-temperature thermal decomposition.

在水热与溶剂热条件下中间态、介稳态以及特殊物相易于生成,能够使低熔点、高蒸气压且不能在融体中生成的物质,及高温分解相等在水热与溶剂热条件下晶化生成。

At the first stage, the volatile contained in fibrous matter was released, and then the released volatile matter was combusted continuously; at the second stage, the fixed carbon of fibrous matter was burned, and pyrolysis and combustion of the polymer matter happened at the same time.

在第一个阶段,挥发性、不稳定的物质包括纤维物会分解或挥发,然后分解的不稳定物质会持续的燃烧;在第二个阶段,稳定的含碳纤维物燃烧,并且,聚合物的高温分解和燃烧发生在同一时间。3。

The invention is obtained by adopting a hydrothermal and pyrogenic decomposition method which adopts Zn (CH3COO) 2 . 2H2O, deionized water and ammonia as raw materials; zinc acetate nano ribbon-shaped material is first obtained by a hydrothermal method and is then treated with pyrolysis in air so as to obtain the ZnO nano ribbon-shaped material.

本发明采用水热和高温分解方法制备得到,即,以Zn(CH 3 COO) 2 2H 2 O、去离子水及氨水为原料,先利用水热法制得醋酸锌纳米带状物,然后在空气中高温加热分解而成。

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