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1)  pyrolysis [英][pai'rɔlisis]  [美][paɪ'rɑləsɪs]
高温热解
1.
Characteristic study of the solid, liquid and gas produced by microwave pyrolysis of sewage sludge;
微波高温热解污水污泥各态产物特性分析
2.
Volatility of trace elements in the coal from Shenfu during pyrolysis;
高温热解神府煤中微量元素释放规律的研究
3.
Efficiency and Mechanism of Sewage Sludge Deatering and Pyrolysis under Treatment of Microwave Energy;
微波能作用下污泥脱水和高温热解的效能与机制
2)  thermal decomposition
高温热解
1.
Study of the effect of ferrocene on the growth of CN_x nanotubes by thermal decomposition of ethylenediamine;
二茂铁在高温热解乙二胺制备CN_x纳米管过程中的催化性能研究
2.
The CN_x nanotube films have been fabricated on Si substrates by thermal decomposition when NH_4Cl and C_2H_8N_2 were used as nitrogen sources.
采用高温热解法,分别以氯化铵(NH4Cl)和乙二胺(C2H8N2)为氮源在洁净的硅片上沉积生长CNx纳米管薄膜。
3.
The effect of different catalysts on the quality and yield of carbon nanotubes produced by thermal decomposition of ferrocene/xylene has been studied.
本论文首先对不同催化剂在高温热解二茂铁/二甲苯前驱液制备碳纳米管过程中的催化性能进行了研究。
3)  high temperature pyrolysis
高温热解
1.
In order to study the characterisetics of batched high temperature pyrolysis of some mumicipal solid waste(MSW),a batched-scale pyrolysis test has been carried out on the test stand,obtaining pyrolystic gas compents and gas-producing rate of each specimen.
为了研究固体废物批量热解特性,在试验台上进行了批量规模的高温热解试验,得到了各样本的热解气组分和产气率。
2.
The catalyst iron particles and carbon atom are introduced onto the substrate by high temperature pyrolysis of FePc.
利用高温热解酞菁铁的方法,在几种不同金属丝上生长了碳纳米管,测试比较了几种金属丝上碳纳米管的场致电子发射特性。
3.
The sulfur escapes from samples in form of gas oxides by the high temperature pyrolysis combustion,at the same time,the chloride are broken down to chlorine and escaped,so the sulfur is oxidized to high valence in form of SO3,and it is absorbed by water to form SO2-4 ion,which forms fine particle mixed with Ba2+ ion.
利用高温热解燃烧将试样中的硫以气体氧化物形式逸出,与此同时,氯化物也分解成氯气逸出,因而硫被氧化为高价,呈SO3形式被水吸收而形成SO42-离子,SO42-离子与Ba2+离子即生成细微的颗粒。
4)  high temperature decompose
高温热分解
5)  Pyrohydrolysis decomposition
高温热水解
6)  high-temperature pyrolysis
高温热解法
1.
This paper analyzes the present condition of single-use medical articles,puts forward the countermeasures entitled"cradle-to-grave",points out the high-temperature pyrolysis is more suitable for handling single-use medical supplies.
本文综述分析一次性医疗用品存在的问题,提出"从摇篮到坟墓"(cradle tograve)的管理对策,并指出高温热解法更适合于一次性医疗用品的处理。
补充资料:废物热解
分子式:
CAS号:

性质:是在缺氧或无氧条件下废物的热分解过程。热解温度为500~800℃,比焚烧温度低。有机废物的热解可得到能分离、回收和再利用的气体或液体燃料。另外,由于热解温度相对较低,因此热解过程产生的氮氧化物(NOχ)少,而且尾气排放量也少。目前,发达国家已有城市垃圾、废塑料和废轮胎热解处理的工业化装置,但成功运行的这类工业化装置毕竟还很少,因此从总体来说,废物热解技术尚处在试验性生产的中试阶段。

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