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1)  LAP10320 air preheater
LAP10320空预器
2)  air heater
空预器
1.
This paper introduces a type of composed water-tube boiler that is fitted with a new type of cast iron air heater instead of the common cast iron economiser.
本文介绍了组装式热水锅炉,采用新型铸铁空预器代替省煤器,可以克服省煤器缺点,加热空气,强化炉内燃料的燃烧,回收余热,从而达到提高锅炉热效率,增加出力的目的。
2.
Each boiler has two regenerative air heaters.
7m回转式空预器 ,空预器的漏风率长期超过设计漏风率较多 ,导致锅炉送、引风机电耗高 ,锅炉热经济性差。
3)  air preheater
空预器
1.
Effect of flue gas denitration plant on air preheater;
烟气脱硝装置对锅炉空预器的影响
2.
Discussion on the measures of air preheater corrosion in boiler using coke-oven gas
焦炉煤气燃料锅炉空预器腐蚀的解决措施
3.
The working principles of air-leakage control systems for rotary air preheaters used already in one power plant have been summarized, the main causes leading to air-leakage of air preheaters being analysed, putting forward a new method for realizing air-leakage control of the air preheaters by using the fuzzy controller based on the language control regulations.
介绍已应用于某发电厂的回转式空气预热器(空预器)漏风控制系统的工作原理。
4)  air pre-heater
空预器
1.
Design and optimization of air pre-heater with internally ribbed tube;
内螺纹管空预器的设计和优化
2.
It was considered that rhe high leakage of air pre-heater and primary air,the difference of the rotation rates between the panel indication and the real value of the coal feeder,and the abnormal operation of coal pulverizing system were the probable reason.
判定该炉不能稳定带满负荷的原因是:空气预热器(以下简称空预器)及一次风漏风率过大、部分给粉机表盘转速与就地实际转速不符及制粉系统运行不正常。
5)  air preheater
空气预器
6)  air pre-heater
空气预热器
1.
On the bearing substitution of air pre-heater in fuel electric plant;
关于火力发电厂空气预热器的轴承代用
2.
The application of heat pipe and internally ribbed tube in air pre-heater;
热管和内螺纹管在低温空气预热器中的应用
3.
The corrosion often happens to the tubes of air pre-heaters in hydrocracking plants and blocks air pre-heaters so much,that the circulative effect is not well.
加氢裂化装置空气预热器翅片管经常发生腐蚀,同时产生了大量的腐蚀产物堵塞空气预热器,造成预热器流通不好。
补充资料:LAP
分子式:
CAS号:

性质:蛋白质水解酶中的氨肽酶类(aminopeptidases)之一。这类酶能从多肽链上游离的氨基末端(N端)由外向里逐个地把氨基酸切下,故又称肽链外切酶(exopeptidases)。亮氨酸氨肽酶不是因为只能水解以亮氨酸(Leu)为N末端残基的肽键,而是水解以亮氨酸为N末端的肽键速度为最快才有这一名称由来。实际上它同样可作用于N末端的其他氨基酸。对猪肾来源的LAP(分子量约255000)研究较多,但来自其他生物源的LAP也很多。分子量约30万,由数个亚基构成。Mg2+或Mn2+是该酶催化作用所必需的。早期它常用于对多肽的氨基酸序列测定。通常把在pH值8.5,25℃下,每分钟能水解1μmol L-亮氨酰胺(L-leucinamide)的酶量为一个酶活单位。

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