1) sub-critical units
亚临界机组
1.
The application of inhibitor in the 300 MW sub-critical units was introduced to analyze the changes of water and vapor quality after adding the inhibitor, and some problems and attention to use the method were also discussed.
应用电化学、高压釜试验和XPS等手段 ,研究了一种用于热力机组停用保护的咪唑啉类成膜缓蚀剂 ,重点介绍了其在 3 0 0MW亚临界机组中的应用情况 ,分析了实施过程中水汽质量变化的特点和趋势 ,讨论了应用中的一些问题及注意事项。
2) 600 MW subcritical unit
600MW亚临界机组
1.
Directing against the property of emusified orimulsion oil defering from that of general fuel oils, the oil-burning system of orimulsion oil fired 600 MW subcritical unit has been analysed, the performance requirements of selecting related equipments for the oil-burning system being put forward, to ensure the orimulsion oil to be stable transported and burned.
针对乳化奥里油不同于一般燃油的特性,对600MW亚临界机组燃奥里油的锅炉燃油系统进行了分析,对燃油系统相关设备的选择提出性能要求,以确保奥里油的稳定输送和燃烧。
3) Subcritical water
亚临界水
1.
Progress in subcritical water extraction technique for extraction of natural products;
亚临界水萃取技术在天然产物提取中的研究进展
2.
Effect of Catalyzer on Biomass Liquefaction in Subcritical Water;
催化剂对亚临界水中生物质液化行为的影响
3.
The reaction pathways and decomposition efficiencies of PCBs in supercritical water(SCW) are reviewed in terms of supercritical water oxidation(SCWO),supercritical water thermolysis(SCWT),and subcritical water reduction(SCWR).
分别从超临界水氧化、超临界水裂解及亚临界水还原3个方面阐明了超临界反应过程中PCBs降解的反应路径和降解效率,解释了共溶剂(甲醇、苯)、碱催化剂(Na2CO3、NaOH)、氧化剂(NaNO3、NaNO2)等对PCBs脱氯和分解的增效作用机理。
4) sub-critical carbon dioxide
亚临界CO2
1.
Effect of ultrasonic field on extracting oil from sunflower seed using sub-critical carbon dioxide was studied.
以葵花籽为原料,研究了超声场对亚临界CO2萃取葵花籽油的影响。
5) sub-critical water
亚临界水
1.
Study on desulfurization of coal in sub-critical water;
亚临界水脱除煤中硫的实验研究
2.
Transformation behavior of arsenic in Wujiaping coal during sub-critical water treatment;
吴家坪煤中砷在亚临界水条件下的行为
3.
Removal of mercury from coal by sub-critical water extraction;
亚临界水条件下煤中汞的脱除
6) sub-critical region
亚临界区
参考词条
补充资料:超临界燃煤发电机组
超临界燃煤发电机组:指容量为60万千瓦以上,主蒸汽压力达到25兆帕以上,温度达到593-650℃或者更高的参数,并具有一次再热或二次再热循环的燃煤发电装置,具有煤耗低、环保性能好、技术含量高的特点,机组热效率能够达到45%左右。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。