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1)  behind-converter ammonia separation
塔后分氨
1.
Presents the before-converter ammonia separation and the behind-converter ammonia separation processes,compares the characteristics of the two processes of ammonia separation.
介绍合成氨工艺中合成塔塔前分氨和塔后分氨 2种工艺 ,比较塔前分氨工艺与塔后分氛工艺的特点 ,介绍云天化 15 0 0t/d合成氨增产改造中实施合成系统由塔前分氨改为塔后分氨工艺的内容和改造后的运行情
2)  before-converter ammonia separation
塔前分氨
1.
Presents the before-converter ammonia separation and the behind-converter ammonia separation processes,compares the characteristics of the two processes of ammonia separation.
介绍合成氨工艺中合成塔塔前分氨和塔后分氨 2种工艺 ,比较塔前分氨工艺与塔后分氛工艺的特点 ,介绍云天化 15 0 0t/d合成氨增产改造中实施合成系统由塔前分氨改为塔后分氨工艺的内容和改造后的运行情
3)  ammonia stripping tower
氨吹脱塔
1.
After that the wastewater is treated by a combined process of ammonia stripping tower,flocculating settling tank,ABR,CASS and zeolite filter,the effluent quality is better than the first class criteria specified in Integrated Wastewater Discharge Standard(GB 8978-1996).
养殖废水中有机物及氨氮浓度高,经氨吹脱塔/絮凝沉淀池/ABR复合厌氧反应器/CASS好氧反应器/沸石过滤器联合工艺处理后,各项出水指标均优于《污水综合排放标准》(GB8978—1996)的一级排放标准。
4)  ammonia synthesis tower
氨合成塔
1.
This article introduces the application of DNCA type ammonia synthesis catalyst in 800 ammonia synthesis tower.
介绍了DNCA型氨合成催化剂在80 0氨合成塔的应用情况 ,对它的特点、触媒升温还原要点进行了总结。
2.
This article analyzes the reasons for inactivation of upper catalyst in 1?600 ammonia synthesis tower.
分析氨合成塔上层触媒失活的原因 ,采取措施将氨合成塔上层部分触媒不钝化卸出 ,并装填新触媒。
3.
Taking the ammonia synthesis tower in a middle-sized ammonia plant as an example,the influences of the temperature,ammonia content,inert gas content and space velocity at the inlet of the catalyst bed on the temperature,ammonia content,synthesis conversion and ammonia output at the outlet of the catalyst bed were studied in this paper.
以中型氨厂氨合成塔为例,采用数学模拟的方法,从理论上研究和分析了氨合成塔催化床进口温度、氨含量、惰性气体含量和空速分别对出口温度、氨含量、合成转化率和氨产量的影响。
5)  Ammonia synthetic tower
氨合成塔
1.
Design and comparison of large-sized ammonia synthetic tower;
大型氨合成塔筒体设计对比分析
2.
This article analyses the leakage reason of ammonia synthetic tower shell by NDT, presents that the equipment's design, manufacture and application should be strictly controlled and managed.
本文对氨合成塔筒体泄漏进行无损检测分析,提出了在设备设计、制造和使用过程中应严格控制和管理。
6)  ammonia stripper
氨汽提塔
1.
Checked the corrosion status of tube array of ammonia stripper, analysed the reasons of tube array corrosion, calculated the strength, and disposed the defects of tube array after the reversing of ammonia stripper.
检测了氨汽提塔列管腐蚀状况,分析了列管腐蚀原因,并进行强度核算,对氨汽提塔调头后列管缺陷进行处理。
2.
This article presents the situation of ammonia stripper corrosion, discusses reasons for frequent leaking of the lining welding and the countermeasures, as well as the cautions for the maintenance.
主要对氨汽提塔的腐蚀状况、衬里焊缝发生频繁泄漏的原因和应对措施以及维护检修中的注意 事项等进行探讨。
补充资料:氨氯青霉素钠,氨氯西林,氨氯西林钠,氨氯青霉素,美佳林,氨苄邻氯青霉素,安洛欣 ,氨唑青霉素钠
药物名称:氨氯西林

英文名:Ampicloxacillin

别名:氨氯青霉素钠,氨氯西林,氨氯西林钠,氨氯青霉素,美佳林,氨苄邻氯青霉素,安洛欣 ,氨唑青霉素钠;氨唑西林;白萝仙;白梦仙;复方安比西林;淋必清

外文名:Ampicloxacillin, Ampiclox, Megalin, Rectocill

药理:是氨苄西林和氯唑西林的等量混合物.对产酶株金黄色葡萄球菌有效.

适应症:
为治疗各种感染性疾病的首选药品,常用于呼吸道混合感染(肺炎、急慢性支气管炎、咽喉炎、扁桃体炎、小儿上呼吸道感染、百日咳等)、泌尿道感染(淋病、尿道炎、膀胱炎、盆腔炎、阴道炎、肾盂肾炎等)治疗;其他对本品敏感的革兰阳性及阴性菌感染,如胆道感染、急慢性菌痢及皮肤、软组织感染、脑膜炎、败血症、心内膜炎等。

用量用法:
口服:1~2粒/次,4~6次/日。肌注、静注:每次0.5~1g,每日3~4次,用注射用水溶解后缓慢注入。静滴:每次0.5~1g。用葡萄糖液稀释后于1小时内滴完,每日用量为6~12g。

注意事项:
偶有过敏反应、眩晕、耳鸣等,用前需做皮试。青霉素过敏者忌用。

规格: 胶囊剂0.5g(二者各0.25g);粉针剂:0.5g(二者各0.25g).



类别:抗生素\β-内酰胺类\青霉素类
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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