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1)  ammonia nitrogen removal
氨氮脱除
1.
This paper relates the progress in studies on the methods for removing the ammonia nitrogen adopted by China and Foreign countries at present, analyzes the advantages and disadvantages of different methods, and puts forward some opinions on the development directions of the advanced oxidation technology, the important method for ammonia nitrogen removal in the future.
叙述了目前国内外常用氨氮脱除技术研究进展情况,对多种方法的优缺点进行了剖析,对未来重要脱氮方法的高级氧化法的发展方向提出了看法。
2)  microorganisms with ammonia-nitrogen removed
氨氮脱除菌
3)  removal rate of ammonia-nitrogen
氨氮脱除率
4)  denitrification and phosphorus removal
脱氮除磷
1.
Test of membrane bioreactor for denitrification and phosphorus removal;
MBR的脱氮除磷工艺研究
2.
Research progress on technique of denitrification and phosphorus removal in membrane bioreactor
膜生物反应器脱氮除磷技术的研究进展
3.
The phosphorus release and uptake behavior of phosphorus accumulating organisms (PAOs) in “anoxic- anaerobic-aerobic” denitrification and phosphorus removal process (namely reversed AAO) with low carbon nutrients and high nitrate were explored using artificial wastewater and municipal wastewater.
采用人工配水和市政污水研究了“缺氧-厌氧-好氧”(倒置AAO)脱氮除磷工艺中,聚磷微生物(PAOs)在低碳源、高硝酸盐环境下的释磷和吸磷行为。
5)  removal of nitrogen and phosphorus
脱氮除磷
1.
Effect of cell concentration on the removal of nitrogen and phosphorus in synthetic wastewater by the immobilized algal-bacterial system;
固定化藻菌的小球浓度对模拟生活污水脱氮除磷效果的影响
2.
The hydraulic retention time and the ratio of whole aerobic zone on removal of nitrogen and phosphorus are investigated.
实验通过水力停留时间和上下区域体积比对脱氮除磷效果影响的研究,确定该工艺的最佳运行工况和反应器内挡板位置;同时与传统SBR工艺进行对比实验研究。
3.
The mechanisms of of the biological removal of nitrogen and phosphorus are explained.
在阐述城市污水生物脱氮除磷机理的基础上 ,分析生物脱氮除磷的 MSBR工艺、U CT工艺和 BCFS工艺。
6)  Phosphorus and nitrogen removal
脱氮除磷
1.
Effect of COD concentration on phosphorus and nitrogen removal in SBMBBR;
COD进水浓度对SBMBBR脱氮除磷效果影响
2.
The modified A~2/O(MAAO) process for phosphorus and nitrogen removal is improved from the traditional A~2/O technology.
介绍了一种新型的脱氮除磷工艺及其运行情况。
3.
The major achievements gained in the study of phosphorus and nitrogen removal by SBR were discussed as well.
介绍了序批式活性污泥法(Sequencing Batch Reactor,简称SBR)工艺的产生、发展和特点以及目前脱氮除磷研究的主要进展。
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
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