超声降解,ultrasonic degradation
1)ultrasonic degradation超声降解
1.Kinetics of ultrasonic degradation of polysaccharide from Porphyra yezoensis;超声降解条斑紫菜多糖的反应动力学
2.Study on ultrasonic degradation of methylene blue in the presence of nanometer rutile TiO_2 catalyst;纳米金红石型TiO_2催化超声降解亚甲基蓝溶液
3.Study on ultrasonic degradation of methylparathion pesticide in Presence of nano anatase TiO_2 catalyst;纳米锐钛型TiO2催化超声降解甲基对硫磷农药的研究
英文短句/例句

1.Sonochemical Degradation of Chloro-Organic Compounds & Black Liquor of Making Paper;氯代有机化合物及造纸黑液超声降解
2.Studies on Solution Properties and Ultrasonic Degradation Kinetics of Chlorinated Polypropylene;氯化聚丙烯溶液性质和超声降解动力学的研究
3.Studies on Degradation of Bright Red X-3B as Azo Dye by Ultrasonic;超声降解偶氮染料活性艳红X-3B的研究
4.Study on Ultrasonic Degradation of Concentrated Solution of Methylene Blue in Presence of TiO_2/Al_2O_3;TiO_2/Al_2O_3超声降解高浓度亚甲基蓝溶液性能研究
5.Synergetic degradation of phenol by ultrasound/iron-carbon microelectrolysis超声波/铁-炭微电解协同降解苯酚
6.Study on the Degradation of Chlorophenols by Microwave/ultrasound Assisted Photocatalysis Methods;微波/超声辅助光催化降解氯酚的研究
7.Study on Ultrasonic-Induced Degradation of Resorcinol in the Solution;超声辐照降解间苯二酚水溶液的研究
8.Studies on Degradation of Chlorination Aromatic Hydrocarbon in Wastewater by Ultrasound Cooperated with Nanoscale Iron;超声波/纳米铁降解氯代芳香烃的研究
9.Influencing Factors of Carbazole Degradation by Ultrasound Enhanced O_3/H_2O_2 Oxidation超声强化O_3/H_2O_2降解咔唑的影响因素
10.THE DEGRADATION OF PYRIDINE IN AQUEOUS SOLUTION BY THE ULTRASOUND/FENTON' S REAGENT超声波/Fenton试剂联用降解水中的吡啶
11.Decomposition of Organic Compounds of Coke Plant Wastewater by Ultrasonic Cavitation超声空化效应降解焦化废水中有机物的研究
12.Study on degradation of methyl orange in the water with the method of supersonic and chemistry oxidation超声——化学氧化法降解水中甲基橙的研究
13.Decomposition of P-nitrophenol in Water by Ozonization with Ultrasonic Enhancement;超声波强化臭氧降解水中对硝基苯酚的研究
14.Decomposition of Coking Wastewater by Ultrasonic Cavitation and Its Combined Technologies;超声空化及其组合技术降解焦化废水的研究
15.Studies on Degradation of Chloro-aromatic Compound in Wastewater by Ultrasound Cooperated with Zero-Valence Iron;超声波/零价铁协同降解氯代芳香有机物研究
16.Ultrasonic Degradation of MO Was Studied with TiO_2 as Catalyst;超声催化二氧化钛降解偶氮染料—甲基橙的研究
17.Study on Degradation of Aqueous Methyl Orange Solution with Ultrasonic Assisted Fenton Reagent;超声波促进Fenton法降解甲基橙溶液的研究
18.Degradation of Xylene and Benzene in Wastewater by Ultrasonic Radiation;超声辐射下废水中二甲苯和苯酚的降解
相关短句/例句

ultrasound degradation超声降解
1.The work on this subject done by domestic and overseas scholars is studied in this paper,and the progress of researches on ultrasound degradation solution is summarized through examining related parameters,such as pH value,ultrasound frequency,power and intensity,concentration of phenol and dissolved gas.论文研究了近几年国内外学者基于超声方法控制含酚废水的工作,从溶液pH值,超声频率、功率和声强,酚的初始浓度,溶解气体等方面总结了超声降解含酚废水的研究进展。
3)sono-degradation超声降解
1.The mechanism of sono-degradation of organic contamination and the way of degradation w.本文首先系统地论述了超声波降解有机污染物的机理及其降解途径,分析影响有机物超声降解效果的基本因素,如超声频率、声强、溶液的粘度、温度、pH值、溶解气体等:接着综述了超声波在水处理领域的取得的成果及其发展前景;然后分析了基于有机物超声降解的动力学共振模型,这对深入认识超声波的降解机理具有重要价值;最后基于超声化学的理论,以典型的偶氮染料甲基橙和酸性大红GR染料为处理对象,开展了超声波氧化降解水中染料的机理和实验研究,取得了有价值的实验结果:(1)以甲基橙和酸性大红GR染料为对象进行超声波降解实验研究,结果表明,初始浓度、溶液的pH值、有无曝气对染料降解均有影响:超声波对甲基橙和酸性大红GR染料的脱色均服从准一级动力学方程,且降解过程主要以·OH自由基氧化为主;初步推断出甲基橙的降解途径。
2.The mechanism of sono-degradation to organic contamination from the point of kinetics and the way of degradation was firstly dissertated in this paper.本文首先从动力学角度论述了超声波降解有机污染物的机理及其降解途径,分析影响有机物超声降解效果的基本因素,如粘度、表面张力系数、蒸汽压、温度、溶解气体、超声频率、声功率、pH值及有机污染物的物理化学性质等;并描述了超声波在水处理领域,特别是与传统生物处理法联用处理难降解、有毒有机废水方面的发展应用前景。
4)ultrasonic degradation超声波降解
1.Optimization of ultrasonic degradation of konjac glucomannan by response surface analysis;超声波降解魔芋葡甘露聚糖工艺的响应面优化
5)ultrasonic degradation超声致降解
6)ultrasonic and catalytic degradation超声催化降解
1.Study on ultrasonic and catalytic degradation of methyl orange by US/Fe~(3+)/H_2O_2 system;US/Fe~(3+)/H_2O_2体系超声催化降解甲基橙的研究
延伸阅读

可降解淀粉微球和生物降解白蛋白微球阻滞法可降解淀粉微球和生物降解白蛋白微球阻滞法 介入放射学技术。介入性局部化疗之前,把二者注入靶动脉,可暂时减少动脉血流,再行化疗药物灌注,以减少血液冲刷,保持局部化疗药物浓度的技术。与其他中期和长期栓塞微球不同,DSM和BAM仅造成数十分钟的血流量减少,待其被降解后血流可恢复至以前水平。