2) water-bearing media
![点击朗读](/dictall/images/read.gif)
含水介质
1.
Adsorption of ammonia-nitrogen in landfill leachate on the colloids of beach water-bearing media;
滨海含水介质胶体对垃圾渗滤液氨氮的吸附特征
2.
The results showed that the capacity unit weight decontaminated ammonia-nitrogen by water-bearing media decreases gradually with the pore volum.
为了探讨滨海地区水-土系统不同含水介质对生活垃圾淋滤液氨氮的内在净化能力以及其净化动态变化特征,室内土柱实验采用3种有代表性的天然土样为研究对象,用生活垃圾淋滤液进行淋滤,实验历时1个月。
3) aquifer medium
![点击朗读](/dictall/images/read.gif)
含水介质
1.
Adsorption mode and transportation ability of Fe in Tianjin shallow porous aquifer medium;
天津浅层孔隙含水介质中铁的吸附迁移性能
2.
Experimental study of changes in hydraulic conductivity of aquifer medium in salt-freshwater displacement process
咸淡水驱替过程中含水介质渗透性变化的试验研究
3.
Mathematic model of ground water pollution is classified from five aspects: scale effect,model parameter,aquifer medium,pollutant and Darcy's law.
从尺度效应、模型参数、含水介质、污染物种类、达西定律的适用范围5个方面将地下水污染数学模型进行分类,总结了确定型和随机型数学模型的主要数值计算方法,并对地下水污染数学模型的应用前景提出了一些看法。
4) oil containing medium
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含油介质
1.
In the industrial circulating water treatment,it is a new problem to treat leaking oil containing medium by using biological technique.
在工业循环水处理中 ,应用生物技术来处理系统中泄漏的含油介质是一个新课题。
2.
In industrial circulating water systems of the petrochemical enterprises,oil containing medium leaking often occurs,which can worsen the water quality.
石化企业的循环冷却水系统中经常会发生介质泄漏而导致水质恶化 ,其中以含油介质的泄漏最为普遍。
6) sulfuric acid
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硫酸介质
1.
The mechanism and characteristics about synergistic extraction of Nd3+ and Sm3+ by D2EHPA and HEHEHP from sulfuric acid medium were studied through the methods of slope,constant molecule and saturation extraction.
采用恒摩尔法、斜率法以及饱和容量法研究从硫酸介质中用P204(D2EHPA,用(HA)2表示)与P507(HEHEHP,用(HL)2表示)协同萃取Nd3+或Sm3+的性能与机理,并测定协萃反应的热力学平衡常数Ks。
2.
The extraction of Y3+ in sulfuric acid medium by mixture of HDEHP(di(2-ethylhexyl) phosphoric acid or P204),HEH/EHP(2-(ethylhexy1) phosphoric acid mono-2-ethylhexyl ester or P507) has been investigated.
对HDEHP(二(2-乙基己基)磷酸或P204)和HEH/EHP(2-乙基己基膦酸单-2-乙基己基酯或P507)在硫酸介质中协同萃取Y3+的行为进行了研究。
补充资料:5-硫基-3-苯基-2-硫-1,3,4-硫代二唑,钾盐
CAS: 17654-88-5
分子式: C8H6N2S3
中文名称: 铋试剂II;3-苯基-1,3,4-噻二唑亚基-2,5-二硫酮;5-硫基-3-苯基-2-硫-1,3,4-硫代二唑,钾盐;铋试剂 II
英文名称: BismuthiolII;5-Mercapto-3-phenyl-2-thio-1,3,4-thiodiazole, potassium salt;4-thiadiazole-2-thione, 5-mercapto-3-phenyl-2h-3;4-thiadiazolidine-2,5-dithione, 3-phenyl-3;3-phenylbismuthol;5-mercapto-3-phenyl-2h-1,3,4-thiadiazole-2-thione;3,4-Thiadiazolidine-2,5-dithione, 3-phenyl-1
分子式: C8H6N2S3
中文名称: 铋试剂II;3-苯基-1,3,4-噻二唑亚基-2,5-二硫酮;5-硫基-3-苯基-2-硫-1,3,4-硫代二唑,钾盐;铋试剂 II
英文名称: BismuthiolII;5-Mercapto-3-phenyl-2-thio-1,3,4-thiodiazole, potassium salt;4-thiadiazole-2-thione, 5-mercapto-3-phenyl-2h-3;4-thiadiazolidine-2,5-dithione, 3-phenyl-3;3-phenylbismuthol;5-mercapto-3-phenyl-2h-1,3,4-thiadiazole-2-thione;3,4-Thiadiazolidine-2,5-dithione, 3-phenyl-1
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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