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1)  deep dehydration
深度脱水
1.
In order to prevent the icing problem of flow meter in CBM/CMM supply system in Huainan,a suit of deep dehydration equipment are designed by utilizing the technology of temperature swing adsorption.
为解决淮南地区煤层气供气系统的冬季冻表问题,设计了一套煤层气深度脱水装置。
2.
The article mainly introduces deep dehydration process of natural gas with molecular sieve in Zhuhai LNG project in Guangdong province.
介绍了广东珠海天然气液化项目中利用分子筛进行天然气深度脱水的工艺。
2)  demineralised water
深度脱盐水
3)  advanced nitrogen removal
深度脱氮
1.
Biological advanced nitrogen removal from landfill leachate of high concentration nitrogen by anoxic/anaerobic UASB-sequencing batch reactor(SBR) at low temperature
高氮渗滤液缺氧/厌氧UASB-SBR工艺低温深度脱氮
2.
7% during the whole experimental running period,it achieved advanced nitrogen removal.
7%以上,实现了深度脱氮。
4)  deep desilication
深度脱硅
1.
The optimum results show that the silica module reaches to 3681 by 90 min、 deep desilication with 30g/L calcium sulfate at 95℃.
实验中考察了脱硅温度、脱硅时间、脱硅剂的用量、搅拌速度对脱硅效果的影响,确定了最佳脱硅工艺条件:在95℃的温度下添加硫酸钙30g/L深度脱硅90min,精制液的硅量指数达3681。
2.
The physico-chemical characteristics of the deep desilication process(DDSP) was experimentally studied by using the XRD.
实验结果为研究铝酸钠溶液深度脱硅提供了理论依据。
3.
The phase, appearance and particle size of the additives of deep desilication were studied by XRD and SEM.
在最佳条件下添加纳米Ca(OH)2进行深度脱硅,脱硅后的铝酸钠溶液中SiO2含量可降低到0。
5)  falling-off depth
脱落深度
6)  Deep desulfurization
深度脱硫
1.
Research advances in the ultra deep desulfurization of diesel fuel;
柴油超深度脱硫技术进展
2.
Methods for deep desulfurization of gasoline and diesel oil and their development status quo
汽柴油深度脱硫方法及发展现状
3.
Some deep desulfurization methods based on selective adsorption,solvent extraction,chemical oxidation,and alkylation reaction were critically reviewed and discussed.
对几种汽柴油深度脱硫方法如吸附法、溶剂萃取法、化学氧化法、烷基化脱硫法等进行了综述和讨论,并提出了一些深度脱硫的技术策略。
补充资料:BCS穿透深度(BCSpenetrationdepth)
BCS穿透深度(BCSpenetrationdepth)

对纯超导体,由BCS电流方程,在伦敦极限下(`\xi_0\lt\lt\lambda`或$l\lt\lt\xi_0$)的穿透深度与伦敦穿透深度λL(T)相符。对非纯超导体(含杂质),在伦敦极限下为

$\lambda(T)=\lambda_L(T)(1 \xi_0//l)^{1/2}$

一般地,λL(T)由经验公式表示其与温度T的关系(见“伦敦穿透深度”)。在皮帕德极限下($\xi_0\gt\gt\lambda$或$\xi_0\lt\ltl$),ξp=ξ0,则给出为

$\lambda(T)=\frac{8}{9}\lambda_L(T)[\frac{sqrt3\xi_0}{2\pi\lambda_L(T)}]^{1/3}$

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