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1)  adiabatic adsorption
绝热吸附
1.
The formula of the adsorptionstorage capacity and adsorption temperature change for the adiabatic adsorption storage of natural gas has been deduced theoretically and checked with experiment.
本文从理论上推导出了绝热吸附贮存天然气的吸附贮量和吸附温度变化的关系式为。
2)  absolute adsorption
绝对吸附
1.
The adsorption characteristics of pure CH 4,CO 2 and their binary mixtures on Jincheng and Lu'an coal under high pressure have been studied,and formula of absolute adsorption has been given to employ studying the absolute adsorption isotherm of real gas on coal in the paper.
研究了晋城和潞安煤在高压下对纯 CH4,CO2 及其二元混合气体的吸附特性 ,在对混合气体绝对吸附量计算公式推导的基础上 ,对绝对吸附等温线进行了研究 。
3)  adiabatic absorption
绝热吸收
1.
The setup of adiabatic absorption of vapor into lithium bromide aqueous solution was de- signed and established.
为了研究绝热吸收器内溴化锂溶液降膜吸收水蒸汽传质强化过程,本文首先建立了溴化锂溶液降膜绝热吸收循环实验台,然后分析了喷淋溶液温度、喷淋溶液流量、喷淋溶液浓度和吸收压力等参数变化对吸收过程传质系数的影响,并得出有指导意义结论。
2.
The LiBr absorption refrigeration cycle of using pre-cooling adiabatic absorption based on the separating of heat transfer and quality transfer process of LiBr liquid in the absorption vessel were introduced.
基于将吸收器中溴化锂溶液的传热与传质过程相互分离的预冷却绝热吸收的溴化锂吸收式制冷循环,建立预冷却绝热吸收过程的热力学模型,对溴化锂溶液采用预冷却双效并联循环进行吸收过程的热力计算,并与传统双效并联循环进行比较,分析了预冷却器特性参数对预冷却绝热吸收过程及溴化锂吸收式制冷机组性能的影响及吸收器运行参数对预冷却绝热吸收过程的影响。
3.
An air-cooled adiabatic absorption refrigeration gas-fired air conditioner is presented.
提出了一种风冷绝热吸收燃气空调器,并在热力学模型基础上对系统循环特性进行模拟分析。
4)  adsorption-thermodesorption
吸附-热脱附
5)  adsorption heat
吸附热
1.
The data of adsorption heat and adsorption energies were obtained,such as-26.
由MP2能量得到A型分子筛对N2,CO和H2O的吸附热:-26。
2.
Analyzed and summarized the recent measure ways of the adsorption heat on molecular sieves and the analysis means of gas chromatogram,the reverse gas chromatogram ways is used to measure the adsorption heat at 353~393K on four kind of molecular sieves.
结果得到线性关系良好的曲线,由此曲线计算得到这些分子筛对CO和N2的吸附热范围分别为26。
3.
The adsorption heat during charge and discharge decrease significant the performance of the storage amount of adsorption system to great degree.
吸附热效应是天然气—氢气吸附储存投入工程应用的又一大障碍,吸脱附过程当中的放热、吸热现象极大地降低了吸附系统的动态储存量。
6)  adsorptive heat
吸附热
1.
This paper measures the adsorptive thermodynamic parameters(ΔadH,ΔadS and ΔadG)of N2 and CO on A zeolites of different H+ exchange by using the inverse gas chromatography,the results of which show that when the adsorptive heat of N2 and CO is ranged from-21.
采用反相气相色谱法测定了N2和CO在4种不同浓度酸交换液交换的分子筛的吸附热力学参数(ΔadH,ΔadS和ΔadG),其中对N2和CO的吸附热在-21。
2.
The maximum adsorptive capacity of TSM was measured, adsorption isotherm of TSM at different temperature was also studied, and from that calculated the adsorptive heat.
本文对淀粉微球TSM的吸附性能进行了研究,测试了TSM的最大的吸附量和不同温度下的等温吸附线,并计算出TSM的吸附热,得出TSM对亚甲基兰的吸附属于化学吸附。
3.
Hydroxamic acid is a collector for cassiterite flotation,In order to study the adsorption mechanism of this collector on cassiterite,adsorptive heat(△H )has been investigated with two different methods.
测定锡石在12℃、30℃、40℃、55℃时吸附捕收剂辛基羟肟酸的吸附量,作出相应的吸附等温线,再从吸附等温线作出图,从图中求出吸附热,其平均直为△H=一45。
补充资料:特性吸附与半胶束吸附


特性吸附与半胶束吸附
specifical adsorption and hemi-micelle adsorption

texing xifu yu banJ旧oshu xifu特性吸附与半胶束吸附(speeifieal adsorp-tion and hemi一mieelle adsorption)矿物一水界面的吸附的两种形式。特性吸附是因矿物表面与溶液中某种组分(离子或分子)有特殊的亲和力而产生的吸附,也称特殊吸附。特性吸附不仅可以改变电位的数量而且还可以改变电位的符号。例如,刚玉(A12O3)在NaZSO‘或RSO;Na(烷基硫酸钠)溶液中,电动电位随溶液浓度的增大由正值逐渐减小,直至变为负值,说明刚玉对50矛一或RSO不离子有特殊的吸引力。半胶束吸附是水溶液中的表面活性剂在矿物表面产生的吸附,当吸附量达到一定值以后,由于烃基的缔合作用,表面活性剂的离子或分子在矿物表面上形成紧密的吸附层,这类似于溶液中形成的胶束结构,但所形成的“胶束”与溶液中形成的胶束不同,只有二维空间,故称这类吸附为半胶束吸附。矿物表面对胺类捕收剂的吸附,当胺的浓度较大时,常可以产生半胶束吸附。 (龚焕高)
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