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1)  thiophilic adsorption
嗜硫吸附
2)  Adsorption desulfurization
吸附脱硫
1.
This paper reviewed the non-hydrogenation technology of clean gasoline at home and abroad,such as isomerization,alkylation,adsorption desulfurization,biocatalytic desulfurization,alkaline extraction desulfurization,etc.
对国内外生产清洁汽油的非加氢精制技术,如异构化、烷基化、吸附脱硫、生物催化脱硫、碱性抽提脱硫等进行了综述,介绍了汽油清净剂及乙醇汽油的开发使用情况。
2.
The progress of several desulfurization technology and mechanism were reviewed,especially emphasized the process of hydrogenating desulfurization and adsorption desulfurization and relevant adsorbents with different characteristics.
介绍了世界燃油质量标准,简要报道了机动车用汽、柴油中硫化物的种类和含量,详细报道了燃油的加氢、生物、氧化和吸附脱硫机理及技术。
3.
The adsorption desulfurization is a novel green process with extensive development space and application prospects,which has the characteristics of easy operation,low cost,no pollution,and suitable for deep desulfurization.
吸附脱硫是一项具有广阔发展空间及应用前景的脱硫技术,具有操作简单、投资少、无污染、适合于深度脱硫等优点。
3)  Adsorptive desulfurization
吸附脱硫
1.
Progress of adsorptive desulfurization and application calculated via molecular simulations;
吸附脱硫及分子模拟计算应用的研究进展
2.
Adsorptive Desulfurization by Modified Zeolites and the Effects of Benzene,Naphthalene on Adsorption
改性Y型分子筛的吸附脱硫性能以及苯,萘对吸附的影响
3.
The adsorptive desulfurization effects of adsorbents on a model gasoline MLO-1 having normal heptane with about 2?000 μg/g thiophene sulfur,aromatic hydrocarbon on Cu(Ⅰ)-Y were studied in a fixed-bed adsorber at ambient temperature and pressure.
在固定床吸附器上,常温、常压下考察了吸附剂对汽油模型化合物MLO-1(正庚烷中含噻吩硫2 000μg/g)的脱硫效果和模型化合物中芳烃(甲苯)对Cu(Ⅰ)-Y吸附脱硫效果的影响。
4)  Adsorbed-S
吸附态硫
5)  Desulfurization [di:,sʌlfərai'zeiʃən]
吸附脱硫
1.
Distribution of the Cu Ions in the CuHY Zeolite and Its Performance of Desulfurization;
CuHY分子筛中铜离子的分布与吸附脱硫性能
2.
Deep Desulfurization by the Adsorption Process of FCC Diesel over Mesoporous Material MCM-41;
FCC柴油在介孔材料MCM-41上的深度吸附脱硫的研究
6)  desulfurization adsorption
脱硫吸附
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)
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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