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首页> 外文期刊>Journal of Catalysis >On the role of Cs,Cl and subsurface O in promoting selectivity in Ag/alphalpha-Al_2O_3catalysed oxidation of ethene to ethene epoxide
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On the role of Cs,Cl and subsurface O in promoting selectivity in Ag/alphalpha-Al_2O_3catalysed oxidation of ethene to ethene epoxide

机译:Cs,Cl和地下O在促进Ag /苜蓿-Al_2 O_3催化的乙烯氧化为环氧乙烷的选择性中的作用

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The role of Cs and Cl in promoting selectivity in ethene epoxidation over a Ag/alpha-Al_2O_3 catalyst was examined by determining their effect,singly and in combination,on the kinetics of adsorption and desorption of oxygen on that catalyst.Cs has been shown to be bound to a stepped surface of the Ag that constitutes 0.7 m~2 g~(-1)of the total Ag area,which is 1.9 m~2 g~(-1).It thereby blocks the adsorption of oxygen on to this surface.The Cs has no effect on the bonding,activity,or selectivity of the oxygen on the Ag(111)surface of the Ag,which constitutes 1.1 m~2 g~(-1)of the Ag area.The overall effect of Cs is to increase the selectivity of the Ag,because the stepped surface has an ethene epoxide selectivity of only 33%,compared with 57% for the Ag(111)surface.Cl dosed onto the Cs/Ag/alpha-Al_2O_3 in an industrial reactor at BP using dichloroethane did not affect the amount of oxygen adsorbed on the Ag surfacetherefore,it is located under the Ag surface.Its electron-withdrawing effect from the Ag(111)surface increases the activation energy of oxygen adsorption from 17 to 24 kJ mol~(-1);however,it also decreases activation energy oxygen desorption from 140 to 129 kJmol~(-1),thus lowering the heat of adsorption from 123 to 105 kJmol~(-1).The overall effect of this lowering of the heat of adsorption means that the activation energy for cyclising the surface intermediate to produce ethene epoxide is lowered relative to the unselective pathway,thereby increasing selectivity.Subsurface oxygen has no effect on the kinetics of the desorption of surface oxygen,but it does reduce the activity and selectivity of surface oxygen to ethene epoxide.
机译:通过单独或组合确定它们对氧在该催化剂上的吸附和解吸动力学的影响,研究了Cs和Cl在促进Ag / alpha-Al_2O_3催化剂上乙烯环氧化选择性中的作用。结合到Ag的阶梯表面上,该阶梯表面占总Ag面积的0.7 m〜2 g〜(-1),即1.9 m〜2 g〜(-1),从而阻止氧气在此表面上的吸附Cs对Ag的Ag(111)表面上的氧的键合,活性或选择性没有影响,构成Ag面积的1.1 m〜2 g〜(-1)。 Cs是为了提高Ag的选择性,因为阶梯状表面的环氧乙烷选择性仅为33%,而Ag(111)表面的环氧乙烷选择性为57%。在工业上,将Cs注入Cs / Ag / alpha-Al_2O_3使用二氯乙烷在BP的反应器不会影响吸附在Ag表面的氧气量,因此它位于Ag表面之下。它的吸电子效应从Ag(111)表面产生的ct将氧气吸附的活化能从17 kJ mol〜(-1)增加到24 kJ mol〜(-1);但是,它也将氧气脱附的活化能从140 kJmol〜(-1)降低了,因此降低了吸附热从123降低到105 kJmol〜(-1)。吸附热降低的总体效果是,相对于非选择途径,用于环化表面中间体以生成环氧乙烷的活化能降低,从而提高了选择性地下氧对表面氧的解吸动力学没有影响,但确实会降低表面氧对乙烯环氧化物的活性和选择性。

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