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    • 7. 发明授权
    • Production of alpha, omega-diols
    • 生产α,ω-二醇
    • US08846985B2
    • 2014-09-30
    • US13870091
    • 2013-04-25
    • E I du Pont de Nemours and Company
    • Alan Martin AllgeierWathudura Indika Namal De SilvaCarl Andrew MenningJoachim C RitterSourav Kumar Sengupta
    • C07C27/04C07C29/132C07C209/16C07D309/06B01J27/188B01J23/888C07C29/60
    • C07C29/60B01J23/888B01J27/188C07C209/16C07C211/12C07C31/20
    • Disclosed herein are processes for preparing an α,ω-Cn-diol, wherein n is 5 or greater, from a feedstock comprising a Cn oxygenate. In one embodiment, the process comprises contacting the feedstock with hydrogen gas in the presence of a catalyst comprising a first metal component comprising Ni, Ir, Pt, Rh, Ru, Pd, Fe, Ag, or Au; a heteropoly acid component comprising H3[P(W3O10)4], H4[Si(W3O10)4], H4[P(Mo3O10)4], H4[Si(Mo3O10)4], Cs2.5H0.5[P(W3O10)4]Cs2.5H0.5[Si(W3O10)4], or mixtures thereof; optionally a second metal component comprising Cr, a Cr oxide, Ni, a Ni oxide, Fe, a Fe oxide, Co, a Co oxide, Mn, a Mn oxide, Mo, a Mo oxide, W, a W oxide, Re, a Re oxide, Zn, a Zn oxide, SiO2, or Al2O3; optionally at least one promoter comprising Na, K, Mg, Rb, Cs, Ca, Sr, Ba, Ce, or mixtures thereof; and optionally a support. In one embodiment, the optional support is present in the catalyst and comprises WO3, SiO2, Al2O3, carbon, TiO2, ZrO2, SiO2—Al2O3, montmorillonite, SiO2—TiO2, tungstated ZrO2, zeolites, V2O5, MoO3, or mixtures thereof. The Cn oxygenate may be obtained from a biorenewable resource.
    • 本文公开了从包含Cn含氧化合物的原料制备其中n为5或更大的α,ω-Cn-二醇的方法。 在一个实施方案中,该方法包括在催化剂存在下使原料与氢气接触,所述催化剂包含包含Ni,Ir,Pt,Rh,Ru,Pd,Fe,Ag或Au的第一金属组分; H4 [Si(W3O10)4],H4 [P(Mo3O10)4],H4 [Si(Mo3O10)4],Cs2.5H0.5 [P(W3O10)4],H4 [Si )4] Cs2.5H0.5 [Si(W3O10)4]或其混合物; 可选地包含Cr,Cr氧化物,Ni,Ni氧化物,Fe,Fe氧化物,Co,Co氧化物,Mn,Mn氧化物,Mo,Mo氧化物,W,W氧化物,Re, Re氧化物,Zn,Zn氧化物,SiO 2或Al 2 O 3; 任选地至少一种包含Na,K,Mg,Rb,Cs,Ca,Sr,Ba,Ce或其混合物的促进剂; 和可选的支撑。 在一个实施方案中,任选的载体存在于催化剂中,并包含WO 3,SiO 2,Al 2 O 3,碳,TiO 2,ZrO 2,SiO 2 -Al 2 O 3,蒙脱石,SiO 2 -TiO 2,钨化ZrO 2,沸石,V 2 O 5,MoO 3或其混合物。 Cn含氧化合物可以从生物可再生资源获得。
    • 8. 发明申请
    • PRODUCTION OF ALPHA, OMEGA-DIOLS
    • ALPHA,OMEGA-DIOLS的生产
    • US20130289319A1
    • 2013-10-31
    • US13870091
    • 2013-04-25
    • E I DU PONT DE NEMOURS AND COMPANY
    • Alan Martin AllgeierWathudura Indika Namal De SilvaCarl MenningJoachim C. RitterSourav Kumar Sengupta
    • C07C29/60
    • C07C29/60B01J23/888B01J27/188C07C209/16C07C211/12C07C31/20
    • Disclosed herein are processes for preparing an α,ω-Cn-diol, wherein n is 5 or greater, from a feedstock comprising a Cn oxygenate. In one embodiment, the process comprises contacting the feedstock with hydrogen gas in the presence of a catalyst comprising a first metal component comprising Ni, Ir, Pt, Rh, Ru, Pd, Fe, Ag, or Au; a heteropoly acid component comprising H3[P(W3O10)4], H4[Si(W3O10)4], H4[P(Mo3O10)4], H4[Si(Mo3O10)4], Cs2.5H0.5[P(W3O10)4]Cs2.5H0.5[Si(W3O10)4], or mixtures thereof; optionally a second metal component comprising Cr, a Cr oxide, Ni, a Ni oxide, Fe, a Fe oxide, Co, a Co oxide, Mn, a Mn oxide, Mo, a Mo oxide, W, a W oxide, Re, a Re oxide, Zn, a Zn oxide, SiO2, or Al2O3; optionally at least one promoter comprising Na, K, Mg, Rb, Cs, Ca, Sr, Ba, Ce, or mixtures thereof; and optionally a support. In one embodiment, the optional support is present in the catalyst and comprises WO3, SiO2, Al2O3, carbon, TiO2, ZrO2, SiO2—Al2O3, montmorillonite, SiO2—TiO2, tungstated ZrO2, zeolites, V2O5, MoO3, or mixtures thereof. The Cn oxygenate may be obtained from a biorenewable resource.
    • 本文公开了从包含Cn含氧化合物的原料制备其中n为5或更大的α,ω-Cn-二醇的方法。 在一个实施方案中,该方法包括在催化剂存在下使原料与氢气接触,所述催化剂包含包含Ni,Ir,Pt,Rh,Ru,Pd,Fe,Ag或Au的第一金属组分; H4 [Si(W3O10)4],H4 [P(Mo3O10)4],H4 [Si(Mo3O10)4],Cs2.5H0.5 [P(W3O10)4],H4 [Si )4] Cs2.5H0.5 [Si(W3O10)4]或其混合物; 可选地包含Cr,Cr氧化物,Ni,Ni氧化物,Fe,Fe氧化物,Co,Co氧化物,Mn,Mn氧化物,Mo,Mo氧化物,W,W氧化物,Re, Re氧化物,Zn,Zn氧化物,SiO 2或Al 2 O 3; 任选地至少一种包含Na,K,Mg,Rb,Cs,Ca,Sr,Ba,Ce或其混合物的促进剂; 和可选的支撑。 在一个实施方案中,任选的载体存在于催化剂中,并包含WO 3,SiO 2,Al 2 O 3,碳,TiO 2,ZrO 2,SiO 2 -Al 2 O 3,蒙脱石,SiO 2 -TiO 2,钨化ZrO 2,沸石,V 2 O 5,MoO 3或其混合物。 Cn含氧化合物可以从生物可再生资源获得。