Abstract:
Hydrogenated liquid organic compounds are used for storage and supply of hydrogen at near ambient conditions. The hydrogen is released from the hydrogenated liquid organic compounds through a catalytic dehydrogenation reaction using a M/support or M-M′/support catalyst. The M/support catalyst comprises a metal M selected from Pt, Pd, Rh, Ru, Ir, Os, or combination thereof, and a support selected from Y2O3 or V2O5 or combinations thereof. The M-M′/support catalyst comprises a first metal M selected from Cu, Ag, Au, or combination thereof, a second metal M′ selected from Pt, Pd, Rh, Ru, Ir, Os, Fe, Ni, Re, Mo, W, V, Cr, Co or combinations thereof, and a support selected from activated carbon, alumina, alumite, zirconia, silica or combination thereof. Synergistic effects are created by using the combination of the M and M′ in the catalyst, which result in shifting of the equilibrium of the reaction favorably to dehydrogenation.
Abstract translation:氢化液体有机化合物用于在接近环境条件下储存和供应氢气。 通过使用M /载体或M-M'/载体催化剂的催化脱氢反应,氢从氢化液体有机化合物中释放出来。 M /载体催化剂包括选自Pt,Pd,Rh,Ru,Ir,Os或其组合的金属M,以及选自Y 2 O 3或V 2 O 5的载体或其组合。 M-M'/载体催化剂包括选自Cu,Ag,Au或其组合的第一金属M,选自Pt,Pd,Rh,Ru,Ir,Os,Fe,Ni,Re, Mo,W,V,Cr,Co或其组合,以及选自活性炭,氧化铝,耐酸铝,氧化锆,二氧化硅或其组合的载体。 通过在催化剂中使用M和M'的组合产生协同效应,这导致反应平衡有利地转化为脱氢。
Abstract:
Hydrogenated liquid organic compounds are used for storage and supply of hydrogen at near ambient conditions. The hydrogen is released from the hydrogenated liquid organic compounds through a catalytic dehydrogenation reaction using a M/support or M-M′/support catalyst. The M/support catalyst comprises a metal M selected from Pt, Pd, Rh, Ru, Ir, Os, or combination thereof, and a support selected from Y2O3 or V2O5 or combinations thereof. The M-M′/support catalyst comprises a first metal M selected from Cu, Ag, Au, or combination thereof, a second metal M′ selected from Pt, Pd, Rh, Ru, Ir, Os, Fe, Ni, Re, Mo, W, V, Cr, Co or combinations thereof, and a support selected from activated carbon, alumina, alumite, zirconia, silica or combination thereof. Synergistic effects are created by using the combination of the M and M′ in the catalyst, which result in shifting of the equilibrium of the reaction favorably to dehydrogenation.
Abstract translation:氢化液体有机化合物用于在接近环境条件下储存和供应氢气。 通过使用M /载体或M-M'/载体催化剂的催化脱氢反应,氢从氢化液体有机化合物中释放出来。 M /载体催化剂包括选自Pt,Pd,Rh,Ru,Ir,Os或其组合的金属M,以及选自Y 2 O 3或V 2 O 5的载体或其组合。 MM'/载体催化剂包括选自Cu,Ag,Au或其组合的第一金属M,选自Pt,Pd,Rh,Ru,Ir,Os,Fe,Ni,Re,Mo, W,V,Cr,Co或其组合,以及选自活性炭,氧化铝,耐酸铝,氧化锆,二氧化硅或其组合的载体。 通过在催化剂中使用M和M'的组合产生协同效应,这导致反应平衡有利地转化为脱氢。
Abstract:
A technique to provide a cost effective solution to detect teletext data that can reduce detected error in teletext when the transmission data rate is known. In one example embodiment, this is accomplished by detecting data bits in an unsynchronized digital data stream by finding start of each data bit based on an estimated data bit width and transitions in the unsynchronized digital data stream.
Abstract:
A ghost image cancellation technique for video signals received from multipaths during transmission of a TV signal over a transmission channel. In one example embodiment, an apparatus computes edge parameters of synchronization signals received from each of the multipath video signals. The edge parameters are then used to select an input video signal. The selected input video signal along with the computed edge parameters are then used to remove remaining video signals from the video signals received from the multipaths to cancel ghost images.
Abstract:
In one embodiment, a flash sharing controller is to enable a plurality of components of a platform to share a flash memory. The flash sharing controller may include: a flash sharing class layer including a configuration controller to configure the plurality of components to be flash master devices and configure a flash sharing slave device for the flash memory; and a physical layer coupled to the flash sharing class layer to communicate with the plurality of components via a bus. Other embodiments are described and claimed.
Abstract:
A ghost image cancellation technique for video signals received from multipaths during transmission of a TV signal over a transmission channel. In one example embodiment, an apparatus computes edge parameters of synchronization signals received from each of the multipath video signals. The edge parameters are then used to select an input video signal. The selected input video signal along with the computed edge parameters are then used to remove remaining video signals from the video signals received from the multipaths to cancel ghost images.
Abstract:
A technique to provide a cost effective solution to detect teletext data that can reduce detected error in teletext when the transmission data rate is known. In one example embodiment, this is accomplished by detecting data bits in an unsynchronized digital data stream by finding start of each data bit based on an estimated data bit width and transitions in the unsynchronized digital data stream.