Abstract:
A common framework for a stackable modular personal computer comprises an outer frame and an inner frame and is capable of accepting an expansion card connecter and an expansion card projected out to an inner space thereof from a lower layer thereof. The inner frame can further be combined with a supporting frame use for combining with a CD-ROM drive or a hard disk driver. Whereby, one same common framework can have three different uses so as to attain to the function of one framework with multiple uses to save the cost for manufacturing different frameworks.
Abstract:
A common framework for a stackable modular personal computer comprises an outer frame and an inner frame and is capable of accepting an expansion card connecter and an expansion card projected out to an inner space thereof from a lower layer thereof. The inner frame can further be combined with a supporting frame use for combining with a CD-ROM drive or a hard disk driver. Whereby, one same common framework can have three different uses so as to attain to the function of one framework with multiple uses to save the cost for manufacturing different frameworks.
Abstract:
A framework structure for a computer main frame, comprises an outer frame and an inner frame in which the inner frame is combined with an inner portion of the outer frame. A rear end of a first plate is pivotally connected to a bottom of the inner frame, and a front end of the first plate is combined with a downside of a bottom of the inner frame and positioned on a downside of a first hole of the inner frame. A hard drive can be locked on an upside of the first plate. Bottom ends of a plurality of shafts are respectively combined with the inner frame so as to use upper ends of the shafts to combine with a motherboard to allow the hard drive to be positioned below the motherboard.
Abstract:
The present invention discloses a method for removing carbon monoxide (CO) from a gas mixture containing CO including contacting the gas mixture with a nano-gold catalyt to reduce the CO content in the gas mixture by CO selective adsorption/oxidation, water gas shift reaction or CO selective oxidation reaction. The nano-gold catalyst includes a solid support and gold deposited on the support, wherein the deposited gold has a size less than 10 nm, and the support is a mixed metal hydroxide and oxide having the following formula: M(OH)qOyWherein M is Ti, Fe, Co, Zr, or Ni; q is 0.1-1.5; and q+2y=z, wherein z is the valence of M.
Abstract:
A simple and single step process for producing caprolactam comprising reacting 5-formylvaleric acid or an ester thereof in a solvent of water and/or an alcohol with hydrogen and ammonia in the presence of a noble metal catalyst supported by a carrier at 80.degree. to 300.degree. C. under a pressure of 10 to 120 atm, whereby amination, acidification, dehydration and cyclization occur to obtain caprolactam.
Abstract:
The present invention relates to a method for the production of N-vinyl-2-pyrrolidone with high selectivity. The method is characterized in subjecting 2-pyrrolidone and acetylene to vinylation by using hydroxy end-capped ether oligomers having a molecular weight less than 1000 or linear diols having at least 4 carbon atoms as co-catalysts under the catalyzation of alkali metal salts. At a vinylation temperature of 100.degree.-200 .degree. C., a reaction pressure of 7.5-30 atm and a reaction time period of 3-20 hours, N-vinyl-2-pyrrolidones are obtained with yields above 90%.
Abstract:
The present invention relates to a method for the production of N-vinyl-2-pyrrolidone by gas-phase reaction at atmospheric pressure. The method is characterized in that a gas-phase reaction is conducted by using N-.beta.-Hydroxyethyl-2-Pyrrolidones serving as raw materials, at a temperature of 300.degree.-450.degree. C., a space velocity of 500-4500 hr.sup.-1 in the presence of a mixed oxide of group IV elements, or an oxide of group IV elements, which has been modified by group I or group II elements.
Abstract:
A framework structure for a computer main frame, comprises an outer frame and an inner frame in which the inner frame is combined with an inner portion of the outer frame. A rear end of a first plate is pivotally connected to a bottom of the inner frame, and a front end of the first plate is combined with a downside of a bottom of the inner frame and positioned on a downside of a first hole of the inner frame. A hard drive can be locked on an upside of the first plate. Bottom ends of a plurality of shafts are respectively combined with the inner frame so as to use upper ends of the shafts to combine with a motherboard to allow the hard drive to be positioned below the motherboard.
Abstract:
The present invention discloses a method for removing carbon monoxide (CO) from a gas mixture containing CO including contacting the gas mixture with a nano-gold catalyst to reduce the CO content in the gas mixture by CO selective adsorption/oxidation, water gas shift reaction or CO selective oxidation reaction. The nano-gold catalyst includes a solid support and gold deposited on the support, wherein the deposited gold has a size less than 10 nm, and the support is a mixed metal hydroxide and oxide having the following formula: M(OH)qOy Wherein M is Ti, Fe, Co, Zr, or Ni; q is 0.1-1.5; and q+2y=z, wherein z is the valence of M.
Abstract:
A process for recovering cobalt and manganese components from a product stream or a residue stream that resulted from a process which employs a catalyst system containing the cobalt and manganese components for oxidizing pseudocumene to trimellitic acid includes the steps of adding a precipitating agent to the product stream or the residue stream in an effective amount to react with the cobalt and manganese components in the product stream or the residue stream.