Patent classifications
B01J19/02
COMPOSITION CONTAINING ADDITION CONDENSATION PRODUCT, METHOD FOR PRODUCING SAME, USE OF SAME, POLYMERIZATION VESSEL, AND METHOD FOR PRODUCING POLYMER
An addition condensation product, i.e., an addition condensation product of an aromatic compound with a carbonyl compound, is obtained as a condensation reaction product in the state of uniform solution or the like, in which clumping caused by agglomeration of the condensation product of the aromatic compound with the carbonyl compound can be prevented by the presence of a surfactant at the time of the condensation reaction. In addition, a coating solution prepared by using an original solution or an adjusted solution whose viscosity is 2.0 mPa.Math.s or greater exhibits an excellent polymer scale adhesion inhibition effect when applied to an inner wall and the like of a polymerization vessel; and in addition, a low-accumulative coating film is formed when the solution is applied to an inner wall and the like of a polymerization vessel.
COMPOSITION CONTAINING ADDITION CONDENSATION PRODUCT, METHOD FOR PRODUCING SAME, USE OF SAME, POLYMERIZATION VESSEL, AND METHOD FOR PRODUCING POLYMER
An addition condensation product, i.e., an addition condensation product of an aromatic compound with a carbonyl compound, is obtained as a condensation reaction product in the state of uniform solution or the like, in which clumping caused by agglomeration of the condensation product of the aromatic compound with the carbonyl compound can be prevented by the presence of a surfactant at the time of the condensation reaction. In addition, a coating solution prepared by using an original solution or an adjusted solution whose viscosity is 2.0 mPa.Math.s or greater exhibits an excellent polymer scale adhesion inhibition effect when applied to an inner wall and the like of a polymerization vessel; and in addition, a low-accumulative coating film is formed when the solution is applied to an inner wall and the like of a polymerization vessel.
Device and Method for Producing Silicon Carbide
The disclosure relates to a device for continuously producing qualitatively high-grade crystalline silicon carbide, in particular in the form of nanocrystalline fibre.
METHOD FOR POLYMERISING ETHYLENICALLY UNSATURATED MONOMERS
The invention relates to a method for polymerising ethylenically unsaturated monomers by free-radical initiated emulsion polymerisation in an aqueous medium in a polymerisation reactor, wherein the inside walls and optionally also the fittings in the reactor are coated by applying a deposit-inhibiting product before the reactor is filled, characterised in that the surfaces that are to be coated with deposit-inhibiting product are treated with an acid solution.
METHOD FOR POLYMERISING ETHYLENICALLY UNSATURATED MONOMERS
The invention relates to a method for polymerising ethylenically unsaturated monomers by free-radical initiated emulsion polymerisation in an aqueous medium in a polymerisation reactor, wherein the inside walls and optionally also the fittings in the reactor are coated by applying a deposit-inhibiting product before the reactor is filled, characterised in that the surfaces that are to be coated with deposit-inhibiting product are treated with an acid solution.
UTRALIGHT HYDROGEN PRODUCTION REACTOR COMPRISING HIGH-EFFICIENCY COMPOSITE
The present invention relates to a hydrogen production reactor comprising a high-efficiency composite having a high thermal conductivity and an antioxidant property. Specifically, the hydrogen production reactor comprises: a first region in which a combustion reaction of fuel occurs; a second region in which a hydrogen extraction reaction occurs; a metal substrate that partitions the first region and the second region; and a coating layer that comprises boron nitride (BN) and is formed on at least one surface of the metal substrate, wherein heat generated in the first region is transferred to the second region through the metal substrate.
UTRALIGHT HYDROGEN PRODUCTION REACTOR COMPRISING HIGH-EFFICIENCY COMPOSITE
The present invention relates to a hydrogen production reactor comprising a high-efficiency composite having a high thermal conductivity and an antioxidant property. Specifically, the hydrogen production reactor comprises: a first region in which a combustion reaction of fuel occurs; a second region in which a hydrogen extraction reaction occurs; a metal substrate that partitions the first region and the second region; and a coating layer that comprises boron nitride (BN) and is formed on at least one surface of the metal substrate, wherein heat generated in the first region is transferred to the second region through the metal substrate.
Combustion chamber hot face refractory lining
A method for producing a refractory lining in a combustion chamber operating in a reducing atmosphere. The lining includes at least one or more Zirconia (Zr)-based refractory lining members comprising one or more Zr-based parts. The Zr-based parts comprise at least 90 wt. %, preferably at least 95 wt. %, of monoclinic ZrO.sub.2 and/or partially stabilized ZrO.sub.2 and/or fully stabilized ZrO.sub.2, wherein the total content of tetragonal and cubic ZrO.sub.2 amounts to at least 20 wt. %, preferably more than 35 wt. %, as well as Zr based refractory lining members and methods for manufacturing the Zr based refractory lining members.
Combustion chamber hot face refractory lining
A method for producing a refractory lining in a combustion chamber operating in a reducing atmosphere. The lining includes at least one or more Zirconia (Zr)-based refractory lining members comprising one or more Zr-based parts. The Zr-based parts comprise at least 90 wt. %, preferably at least 95 wt. %, of monoclinic ZrO.sub.2 and/or partially stabilized ZrO.sub.2 and/or fully stabilized ZrO.sub.2, wherein the total content of tetragonal and cubic ZrO.sub.2 amounts to at least 20 wt. %, preferably more than 35 wt. %, as well as Zr based refractory lining members and methods for manufacturing the Zr based refractory lining members.
SHAPED AND FIRED ZIRCONIA REFRACTORY MATERIAL
A refractory lining in a combustion chamber operating in a reducing atmosphere. The lining includes at least one or more Zirconia (Zr)-based refractory lining members comprising one or more Zr-based parts. The Zr-based parts comprise at least 90 wt. %, preferably at least 95 wt. %, of monoclinic ZrO.sub.2 and/or partially stabilized ZrO.sub.2 and/or fully stabilized ZrO.sub.2, wherein the total content of tetragonal and cubic ZrO.sub.2 amounts to at least 20 wt. %, preferably more than 35 wt. %, as well as Zr based refractory lining members and methods for manufacturing the Zr based refractory lining members.