Encapsulated polymerization initiators, polymerization systems and methods using the same
US-9334430-B1 · May 10, 2016 · US
US9522381B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9522381-B2 |
| Application number | US-201514823581-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 11, 2015 |
| Priority date | Jan 11, 2013 |
| Publication date | Dec 20, 2016 |
| Grant date | Dec 20, 2016 |
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Method to obtain methylene malonate and related monomers following a bis(hydroxymethyl) malonate pathway. A bis(hydroxymethyl) malonate intermediary is subsequently reacted (i.e., subjected to thermolysis) to provide a methylene malonate monomer species. A source of formaldehyde (e.g., formalin) is provided in the presence of a basic catalyst (e.g., calcium hydroxide), to which a malonate (e.g., diethyl malonate) is added under suitable reaction conditions to obtain the desired intermediary (e.g., dialkyl bis(hydroxymethyl) malonate). The intermediary is reacted (i.e., subjected to thermolysis) under suitable conditions in the presence of a suitable catalyst (e.g., a zeolite) to obtain a methylene malonate monomer. In an exemplary embodiment, the thermolysis reaction includes the addition of the bis(hydroxymethyl) malonate intermediary onto a heated catalyst. The reaction product is collected and purified. The disclosed methods may be performed in a continuous operation. Discrete steps may be performed by using modular units within a plant.
Opening claim text (preview).
What we claim is: 1. A plant for producing a methylene malonate monomer comprising: at least one diol production unit comprising a diol reactor apparatus capable of reacting a dialkyl malonate ester and a source of formaldehyde in the presence of a catalyst, at least one diol purification unit comprising an ion-exchange column and a short heat residence time apparatus capable of performing an evaporation step, at least one monomer production unit comprising a plurality of catalyst columns and at least one heating apparatus for maintaining the temperature of the plurality of catalyst columns, and at least one monomer purification unit comprises a condensation apparatus, a fractional distillation apparatus, or both; wherein the at least one diol production unit is in communication with the at least one diol purification unit, the at least one diol purification unit is in communication with the at least one monomer production unit, and the at least one monomer production unit is in communication with the at least one monomer purification unit. 2. The plant according to claim 1 wherein the at least one monomer production unit comprises at least a single reactant feed line to feed the plurality of catalyst columns. 3. The plant according to claim 1 wherein the short heat residence apparatus comprises a wiped-film evaporator, a rotary evaporator, a horizontal thin-film evaporator or a vertical thin-film evaporator. 4. The plant according to claim 1 wherein the short heat residence apparatus comprises a wiped-film evaporator. 5. The plant according to claim 1 wherein the at least one diol production unit is a continuous flow reactor. 6. The plant according to claim 5 wherein the at least one diol production unit comprises a shell having a plurality of static mixers and reactant inlets. 7. The plant according to claim 5 wherein the at least one diol production unit comprises an inlet to add a pH lowering agent. 8. The plant according to claim 5 wherein the at least one diol production unit is maintained in a medium to control reaction temperature. 9. The plant according to claim 8 wherein the medium to control reaction temperature is a water bath. 10. The plant according to claim 1 wherein the at least one monomer production unit which comprises a plurality of catalyst columns packed with ZSM catalyst. 11. The plant according to claim 1 wherein the did purification unit communicates with the monomer production unit through feed lines wherein the feed lines are heated. 12. The plant according to claim 1 wherein the at least one heating apparatus is a heat transfer system. 13. The plant according to claim 1 wherein the at least one heat transfer system uses hot oil to heat the plurality of catalyst columns. 14. The plant according to claim 1 wherein the at least one monomer production unit comprises an output line for heavies, an output line for volatile species. 15. The plant according to claim 1 wherein the at least one monomer production unit comprises a plurality of catalyst columns having a diameter of about 0.5 to about 4.0 inches and a length of about 12 to about 72 inches. 16. The plant according to claim 1 wherein: the at least one diol purification unit is capable of purifying bis(hydroxymethyl) malonate, the at least one monomer production unit is capable or reacting bis(hydroxymethyl) malonate with a catalyst to form a methylene malonate monomer, and the at least one monomer purification unit is capable of isolating methylene malonate monomer.
by solid-liquid treatment; by chemisorption · CPC title
Heating or cooling the reactor · CPC title
Stationary reactors without moving elements inside · CPC title
Esters having no free carboxylic acid groups {, e.g. dialkyl maleates or fumarates} · CPC title
Adhesives based on organic non-macromolecular compounds having at least one polymerisable carbon-to-carbon unsaturated bond {; adhesives, based on monomers of macromolecular compounds of groups C09J183/00 - C09J183/16} · CPC title
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