Method for adsorbing ethylene gas using amorphous granular starch

US10518215B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10518215-B2
Application numberUS-201716092493-A
CountryUS
Kind codeB2
Filing dateNov 9, 2017
Priority dateNov 22, 2016
Publication dateDec 31, 2019
Grant dateDec 31, 2019

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Abstract

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The invention discloses a method for adsorbing ethylene gas using amorphous granular starch. The method firstly prepares amorphous granular starch, wherein starch slurry is prepared from starch with a ethanol aqueous solution and NaOH solution is added dropwise so as to react at 30 to 35° C. for 20 to 50 minutes; Then the slurry is centrifuged, neutralized with an ethanol hydrochloride solution, washed and dried to obtain the amorphous granular starch. The amorphous granular starch is placed in a high-pressure reactor and ethylene gas is introduced after the reactor is vacuumized to react at 0.8 to 1.5 Mpa and 20 to 30° C. for 15 to 25 h so that starch powder product adsorbing with ethylene is obtained. The test result shows that the content of ethylene in the obtained product can reach more than 30%. The method is simple, highly efficient and cheap for the adsorption process of ethylene, and the product is expected to be widely applied in the field of fruit and vegetable modified atmosphere preservation.

First claim

Opening claim text (preview).

What is claimed is: 1. A method for adsorbing ethylene gas using amorphous granular starch, comprising the following steps: (1) preparation of an amorphous granular starch comprising: (a) pulping with an ethanol aqueous solution to obtain a starch slurry with a dry basis mass fraction of 10% to 15%; (b) keeping the starch slurry obtained in step (a) in a water bath with constant temperature of 25-40° C., adding a NaOH solution dropwise, and stirring to react for 20-60 min; (c) centrifuging the starch slurry obtained in step (b) to obtain a first solid and a first liquid, washing the first solid with ethanol solution, neutralizing the first solid with an ethanol hydrochloride solution, centrifuging to obtain a second solid and a second liquid, and washing the second solid with ethanol solution to obtain a treated starch; and (d) drying and sieving the treated starch obtained in step (c) to obtain the amorphous granular starch; and (2) adsorption of ethylene by the amorphous granular starch comprising: (a) placing the amorphous granular starch in a high-pressure reactor, wherein the amount of the amorphous granular starch is 20%-30% of the reactor's volume; (b) vacuumizing the reactor and then flushing the reactor with the ethylene gas under the condition of 0.8-1.5 Mpa and 20-30° C. to react for 15-25 h; and (c) after a reaction between the amorphous granular starch and the ethylene gas is completed, opening a gas outlet valve and removing unadsorbed ethylene to obtain a starch powder product which has adsorbed the ethylene. 2. The method for adsorbing ethylene gas using amorphous granular starch as claimed in claim 1 , wherein raw starch in the starch slurry is selected from corn starch, tapioca starch or potato starch. 3. The method for adsorbing ethylene gas using amorphous granular starch as claimed in claim 2 , wherein the corn starch is selected from normal corn starch or High-amylose corn starch (Hylon-5 and Hylon-7). 4. The method for adsorbing ethylene gas using amorphous granular starch as claimed in claim 1 , wherein a concentration of the NaOH solution is 1-5 mol/L, and a mass ratio of the dry starch basis to the NaOH solution is 1:1-1:10. 5. The method for adsorbing ethylene gas using amorphous granular starch as claimed in claim 1 , wherein the NaOH solution is added dropwise at a speed of 2-6 g/min. 6. The method for adsorbing ethylene gas using amorphous granular starch as claimed in claim 1 , wherein the concentration of the ethanol aqueous solution is 30%-50% by mass; the concentration of the ethanol solution used in said washing with ethanol solution is 70%-90% by mass; the said washing with ethanol solution refers to washing the starch with the ethanol solution and absolute ethanol separately; and the number of times of said washing with the ethanol solution and absolute ethanol is 1-4. 7. The method for adsorbing ethylene gas using amorphous granular starch as claimed in claim 1 , wherein a concentration of the ethanol hydrochloride solution is 1-5 mol/L. 8. The method for adsorbing ethylene gas using amorphous granular starch as claimed in claim 1 , wherein a speed of the stirring is 80-120 rpm with a centrifugal force of 1811×g. 9. The method for adsorbing ethylene gas using amorphous granular starch as claimed in claim 1 , wherein the drying refers to drying the starch obtained in step (c) in an oven under a temperature of 40-60° C. for 1-3 h; and wherein the sieving refers to sieving through a 120-200 mesh sieve. 10. The method for adsorbing ethylene gas using amorphous granular starch as claimed in claim 1 , wherein the unadsorbed ethylene is removed by bromine water, and the vacuum degree is −0.01 to −0.10 MPa in the step of vacuumizing the reactor.

Assignees

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Classifications

  • Polysaccharides or cellulose materials, e.g. starch, chitin, sawdust, wood, straw, cotton · CPC title

  • by adsorption, e.g. preparative gas chromatography {(solid sorbent compositions B01J20/00, preparation of inorganic compounds or elements C01)} · CPC title

  • B01D53/81Primary

    Solid phase processes · CPC title

  • C08J3/12Primary

    Powdering or granulating · CPC title

  • for storage and dispensing systems · CPC title

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What does patent US10518215B2 cover?
The invention discloses a method for adsorbing ethylene gas using amorphous granular starch. The method firstly prepares amorphous granular starch, wherein starch slurry is prepared from starch with a ethanol aqueous solution and NaOH solution is added dropwise so as to react at 30 to 35° C. for 20 to 50 minutes; Then the slurry is centrifuged, neutralized with an ethanol hydrochloride solution…
Who is the assignee on this patent?
Univ South China Tech
What technology area does this patent fall under?
Primary CPC classification B01D53/81. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Dec 31 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).