IP Library Patent Application 19245529
Patent Application
App. No. 19/245,529

HYDROTHERMAL FEEDSTOCK TREATMENT

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Patent No.
US None
App. No.
19/245,529
Abstract

The disclosure provides a process for a hydrothermal feedstock treatment including direct steam injection and cooling, which may be performed in the absence of a reactor. The process can be used to reduce inorganic and organic contaminants, such as salts, minerals, metals, asphaltenes, polymers, and coke precursors in both renewable and non-renewable feedstocks. The hydrothermal feedstock treatment may also be used in soap acidulation processes.

Claims (63)

1 . A process for treating a feedstock comprising:

combining a feedstock stream and a water stream to form a combined feedstock and water stream;

pressurizing the combined feedstock and water stream above 2 MPa;

adding an additive to at least one of the feedstock stream, the water stream, or the combined feedstock and water stream prior to injecting steam;

injecting steam directly into the combined feedstock and water stream, forming a heated feedstock and water stream,

cooling the heated feedstock and water stream; and

producing a cooled product stream.

2 . The process of claim 1 , further comprising:

depressurizing the cooled product stream; and

separating the cooled product stream by supplying the cooled product stream to a separator, thereby producing a treated feedstock and a separated water stream, optionally further purifying the treated feedstock.

3 . The process of claim 1 , further comprising preheating the feedstock before the step of injecting steam.

4 . The process of claim 1 , further comprising pre-treating the feedstock by steam degumming, enzymatic degumming, water degumming, or a combination thereof prior to the steps of pressurizing the feedstock and injecting steam.

5 . The process of claim 2 , wherein the separating step comprises centrifugal separation.

6 . The process of claim 1 , wherein the feedstock comprises a petroleum-based feedstock or a renewable feedstock, and a contaminant.

7 . The process of claim 6 , wherein the renewable feedstock comprises a glyceride-based lipid.

8 . The process of claim 1 , wherein the pretreated feedstock is pressurized from 3 to 10 MPa; and wherein the steam has a pressure of from 3 to 10 MPa.

9 . The process of claim 1 , wherein the steam injection step heats the feedstock to a temperature above 200° C.

10 . The process of claim 1 , wherein the cooling step comprises reducing the temperature of the heated feedstock and water stream to 90° C. or less over a period of 30 seconds to 15 minutes, 30 seconds to 10 minutes, 30 seconds to 5 minutes, or 30 seconds to 1 minute, inclusive.

11 . The process of claim 1 , further comprising supplying the separated water stream to a water reclaiming process, the water reclaiming process comprising:

heating the separated water stream in a first evaporator to a temperature between 120° C. to 160° C., producing a first heated water stream.

12 . The process of claim 11 , further comprising:

heating the first heated water stream in a second evaporator to a temperature between 110° C. to 150° C., to produce a second heated water stream; and

heating the second water stream in a third evaporator to a temperature between 100° C. to 140° C., to produce a third heated water stream, wherein a volume of the third heated water stream is less than the volume of the separated water stream.

13 . The process of claim 12 , wherein each of the first, second, and third evaporators produces steam during heating.

14 . The process of claim 1 , further comprising:

separating the cooled product stream by supplying the cooled product stream to at least one decanter configured to separate a treated feedstock and a product water stream;

recycling the product water stream back into the pretreated feedstock prior to pressurization, wherein the first water stream is at least partially comprising the recycled product water stream.

15 . The process of claim 14 , further comprising maintaining the heated feedstock and water stream at a laminar flow for a time.

16 . The process of claim 1 , wherein the additive is at least one of: an acid; a base; an ionic liquid; an organic solvent; a reducing agent; an oxidizing agent; a sugar; and a catalyst.

17 . The process of claim 1 , wherein the feedstock stream comprises soapstock.

18 . The process of claim 17 , further comprising:

decanting the heated feedstock and water stream such that the heated feedstock and water stream separates into acid oil and an aqueous phase;

providing the aqueous phase to a separator to separate water from precipitates within the aqueous phase.

19 . A process for treating a feedstock comprising:

combining a feedstock stream and a water stream to form a combined feedstock and water stream;

pressurizing the combined feedstock and water stream above 2 MPa;

adding an additive to at least one of the feedstock stream, the water stream, or the combined feedstock and water stream prior to injecting steam;

injecting steam directly into the combined feedstock and water stream, forming a heated feedstock and water stream; and

providing the heated feedstock and water stream to a multi-separation process configured to separate a purified light phase comprising cleaned feedstock from water.

20 . The process of claim 19 , wherein the multi-separation process comprises:

providing the heated feedstock and water stream to a first decanter configured to separate feedstock from a heavy phase within the heated feedstock and water stream, the heavy phase comprising a combination of water and feedstock;

providing the heavy phase to a second decanter configured to separate an intermediate phase from water within the heavy phase, the intermediate phase comprising a combination of water and feedstock; and

cooling the intermediate phase with a cooler;

providing the intermediate phase to a third decanter configured to separate feedstock from water within the intermediate phase.

21 . The process of claim 20 , wherein water from the second decanter may be recycled back into the water stream.

22 . The process of claim 20 , further comprising:

removing feedstock at a rate from 45-70 #/hr from the first decanter;

removing the heavy phase at a rate from 30-55 #/hr from the first decanter; and

removing the intermediate phase at a rate from 5-30 #/hr form the second decanter; and

removing water at a rate from 10-35 #/hr from the second decanter.

23 . A soap acidulation process for processing soapstock, comprising:

combining a soapstock stream and a water stream to form a combined soapstock and water stream;

pressurizing the combined soapstock and water stream above 2 MPa;

injecting steam directly into the pretreated combined feedstock and water stream, forming a heated soapstock and water stream;

decanting the heated soapstock and water stream such that the heated soapstock and water stream separates into acid oil and an aqueous phase;

providing the aqueous phase to a separator to separate water from precipitates within the aqueous phase.

24 . The soap acidulation process of claim 23 , wherein acid oil comprises free fatty acids.

25 . The soap acidulation process of claim 23 , further comprising adding an additive to at least one of the soapstock stream, the water stream, or the combined soapstock and water stream prior to injecting steam.

26 . The soap acidulation process of claim 25 , wherein the additive is at least one of an acid and a sugar.

27 . The soap acidulation process of claim 23 , wherein the water separated out of the aqueous phase is recycled back into the water stream.

28 . The soap acidulation process of claim 23 , further comprising providing the heated soapstock and water stream to a concentrator configured to remove water from the heated soapstock and water stream.

29 . The soap acidulation process of claim 23 , further comprising adding acid to the heated soapstock and water stream.

30 . The soap acidulation process of claim 23 , wherein the aqueous phase comprises less than 10% of unreacted components of the soapstock stream.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 28, 2026
From: FLOAN, BENJAMIN; MARTINSON, WADE S.; IWEN, AARON M.; POPINGA, RYAN; HARRINGTON, PATRICK; MCDONALD, WILLIAM MICHAEL MCDONALD
To: CROWN IRON WORKS
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