Abstract: An aqueous liquid chromate free composition for forming a protective coating on metals, particularly aluminum, is made by reacting cobalt(II) cations, carboxylate anions, at least one other type of coordinate complexing agent for cobalt(III) cations, and an oxidizing agent in an aqueous solution in which the molar ratio of carboxylate anions to cobalt(II) cations is from 0.10 to 6.8 and the aqueous solution contains no more than 1% of each of ammonia, ammonium ions, and nitrite ions.
Type:
Grant
Filed:
June 16, 1995
Date of Patent:
September 7, 1999
Assignee:
Henkel Corporation
Inventors:
Shawn E. Dolan, Lawrence R. Carlson, John R. Pierce
Abstract: Wheat protein hydrolyzates are produced by hydrolyzing a wheat protein-containing starting material, preferably a wheat protein isolate having a protein content of 70 to 90%, with a proteinase such as a serine protease at a pH of 2 to 5, then with a proteinase at a pH of 8 to 10 and finally with a peptidase at a pH of 6 to 7. The hydrolysis steps are preferably at a temperature below the gelatinization temperature of carbohydrate present in the protein. Each hydrolysis may be carried out for 1 to 24 hours at a temperature of 40 to 70.degree. C. To reduce traces of unwanted color formers, an adsorbent such as silica gel, aluminum oxide or activated carbon may be present during the hydrolysis steps. Aqueous wheat protein hydrolyzate solutions are obtained and, if required, may be concentrated, for example using falling film evaporators. The hydrolyzates have an average molecular weight in the range of 100 to 30,000, preferably 2,000 to 5,000, and a solids content of around 5 to 50%.
Type:
Grant
Filed:
October 6, 1997
Date of Patent:
August 31, 1999
Assignee:
Henkel Kommanditgesellschaft Auf Aktien (KGaA)
Inventors:
Edith von Kries, Andrea Heilemann, Andreas Sander
Abstract: The use of selected cation exchange resins to remove dissolved multivalent cations ions such as iron, zinc, and chromium from used autodeposition compositions permits reuse of the autodeposition compositions without the need for added surfactant and without developing any undesirable graininess or other texture in the coatings formed. Iminodiacetate cation exchange resins are very effective for removing iron ions when they are the only multivalent ions to be removed, and can be efficiently regenerated with 0.5 to 4% by weight aqueous hydrofluoric acid. By proper choice of other cation exchange resins and operating conditions, zinc can be selectively extracted from autodeposition baths containing both iron and zinc, and either iron or zinc can be selectively displaced from the loaded ion exchange resin.
Type:
Grant
Filed:
November 17, 1997
Date of Patent:
August 31, 1999
Assignee:
Henkel Corporation
Inventors:
William G. Kozak, Christina M. Haas, Bashir M. Ahmed
Abstract: Residue that accumulates on metallic molding surfaces during repeated molding of plastics such as PVC can be removed by cleaning with an aqueous solution of a glycol or oligo-glycol monoether, an amine, and a chelating agent. The cleaner is sufficiently effective to replace mechanical blasting that was previously required.
Abstract: Detergent mixtures containing fatty alcohol sulfates, fatty alcohol ether sulfates, alkyl and/or alkenyl oligoglycosides and/or fatty acid N-alkyl polyhydroxyalkyl amides are eminently suitable in solid form for the production of toilet blocks.
Type:
Grant
Filed:
May 28, 1996
Date of Patent:
August 17, 1999
Assignee:
Henkel Kommanditgesellschaft auf Aktien
Inventors:
Karl Schmid, Andreas Syldath, Ditmar Kischkel, Volker Bauer, Wolfgang Schmidt, Anke Grosser
Abstract: The process of recovering precious metals from ores containing precious metals, such as gold and silver, from an aqueous ammoniacal thiosulfate leach solution to provide a significant practical and economical process for the recovery of gold or silver is disclosed. After leaching of the ore with an aqueous ammoniacal thiosulfate solution, the leach solution is contacted with a precious metal extraction reagent to extract the precious metal values from the leach solution, after which the precious metal values are stripped from the extraction reagent to form a concentrated solution of the precious metal values from which the precious metals may be recovered by conventional methods such as electrolysis. The extraction reagents are those having guanidyl functionality or a quaternary amine functionality mixed with a weak organic acid such as a phenol.In the process, novel thiosulfate complexes of the precious metals are formed with the quanidyl or the quaternary amine extractants.
Type:
Grant
Filed:
June 17, 1997
Date of Patent:
August 17, 1999
Assignee:
Henkel Corporation
Inventors:
Michael J. Virnig, J. Michael Sierakoski
Abstract: A process for thickening a water-in-oil and oil-in-water emulsion involving adding to the emulsion a thickening agent consisting of an alkyl or alkenyl oligoglucoside ester formed by esterifying an alkyl or alkenyl oligoglycoside corresponding to formula I:R.sup.1 O--?G!.sub.p (I)wherein R.sup.1 is an alkyl or alkenyl oligoglucoside containing from about 4 to about 22 carbon atoms, G is a sugar unit containing from 5 to 6 carbon atoms, and p is a number having a value of from 1 to about 10, with a fatty acid corresponding to formula II:R.sup.2 CO--OH (II)wherein R.sup.2 CO is an aliphatic acyl radical containing from about 6 to about 22 carbon atoms, and up to about 3 double bonds.
Type:
Grant
Filed:
February 26, 1997
Date of Patent:
August 17, 1999
Assignee:
Henkel Kommanditgesellschaft auf Aktien
Inventors:
Achim Ansmann, Rolf Kawa, Annette Kreisig, Norman Milstein
Abstract: A combination of (A) a nitrogen containing water soluble polymer, (B) a water insoluble film forming polymer, and (C) gas filled, polymer walled microballoons provides a superior thermally releasable coating that (i) can be conveniently and reliably coated from a water based solution and dispersion onto surfaces to be protected against painting, (ii) is reliably stable at ambient temperatures, (iii) even after being coated with many times its own thickness of accumulated paint particles, rapidly disintegrates, along with the accumulated paint coating formed on it, upon contact with hot water, into particles of a size that readily escapes from standard paint booth grate structures, (iv) detackifies any paint particles that escape during distintegration of the combined thermally releasable coating and paint residues accumulated thereon, and (v) disintegrates into particles that float on water, so that they can be readily removed from the grates by immersing the latter in hot water, allowing a few minutes for th
Abstract: A process for making a sterically-hindered beta-diketone involving: (a) providing a solution comprising: (i) an ester; (ii) a base; and (iii) a solvent; (b) adding a ketone selected from the group consisting of an aromatic ketone and a hindered aliphatic ketone, to the solution, to form a condensation reaction mixture, whereby either the ester or the ketone is hindered; (c) reacting the solution with the ketone to form a sterically-hindered beta-diketone; and (d) recovering the sterically-hindered beta-diketone from the condensation reaction mixture.
Type:
Grant
Filed:
January 22, 1998
Date of Patent:
August 10, 1999
Assignee:
Henkel Corporation
Inventors:
Kevin V. Martin, Phillip L. Mattison, Michael J. Virnig
Abstract: Aqueous acid treatment solution for the treatment of beverage cans, in particular of aluminum, for producing a corrosion-protective, friction-reducing coating which improves the ability to be enameled, which comprises 0.14 to 2.25 mmol/l of an alkylamine oxide or an alkylammonium salt with an alkyl radical having 8 to 22 C atoms, 0.25-1.5 mmol/l of hydroxycarboxylic acids having 4-7 C atoms, complex fluorides and mineral acids, and preferably tannin.
Abstract: Fatty acid polyethylene glycol esters of the formula (I):R.sup.1 CO(CH.sub.2 CH.sub.2 O).sub.n H (I)wherein R.sup.1 CO is a linear or branched, aliphatic, saturated and/or unsaturated acyl group having from about 6 to about 22 carbon atoms and n is a number from 0.5 to 1.5 are made by reacting ethylene oxide and a fatty acid in the presence of an alkanolamine in a homogeneous reaction medium.
Type:
Grant
Filed:
December 9, 1996
Date of Patent:
August 10, 1999
Assignee:
Henkel Kommanditgesellschaft auf Aktien
Inventors:
Hans-Christian Raths, Ansgar Behler, Norman Milstein
Abstract: A process for sealing anodized metal surfaces is characterized by bringing the anodized metal into contact with an aqueous solution at a temperature from 75.degree. C. to the boiling point of the solution for a time equal to from 0.5 to 2 minutes per micrometer of anodized layer thickness. The solution contains: a) from 0.0001 to 5 g/l of one or more alkali metal and/or alkaline earth metal ions and b) from 0.0005 to 0.5 g/l of one or more organic acids selected from: polycarboxylic acids with from 3 to 6 carboxyl groups; phosphonic acids; and/or polyphosphinocarboxylic acids, the solution containing a greater amount of metal ions of group a) than is needed to insure complete neutralization of the acids of group b).
Type:
Grant
Filed:
April 20, 1998
Date of Patent:
August 10, 1999
Assignee:
Henkel Kommanditgesellschaft auf Aktien
Inventors:
Torsten Koerner, Josef Kresse, Wolf-Achim Roland, Juergen Lindener
Abstract: Powdered, paste, or liquid media for cleaning and/or degreasing hard surfaces, especially surfaces of organic polymers (PVC) contain active ingredients of amino acids, carboxylic acids, and nonionic surfactants, possibly supplemented by action-reinforcing auxiliaries and/or demulsifying additives. Processes using these media are also claimed.
Abstract: The hot-melt adhesive of the invention includesA) at least one polyurethane prepolymer ofa) at least one polyisocyanate, in particular, toluene diisocyanate and/or MDI,b) at least one polyalkylene glycol at a concentration of more than 10% by weight based on total hot-melt adhesive, in particular, polypropylene glycol,c) at least one polyester glycol, preferably of at least two polyester glycols having different glass transition temperature, andB) optional additives such asd) a resin, particularly a hydrocarbon resin, ande) a stabilizer, particularly toluenesulfonyl isocyanate.Preferably, the hot-melt adhesive has a melt viscosity ranging from 10 to 300 Pa.s at 130.degree. C. The PU pre-polymer has only one single Tg in the DSC diagram. The hot-melt adhesive is notable for its high creep resistance with similarly high initial and final strength.
Abstract: A zinc phosphate conversion coating which is accelerated only with nitrogen free organic peroxides is low-polluting and able to form uniform, fine, and dense conversion coatings that exhibit an excellent paint adherence when thin and excellent lubricity/lubricant carrier quality when thick.
Abstract: An aqueous printing ink composition containing finely dispersed pigments and a synthetic polymer binder, the binder containing: (a) finely dispersed, aqueous-basic insoluble emulsion (co)polymers having a number average molecular weight of from about 10,000 to 1,000,000 and a glass transition temperature of up to 0.degree. C., in intimate admixture with (b) aqueous-basic soluble or dispersible (co) polymers having a number average molecular weight lower than that of the (co)polymers of component (a) and a glass transition temperature of at least 0.degree. C.
Type:
Grant
Filed:
January 11, 1996
Date of Patent:
August 3, 1999
Assignees:
Henkel Kommanditgesellschaft auf Aktien, Hartmann Druckfarben, GmbH
Inventors:
Michael Beck, Herbert Fischer, Wolfgang Ritter, Ludwig Schieferstein, Udo Griebsch, Quang-Minh Thai
Abstract: Light-colored, low-viscosity surfactant concentrates, are made by mixing: mixing: (a) a sugar surfactant selected from the group consisting of an alkyl and/or alkenyl oligoglycoside, a fatty acid-N-alkyl polyhydroxyalkylamide and a combination thereof and, (b) a betaine in a ratio by weight of (a) to (b) of from about 90:10 to about 10:90, with the proviso that components (a) and (b)are present in the gel phase.
Type:
Grant
Filed:
December 17, 1996
Date of Patent:
August 3, 1999
Assignee:
Henkel Kommanditgesellschaft auf Aktien
Inventors:
Michael Neuss, Karl Heinz Schmid, Andrea Borntraeger
Abstract: An aqueous liquid composition containing dihydrogen phosphate salt, sulfur containing surfactant, and preferably a small amount of phosphoric acid cleans soiled metal surfaces without damaging any plastic parts that come into contact with the composition with the composition and without supporting the growth of bacteria that cause unpleasant odors. The composition is particularly useful for cleaning unpainted aluminum sided rail transport cars that have polycarbonate housings insulating electrical contact points that provide motive electric power to the cars; many conventional aqueous alkaline and acid cleaners promote stress cracking of polycarbonate plastics.
Abstract: A storable, substantially water-free flowable surfactant mixture containing 40% by weight to 70% by weight of a nonionic surfactant of the formula R.sup.1 --(OC.sub.2 H.sub.4).sub.n --OH wherein R.sup.1 is an alkyl or alkenyl group containing 10 to 20 carbon atoms and an average degree of ethoxylation n of from 1 to 8; 20% by weight to 50% by weight of a nonionic surfactant, liquid at room temperature, of the formula: R.sup.2 --(OC.sub.2 H.sub.4).sub.r --(OC.sub.3 H.sub.6).sub.p --OH wherein R.sup.2 is an alkyl or alkenyl group containing 10 to 20 carbon atoms, an average degree of ethoxylation r of from 2 to 8 and an average degree of propoxylation p of from 1 to 6; and 1% by weight to 10% by weight of a C.sub.10 to C.sub.22 carboxylic acid and/or alkali metal salts thereof. The flowable surfactant mixture provides a base for forming a pseudo-plastic detergent formulation.
Type:
Grant
Filed:
April 18, 1996
Date of Patent:
July 27, 1999
Assignee:
Henkel-Ecolab GmbH & Co. OHG
Inventors:
Hans-Josef Beaujean, Thomas Merz, Erich Holz, Thomas Holderbaum, Guenther Amberg, Khalil Shamayeli, Michael Marschner, Hubert Harth
Abstract: An adjuvant containing: (a) a sulfated alkyl oleate; (b) an alkyl polyglycoside corresponding to formula I:R.sub.1 O(R.sub.2 O).sub.b (Z).sub.a Iwherein R.sub.1 is a monovalent organic radical having from about 6 to about 30 carbon atoms; R.sub.2 is a divalent alkylene radical having from 2 to 4 carbon atoms; Z is a saccharide residue having 5 or 6 carbon atoms; b is a number having a value from 0 to about 12; a is a number having a value from 1 to about 6; and (c) an alkyl ester.