Abstract:
PROBLEM TO BE SOLVED: To provide solid compositions including both chemical cleaners and spores, bacteria, fungi or enzyme.SOLUTION: The invention relates to a stable solid cleaning composition including a borate salt and spores (bacterial or fungal), vegetative bacteria, fungi, or enzyme, and to methods of using the composition.
Abstract:
PROBLEM TO BE SOLVED: To provide water-soluble peroxycarboxylic acid compounds and compositions that have storage stability and low or no odor, and also possess antimicrobial and bleaching properties.SOLUTION: The present invention relates to novel sulfoperoxycarboxylic acid compounds, compositions, and methods for making and using the compounds. The sulfoperoxycarboxylic compounds have storage stability, water solubility, and low or no odor. Further, the compounds are extracted from non-petroleum-based renewable materials. The compounds can be used as antimicrobial and bleaching agents. The compounds are also suitable for use as coupling agents.
Abstract:
PROBLEM TO BE SOLVED: To provide an alkali detergent composition which is preferable for washing a metal having corrosion sensitivity in alkali solution, especially for washing a soft metal such as aluminum or its alloy, or a galvanized steel such as a zinc-coated steel, and which can wash the inside surface that is difficult to be reached without additional mechanical treatment.SOLUTION: This invention relates to: a composition for washing a surface having corrosion sensitivity in alkali solution, which contains at least one kind of an alkali source, and at least one kind of an inorganic salt containing at least one kind of cation selected from elements in the second or third main group of the element periodic table, and thereby which does not contain any triazole and/or any alkali metal borate; an aqueous concentrate containing the composition; a solution to be used containing the composition or the aqueous concentrate; and a method for washing the surface having corrosion sensitivity in alkali solution by using the aqueous concentrate or an optional solution to be used.
Abstract:
PROBLEM TO BE SOLVED: To provide a utensil washing composition to protect such as utensils from corrosion during automatic washing of eating utensils or washing of utensils in an automatic eating utensils washing machine or an utensils washing machine. SOLUTION: The utensils washing composition is composed of (a) a clearing agent including 0.5-20 wt.% of a surfactant, based on the weight of the washing composition, (b) an alkaline source effective to give a solution for use having a pH of at least 8 prepared by the dilution of the washing composition for utensils washing with water, (c) a sufficient amount of corrosion inhibitor to reduce corrosion and/or etching of glasses including (i) a source of aluminum ion and (ii) a source of zinc ion wherein the amounts of sources of aluminum and zinc ions are sufficient to give weight ratios of aluminum ion versus the zinc ion between 6:1 and 1:20, and (d) a chlorine agent enclosed in capsules. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an alkaline detergent containing a mixed organic and inorganic sequestrant which successfully softens service water used in manufacturing an aqueous detergent from the composition, and also achieves substantially improved organic soil removal on a dishware or a silver table ware. SOLUTION: Detergents, especially solid block 11 alkaline detergent compositions, are disclosed comprising a source of alkalinity, and other detergent additives including a sequestrant. The detergents of the invention use a mixed condensed phosphate and organic phosphonate sequestrant component. The solid block detergents of the invention comprises large masses of the chemical ingredients having a mass of greater than about 500 grams in a solid block product form that is typically dispensed using a water spray-on dispenser that forms an aqueous concentrate that is used in a washing machine. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a method of manufacturing a solid detergent composition which has good extrusion molding properties and which has high washing efficiency. SOLUTION: The method of manufacturing a solid detergent composition comprises: (i) combining: (a) 25 to 80 wt% of sodium carbonate; (b) 1 to 30 wt% of aminotri(methylenephosphonate); and (c) 0.9 to 1.3 mol of water per mol of carbonate to form a blended mass; and (ii) adding non-hydrated sodium carbonate and a binding agent comprising mono-hydrated sodium carbonate and aminotri(methylenephosphonate) for solidification. The solid does not contain a source of alkalinity other than sodium carbonate. The blended mass is formed into a solid by extrusion molding. COPYRIGHT: (C)2005,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide a dish washing method capable of providing clean dishes free from residue, stains, or streaking (striped contamination). SOLUTION: This dish washing method containing a first washing process using a hydroalkali cleaning composition comprises the steps of (a) bringing the dishes provided from a hydroalkali cleaning process forming alkali residue into contact with a synthetic nonionic seating agent containing polyalkylene oxide portion and hydro composition containing approx. 10 to 500 ppm in a post-washing process so as to form washed dishes and (b) bringing the washed dishes into a hydro rinse composition, and further comprises a post-washing sanitation process.
Abstract:
PROBLEM TO BE SOLVED: To provide alarm for warning a low residual amount condition for a supplying liquid, with simple and reliable constitution. SOLUTION: An inlet port 12 liquid-communicated with a liquid supplying source, and an outlet port 11 liquid-communicated with a liquid using site are provided in a sensor main body 10. A float chamber 13 liquid-communicated with the inlet port 12 and the outlet port 11 is provided in parallel to a flow passage 14 for connecting the ports 11, 12. A float 16 connected to an alarm is provided in the float chamber 13. When the chamber 13 is filled with a liquid, a switch for generating a signal is not actuated, and, when the chamber 13 become empty, the float 16 goes down to operate the switch for generating a signal information a supplying liquid storage condition. The inlet port 12, the outlet port 11, the passage 14 and the float chamber 13 are integrally formed in the sensor main body 10 by drilling working.
Abstract:
PROBLEM TO BE SOLVED: To provide a compact floor finishing agent application device capable of uniformly and efficiently applying liquid type floor finishing agent to a floor of a wide surface. SOLUTION: A device comprises a movable central unit (cart) 10 having a handle 11, a carrying means, and a supply source to transfer floor finishing agent through duct means 16a and 16b for liquid of a length of over 15m, a floor finishing agent application means 33, and a spray head 32. In this case, the spray head 32 is communicated with the duct means 16a and 16b through a valve with relation to liquid, and it is provided with a wand assembly having a surface provided with an aperture, of the maximum diameter of about 0.5-5 mm and a hole depth of 1-10 mm, from which liquid drip is substantially prevented, and composed in such a way that vacuum pick-up is not required.
Abstract:
PROBLEM TO BE SOLVED: To provide a device for mixing a solution to be used wherein even in the case that viscosity rises when a diluent and a concentrated liquid are mixed, a solution to be used which has uniform composition can be produced constantly and continuously by making an accurate dislution. SOLUTION: The device includes a first inlet port 20, a second inlet port 22, and an outlet port 52. A liquid diluent guiding means 14 is connected to the port 20 to feed a liquid diluent and a concentrated liquid to an aspirator, and a concentrated liquid guiding means 16 is connected to the part 22. Actions of a shut-off valve/operation valve operation device control a shut-off valve in fluid communication with the port 52 and an operation valve in fluid communication with the means 14 to control the flow of the liquid diluent.