Abstract:
The objective of the present invention is to provide a thickener that can increase the viscosity of a composition while suppressing stickiness and maintaining a good feeling when the composition is applied on the skin or the like, since the thickener does not contain a polymer thickener or the amount of the polymer thickener is small. The thickener of the present invention is characterized by comprising a phospholipid and a biosurfactant, wherein a ratio of the phospholipid to 1 part by mass of the biosurfactant is greater than 4:1 and less than or equal to 10:1.
Abstract:
An objective of the present invention is to provide a surfactant composition which hardly causes the formation of an insoluble salt and which contains a safe and extremely stable micelle or vesicle. Also, an objective of the present invention is to provide a hair cosmetic material which contains the surfactant composition. The surfactant composition according to the present invention is characterized in comprising a micelle or a vesicle which contain surfactin and a specific cationic surfactant.
Abstract:
The objective of the present invention is to provide a method for efficiently producing a hydrocarbon fluid from a hydrocarbon fluid-rich shale even under high temperature without giving an excessive load to the environment. The method for producing a hydrocarbon fluid from hydrocarbon fluid-rich shale according to the present invention is characterized in comprising the steps of excavating a horizontal wellbore in a layer of the hydrocarbon fluid-rich shale, injecting a pressurized fracturing fluid into the horizontal wellbore to fracture the hydrocarbon fluid-rich shale, taking out the hydrocarbon fluid onto the ground from the fractured hydrocarbon fluid-rich shale, wherein a biosurfactant-containing solution is used as the fracturing fluid.
Abstract:
Methods are provided for producing a gelatinous composition containing a phospholipid, which has excellent emulsion stability, as well as methods for easily producing an emulsified composition that is excellent in use feeling and emulsion stability. Gelatinous compositions having excellent emulsion stability, and emulsified compositions having excellent use feeling and emulsion stability are also provided. The methods for producing the gelatinous compositions and emulsified compositions comprise dissolving a phospholipid and a cyclic lipopeptide biosurfactant in a polyol solvent or a mixed solvent of water and a polyol to obtain a surfactant solution, and mixing an oily ingredient with the surfactant solution to obtain a gelatinous composition, wherein a mass ratio of the cyclic lipopeptide biosurfactant to the phospholipid in the gelatinous composition is 0.25 or more.
Abstract:
The objective of the present invention is to provide a method for remarkably reducing a critical micelle concentration of an anionic surfactant, which is used in a large amount currently, to reduce the amount to be used. Also, the objective of the present invention is to provide a surfactant composition of which whole critical micelle concentration is remarkably reduced and in which an amount of an anionic surfactant is reduced in comparison with the case of using an anionic surfactant only as a surfactant. The method for reducing a critical micelle concentration of an anionic surfactant according to the present invention is characterized in using a cyclic lipopeptide biosurfactant in combination with the anionic surfactant.
Abstract:
An objective of the present invention is to provide a method for reducing surface free energy of an organic solvent and of a mixed solution of water and a water-miscible organic solvent, a composition which has a reduced surface free energy of an organic solvent and of a mixed solution of water and a water-miscible organic solvent and which has high environmental suitability and safety to a living body, and a wet wiper and an antiseptic solution which contains the composition The method for reducing surface free energy of an organic solvent or a mixed solvent of water and a water-miscible solvent according to the present invention is characterized in comprising the step of adding surfactin or a salt thereof to the organic solvent or mixed solvent.
Abstract:
The objective of the present invention is to provide a thickener that can increase the viscosity of a composition with suppressing stickiness and maintaining use feeling in the case of applying the composition on the skin or the like, since the thickener does not contain a polymer thickener or the content amount of a polymer thickener is small. The thickener according to the present invention is characterized in comprising a phospholipid, a biosurfactant, and a 1,2-diol compound represented by the following formula (I): HO—CH2—CH(OH)—R1 (I) wherein R1 is a hydrocarbon group having a carbon number of 5 or more and 12 or less.
Abstract:
The objective of the present invention is to provide a cleaning agent composition which can be used in the open air without any problems since the cleaning agent is environmentally friendly and which is effective for removing a low-molecular-weight and poorly-water-soluble cyclic silicone compound that causes a stain of a silicone sealing. The cleaning agent for washing out a silicone stain according to the present invention is characterized in comprising a cyclic lipopeptide biosurfactant, wherein the specific silicone stain compound such as D4 compound is the objective compound to be removed.
Abstract:
The objective of the present invention is to provide a method for producing a polymer of a monomer having a vinyl group while reducing a residual amount of a surfactant within the polymer as the target compound and waste water. The method for producing a polymer according to the present invention is characterized in comprising the step of polymerizing a monomer having a vinyl group in an aqueous medium in the presence of a surfactin salt, which is a natural peptide surfactant, and a polymerization initiator, wherein a ratio of the surfactin salt (I) to 100 parts by mass of the monomer is not less than 0.0005 parts by mass and less than 0.1 parts by mass.