Patent classifications
C02F2305/04
IRON-COMPRISING CONCENTRATE FOR PREPARATION OF IN SITU REMEDIATION SOLUTION
A liquid concentrate composition for remediation of groundwater, said composition consisting of powdered iron in the amount of 30 to 70% zero-valent iron powder, such as 40 wt, 1 to 15 wt % of water, 0.1 to 1.5% of surfactant and 40 to 70 wt % of the organic carrier, wherein the organic carrier is added to the 100 wt % and optionally, organic electron donor solution and/or remediation chemical, wherein organic electron donor solution and/or remediation chemical is not exceeding 10 wt % of the liquid concentrate.
TREATMENT OF IRON SULPHIDE DEPOSITS
A method may include treating a water system containing or in contact with a metal sulphide scale to inhibit, prevent, reduce, dissolve or disperse iron sulphide deposits. A solution of tris(hydroxyorgano)phosphines (THP) and/or tetrakis(hydroxyorgano)phosphonium salts (THP+salts) and citrate is contacted with the metal sulphide scale thereby to dissolve at least part of said scale in said solution.
COMPOSITION FOR PHOTODYNAMIC REACTION CONTAINING EXTRACT OF LIGULARIA FISCHERI AS AN EFFECTIVE INGREDIENT, ANTIMICROBIAL, ANTIFUNGAL AND STERILIZATION COMPOSITION INCLUDING THE SAME, AND STERILIZATION METHOD USING THE COMPOSITION FOR PHOTODYNAMIC REACTION
Provided are methods of reducing and killing bacteria and fungi, and photodynamic treatment methods and sterilization methods using the methods of reducing and killing bacteria and fungi. The method of reducing and killing bacteria and fungi includes bringing a composition including a Ligularia fischeri extract or a fraction thereof as an active ingredient into contact with cells or tissues of a subject and irradiating cells or tissues of a subject in contact with the composition with an absorbable wavelength of excitation light.
Remediation system and method based on pollution obstruction for underground water with DNAPL pollutant
A remediation system based on pollution obstruction for underground water with DNAPL pollutant is provided, including a vertical obstructing wall, a pump-out treating unit and a recharging unit, wherein the vertical obstructing wall is distributed at the periphery of a polluted area to obstruct the polluted underground water in the vertical obstructing wall; the pump-out treating unit includes a plurality of water pumping wells and overground treatment facility that are distributed in the polluted area, the plurality of the water pumping wells are configured to pump the polluted underground water out and sending it into the overground treatment facility so as to be treated; the recharging unit includes a plurality of recharging wells, and water treated by the overground treatment facility is recharged into a target aquifer in the polluted area by the plurality of the recharging wells. A remediation method using the system is provided.
METHOD AND APPARATUS FOR WATER TREATMENT
A method for water treatment, wherein the water for treatment is conducted by a conveying device from an inlet to an outlet via multiple treatment stages, wherein at least one of the treatment stages is an oxidation stage in which foreign matter situated in the water is oxidized by an oxidant which is added to the water in or upstream of the oxidation stage, and at least one of the treatment stages to which the water is fed after the processing by the at least one oxidation stage is a separation stage in which foreign matter situated in the water after processing in the at least one oxidation stage is precipitated and separated off by addition of at least one separating agent, in particular of a flocculant and/or of activated carbon.
OXYALKYLATED SURFACTANTS AS CORROSION INHIBITORS
Disclosed are oxyalkylated surfactants used in compositions and methods for inhibiting corrosion.
STABLE MICROBICIDE COMPOSITION
Provided is a microbicide-containing aqueous composition having a superior effect of stabilizing 5-chloro-2-methyl-4-isothiazolin-3-one. This microbicide composition includes: (A) 5-chloro-2-methyl-4-isothiazolin-3-one; (B) 2,2,6,6-tetramethylpiperidin-1-oxyl; and (C) at least one solvent selected from the group consisting of water and a hydrophilic organic solvent.
Cooling Water Treatment Composition for Decreasing Energy Use
Water treatment compositions useful to decrease surface tension of cooling tower waters are provided as are treated cooling tower waters. The compositions increase the transfer of heat from metal surfaces in contact with the treated cooling water. The increased heat transfer can decrease energy use, for example, in water-cooled HVAC and refrigeration compressors, and can enable increased production rates in many industrial processes, including, for example, plastics molding, metal billet production, petroleum refining, power plants, and condensers for steam turbines. Also provided are cooling tower water compositions formulated to control corrosion, scale, and deposition in a cooling tower and in treated cooling tower water.
ENVIRONMENTALLY FRIENDLY FOAMING BODY AND MANUFACTURING METHOD THEREFOR
A foaming body for supporting microbes according to the present invention is superb in terms of microbial adherence to and affinity for pore areas therein, exhibits greatly improved supporting environments for microbes, and has a large surface area, thereby securing sufficient water treatment efficiency after loading microbes thereto.
MOLECULES HAVING ONE HYDROPHOBIC GROUP AND TWO IDENTICAL HYDROPHILIC IONIC GROUPS AND COMPOSITIONS THEREOF AND METHODS OF PREPARATION THEREOF
A novel class of compounds is described here. The disclosed novel compounds have one hydrophilic group and two identical hydrophilic ionic groups. The two hydrophilic groups of the disclosed compounds contain or end with a cationic or anionic charged group. The disclosed novel compounds herein can be used as surfactants in an article, product, or composition, or for some other purposes. A method to synthesize the disclosed novel compounds is also described.