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EnviroSEB Foamclean

EnviroSEB Foamclean is a blend of microbes and enzymes used to eliminate the by-products of foaming and bulking as well as reduce malodors at industrial wastewater plants.

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Glucosyltransferase

Glucosyltransferases are a type of Glycosyltransferase that enable the transfer of glucose.

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METEFFLUENTZYME FBI

METEFFLUENTZYME FBI is a mixture of ecomicroorganism and enzymes used for biotechnological treatment of food and beverages processing waste with high BOD and COD. METEFFLUENTZYME FBI is used in the waste water treatment with high content of grease, fats,oils. It also contains surface tension depressants which help the product to work more efficiently. METEFFLUENTZYME FBI helps in establishing biomass capable of handling these difficult wastes, reduce the accumulation of unsightly deposits of grease and fats, reduce odour problem.

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METEFFLUENTZYME PHI

METEFFLUENTZYME PHI has ability to treat pharmaceutical waste water produced from fermentation, organic synthesis, or combination of the two, those producing vaccines and antitoxins, vitamin, citric acid, antibiotics or synthetic antibiotics, sulpha drugs, steroids, and prostaglandins. Waste water from pharmaceutical plant are characterized by a high chemical demand, pH, trace metals, unoxidized nitrogen, phosphorous, colour, odor, temperature, toxicity and variable concentration of salts. METEFFLUENTZYME PHI is mixture of spores, vegetative cells and enzymes for rapid degradation of highly complex pharmaceutical waste water.

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METEFFLUENTZYME PPI

METEFFLUENTZYME PPI has ability to treat effluent of paper and pulp industry. It is highly efficient, concentrated, synergistic blend of bio consortia comprising mixture of spores, vegetative cells and enzymes for rapid reduction of paper and pulp waste. The paper and pulp industry produce highly loaded waste water from variety of application like bleach plant effluent, and paper machine effluents. In preparation of Meteffluentzyme PPI, we have taken care of specific needs of paper and pulp waste which include,high tempertatures, as high as 70°C,fluctuation pH levels, especially in bleach plant effluents,presence of toxic and inhibitory substances in effluent, which may be detrimental to biological treatment process.

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METEFFLUENTZYME TXI

METEFFLUENTZYME TXI is a mixture of various enzymes and spores to be used in textile effluent treatment. Organic wastes of textile effluent contain a mixture of various enzymes, which immediately start to break down the organic wastes. The nutrient salts present in the Meteffluentzyme TXI help to create a medium for the spore to produce additional enzymes, which constantly break down proteins, carbohydrate and fats. METEFFLUENTZYME TXI thus reduces biological oxygen demand [BOD], chemical oxygen demand [COD], and total suspended solids [TSS].

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Magnesium chelatase

Magnesium-chelatase is a three-component enzyme that catalyses the insertion of Mg2+ into protoporphyrin IX.This enzyme belongs to the family of ligases.The systematic name of this enzyme class is Mg-protoporphyrin IX magnesium-lyase.This enzyme participates in porphyrin and chlorophyll metabolism.

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Mevaldate reductase

Mevaldate reductase (NADPH) (EC 1.1.1.33) is an enzyme that belongs to the family of oxidoreductases, specifically those acting on the CH-OH group of donor with NAD+ or NADP+ as acceptor. The systematic name of this enzyme class is (R)-mevalonate:NADP+ oxidoreductase.

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NADPH dehydrogenase

NADPH dehydrogenase (EC 1.6.99.1) is an enzyme that belongs to the family of oxidoreductases, specifically those acting on NADH or NADPH with other acceptors. The systematic name of this enzyme class is NADPH:acceptor oxidoreductase. It has 2 cofactors: FAD, and FMN.

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Nitroalkane Oxidase

Nitroalkane oxidase is an enzyme that belongs to the family of oxidoreductases, specifically those acting on other nitrogenous compounds as donors with oxygen as acceptor.It participates in nitrogen metabolism.It catalyzes the oxidation of primary and secondary nitroalkanes to the corresponding aldehydes and ketones plus nitrite.

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