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69 results about "Microbacterium species" patented technology

As of 2015, it contains 96 species: Microbacterium aerolatum. Microbacterium agarici. Microbacterium amylolyticum. Microbacterium aoyamense. Microbacterium aquimaris. Microbacterium arabinogalactanolyticum. Microbacterium arborescens.

Mixed bacterial agent for reducing viscosity of thick oil, as well as preparation method and use thereof

The invention relates to a mixed bacterial agent for reducing viscosity of thick oil, as well as a preparation method and a use thereof, belonging to the technical field of crude oil recovery. The mixed bacterial agent for reducing the viscosity of the thick oil comprises xanthomonas, pseudomonas, microbacterium and bacillus, and the volume ratio of fermentation solutions of all bacterial genera is (20-100):(40-180):(30-100):(10-80). The preparation method comprises the following steps: respectively fermenting and mixing first-stage seed solutions of all bacteria: (1) getting strains from sources: extracting the strains out of water of Bohai sea gulf, and taking thick crude oil as a carbon source for acclimation and screening; (2) preparing the first-stage seed solutions: respectively activating on a peptone-yeast slant culture medium and transferring into a liquid peptone-yeast culture medium for shaking and activation; and (3) preparing a fermentation solution of mixed bacteria: respectively transferring the first-stage seed solutions of the strains into a fermentation culture medium for culture, wherein the living bacteria count in the mixed bacteria is 10<8>-10<10> bacteria/ml. The mixed bacterial agent for reducing the viscosity of the thick oil is used for reducing the viscosity of the crude oil. The mixed bacterial agent for reducing the viscosity of the thick oil, disclosed by the invention, has the advantages of high activity, rapid growth, no secondary pollution, good viscosity-reducing effect and the like.
Owner:E TECH ENERGY TECH DEV CORP

Ammonia nitrogen-removed compound microorganism microbial agent and application thereof

The invention discloses an ammonia nitrogen-removed compound microorganism microbial agent. The ammonia nitrogen-removed compound microorganism microbial agent is prepared from Providencia rettgeri, Microbacterium lactium, Lactobacillus delbrueckii and Rhodococcus coprophilus in a volume ratio of 5 to 2.5 to 1 to 5. The invention further discloses application of the compound microorganism microbial agent in ammonia nitrogen-containing wastewater treatment. The four bacteria are reasonably matched and are combined by virtue of an adsorption method and an embedding method to form immobilized cell particles, so that the ammonia-nitrogen degradation capacity and stability of the compound microorganism microbial agent are remarkably enhanced; a dominant bacterial community can be immediately formed after the compound microorganism microbial agent is applied to denitrification and treatment process of sewage, river way landscape water and the like, the treatment time is short, and ammonia and nitrogen indexes of the sewage are rapidly decreased; and meanwhile, the compound microorganism microbial agent has an aerobic denitrification function and further has relatively good effect of removing COD, and accumulation of nitrite and nitrate is avoided.
Owner:江苏绿境环保工程有限公司

Microbacterium oxydans and method for preparing chiral bis(trifluoromethyl) phenyl ethanol by using same

The invention belongs to the technical field of biological catalysis, and relates to microbacterium oxydans and a method for preparing optically pure (R)-1-[3,5-bis(trifluoromethyl) phenyl] ethanol by using the microbacterium oxydans. The preservation number of the microbacterium oxydans C3 is CCTCC M2010179. The microbacterium oxydans is cultured at the temperature of 27-33 DEG C for 24-48 hours, and then substrate 3,5-bis-trifluoromethyl acetophenone is added to convert auxocyte; or the culture bacterium is collected and is resuspended in a buffer solution, and then the substrate is added to convert resting cells so as to generate a target product, namely the optically pure (R)-1-[3,5-bis(trifluoromethyl) phenyl] ethanol. The microbacterium oxydans has the advantages of easiness in industrialization, easiness in preparation of a catalyst thereof, mild reaction conditions and high conversion efficiency.
Owner:CHENGDU INST OF BIOLOGY CHINESE ACAD OF S

Method for extracting glutamic acid from glutamic acid fermentation liquor by bipolar membrane electroosmose process

The invention discloses a method for extracting glutamic acid from glutamic acid fermentation liquor by bipolar membrane electroosmose process. The method includes the following steps: a. microbacterium is used in a fermentation cylinder for the fermentation of proportioned raw materials of hydrolysate of the starch sugar, corn steep liquor, magnesium sulfate, disodium hydrogen phosphate, ureophil and potassium chloride, the steps of strain inoculation, water adding, air agitation fermentation and a certain temperature and pH value maintenance are carried out in a fermentation process, and glutamic acid fermentation liquor can be obtained after a certain period of fermentation; b. after being neutralized by sodium hydroxide, the glutamic acid fermentation liquor obtained in step a is processed by ultrafiltration to remove bacterial strain, protein and other impurities to obtain sodium glutamate liquor; and c. the glutamic acid obtained after the bipolar membrane electrodialysis separation of the sodium glutamate obtained in step b is processed by active carbon decolorization and concentrative crystallization to obtain the finished product. The method has the advantages of simple process, low energy consumption, small volume of equipment and easy operation, the rate of conversion can be as high as 99 percent, the byproduct-dilute sodium hydroxide solution can be circularly utilized, environmental pollution is not generated, and the energy consumption is lower.
Owner:INST OF SUBTROPICAL AGRI CHINESE ACAD OF SCI

Microbial strain and application thereof

The invention discloses a microbial strain and an application thereof, particularly relates to a tobacco nicotine degrading microbacterium GYC29 (Microbacterium sp.GYC29) with CCTCC of NO:M2010311 and an application of the microbacterium in tobacco. The strain disclosed herein can decompose and utilize nicotine in the growth process. According to the invention, by adding the ferment liquor of the strain or thallus with the additional amount of 1-5 % of the weight of the tobacco leaves in the tobacco with the water content of 10-50 % and fermenting for 6-72 h, the nicotine content of the tobacco leaves is reduced by 2-33%, the irritation of the tobacco leaves is obviously reduced, the miscellaneous gases are reduced, the smoke becomes pure and mild, and the sensory quality is obviously improved; the degradation of tobacco nicotine is realized by using microbes, the nicotine content of tobacco raw materials can be regulated properly, and the applicability of the tobacco leaves is raised.
Owner:CHINA TOBACCO GUANGXI IND

Microbacterium and application of microbacterium in conversion of reed straw hydrolysate to prepare microbial flocculant

The invention discloses a microbacterium and an application of microbacterium in conversion of a reed straw hydrolysate to prepare a microbial flocculant. The microbacterium is classified as Microbacterium trichothecenolyticum BWL1091, and a preservation number is CGMCC No. 14436. A method of preparing the microbial flocculant comprises the following steps: inoculating the strain in a seed liquidmedium, and preparing the seed liquid by shaking table culture at 37 DEG C; transferring the seed liquid to a ratio of 1% to a fermentation medium taking the 650 mL/L reed straw hydrolysate as a solecarbon source, and performing shaking table culture at a constant temperature of 30 DEG C; centrifuging a fermentation broth, and collecting a supernatant for use as a liquid microbial flocculant; adding 2-time volumes of pre-cooled anhydrous ethanol to the liquid microbial flocculant, and collecting the precipitate by centrifugation, and performing freeze drying to obtain the solid microbial flocculant. The microbacterium of the invention can tolerate a high concentration of reed straw hydrolysate, and can utilize the rich reducing sugar in the reed straw hydrolysate as the sole carbon sourceto ferment and produce the microbial flocculant, the output can reach up to 7.53g/L, the production process is simple, and the cost is low.
Owner:XUZHOU NORMAL UNIVERSITY

Azo dye orange II degrading bacterium and inocula produced from same

The invention discloses an azo dye orange II degrading bacterium and an inocula produced from the same. The bacterial strain is bacterial strain L-11 of microbacterium oxydans, is preserved in China General Microbiological Culture Collection Center since 8th, May, 2014, the preservation address is No. 3, No. 1 yard, Beichen West Road, Chaoyang District, Beijing City, and the preservation number is CGMCC NO.9130. The main biological characteristics comprise that the bacterium colony is circle and is not transparent, the bacterium colony is white after being cultured for 1-3 days and is yellow after being continuously cultured, the liquid culture color is yellow, the optimum culture temperature is 28-30 DEG C, and the optimum pH is 7.2. The bacterium belongs to actinomyces. The degrading bacterium L-11 is capable of enabling the azo dye orange II residual quantity to be reduced by 80% or more. The azo dye orange II degrading bacterium inocula has the advantages of low production cost, usage convenience and good removing effect, and is applicable to pollution treatment of water and soil.
Owner:嘉兴华吉环保科技有限公司

Microbacterium oxydans and application thereof in degrading organic pollutants

The invention discloses microbacterium oxydans and application thereof in degrading organic pollutants. The application method comprises the following steps: inoculating an inorganic salt culture solution with microbacterium oxydans, adding organic pollutants, and carrying out degradation reaction under the conditions of 25-35 DEG C, 160 rpm and pH value of 6-8 to realize the degradation of organic matters. The microbacterium oxydans of the invention can degrade chlorobenzene. Under aerobic condition, the microbacterium oxydans can degrade chlorobenzene with an initial concentration of 500-2000 [mu]mol / L, wherein the removal rate is 100%, and the average degradation rate is as high as 334.16549 [mu]mol / (L x h). Under anaerobic condition, the microbacterium oxydans can degrade chlorobenzenewith an initial concentration of 500-1500 [mu]mol / L, wherein the removal rate is 100% too. The microbacterium oxydans can realize high-efficiency purification of chlorobenzene in industrial wastewater and waste gas, and has the advantages of low pollution, easy popularization and low purification cost.
Owner:ZHEJIANG UNIV OF TECH

Heat-resisting urate oxidase gene of microbacterium category bacteria and application of same

The invention discloses the heat-resisting urate oxidase gene of microbacterium bacteria, comprising the nucleotide sequence presented in SEQ ID No.1. The invention also discloses a protein encoded by the gene, comprising the amino acid sequence presented in SEQ ID No.2. The invention also discloses the application of the heat-resisting urate oxidase gene of the microbacterium category bacteria: the gene is cloned in a vector so as to carry out induction expression, thus obtaining the heat-resisting urate oxidase with high activity.
Owner:ZHEJIANG UNIV

DNA encoding hydantoinase, DNA encoding N-carbamyl-L-amino acid hydrolase, recombinant DNA, transformed cell, method of producing protein, and method of producing optically active amino acid

The present invention provides a method of producing optically active amino acids from 5-substituted hydantoin by isolating a hydantoinase gene and an N-carbamyl-L-amino acid hydrolase gene involved in an ability to convert 5-substituted hydantoin or N-carbamylamino acid into optically active amino acids from a microorganism of the genus Microbacterium having the above ability and by improving gene amplification and transcriptional and translational activities thereby preparing a recombinant wherein the amount of the desired enzymes produced is increased. The hydantoinase gene is, for example, a DNA encoding for a protein having a hydantoinase activity, which has the nucleotide sequence set forth in SEQ ID NO:1 in the Sequence. The N-carbamyl-L-amino acid hydrolase gene is, for example, a DNA encoding for a protein having an N-carbamyl-L-amino acid hydrolase activity, which has the nucleotide sequence set forth in SEQ ID NO:3 in the Sequence.
Owner:AJINOMOTO CO INC
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