Patents
Literature
Hiro is an intelligent assistant for R&D personnel, combined with Patent DNA, to facilitate innovative research.
Hiro

106 results about "D-Lactic Acid" patented technology

Heat-shrinkable film, molded product and heat-shrinkable label employing the film, and container employing the molded product or having the label fitted thereon

The present invention provide a heat-shrinkable film consisting of a layer or comprising at least one layer, wherein the layer is made of a mixed resin containing a polylactic acid resin and a polyolefin resin as the main components, wherein mass ratio of the polylactic acid resin and the polyolefin resin is 95/5 to 50/50 by mass, the polylactic acid resin being a copolymer of D-lactic acid and L-lactic acid or a mixed resin of the copolymer, wherein D/L ratio of D-lactic acid and L-lactic acid is 3/97 to 15/85 or 85/15 to 97/3, the storage elastic modulus (E′) of the polyolefin resin or the soft acrylic resin at 20 degree C. being 100 MPa or less as measured at an oscillation frequency of 10 Hz and a strain of 0.1%, the film being stretched in at least one direction, and the heat shrinkage ratio of the film in the main shrinking direction being 20% or more as measured after the film is immersed in hot water of 80 degree C. for 10 seconds.
The heat-shrinkable film exhibits excellent heat-shrinkable property, impact resistance, transparency, mechanical property, and shrink finishing quality; it is applicable to shrinkable packing, shrinkable bond-packing, shrinkable label and the like.
Owner:MITSUBISHI CHEM CORP

Sporolactobacillus terrae and application thereof

ActiveCN103756939AProduction process raw materials are easy to getLow costBacteriaMicroorganism based processesMicroorganismMicrobiology
The invention discloses sporolactobacillus terrae HKM-1 and a method for producing D-lactic acid therefrom through fermentation. The sporolactobacillus terrae HKM-1 is collected in China Center for Type Culture Collection with the collection number CCTCC NO: M2013389, and also collected in DSMZ (Deutsche Sammlung von Mikroorganismen und Zellkulturen) with the collection number DSM No.27555. HKM-1 can be used for producing D-lactic acid by using a cheap nitrogen source, namely dry powder of corn steep liquor; the highest fermentation yield of D-lactic acid is 197g/L, the corresponding fermentation period is only 47g, and the fermentation production capacity reaches up to 4.19g/L/h which is far higher than the value publically reported already at present; the strain HKM-1 is stable in high yield performance and capable of producing high-optical purity D-lactic acid, and the optical purity of the produced D-lactic acid is 99.9%; raw materials for fermentation are wide in source and low in cost, and the fermentation state is between anaerobic and micro-aerobic; the method provided by the invention can be used for producing the D-lactic acid through fermentation, and is capable of saving cost and improving production efficiency and also has important industrial application value.
Owner:SHANGHAI JIAO TONG UNIV

Polylactic acid block copolymer

ActiveCN102827362AGuaranteed RegularityInhibition of transesterificationPolyesterOrganic solvent
The invention relates to a polylactic acid block copolymer, which solves the problems that current method is hard to prepare the polylactic acid block copolymer with high-melting point polyester. The polylactic acid block copolymer is a two-block copolymer which is shown as A-b-B, wherein A is a single-end hydroxyl aromatic polyester block, and B is a polylactic acid block. The polylactic acid block is one or more of a poly-L-lactic acid block, a poly-D-lactic acid block and a poly-DL lactic acid block. The polylactic acid block copolymer is prepared by the following step of: adopting an organic solvent which can dissolve reactants of single-end hydroxyl aromatic polyester and lactide to be a reaction medium, tin salt as a catalyst, and the single-end hydroxyl aromatic polyester as an initiator to initiate the ring opening polymerization of lactide. With the adoption of the polylactic acid block copolymer, the polymerizing temperature can be controlled to reach a scope in which polylactic acid and lactide cannot be degraded, and the racemization cannot be carried out, so that the generation of transesterification can be effectively inhibited, the regularity of the chain section can be ensured, and the block copolymers of polyester and the polylactic acid can be successfully prepared, including aromatic polyester with the high-melting point.
Owner:NINGBO INST OF MATERIALS TECH & ENG CHINESE ACADEMY OF SCI
Who we serve
  • R&D Engineer
  • R&D Manager
  • IP Professional
Why Eureka
  • Industry Leading Data Capabilities
  • Powerful AI technology
  • Patent DNA Extraction
Social media
Try Eureka
PatSnap group products