Abstract:
The present invention relates to a biomolecule squaric acid monoamide conjugate of formula (I), as presented in the claims, and to a method for non-polar extraction of a biomolecule squaric acid monoamide conjugate of formula (I), as presented in the claims, obtained after a bioconjugation reaction, wherein said extraction comprises recovering said intermediate by non-polar means.
Abstract:
The invention relates to a polymer composition, to the use of the composition for producing an electrical device, as well as, to a cable surrounded by at least one layer comprising the polymer composition.
Abstract:
Methods for treating renal cancer by administration of certain 3,3',4,4'-tetrahydroxy-2,2'- bipyridine-N,N'-dioxide compounds, especially 3,3',4,4'-tetrahydroxy-2,2'-bipyridine-N,N'- dioxide (Orellanine), conjugated to an alpha-emitting radionuclide (e.g. Astatine-211) to increase the efficacy of the formulation and/or a large molecule (e.g. a oligomer/polymer such as a PEG or a polysaccharide such as a dextran or a Ficoll®) to reduce the filtration and consequently the renal exposure. Particular administration protocols and dosing regimens, as well as pharmaceutical compositions suitable for use in the treatment methods can be used.
Abstract translation:通过给予3,3',4,4'-四羟基-2,2'-联吡啶-N,N'-二氧化物化合物,尤其是3,3',4,4'-四羟基-2 ,偶联于α发射放射性核素(例如ast ine -211)的2'-联吡啶-N,二氧化碳(Orellanine),以增加制剂和/或大分子的功效(例如低聚物/聚合物如 PEG或多糖如葡聚糖或Ficoll)以减少过滤并因此减少肾脏暴露。 可以使用特定的给药方案和给药方案,以及适用于治疗方法的药物组合物。
Abstract:
The present invention relates to a process for preparing a polymer composition by using a masterbatch, as well as a process, wherein said polymer composition is used for preparing an article, preferably a cable.. Also a masterbatch, a polymer composition comprising the masterbatch, and an article, preferably a cable, comprising the polymer composition are provided.
Abstract:
The present invention relates to a power cable comprising a conductor, an inner semiconductive layer, an insulation layer and an outer semiconductive layer, wherein the insulation layer comprises a polymer comprising (i) ethylene monomer units (ii) polar-group containing monomer units, and (iii) silane-group containing monomer units.
Abstract:
method of producing an impeller by forming an impeller blank (100) and subsequently machining the impeller blank (100), characterised in that at least two dissimilar materials are joined in the impeller blank (100) before the machining.
Abstract:
The present invention relates to a composition for an electronic power cable. The composition comprises a polyolefin polymer compound, and poly-2,2,4-trimethyl-l,2-dihydroquinoline as an antioxidant wherein the same contains less than 200 ppm NaCl.
Abstract:
The present invention relates to a coaxial cable comprising a dielectric layer which comprises as a component (A) a propylene homo- or copolymer having strain hardening behaviour and to the use of propylene homo- or copolymer having strain hardening behaviour for the production of a dielectric layer of a coaxial or triaxial cable.
Abstract:
A device (100) for injecting fuel into a combustion chamber of a gas turbine, comprising a distribution section (103) to which a first fuel channel (101), a second fuel channel (102) and an injection channel (104) are coupled. The first fuel channel (101) and the second fuel channel (102) are arranged such that a) fuel is transportable by one of the first fuel channel (101) and the second fuel channel (102) to the distribution section (103), and b) a first quantity of fuel is transportable by the other one of the first fuel channel (101) and the second fuel channel (102) out of the distribution section (103). The injection channel (104) is arranged such that a second quantity of fuel is injectable from the distribution section (103) into the combustion chamber. The device (100) further comprises an end cap (113) with a protrusion (201) having the injection channel (104) inside, and extending inside the inner tube (110).
Abstract:
The present invention relates to a combustion chamber (100) for a gas turbine. The combustion chamber (100) comprises a wall section (101) and a brim element (103). The wall section (101) comprises an inlet aperture (102) for injecting a cooling medium into the combustion chamber (100). The brim element (103) is mounted to an inner face (104) of the wall section (101), wherein the brim element (103) is formed in such a way that a projected area of the brim element (103) onto the inner face (104) along a direction of a normal (n) of the inner face (104) at least partially covers the inlet channel (102).