Abstract:
The present invention relates to aqueous concentrate formulations for plant protection comprising: - 2-chloro-5-[3,6-dihydro-3-methyl-2,6-dioxo-4-(trifluoromethyl)-1-(2H)pyrimidinyl]-4-fluoro-N-[[methyl(1-methylethyl)amino]sulfonyl]benzamide in the form of its anhydrate; - ?/-(phosphonomethyl)glycine in the form of its free acid, in the form of the ammonium salt or a substituted ammonium salt or a mixture thereof; - at least two different non-ionic surfactants with at least one of them comprising an ethylene oxide polymer moiety or an ethylene oxide/C3-C4-alkylene oxide block copolymer moiety, and - water; wherein the pH-value of the formulation is below 6.
Abstract:
A composition active as a herbicide, which contains A) metazachlor, which is provided in suspended form, B) dimethene amide, which is provided in emulsified form, and C) quinmerac, which is provided in suspended form.
Abstract:
The present invention relates to liquid suspension concentrate formulations for plant protection comprising: 2-chloro-5-[3,6-dihydro-3-methyl-2,6-dioxo-4-(trifluoromethyl)-1-(2H)pyrimidinyl]-4-fluoro-N-[[methyl(1-methylethyl)amino]sulfonyl]benzamide in the form of the crystalline anhydrate; at least one diluent selected from: hydrocarbon solvents having a boiling point of at least 100°C; and C1-C8-alkyl esters of C8-C26-fatty acids, mono- and di-C1-C4-alkyl amides of C8-C26-fatty acids; at least two different non-ionic surfactants selected from poly-ethoxylate-co-C3-C4-alk0xylat.es of C3-C20-alkanols, polyethoxylates of C8-C22-alkanols, polyester-polyoxyethylene block copolymers, polyethoxylates of mono-, di- or tristyryl phenols and polyethoxylates of vegetable oils; and at least one anionic surfactant selected from C1-C16-alkylarene sulfonates.
Abstract:
The present invention relates to aqueous suspension concentrate formulation for plant protection comprising: - 2-chloro-5-[3,6-dihydro-3-methyl-2,6-dioxo-4-(trifluoromethyl)-1-(2H)pyrimidinyl]-4-fluoro-N-[[methyl(1-methylethyl)amino]sulfonyl]benzamide in the form of its crystalline anhydrate; - at least one non-ionic surfactant selected from polyoxyethylene-polyoxy-C3-C4-alkylene blockcopolymers; - at least one anionic surfactant comprising at least one arylsulfonate group; and water; wherein the pH value of the formulation is in the range of 3 to 7.
Abstract:
A lamp comprises a base body ( 1 ), an annular support element ( 10 ) and an inner and outer drum optical system ( 16, 2 ). Lighting means ( 15 ) are arranged on the support element ( 10 ) in annular distribution. It comprises a drum reflector ( 17, 18 ). Each lighting means ( 15 ) radiates light radially outwardly with respect to the lamp axis ( 14 ) in a three-dimensional angular range which relative to the lamp axis ( 14 ) covers a polar angle (delta) substantially greater than a desired polar angular range (beta) in which the warning signal is to be rotated about a mean polar direction (alpha). The light radiated by the lighting means ( 15 ) either passes through the drum optical systems ( 16, 2 ) without prior incidence on the drum reflector ( 17, 18 ) or is reflected radially outwardly beforehand by the drum reflector ( 17, 18 ). Lighting means ( 15 ), drum reflector ( 17, 18 ) and drum optical systems ( 2, 16 ) are adapted to one another in such a manner that the entire light after issue from the outer drum optical system ( 2 ) is radiated within the desired polar angular range (beta) in polar direction about the mean polar direction (alpha)
Abstract:
A lamp comprises a base body ( 1 ), an annular support element ( 10 ) and an inner and outer drum optical system ( 16, 2 ). Lighting means ( 15 ) are arranged on the support element ( 10 ) in annular distribution. It comprises a drum reflector ( 17, 18 ). Each lighting means ( 15 ) radiates light radially outwardly with respect to the lamp axis ( 14 ) in a three-dimensional angular range which relative to the lamp axis ( 14 ) covers a polar angle (delta) substantially greater than a desired polar angular range (beta) in which the warning signal is to be rotated about a mean polar direction (alpha). The light radiated by the lighting means ( 15 ) either passes through the drum optical systems ( 16, 2 ) without prior incidence on the drum reflector ( 17, 18 ) or is reflected radially outwardly beforehand by the drum reflector ( 17, 18 ). Lighting means ( 15 ), drum reflector ( 17, 18 ) and drum optical systems ( 2, 16 ) are adapted to one another in such a manner that the entire light after issue from the outer drum optical system ( 2 ) is radiated within the desired polar angular range (beta) in polar direction about the mean polar direction (alpha)
Abstract:
A lamp comprises a base body ( 1 ), an annular support element ( 10 ) and an inner and outer drum optical system ( 16, 2 ). Lighting means ( 15 ) are arranged on the support element ( 10 ) in annular distribution. It comprises a drum reflector ( 17, 18 ). Each lighting means ( 15 ) radiates light radially outwardly with respect to the lamp axis ( 14 ) in a three-dimensional angular range which relative to the lamp axis ( 14 ) covers a polar angle (delta) substantially greater than a desired polar angular range (beta) in which the warning signal is to be rotated about a mean polar direction (alpha). The light radiated by the lighting means ( 15 ) either passes through the drum optical systems ( 16, 2 ) without prior incidence on the drum reflector ( 17, 18 ) or is reflected radially outwardly beforehand by the drum reflector ( 17, 18 ). Lighting means ( 15 ), drum reflector ( 17, 18 ) and drum optical systems ( 2, 16 ) are adapted to one another in such a manner that the entire light after issue from the outer drum optical system ( 2 ) is radiated within the desired polar angular range (beta) in polar direction about the mean polar direction (alpha)
Abstract:
A lamp comprises a base body ( 1 ), an annular support element ( 10 ) and an inner and outer drum optical system ( 16, 2 ). Lighting means ( 15 ) are arranged on the support element ( 10 ) in annular distribution. It comprises a drum reflector ( 17, 18 ). Each lighting means ( 15 ) radiates light radially outwardly with respect to the lamp axis ( 14 ) in a three-dimensional angular range which relative to the lamp axis ( 14 ) covers a polar angle (delta) substantially greater than a desired polar angular range (beta) in which the warning signal is to be rotated about a mean polar direction (alpha). The light radiated by the lighting means ( 15 ) either passes through the drum optical systems ( 16, 2 ) without prior incidence on the drum reflector ( 17, 18 ) or is reflected radially outwardly beforehand by the drum reflector ( 17, 18 ). Lighting means ( 15 ), drum reflector ( 17, 18 ) and drum optical systems ( 2, 16 ) are adapted to one another in such a manner that the entire light after issue from the outer drum optical system ( 2 ) is radiated within the desired polar angular range (beta) in polar direction about the mean polar direction (alpha)
Abstract:
The invention relates to a lantern comprising a base body (1), an annular shaped support element (10) and an internal and external belt optical system (16, 2). Illuminating means are arranged in an annular manner on the support element (10) which comprises a belt reflector (17, 18). Each illuminating means (15) emits light in relation to the axis of the lantern (14) in a radial manner towards the outside in an solid angle area, which covers a polar angle (.delta.), in relation to the lantern axis (14), which is considerably greater than a desired polar angle area (.szlig.), wherein the warning signal is emitted about an average polar direction (.alpha.). The light emitted by the illuminating means (15) transverses the belt optical system (16, 2) either without hitting the belt reflector (17, 18), or after being reflected by the belt reactor (17, 18) in a radial manner towards the outside. Illuminating means (15), the belt reactor (17, 18) and a belt optical system (2, 16) are adapted in relation to each other such that the total light, exiting from the external belt optical system (2) within the desired polar angle area (.beta.), is emitted in a polar direction about the average polar direction (.alpha.).