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    • 2. 发明公开
    • METHOD FOR PRODUCTION OF NOISE SHIELD AND NOISE SHIELD
    • 用于生产隔音墙和隔音墙。
    • EP0654103A1
    • 1995-05-24
    • EP93915709.0
    • 1993-08-03
    • Grodania A/S
    • Grodania A/S
    • E01F8
    • E01F8/027
    • A method for construction of a noise screen or baffle and a possibly planted noise screen or baffle (2) with a core consisting of sound absorbing material and being surrounded by a steel netting (6), said noise screen being anchored in the ground by means of vertical supports (4) being anchored with mutually distance in the ground on a row along one side of the noise screen (2), whereafter steel netting (6) is bound together to a net wall along one side of the supports (4). Thereafter said core is made by stacking up layers of blocks (10) preferably consisting of steady mineral wool (for instance GrodanTM) or similar material along the net wall, whereafter the steel netting (6) is bound together to a further net wall along the opposite side of the stacked-up core of blocks (10), before final positioning in front of said supports (4) at opposite side of the noise screen (2) vertical panels (18) made from steel or wood, which panels (18) together with the steel net walls (6) and the core material (10) are connected tight to the supports (4) by means of through-going bolts or threaded rods (20), fishplates (22) and nuts (24). If the noise screen (2) has to be planted, the core material (10) is surrounded by a web or a mat (8) with plant seeds, for instance grass seeds, or with inserted little plants, so that the web or the mat (8) is surrounded by the steel netting walls (6).
    • 4. 发明授权
    • METHOD FOR PRODUCTION OF NOISE SHIELD AND NOISE SHIELD
    • 用于生产隔音墙和隔音墙
    • EP0654103B1
    • 1997-12-03
    • EP93915709.5
    • 1993-08-03
    • Grodania A/S
    • Hviid, Niels Joergen
    • E01F8/00
    • E01F8/027
    • A method for construction of a noise screen or baffle and a possibly planted noise screen or baffle (2) with a core consisting of sound absorbing material and being surrounded by a steel netting (6), said noise screen being anchored in the ground by means of vertical supports (4) being anchored with mutually distance in the ground on a row along one side of the noise screen (2), whereafter steel netting (6) is bound together to a net wall along one side of the supports (4). Thereafter said core is made by stacking up layers of blocks (10) preferably consisting of steady mineral wool (for instance GrodanTM) or similar material along the net wall, whereafter the steel netting (6) is bound together to a further net wall along the opposite side of the stacked-up core of blocks (10), before final positioning in front of said supports (4) at opposite side of the noise screen (2) vertical panels (18) made from steel or wood, which panels (18) together with the steel net walls (6) and the core material (10) are connected tight to the supports (4) by means of through-going bolts or threaded rods (20), fishplates (22) and nuts (24). If the noise screen (2) has to be planted, the core material (10) is surrounded by a web or a mat (8) with plant seeds, for instance grass seeds, or with inserted little plants, so that the web or the mat (8) is surrounded by the steel netting walls (6).
    • 5. 发明申请
    • A METHOD FOR THE PRODUCTION OF FUNGI
    • 一种生产真菌的方法
    • WO1996033602A1
    • 1996-10-31
    • PCT/DK1996000191
    • 1996-04-26
    • GRODANIA A/SSTARKEY, Nicholas, Grenville
    • GRODANIA A/S
    • A01G01/04
    • A01G18/00
    • The invention relates to a method for producing fungi using a casing material comprising granules and/or agglomerates of granules of a mineral fibre structure, and to a casing material notably for the use in the production of fungi as well as a method for the preparation of a casing material. The invention furthermore relates to a casing spawn used for the inoculation of a casing material. The mineral fibres may be stone wool fibres, glass wool fibres, slag wool fibres, naturally occuring mineral fibre materials such as wollastonite and the like. The casing material may contain a binding agent, a nutrient source, a mineral source, a wetting agent, a pH-adjusting agent, a liming material, a fertilizer, a chelating agent and/or other excipients. The casing material for use according to the invention establishes favourable and lasting physical conditions for the growth of the mycelia of the fungi manifested by a longer cropping period as well as a higher yield and a better quality of fruiting bodies harvested, compared to the traditional method of growing fungi using casing materials based on peat.
    • 本发明涉及使用包含矿物纤维结构的颗粒和/或颗粒的附聚物的壳体材料以及特别用于生产真菌的外壳材料以及制备真菌的方法来生产真菌的方法。 套管材料。 本发明还涉及用于接种套管材料的套管产卵。 矿物纤维可以是石棉纤维,玻璃棉纤维,矿渣纤维,天然存在的矿物纤维材料如硅灰石等。 套管材料可以含有粘合剂,营养源,矿物源,润湿剂,pH调节剂,石灰材料,肥料,螯合剂和/或其它赋形剂。 根据本发明使用的外壳材料与传统方法相比,为更长的作物期显示的真菌菌丝体的生长提供了有利的和持久的物理条件以及更高的产量和更高的收获的子实体的质量。 使用基于泥炭的套管材料生长真菌。
    • 7. 发明公开
    • A METHOD FOR THE PRODUCTION OF FUNGI
    • 用于生产蘑菇
    • EP0824303A1
    • 1998-02-25
    • EP96911940.0
    • 1996-04-26
    • Grodania A/S
    • STARKEY, Nicholas, Grenville
    • A01G1
    • A01G18/00
    • PCT No. PCT/DK96/00191 Sec. 371 Date Nov. 12, 1996 Sec. 102(e) Date Nov. 12, 1996 PCT Filed Apr. 26, 1996 PCT Pub. No. WO96/33602 PCT Pub. Date Oct. 31, 1996The invention relates to a method for producing fungi, especially mushrooms, using a casing material comprising granules and/or agglomerates of granules of a mineral fibre structure, and to a casing material notably for the use in the production of fungi as well as a method for the preparation of a casing material. The invention furthermore relates to a casing spawn used for the inoculation of a casing material. The mineral fibres may be stone wool fibres, glass wool fibres, slag wool fibres, naturally occurring mineral fibre materials such as wollastonite and the like. The casing material may contain a binding agent, a nutrient source, a mineral source, a wetting agent, a pH-adjusting agent, a liming material, a fertilizer, a chelating agent and/or other excipients. The casing material for use according to the invention establishes favorable and lasting physical conditions for the growth of the mycelia of the fungi manifested by a longer cropping period as well as a higher yield and a better quality of fruiting bodies harvested, compared to the traditional method of growing fungi using casing materials based on peat.