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公开(公告)号:US06475546B1
公开(公告)日:2002-11-05
申请号:US09868725
申请日:2001-06-21
IPC分类号: A23P112
CPC分类号: A61K38/465 , A23K20/189 , A23K40/10 , A23K40/20 , A23K40/25 , A23K50/30 , C12Y301/03008
摘要: The invention relates to a method for producing granulates which contain enzymes and which are suited for feeding animals. The granulates are produced by mixing at least one enzyme with a supporting material and by extruding this mixture. The inventive method is characterized in that the supporting material is firstly plasticized in a screw mixer which is equipped with at least one horizontally arranged screw. Afterwards, the enzyme is introduced into the screw mixer and is processed with the plasticized supporting material to produce a homogeneous material which is then extruded.
摘要翻译: 本发明涉及一种用于生产含有酶并适于饲养动物的颗粒的方法。 通过将至少一种酶与支持材料混合并通过挤出该混合物来制备颗粒。 本发明的方法的特征在于,支撑材料首先在配备有至少一个水平布置的螺钉的螺杆混合器中增塑。 之后,将酶引入螺旋混合器中,并用增塑的支撑材料进行处理以产生均匀的材料,然后将其挤出。
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公开(公告)号:US08597641B2
公开(公告)日:2013-12-03
申请号:US12748604
申请日:2010-03-29
申请人: Hans-Peter Harz , Roland Betz , Wolfgang Heinzl , Günter Gaus
发明人: Hans-Peter Harz , Roland Betz , Wolfgang Heinzl , Günter Gaus
CPC分类号: C12N9/98 , A23K20/189 , A23K40/10 , A61K38/00
摘要: The invention relates to a process for preparing an instant enzyme formulation; instant enzyme formulations obtainable by this process and feedstuff compositions prepared using instant enzyme formulations of the invention.
摘要翻译: 本发明涉及一种制备速溶酶制剂的方法; 通过该方法可获得的速溶酶制剂和使用本发明的速溶酶制剂制备的饲料组合物。
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公开(公告)号:US20100247507A1
公开(公告)日:2010-09-30
申请号:US12748604
申请日:2010-03-29
申请人: Hans-Peter Harz , Roland Betz , Wolfgang Heinzl , Günter Gaus
发明人: Hans-Peter Harz , Roland Betz , Wolfgang Heinzl , Günter Gaus
CPC分类号: C12N9/98 , A23K20/189 , A23K40/10 , A61K38/00
摘要: The invention relates to a process for preparing an instant enzyme formulation; instant enzyme formulations obtainable by this process and feedstuff compositions prepared using instant enzyme formulations of the invention.
摘要翻译: 本发明涉及一种制备速溶酶制剂的方法; 通过该方法可获得的速溶酶制剂和使用本发明的速溶酶制剂制备的饲料组合物。
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公开(公告)号:US06494164B2
公开(公告)日:2002-12-17
申请号:US09964795
申请日:2001-09-28
申请人: Wolfgang Heinzl , Jörg Braun , Roland Betz , Barton Cousins , Hans-Peter Harz , Ulrich Heindl
发明人: Wolfgang Heinzl , Jörg Braun , Roland Betz , Barton Cousins , Hans-Peter Harz , Ulrich Heindl
IPC分类号: A01K500
CPC分类号: A23N17/007 , A23K20/174 , A23K20/189 , A23K20/195 , A23K40/10 , A23K40/20
摘要: A process and an apparatus are described for adding additives during the conditioning of animal feed. The feed is transferred from a container (1) into a conditioner (3) via a feed screw (2) at an inlet point (M). In the conditioner (3), the feed is transported by a mixing screw (12) from an inlet point (M) along a path (A) to an exit point (N), and is exposed to vapor in the course of this. One or more additives (5) which are introduced into the conditioner (3) through one or more ports (10) are added to the feed which, has passed through x% of the path (A) in the conditioner (3). The feed and the additives (5) added through one or more ports (10) are mixed on the remaining (100-x)% of the path (A) to form a mixture (6). The mixture (6) leaving the conditioner (3) at the exit point (N) is transferred to a pelleting press (7), where the mixture (6) is formed into pellets (8). The pellets (8) are finally transferred to a cooling device (9). The additives, in particular enzymes, vitamins, carotenoids and antibiotics, are not added to the main feed components until toward the end of the conditioning step. In this manner, these relatively heat-labile substances are exposed to elevated temperatures only for a relatively short time and experience much less stress than would be the case for complete passage through the conditioning unit.
摘要翻译: 描述了在动物饲料调理期间添加添加剂的方法和装置。 进料通过进料螺杆(2)在入口点(M)从容器(1)转移到调节器(3)中。 在调节器(3)中,进料通过混合螺杆(12)从入口点(M)沿着路径(A)输送到出口点(N),并在该过程中暴露于蒸汽。 通过一个或多个端口(10)引入到调节器(3)中的一种或多种添加剂(5)被添加到已经通过调节器(3)中的路径(A)的x%的进料中。 通过一个或多个端口(10)添加的进料和添加剂(5)在路径(A)的剩余(100-x)%上混合以形成混合物(6)。 在出口点(N)离开调节剂(3)的混合物(6)被转移到造粒机(7),其中混合物(6)形成颗粒(8)。 颗粒(8)最终转移到冷却装置(9)中。添加剂,特别是酶,维生素,类胡萝卜素和抗生素,直到直到调理步骤结束时才被添加到主要进料组分中。 以这种方式,这些相对热不稳定的物质仅在相对短的时间内暴露于升高的温度,并且经受比完全通过调节单元的情况更少的压力。
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公开(公告)号:US09694324B2
公开(公告)日:2017-07-04
申请号:US13878540
申请日:2011-09-21
申请人: Wolfgang Heinzl
发明人: Wolfgang Heinzl
CPC分类号: B01D61/364 , B01D1/26 , B01D61/36 , B01D63/082 , B01D2313/38 , C02F1/04 , C02F1/447
摘要: The invention relates to a multistage membrane distillation device comprising a heating stage (28), preferably multiple condensing/evaporating stages (12), and a condensing stage (36) through which a liquid to be concentrated is passed in succession. Each condensing/evaporating stage comprises at least one condensing unit (K) and at least one evaporating unit (V). Each condensing unit comprises a first steam chamber that is delimited at least partly by a condensation wall (16), and each evaporating unit comprises a second steam chamber that is delimited at least partly by a steam-permeable liquid-tight membrane wall (20). At least one flow channel which is formed between such a condensing unit K and such an evaporating unit V that adjoins said condensing unit and which conducts the liquid to be concentrated is provided in each condensing/evaporating stage so that the liquid to be concentrated is heated by means of the condensation wall, and the steam that is generated from the liquid to be concentrated reaches the second steam chamber through the membrane wall. The steam that is produced in a respective preceding stage is conducted into a condensing unit of the immediately following stage via a steam channel which exclusively conducts said steam and which exclusively further conducts said steam to the immediately following stage.
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公开(公告)号:US20130319923A1
公开(公告)日:2013-12-05
申请号:US13878540
申请日:2011-09-21
申请人: Wolfgang Heinzl
发明人: Wolfgang Heinzl
IPC分类号: B01D61/36
CPC分类号: B01D61/364 , B01D1/26 , B01D61/36 , B01D63/082 , B01D2313/38 , C02F1/04 , C02F1/447
摘要: The invention relates to a multistage membrane distillation device comprising a heating stage (28), preferably multiple condensing/evaporating stages (12), and a condensing stage (36) through which a liquid to be concentrated is passed in succession. Each condensing/evaporating stage comprises at least one condensing unit (K) and at least one evaporating unit (V). Each condensing unit comprises a first steam chamber that is delimited at least partly by a condensation wall (16), and each evaporating unit comprises a second steam chamber that is delimited at least partly by a steam-permeable liquid-tight membrane wall (20). At least one flow channel which is formed between such a condensing unit K and such an evaporating unit V that adjoins said condensing unit and which conducts the liquid to be concentrated is provided in each condensing/evaporating stage so that the liquid to be concentrated is heated by means of the condensation wall, and the steam that is generated from the liquid to be concentrated reaches the second steam chamber through the membrane wall. The steam that is produced in a respective preceding stage is conducted into a condensing unit of the immediately following stage via a steam channel which exclusively conducts said steam and which exclusively further conducts said steam to the immediately following stage.
摘要翻译: 本发明涉及一种多级膜蒸馏装置,其包括加热阶段(28),优选多个冷凝/蒸发阶段(12)和冷凝阶段(36),待浓缩的液体通过该阶段连续通过。 每个冷凝/蒸发级包括至少一个冷凝单元(K)和至少一个蒸发单元(V)。 每个冷凝单元包括至少部分地由冷凝壁(16)限定的第一蒸汽室,并且每个蒸发单元包括至少部分由蒸汽可渗透的液密膜壁(20)限定的第二蒸汽室, 。 在各冷凝/蒸发阶段之间设置有至少一个在这样的冷凝单元K和毗邻所述冷凝单元的蒸发单元V之间形成并且将导入待浓缩的液体的流动通道,以使被浓缩的液体被加热 并且从被浓缩的液体产生的蒸汽通过膜壁到达第二蒸汽室。 在前一阶段生产的蒸汽通过专门传导所述蒸汽的蒸汽通道进入紧后续阶段的冷凝单元,并且仅进一步将所述蒸汽传导到紧随其后的阶段。
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公开(公告)号:US09625194B2
公开(公告)日:2017-04-18
申请号:US13882382
申请日:2011-10-05
申请人: Wolfgang Heinzl
发明人: Wolfgang Heinzl
CPC分类号: F25B43/00 , B01D53/263 , B01D53/268 , B01D61/00 , B01D63/085 , B01D2313/22 , B01D2317/02 , F24F3/1417
摘要: The invention relates to an apparatus (10) for drying and/or cooling gas (12), in particular air, by means of a hygroscopic solution (14), said apparatus comprising an absorption device (16) which comprises at least one gas flow duct (18) and at least one flow duct (20) carrying the hygroscopic solution, wherein the inner or gas chamber (22) of a respective gas flow duct is at least partly delimited by a vapor-permeable liquid-tight membrane wall (24) and at least one flow duct is provided, which is formed between such a gas flow duct and a further such gas flow duct adjacent to the latter or an adjacent cooling unit (26) and which carries the hygroscopic solution, so that moisture, in particular water vapor, passes from the gas into the hygroscopic solution via the membrane wall and is absorbed in said solution.
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公开(公告)号:US20130298590A1
公开(公告)日:2013-11-14
申请号:US13882382
申请日:2011-10-05
申请人: Wolfgang Heinzl
发明人: Wolfgang Heinzl
IPC分类号: F25B43/00
CPC分类号: F25B43/00 , B01D53/263 , B01D53/268 , B01D61/00 , B01D63/085 , B01D2313/22 , B01D2317/02 , F24F3/1417
摘要: The invention relates to an apparatus (10) for drying and/or cooling gas (12), in particular air, by means of a hygroscopic solution (14), said apparatus comprising an absorption device (16) which comprises at least one gas flow duct (18) and at least one flow duct (20) carrying the hygroscopic solution, wherein the inner or gas chamber (22) of a respective gas flow duct is at least partly delimited by a vapor-permeable liquid-tight membrane wall (24) and at least one flow duct is provided, which is formed between such a gas flow duct and a further such gas flow duct adjacent to the latter or an adjacent cooling unit (26) and which carries the hygroscopic solution, so that moisture, in particular water vapor, passes from the gas into the hygroscopic solution via the membrane wall and is absorbed in said solution.
摘要翻译: 本发明涉及一种用于通过吸湿溶液(14)干燥和/或冷却气体(12),特别是空气的设备(10),所述设备包括吸收装置(16),其包括至少一个气流 管道(18)和至少一个携带吸湿溶液的流动管道(20),其中相应的气体流动管道的内部或气体室(22)至少部分地由透气的液体不透膜(24) ),并且设置有至少一个流动管道,其形成在这样的气体流动管道和与后者相邻的另外的气体流动管道或相邻的冷却单元(26)之间,并且其携带吸湿溶液,使得在 特定的水蒸气,通过膜壁从气体通入吸湿溶液,并被吸收在所述溶液中。
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公开(公告)号:US20120038069A1
公开(公告)日:2012-02-16
申请号:US13266661
申请日:2010-05-03
申请人: Wolfgang Heinzl , Juergen Krelle
发明人: Wolfgang Heinzl , Juergen Krelle
CPC分类号: B01D61/364 , B01D61/362 , B01D63/082 , B01D65/003 , B01D2313/04
摘要: The invention relates to a modular flow system comprising a plurality of frame elements which can be combined by means of welded web structures to various stacks comprising in each case at least two, in particular at least ten frame elements, in order to form different functional units such as in particular a membrane distillation stage, a steam generator, a condenser, a heat exchanger, a filter and/or a pervaporation stage. The frame elements according to the invention comprise in each case an outer frame provided with passage openings and vapour and/or fluid channels as well as a central inner region surrounded by the outer frame. Moreover, each frame element is provided on both sides with a welded web structure that delimits, on the one hand, the region comprising the passage openings and the central inner region and, on the other hand, at least two regions, each comprising a vapour and/or fluid channel.
摘要翻译: 本发明涉及一种模块化流动系统,其包括多个框架元件,其可以通过焊接的网状结构组合到各种堆叠中,每个堆叠包括至少两个,特别是至少十个框架元件,以便形成不同的功能单元 例如特别是膜蒸馏级,蒸汽发生器,冷凝器,热交换器,过滤器和/或渗透蒸发级。 根据本发明的框架元件在每种情况下包括设置有通道开口和蒸汽和/或流体通道的外框架以及由外框架包围的中心内部区域。 此外,每个框架元件在两侧设置有焊接腹板结构,其一方面界定包括通道开口和中心内部区域的区域,另一方面界定至少两个区域,每个区域包含蒸气 和/或流体通道。
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公开(公告)号:US09849401B2
公开(公告)日:2017-12-26
申请号:US14345062
申请日:2012-07-26
申请人: Wolfgang Heinzl
发明人: Wolfgang Heinzl
摘要: A distillation station for separating components of a liquid mixture, comprising a vertical distillation column split into individual separation stages by fittings and which is further split by the liquid mixture feed into a stripping chamber and an enriching chamber, wherein in the stripping chamber the lower boiling fraction of vapor from the fluid mixture rising from a column sump comprising an evaporator is stripped, and in the enriching chamber the vapor is enriched with the lower-boiling fraction, which is withdrawn from a return fluid produced due to the vapor drawn from the column head being precipitated at least partially in a condenser and returned to the rectifier column, and the return liquid and the liquid mixture preferably fed between two separating stages being routed to the fittings vertically connected in sequence. In the process, each of the fittings comprise at least one liquid channel, which is separated at least partially from the vapor chamber of the distillation column by a two-sided vapor-permeable, liquid-tight membrane wall.
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