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    • 1. 发明申请
    • SYSTEM AND METHOD FOR DRYING
    • 用于干燥的系统和方法
    • WO2010110702A1
    • 2010-09-30
    • PCT/SE2009/000158
    • 2009-03-25
    • SVENSK RÖKGASENERGI INTRESSENTER ABGRANSTRAND, Lennart
    • GRANSTRAND, Lennart
    • F26B23/02
    • F26B23/022F26B23/002F26B2200/24Y02P70/405
    • A system and e method for drying an organic, particle- shaped material including a gas heating device (1,3) for the production of hot drying gases for forwarding to a drying device (5), through which material intended for drying is arranged to be led and be brought to come into contact with said drying gases, wherein the gas heating device includes a combustion device (1). The gas heating device includes a heat exchanger (3), for heat exchange between a flow of flue gases generated in the combustion device (1) and a flow of said drying gases driven forward by a driving device (12) in a conduit circuit (4,4'), and the conduit circuit (4,4') exhibits on the one hand an air intake (6') for oxygen containing air, on the other hand a gas discharge (V) for the connection to an intake for air for combustion to the combustion device (1).
    • 一种用于干燥有机颗粒形材料的系统和方法,包括用于生产用于转发到干燥装置(5)的热干燥气体的气体加热装置(1,3),通过该干燥装置将用于干燥的材料布置成 被引导并与所述干燥气体接触,其中所述气体加热装置包括燃烧装置(1)。 气体加热装置包括热交换器(3),用于在燃烧装置(1)中产生的烟道气流与由导管电路(12)中的驱动装置(12)向前驱动的所述干燥气体的流动之间进行热交换 4,4'),并且导管回路(4,4')一方面显示用于含氧空气的进气口(6'),另一方面表示用于连接到进气口的气体排出口(V) 用于燃烧到燃烧装置(1)的空气。
    • 2. 发明申请
    • GAS PURIFICATION
    • 气体净化
    • WO2006004490A1
    • 2006-01-12
    • PCT/SE2005/000927
    • 2005-06-16
    • SVENSK RÖKGASENERGI INTRESSENTER ABGRANSTRAND, Lennart
    • GRANSTRAND, Lennart
    • B03C3/014
    • B03C3/16B03C3/014B03C3/06
    • Method and device for separation of pollutants, especially particles from a gas flow (2). The gas flow is led through a plurality of parallel tubes (42) which each comprise a substantially coaxial electrode (43) whereby a voltage is established between the electrodes and the tubes. The tubes are preferably maintained at earth potential and the electrodes (43) are supplied with a negative potential. The tubes (42) are disposed substantially vertically. The flue gas is introduced into the tubes in a substantially saturated state and is preferably led upwards through the tubes. The tubes are cooled externally and the condensate formed on the inside of the tubes flows down along the inside of the pipe walls, is gathered and is subjected to cleaning (Fig. 2).
    • 用于分离污染物的方法和装置,特别是气流中的颗粒(2)。 气流被引导通过多个平行管(42),每个平行管(42)包括基本上同轴的电极(43),从而在电极和管之间建立电压。 这些管优选地保持在地电位,并且电极(43)被提供有负电位。 管(42)基本垂直地设置。 烟道气以基本上饱和的状态引入管中,并且优选地通过管被向上引导。 管子被外部冷却,并且形成在管内侧的冷凝物沿着管壁的内部向下流动,被聚集并被清洗(图2)。
    • 4. 发明申请
    • DRYING PLANT
    • 干燥设备
    • WO2009051542A1
    • 2009-04-23
    • PCT/SE2008/000588
    • 2008-10-13
    • SVENSK RÖKGASENERGI INTRESSENTER ABGRANSTRAND, Lennart
    • GRANSTRAND, Lennart
    • F26B11/16B01D46/10F26B3/06
    • F26B11/16F26B17/205
    • A plant for the drying of particulate material, comprising at least one, preferably at least three, drying apparatuses (TCl, TC2, TC3) each comprising a housing (10), which contains a stirring device (20) for material received batchwise in the housing. A fan device drives a flow of drying gas serially through the respective housing via an inlet opening (30) and an outlet opening (31). The stirring device has a bottom trough (11), which receives a stirring device (20) in the form of a rotor, the shaft of which is essentially horizontal and the axial length of which substantially corresponds to the width of the trough, the envelope of the rotor in the circumferential direction of the rotor essentially connecting to a bottom area of the trough. The housing has two opposite wall openings (30, 31), which are passed through by the flow of drying gas in a direction, which is substantially perpendicular to the axial direction of the rotor and which flows in the same direction as the direction of motion of the lowermost peripheral part of the rotor during operation. The rotor has drivers, which are arranged to, upon the rotation of the rotor upward on the gas outlet side of the housing, throw a curtain of particles generally upward, having a motion component countercurrent to the flow of gas through the housing, whereby the particles move in a parabola distorted by the flow of gas and fall downward on the upstream side of the rotor.
    • 一种用于干燥颗粒材料的设备,包括至少一个,优选至少三个干燥设备(TCl,TC2,TC3),每个干燥设备包括壳体(10),该壳体包含用于分批接收的材料的搅拌装置(20) 住房。 风扇装置经由入口开口(30)和出口开口(31)驱动干燥气体的流动通过相应的壳体。 搅拌装置具有底槽(11),其接收转子形式的搅拌装置(20),该搅拌装置(20)的轴基本上是水平的,其轴向长度基本上对应于槽的宽度, 的转子基本上连接到槽的底部区域。 壳体具有两个相对的壁开口(30,31),其通过干燥气体流沿着与转子的轴向基本垂直的方向穿过,并且沿与运动方向相同的方向流动 的转子的最低周边部分。 转子具有驱动器,其被设置成在转子向上在壳体的气体出口侧上转动时,将颗粒大致向上抛出,具有与通过壳体的气体流逆流的运动部件,由此, 颗粒在由气体流动变形的抛物线中移动,并在转子的上游侧向下落下。
    • 5. 发明申请
    • A METHOD AND APPARATUS FOR SEPARATING DUST FROM A MOIST GAS FLOW
    • 一种从气味气体分离尘埃的方法和装置
    • WO2003086583A1
    • 2003-10-23
    • PCT/SE2003/000604
    • 2003-04-15
    • SVENSK RÖKGASENERGI INTRESSENTER ABGRANSTRAND, Lennart
    • GRANSTRAND, Lennart
    • B01D47/00
    • B01D50/006B01D47/00B01D47/06
    • The present invention relates to a method and an apparatus for separating dust from smoke gas flows derived from a solid fuel boiler, wherein the energy content of the gas has been recovered essentially by condensing the water content of the gas, wherein the gas flow is first generally freed from free water and then passed through a particle filter (10). Liquid is delivered to the filter to form a liquid film that spreads over the gas through flow area of the filter, and wherein the liquid film is caused to move through the filter (10) and is recycled. The liquid supports separation of the dust particles in the filter and is able to dissolve particles taken up by he filter, particularly if the liquid is acidified. The smoke gas can be given positive ionization relative to the particle filter (10) to facilitate dust separation. There can be added to the liquid a cationic polymer that will improve capture of dust particles and their extraction from the liquid.
    • 本发明涉及一种从固体燃料锅炉得到的烟气流中分离灰尘的方法和装置,其中气体的能量含量基本上通过冷凝气体的水分而被回收,其中气体流是第一 通常从游离水中除去,然后通过颗粒过滤器(10)。 将液体输送到过滤器以形成通过过滤器的流动区域在气体上扩散的液体膜,并且其中使液体膜移动通过过滤器(10)并被再循环。 该液体支持过滤器中灰尘颗粒的分离,并且能够溶解由过滤器吸收的颗粒,特别是如果液体被酸化时。 烟气可以相对于颗粒过滤器(10)给予正电离,以促进灰尘分离。 可以向液体中加入阳离子聚合物,其将改善灰尘颗粒的捕获和从液体中的萃取。