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    • 2. 发明公开
    • HIGH EFFICIENCY CYCLONE GASIFYING COMBUSTION BURNER
    • HOCHLEISTUNGS-ZYKLONENBRENNER MIT VERGASUNGSVERBRENNUNG
    • EP1969287A1
    • 2008-09-17
    • EP06840465.6
    • 2006-12-13
    • Drisdelle, MarkLapointe, Claude
    • Drisdelle, MarkLapointe, Claude
    • F23C10/08F23B70/00F23C10/24F23C10/28F23L1/00F24B1/02
    • F23N5/242F23B5/04F23B40/08F23G5/32F23J1/06F23L1/00F23N3/082F23N5/02F23N2033/06F23N2037/14F24B1/024
    • A cyclone gasifying combustion burner (11) has an inner cylindrical wall (16) with a contour chamber (14) feeding combustion air (13) into the inner cylindrical wall (16). The burner has an open end (34) and a solid fuel support end (28) where a combustible material forms a fuel bed (25). The inner cylindrical wall (16) has at least two series of inclined air jet holes (31) of substantially predetermined diameter and disposed at substantially predetermined locations therein to create a unidirectional cyclone (32) within a combustion zone defined within the inner cylindrical wall. The air jet holes (31) are disposed at a tangential (36) and vertical angle whereby the combustion air is drawn into the inner cylindrical wall and creates a cyclone flow (32) to mix with the combustion gases released from the flaming pyrolysis fuel bed (25).
    • 描述了旋风气化燃烧器及其操作。 示例性燃烧器具有内圆柱形壁,其具有轮廓室,其将燃烧空气供给到内圆柱形壁中,其中开放端和固体燃料支撑端,其中可燃材料形成燃料床。 内圆柱形壁具有一系列具有基本预定直径的倾斜空气喷射孔,并设置在其中基本上预定的位置处,以在限定在内圆柱形壁内的燃烧区域内产生单向旋风分离器。 空气喷射孔以切向和垂直的角度设置,由此燃烧空气被吸入内圆柱形壁并产生旋流器流,以与从燃烧的热解燃料床释放的燃烧气体混合并使燃烧气体在 在反应区内的旋风路径,以增加燃烧气体的驻留,混合和湍流时间,并同时将悬浮颗粒沉淀在内圆柱形壁的内表面上,由此使颗粒引向燃料床,在那里它们被除去 在燃烧器运行期间受控的方式。
    • 3. 发明申请
    • AGRICULTURAL FIBRE FUEL PELLETS
    • 农业纤维燃料
    • WO2006122405A1
    • 2006-11-23
    • PCT/CA2006/000791
    • 2006-05-16
    • EVERGREEN BIOFUELS INC.DRISDELLE, MarkLAPOINTE, Claude
    • DRISDELLE, MarkLAPOINTE, Claude
    • C10L5/44C10L9/10
    • C10L5/363C10L1/1233C10L1/1266C10L1/1291C10L5/44C10L9/08C10L9/10Y02E50/10Y02E50/30
    • A method of preparing fuel pellets includes the steps of providing a feedstock comprising corn fibres or bran having a moisture content of bout 10% to 16%, and compressing and extruding the feedstock through a die to obtain fuel pellets in the form of small cylinders having a iameter of about 3/8 inch (0 9525 cm) to about 3/4 inch (1 905 cm), said pellets have an ash content of about 1% and a colorific value of bout 8,000 BTU's (8434 kilojoules) per pound of fuel on a dry basis The method may include a step of pre-treatmg the feedstock with igh temperature steam before being framed into pellets at a sufficient temperature and sufficient time to activate hemicellulose withm the ibre as a binding agent The method may include a step of mixing the feedstock with a sequestering agent before being formed into pellets or sequestering alkali metal vapours and raising the fusion point of the inorganic elements during combustion of the pellets The sequestering agent may be calcium carbonate added in amounts up to about 0 5% by weight
    • 一种制备燃料颗粒的方法包括以下步骤:提供含有10%至16%湿度的玉米纤维或麸皮的原料,以及通过模具压缩和挤出原料以获得具有小圆筒形式的燃料颗粒, 约3/8英寸(09525cm)至约3/4英寸(1 905cm)的直径,所述颗粒具有约1%的灰分含量和每磅重的8000BU(8434千焦耳)的着色值 燃料在干燥的基础上该方法可以包括在足够的温度和足够的时间将起始物作为粘合剂活化半纤维素之前,用高温蒸汽预处理原料的步骤。该方法可以包括以下步骤: 在原料形成丸粒或螯合碱金属蒸气之前将原料与螯合剂混合,并在颗粒燃烧过程中提高无机元素的熔点。螯合剂可以是碳酸钙加成 d的量高达约0.5重量%
    • 4. 发明申请
    • MOLDED CONTAINER FOR HYDROPONIC CULTURE AND SYSTEM USING THE SAME
    • 用于水文文化和系统的模制容器
    • WO2002063944A1
    • 2002-08-22
    • PCT/CA2002/000159
    • 2002-02-08
    • LAPOINTE, Claude
    • LAPOINTE, Claude
    • A01G31/02
    • A01G31/02Y02P60/216
    • Disclosed herein is a container (10) for hydroponic culture comprising an elongated body (12) and a cover (14) configured and sized so as to be removably mounted on the elongated body (12). The elongated body (12) has first (16) and second (18) longitudinal ends and first (20) and second (22) lateral sides. The elongated body (12) is defined by spaced apart outer (26) and inner (24) walls which form a body cavity (28) therebetween. This body cavity (28) may include insulation material or preferably insulation fluid (29). The inner wall (24) defines a longitudinal channel (30). The cover (14) includes at least one plant receiving aperture (34) and defines with the elongated body inner wall (24) a hydroponic chamber (36) therebetween for receiving plant roots. Also disclosed is a hydroponic culture system (11) using this container (10). The containers (10) of this hydroponic culture system (11) may be interconnected side to side and end to end.
    • 本文公开了一种用于水培培养的容器(10),其包括细长体(12)和盖(14),所述细长体(12)和盖(14)被构造和定尺寸成可拆卸地安装在细长体(12)上。 细长体(12)具有第一(16)和第二(18)纵向端和第一(20)和第二(22)侧面。 细长主体(12)由间隔开的外部(26)和内壁(24)限定,在其间形成体腔(28)。 该体腔(28)可包括绝缘材料或优选绝缘流体(29)。 内壁(24)限定纵向通道(30)。 所述盖(14)包括至少一个植物接收孔(34),并且在所述细长体内壁(24)之间限定有用于接收植物根部的水培室(36)。 还公开了使用该容器(10)的水培培养系统(11)。 这种水培培养系统(11)的容器(10)可以一侧到另一端并排连接。