序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
61 Readily biodegradable complex and art paper product using the same JP9328096 1996-03-22 JPH0941288A 1997-02-10 HORIUCHI HAJIME; SHIMIZU AKIO; NONAKA KAZUJI
PROBLEM TO BE SOLVED: To make paper or paperboard from a readily biodegradable mixture of cellulosic fibers with fibrous components of fruits or vegetables, and to further provide a formed vessel by using the paper or paperboard as a raw material. SOLUTION: This readily biodegradable complex is obtained by mixing cellulosic fibers comprising wood pulp or waste paper with <=50wt.% fibrous components comprising one or more than two kinds of squeezed less of juice of fruits such as apple or a citrus fruit or vegetables such as a carrot, a tomato, a cabbage, a celery, etc. Paper using this complex or paperboard using this paper prepared from this complex at least on its surface layers is produced by using the readily biodegradable complex as a raw material and further the paper or the paperboard is processed to obtain a formed vessel.
62 Integrated pulp mill and how to build it JP50990191 1991-06-06 JPH083280B2 1996-01-17 HEITSUTO PERUTSUTEI; YUNTEIRA BESA; KIISUKIRAA ERUTSUKI; SURANDAA TARUMO
63 JPS6029773B2 - JP2052476 1976-02-25 JPS6029773B2 1985-07-12 SUFUEN URURITSUKU TORUBUYOON OOBERUKU; SUFUEN GUNNARU BERUKUDAARU
64 アルンド・ドナクスのパルプ、紙製品、及びパーティクルボード JP2009260783 2009-11-16 JP5632151B2 2014-11-26 アルツハイマー、エメット; ウォルコット、マイケル・ピー
65 Pulp of Arundo Donakusu, paper products, and particle board JP2000554918 1999-06-16 JP5302485B2 2013-10-02 アルツハイマー、エメット; ウォルコット、マイケル・ピー
Composite panels and pulp, and paper products of the pulp, are produced from Arundo donax. In the fabrication of the composite panels, Arundo donax is comminuted to a suitable size, combined with a binder, and consolidated into panels that meet standards for construction and/or furniture grade panels. The Arundo donax particulates may be combined with wood particulates to produce a mixed furnish that can be used in the preparation of composite panels. Comminuted Arundo donax is treated, in conventional pulping processes, to produce a high tensile strength pulp that can be used in the production of paper. The pulp has a lighter color than wood pulp, and thereby uses less bleaching chemicals to achieve a desired whiteness. The pulp can be combined with wood pulp to produce a variety of products.
66 Method and device for taking out the fibrous sheet from the banana plant in order to produce paper products JP2007531537 2005-09-15 JP2008513612A 2008-05-01 ラミイ アブラハム アゼル
バショウ科のバナナ植物の、各々が長手軸を有する偽茎からシートを製造する方法および装置。 この方法は、偽茎(14)を作業台に供給し、作業台内で偽茎をその長手軸の周りを回転するように支え(62,34)、回転する偽茎を、ほぼその全長にわたって繊維分離装置と接触させ(38)、これによって、回転中に繊維分離装置によって偽茎から繊維の連続シート(60)を取り出すことを含む。 少なくとも2枚の隣接するシート内の概ね平行な繊維の方向が整列しないように2枚以上のシートを重ね、その後、このシートを硬化することで、生紙を製造してもよい。
67 Fiber structure and a method of manufacturing the same JP2005518586 2004-02-25 JP2006518813A 2006-08-17 エドワーズ,パトリック,キップ; カバリュー,デール,ゲーリー; ビンソン,ケネス,ダグラス; ヘルナンデス・ムニョア,ディエゴ,アントニオ; マニフォルド,ジョン,アレン
繊維構造体、特にフェイシャル・ティッシュ、トイレット・ティッシュ、及びペーパータオル、及びナプキン製品中に組み込まれる繊維構造体であって、約0.4mm〜約1.2mmの長さと約3.0mg/100m〜約7.5mg/100mの繊維粗度とを有する繊維を含み、ここでこの繊維構造体が、約3.5より大きく約15までのリント値を示す繊維構造体、並びにこうした繊維構造体の製造方法が提供される。
68 How to adjust the fiber properties of pulp JP2003578638 2003-03-21 JP2005520945A 2005-07-14 ラヌア ユッカ; リルレベルグ リスト
本発明は、特性の滑らかさを調節し、品質において種々のバリエーションを低減させるために、化学的パルプ、機械的パルプ、化学的機械的パルプの繊維特性を調節する方法に関する。 本方法によれば、パルプの製造において、木の年輪の数に従って選択された木材を使用する。 木材は、年輪の数に従って一定の繊維特性、例えば繊維長さ又は繊維粗さなどを表すカテゴリーに分類される。 木材は、丸太又は丸太の群によって木材の伐採に関連するいずれかの段階で、又は工場において、切り出し、パルプ化、粉砕化又は微細化の間のいくつかの段階で分類される。
69 Pulp of Arundo Donakusu, paper products, and particle board JP2000554918 1999-06-16 JP2002518606A 2002-06-25 アルツハイマー、エメット; ウォルコット、マイケル・ピー
Composite panels and pulp, and paper products of the pulp, are produced from Arundo donax. In the fabrication of the composite panels, Arundo donax is comminuted to a suitable size, combined with a binder, and consolidated into panels that meet standards for construction and/or furniture grade panels. The Arundo donax particulates may be combined with wood particulates to produce a mixed furnish that can be used in the preparation of composite panels. Comminuted Arundo donax is treated, in conventional pulping processes, to produce a high tensile strength pulp that can be used in the production of paper. The pulp has a lighter color than wood pulp, and thereby uses less bleaching chemicals to achieve a desired whiteness. The pulp can be combined with wood pulp to produce a variety of products.
70 Manufacture of fiber from straw and board product manufacturing by the fiber JP16110396 1996-05-31 JPH09225908A 1997-09-02 DEBUITSUDO BAANAADO GUTSUDO; RIIRANDO BURUUSU JIYOONZU
PROBLEM TO BE SOLVED: To provide a method for finely finishing a fiber from straw which can be used for a fiber board, and a method for producing a cellulosic material such as a fiber board. SOLUTION: Straw is cut to the length range of about 2-4", then after cleaning, is softened under a pressurized vapor treatment, and is finely finished using a pressurized mechanical refiner 26. Further, the straw is passed through a Fourdrinier machine 30, and is sent to a drying zone 32 to produce a fiber which can be used for the manufacture of a cellulosic fiber board product. This straw fiber can be mixed with any other different type of fiber at a freely chosen ratio, and can be used for the manufacture of a soft fiber board product, an intermediate density fiber board product and a hard fiber board product. COPYRIGHT: (C)1997,JPO
71 JPH07501501A - JP50637394 1993-08-11 JPH07501501A 1995-02-16
72 Production of pulp for molding by using cellulosic staple fiber as base stock JP19085491 1991-07-05 JPH0641899A 1994-02-15 HOSE RUISU BESERA KAMARERO
PURPOSE: To obtain the subject pulp for molding that is suitable for molding and dyeing without environmental pollution by hydrating cereal straw pulp that are cut to an even length in parallel with an alkali solution, extracting lignin by cooking it in an alkaline environment and removing it. CONSTITUTION: Straws are arranged in parallel, cut into strips so that the blade may cross the straw in the longitudinal direction. Then, the strip straw arranged in parallel are further cut into pieces with a plate system and the piece-form straw is conveyed with an endless conveying belt to the bath tank equipped with a mixer. An aqueous 3.5 wt.% solution of sodium hydroxide is added to the bath tank and they are mixed at 80 deg.C for 40 minutes to effect the hydration. Then, the straw and the resultant liquid are charged into the reactor to effect the cooking in the alkaline environment at 230 deg.C under 2.8 bar pressure for 2 hours to extract lignin from the fiber, finally the fibers are washed to remove the remaining lignin and alkali whereby the objective pulp for molding in the form of short-cut hydrated cellulose fibers is obtained, that is suitable for molding and dyeing.
73 JPH05507132A - JP50990191 1991-06-06 JPH05507132A 1993-10-14
74 Wet terminal molding method and molded product prepared thereby JP20979083 1983-11-08 JPS59100800A 1984-06-11 JIYON DEII GORU
75 Pulping of fiber material other than wood JP13183778 1978-10-25 JPS5562288A 1980-05-10 KOBAYASHI YOSHIO; MATSUO RIYUUKICHI; NISHIYAMA MASASHI; NOJIMA SATORU; SATOU TAKASHI
76 Kikaifuratsufuto * paruputosonoseiho JP2052476 1976-02-25 JPS51109301A 1976-09-28 SUFUEN URURITSUKU TORUBUYOON O; SUFUEN GUNNARU BERUKUDAARU
77 METHOD FOR CHARGING A FIBER SUSPENSION, AND ARRANGEMENT FOR CARRYING OUT SAID METHOD PCT/EP2004051701 2004-08-03 WO2005014934A3 2005-06-09 DOELLE KLAUS; LUEEDTKE OLIVER
Disclosed is a method for charging a fiber suspension containing cellulose fibers with calcium carbonate. Said method comprises the following steps: liquid or dry calcium hydroxide or calcium oxide is introduced into the fiber suspension; gaseous carbon dioxide is introduced into the fiber suspension; calcium carbonate is precipitated by the carbon dioxide; and the fiber suspension is ground during the charging process.
78 POROUS SINTERED MATERIAL, AND METHOD FOR PRODUCING POROUS SINTERED MATERIAL EP14760388 2014-03-05 EP2966184A4 2016-12-21 TANAKA SHIGEO; KANOKO YASUHIRO
[Object] There is provided a porous sintered body has a uniform porosity, a high level of freedom in body formation which allows formation into varieties shapes and various levels of porosity, and a very large surface area. [Solution] The porous sintered body includes: hollow cores which follow a vanished shape of an interlaced or otherwise structured fibriform vanisher material; sintered walls 226 which extend longitudinally of the cores and obtained by sintering a first sintering powder held around the cores; and voids formed between the sintered walls. The cores and the voids communicate with each other via absent regions formed in the sintered walls. The sintered walls have surfaces formed with a sintered microparticulate layer 232 made from a material containing a second sintering powder which has a smaller diamater than the first sintering powder, and has predetermined pores 231.
79 Method for measuring and controlling digester or impregnation vessel chip level by means of measuring chip pressure EP08011872.2 2008-07-01 EP2085509A3 2010-12-29 Tuuri, Sami

A method and system for determining chip pressure in a vessel (10) containing a slurry of lignocellulosic material including: sensing a total static pressure of the slurry in the vessel (10); sensing a hydrostatic pressure of the liquor in the vessel (10), and determining the chip pressure based on a difference of the sensed total static pressure of the slurry and the sensed hydrostatic pressure of the liquor.

80 HERSTELLUNG VON VLIESELEMENTEN AUS NATURFASERN EP08714781.5 2008-03-25 EP2139655A1 2010-01-06 Grass, Stefan
The invention relates to a method for producing non-woven elements made of a raw material from grass plants. A first intermediate product is made of per-prepared, damp natural fibres having a dry substance concentration of between 30% - 50%, preferably approximately 40%. The invention also relates to the production of a second intermediate product from the first intermediate product according to the following steps: the natural fibres are predried, thermoactive binding fibres are added thereto, additives are sprayed thereon and the order of said steps can be different, and/or individual steps carried out simultaneously. Preferably, the raw material is ensiled grass and in order to produce the first intermediate product, said raw material is defibred and the digestible components of the raw material are separated.
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