序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
41 JPS6053648B2 - JP15151880 1980-10-30 JPS6053648B2 1985-11-27 BORUFU DEIETERU SUFUERU
There is provided a process for removing pollutant particulates from a contaminated gas which comprises: (a) passing a stream of gas containing pollutant particulates through a liquid film absorbed on a continuously circulating filter supported by a perforated carrier matrix wherein part of said filter is continuously passing through a liquid reservoir containing said filtering liquid selected from liquid fluorocarbons and liquid silicones whereby the contaminant particulates carried by said gas are absorbed by said liquid film acting as a filter barrier for said particulates, and (b) recovering the gas after its passage through said liquid film barrier filter, said gas being free of said particulates. There is also disclosed an apparatus for carrying out the process. The apparatus can be positioned in a face mask.
42 Device and method of moving mass between two fluid phase JP19760781 1981-12-08 JPS57140660A 1982-08-31 ROJIYAA HAWAADO MARINSON; KORIN RAMUSHIYOO
43 JPS50116371A - JP456474 1973-12-29 JPS50116371A 1975-09-11
44 "FILAD" - PREVENTING EXHAUST FUMES EMISSION IN THE AIR PCT/BA0200002 2002-09-04 WO03095075A9 2005-04-28 KARADZIC EJUB
Technical novelty characterizing "FILAD", the invention for preventing exhaust fumes emission in the air, in respect to the past state of technique, is a simple construction of the invention, its functional and practical orientation not to decrease, but to prevent, emission of exhaust fumes containing pollutants in the air. "FILAD" consists of: emission speed and exhaust fumes pressure absorber (F) for process of admitting, diluting and cooling exhaust fumes; exhaust fumes aspirator (I) for process of intake and exercising pressure on exhaust fumes; exhaust fumes diluent (L) for process of diluting and tearing exhaust fumes concentration; exhaust fumes conductor (A) for process of decreasing flow pressure, diluting and conducting exhaust fumes toward carburetors; and absorbent reservoir (D) for process of dipping, cooling and mixing exhaust fumes in absorbent and transforming pollutants into liquid. Motor (Imv) in aspirator (I) and propellers (Dke) in reservoir oil sump (Dk) are driven by electric power from installations of stationary or movable air pollution sources. Absorbent (Da) consists of specified proportion of distilled water and detergent of certain quality used in everyday life. Liquid (Dt) produced by dipping and mixing exhaust fumes with absorbent (Da) can be stored, transported and used in everyday life. "FILAD" is technically feasible, and experts eager to find technical solution to the problem of how to protect quality of air, can apply it in industry and other fields. Separate parts and processes of transforming fumes into liquid can be deployed if necessary on different spots, but must be connected to reservoir (D); processes of transforming certain fumes till reaching reservoir can be shortened, and additional modifications can be made, but essence of the invention must be preserved. "FILAD" can be used for preventing emission of exhaust fumes from stationary and movable air pollution sources, such as thermal power plants, cement plants, heating stations, printing plants, foundries, motor vehicles, etc., and also on places such as production, working, hospital and open areas where minimum noise is required.
45 SYSTEM AND METHOD FOR SEPARATING FLUIDS AND CREATING MAGNETIC FIELDS PCT/US2011048901 2011-08-24 WO2012027435A3 2012-06-07 IRVIN SR WHITAKER BEN
A system and method in at least one embodiment for separating fluids including liquids and gases into subcomponents by passing the fluid through a vortex chamber into an expansion chamber and then through at least a portion of a waveform pattern present between at least two rotors and/or disks. In further embodiments, a system and method is offered for harnessing fields created by a system having rotating rotors and/or disks having waveform patterns on at least one side to produce current within a plurality of coils. In at least one embodiment, the waveform patterns include a plurality of hyperbolic waveforms axially aligned around a horizontal center of the system.
46 湿式型空気清浄器 JP2018511572 2016-05-03 JP2018516754A 2018-06-28 オ,ムン−ソブ
本発明は、湿式型空気清浄器に関し、より詳細には、空気清浄器の内部に汚染空気を通過させて汚染源を接触させることにより汚染源を除去し、空気清浄器内の回転ファンの回転により汚染空気を内部に流入させると同時に、内部に流入した水を回転する回転ファンに衝突接触させて粒子の微細な水粒子として分散させて空気との接触面積を大きくし、空気中の汚染物質が、染み込んだ水と一緒に、移動時間の長い狭小な移動通路を経ることにより、長い水と空気の滞留時間および衝突時間を長く持つようにして、貯蔵タンクに流入または沈殿するようにするとともに、室内環境の加湿機能を持つようにする湿式型空気清浄器に関する。
47 ABS系樹脂組成物及びそれから製造された成形品 JP2017528554 2016-11-11 JP2018507920A 2018-03-22 リュ、スン‐チョル; イ、ス‐キョン; キム、ソン‐リョン
本記載は、ABS系樹脂組成物及びそれから製造された成形品に関し、(a)ビニルシアン化合物−共役ジエン系ゴム状重合体−芳香族ビニル化合物共重合体樹脂22.5〜50重量%;(b)芳香族ビニル化合物−ビニルシアン化合物共重合体樹脂47.5〜75重量%;(c)ポリエーテルエステルアミド(Polyether ester amide)樹脂1〜6重量%;及び(d)エトキシ化アルキルアミン系帯電防止剤1.5〜3重量%;を含むことを特徴とする、加湿量に優れ、変形が少ないためエアワッシャーや加湿器などのディスクに適したABS系樹脂組成物及びそれから製造された成形品に関する。【選択図】なし
48 フラックス回収装置及びはんだ付け装置 JP2014543716 2014-06-13 JP5761467B1 2015-08-12 桧山 勉; 斉藤 雄太
フラックス成分を含む混合気体から、フラックス成分を含まない気体を分離して、フラックス成分を回収できるようにする。分離部内で発生する蒸気を、結露手段により冷やして水滴として回収し、再利用する。
フラックス成分を含む混合気体に水を散水する第1の散水部(20A)と、第1の散水部(20A)から散水された状態で混合気体を導入する導入口を有して旋回流により混合気体からフラックス成分を分離する分離部(10)と、分離部(10)の内側に降水流を形成する第2の散水部(20B)と、分離部(10)内で発生する水蒸気を冷やして水滴にし、除去する結露手段(17)とを備えるものである。
49 フラックス回収装置及びはんだ付け装置 JP2014543715 2014-06-13 JP5761466B1 2015-08-12 桧山 勉; 斉藤 雄太
フラックス成分を含む混合気体から、フラックス成分を含まない気体を分離して、フラックス成分を回収できるようにする。
フラックス成分を含む混合気体にを散水する第1の散水部(20A)と、第1の散水部(20A)から散水された状態で混合気体を導入する導入口を有して旋回流により混合気体からフラックス成分を分離する分離部(10)と、分離部(10)の内側に降水流を形成する第2の散水部(20B)とを備えるものである。
50 Air purifying apparatus using the centrifugal impeller JP2006552048 2005-02-03 JP2007531561A 2007-11-08 ジャンシク ユン
本発明は空気中の汚染物質を洗浄を用いて捕集して、空気と洗浄水を比重差によって遠心分離し、空気を浄化する遠心羽根車を用いた湿式空気浄化装置に関するものであり、保護グリル400と、空気導管405に位置する洗浄水タンク401と、遠心羽根車408が設けられた電動機433と、空気浄化装置407内部に位置するベアリング434と、トラップ441と、出口管432に設けられた湿度調節機442とを含む。
したがって、本発明による遠心型の湿式空気浄化装置は、フィルタを使用せず、遠心によって効率よく清浄な空気を放出し、家庭、事務室、自動車室内、工場の粉塵発生場所、内燃機関、排出ガスの浄化装置として使用することができる。
51 Nanopowder extraction apparatus using the rotation of the hollow impeller JP2003569544 2003-02-25 JP2005518268A 2005-06-23 キム,ヨン−ナム
Disclosed herein is a nano-powder extraction apparatus using the rotation of a hollow impeller, which is configured to extract nano-powder according to particle size thereof by effectively dissolving the nano-powder contained in plasma gas into a surfactant solution, and to prevent the aggregation of nano-powder as the nano-powder is absorbed in and collected by a surfactant of solution, thereby enabling the application of strongly reactive materials.
52 Device for purifying air JP2001553014 2001-01-11 JP2003520122A 2003-07-02 カスティロ マルティヌ マヌエエル
Apparatus to purify air, which consists of a recipient (2) with water in its interior, in which is introduced, submerged in its interior an end, perforated section (5) of the smoke circulation conduct (6), which is pushed by a turbine, and sucked in by a smoke collector (7) to collect the smoke, with transversal and parallel axes (12) in its interior, with blades (13) which are turned with the aid of a transmission, consisting of sprockets (14) and a chain (15) connected to the axis sprocket (16) of the motor outlet (17). <IMAGE>
53 JPH0475048B2 - JP26266884 1984-12-12 JPH0475048B2 1992-11-27
Equipment for purifying gases comprising a housing having opposing closed end faces and containing wetting fluid which is reactive to impurities in the gas to be purified; a cylinder rotatably mounted within the housing such that the cylinder is mounted between the closed end faces; a plurality of spaced apart plates extending outwardly of the cylinder and extending lengthwise along the cylinder so that as the cylinder rotates the plates are immersed in the wetting fluid and thereafter emerge from the wetting fluid; an air inlet opening for introducing air into the housing provided in one of the end faces such that air is not directed into the wetting fluid and an air outlet opening in the other of the closed end faces through which air exits; a gas inlet opening for introducing the gas to be purified into the housing and a gas outlet for removing the purified gas from the equipment, the gas inlet provided in one of the opposing closes end faces such that the gas to be purified is not directed into the wetting fluid and said gas outlet provided in the other of the closed end faces; and wherein spaced apart plates are positioned and arranged in the housing on the cylinder to define a plurality of chambers, such that when the cylinder rotates when the equipment is operated the relative positions of the air inlet opening, the air outlet opening, the gas inlet opening and the gas outlet opening are such that each chamber (i) is immersed in wetting fluid, (ii) is then in air-flow communication with the air inlet and the air outlet and (iii) thereafter is in gas-flow communication with the gas inlet opening and the gas outlet opening.
54 JPH04506626A - JP50691191 1991-04-10 JPH04506626A 1992-11-19
55 JPS6019435B2 - JP18059780 1980-12-22 JPS6019435B2 1985-05-16 FUAKURAFU FUERESU
56 Airtightseal for rotary gas-liquid contacting device JP12062681 1981-07-31 JPS5757963A 1982-04-07 JIYOSEFU FUENUITSUKU JIYAKUSON
57 JPS5438748B1 - JP1000172 1972-01-28 JPS5438748B1 1979-11-22
58 JPS5219545B2 - JP9417472 1972-09-21 JPS5219545B2 1977-05-28
59 System for removing gas components and solid impurities in gas flow and cooling gas flow JP9751176 1976-08-17 JPS5224388A 1977-02-23 BIRUYO YUHANA ERUBENPEE
60 JPS5037016A - JP6958674 1974-06-18 JPS5037016A 1975-04-07
QQ群二维码
意见反馈