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    • 3. 发明公开
    • 생물학적 샘플을 그라인딩하기 위한 유닛
    • 研磨生物样品的单位
    • KR1020170056658A
    • 2017-05-23
    • KR1020177010300
    • 2015-09-15
    • 베르뗑 떼끄놀로지
    • 발레예,쥴리앙샤르뻥띠에,쥴리앙
    • B01F11/00B02C17/14G01N1/28
    • G01N1/286B01F11/0028B01F13/0052B01F13/1041B01F15/065B01F2013/1086B01F2015/061B01F2215/0037B01F2215/0431B02C17/08B02C17/14B02C17/1815G01N2001/2866
    • 본발명은생물학적샘플들을그라인딩하기위한유닛에관한것으로, 상이한체적을가지고그라인딩장치(1)의지지부(2) 상에장착될수 있는적어도두 개의튜브(3)로서, 각각의튜브(3)는축을따라높이 h를갖는내부공간을가지고그라인딩될샘플을수용하도록된, 적어도두 개의튜브(3), 상이한상기적어도두 개의튜브(3)를지지할수 있는지지부(2), 및상기지지부(2)를세차운동(precession movement)시키는수단을포함하며, 상기지지부(2)는원뿔면(cone)을형성하도록위치가변하는축(4, X)을가지고, 각각의튜브(3)는상기세차운동동안에상기튜브(3)의동일한지점(P)의극한위치들사이의거리의, 상기원뿔의축(Y) 상으로의, 투영에의해한정되는이동거리 d 만큼이동하며, 상기그라인딩장치(1) 및튜브(3)는, 각각의튜브에대하여, d/h 비가 0.55 내지 1, 바람직하게는 0.6 내지 0.8, 더바람직하게는 0.6 내지 0.7가되도록형성된다.
    • 本发明涉及一种用于研磨生物样品的单元,该单元包括至少两个具有不同体积的管(3),其可以安装在研磨装置(1)的支撑件(2)上,每个管(3) 至少两个管(3),其适于接收将被研磨的样品,具有在其之间具有高度h的内部空间;能够支撑不同的所述至少两个管(3)的支撑件(2) (2)包括其位置改变成锥体的轴(4,X),并且每个管(3)具有管 研磨装置(1)和研磨装置(1)在圆锥的轴线(Y)上的研磨装置(3)的同一点(P)的极限位置之间的距离 3)中,对于每个管,d / h比为0.55至1,优选0.6至0.8,更优选0 .6至0.7。
    • 4. 发明授权
    • 토질 개량 기계
    • 토질开发技术
    • KR100407875B1
    • 2004-07-05
    • KR1019980701374
    • 1996-08-30
    • 가부시키가이샤 고마쓰 세이사쿠쇼
    • 다나카요시마사시미즈히로시시모무라하지메후지노다네아키노무라나오야
    • B65D88/28
    • E01C21/00B01F3/18B01F13/1011B01F13/1041B01F2013/1083B02C13/20B02C13/26B02C13/282B09C1/00
    • A soil improving machine comprises a crushing and mixing device (A) provided with a housing (1) having an opening (5) at a top thereof and a plurality of rotary type disintegrating and mixing members (3) for disintegrating, mixing and agitating earth and sand, and an improvement material charged from the opening, an earth and sand supplying device (B) arranged on a top of the crushing and mixing device and provided with an earth and sand discharge opening (13) having a predetermined size and communicating with the opening, a rotary-type earth and sand feeder (14) for supplying earth and sand in predetermined amounts to the earth and sand discharge opening, and an earth and sand hopper (20), and an improvement material supplying device arranged on a top of the earth and sand supplying device and provided with an improvement material discharge opening (81) having a predetermined size and communicating with the earth and sand supplying device on an upstream side of the earth and sand discharge opening, a rotary-type improvement material feeder (60) for supplying an improvement material in predetermined amounts to the earth and sand discharge opening, and an improvement material hopper (61).
    • 本发明提供一种土壤改良机,其包括粉碎混合装置(A),该粉碎混合装置(A)具备在上部具有开口部(5)的壳体(1),以及将土壤粉碎,混合,搅拌的多个旋转式粉碎混合部件 砂和从该开口填充的改良材料;砂土供给装置(B),该砂土供给装置(B)配置在粉碎混合装置的上部,并具备规定尺寸的砂土排出口(13) 开口,用于向土砂排出口供给规定量的土砂的旋转式砂土给料装置(14),砂土料斗(20),以及配置在上部的改良材料供给装置 ,在该砂土供给装置的土砂供给装置的上游侧设置有规定尺寸的改良材料排出口(81),该土壤改善材料排出口与土砂供给装置连通; 一个用于将预定量的改进材料供给土砂排出口的旋转式改进材料进料器(60)和一个改进材料料斗(61)。
    • 5. 发明授权
    • Chemicals linear dissolving apparatus for water treatment
    • 化学品用于水处理的线性溶解装置
    • KR101182543B1
    • 2012-09-12
    • KR20120038642
    • 2012-04-13
    • HUR JONG HYUNG
    • HUR JONG HYUNG
    • B01F5/04B01F5/06B01F15/02C02F1/52
    • B01F5/043B01F1/0011B01F3/0865B01F5/0614B01F7/248B01F13/103B01F13/1041B01F2005/0636B01F2013/108C02F1/5281
    • PURPOSE: A chemical in-line dissolution device for water treatment is provided to effectively dilute and mix a water treating agent with a solution through cutting and rapid dissolution process of secondary solution and dissolved chemical. CONSTITUTION: A chemical in-line dissolution device for water treatment comprises a mixing part(100), an ejector(200), a cutting part(300) and a rapid dissolution part(400). The mixing part makes a dissolved chemical by diluting and mixing the water treated chemical and a first solution. The ejector is connected to one side of the mixing part. The ejector sprays a secondary solution through a nozzle and discharges the dissolved chemical in a mixed state with the secondary solution. The cutting part is connected to one side of the ejector and discharges the mixed dissolved chemical and the secondary solution as being cut. The rapid dissolution part is connected to one side of the cutting part and forms swirl in the mixed dissolved chemical and the secondary solution.
    • 目的:提供用于水处理的化学在线溶解装置,以通过二次溶液和溶解化学品的切割和快速溶解过程有效地稀释和混合水处理剂与溶液。 构成:用于水处理的化学在线溶解装置包括混合部分(100),喷射器(200),切割部分(300)和快速溶解部分(400)。 混合部分通过稀释和混合水处理的化学品和第一溶液来制成溶解的化学品。 喷射器连接到混合部分的一侧。 喷射器通过喷嘴喷射二次溶液,并将溶解的化学品与二次溶液以混合状态排出。 切割部分连接到喷射器的一侧,并将混合的溶解化学品和二次溶液排出。 快速溶解部分连接到切割部分的一侧,并在混合的溶解化学品和第二溶液中形成涡流。
    • 7. 发明公开
    • 유기성 폐기물에 근거하는 액상 물질 처리 장치 및 방법
    • 用于处理基于有机废物的液体材料的方法和装置
    • KR1020090074022A
    • 2009-07-03
    • KR1020097005963
    • 2007-08-21
    • 콘테라 테크놀러지 에이에스
    • 블롬크비스트오베
    • C02F11/14B01F7/16C05F7/00
    • B01F7/00641B01F7/166B01F7/18B01F13/1041B01F15/065B01F2013/1083B01F2015/062C02F11/14C05F7/00F26B5/005F26B17/18Y02A40/213Y10T70/375
    • The present invention relates to a method and arrangement for the treatment of liquid material based on organic waste products, in particular sludge from sewage disposal plants and the like, wherein the sludge material is added and mixed with chemicals, in particular sulphuric acid, nitric acid, and/or ammonia, during the vaporization and degasification of liquid from the material to increase the solids content thereof. The present invention is characterized, inter alia, in that the material is continuously introduced at the upper part of a vertical mixing vessel (1), in which the material is subject to mixing, after which the material is passed on into a reactor tank (8) for sulphuric acid treatment and at the same time, while sinking through the sulphuric acid treatment reactor tank (8), is exposed to an impact action from a number of rotary processing means (9) disposed in the reactor tank (8), after which the material is passed on into a reactor tank (14) for ammonia treatment and at the same time, while sinking through the ammonia treatment reactor tank (14), is exposed to an impact action from a number of rotary processing means (9) disposed in the reactor tank (14), after which the material is finally passed on into a drier (15) in which the material is dried until a desired solids content is achieved.
    • 本发明涉及一种用于处理基于有机废物,特别是来自污水处理厂等的污泥的液体材料的方法和装置,其中将污泥材料加入并与化学品,特别是硫酸,硝酸 ,和/或氨,在液体从材料的蒸发和脱气期间增加其固体含量。 本发明特别的特征在于,材料被连续引入垂直混合容器(1)的上部,其中材料被混合,之后将材料通入反应器罐( 8)用于硫酸处理,同时在通过硫酸处理反应器罐(8)沉入的同时,暴露于设置在反应器罐(8)中的多个旋转处理装置(9)的冲击作用, 然后将材料送入用于氨处理的反应器罐(14)中,同时在通过氨处理反应槽(14)沉入的同时,暴露于来自多个旋转处理装置(9)的冲击作用 ),然后将材料最后通入干燥器(15)中,在干燥器(15)中材料被干燥直到达到所需的固体含量。
    • 8. 发明授权
    • 응집제가 함유된 미세광미로부터 중금속 제거방법
    • 重金属去除方法从精细尾矿包含
    • KR101562803B1
    • 2015-10-27
    • KR20150045945
    • 2015-04-01
    • UNIV DONG A RES FOUNDATION
    • KANG HEON CHANKIM MIN SIKHWANG MIN SU
    • B03B7/00B01F13/10B03D1/02B04B5/10B07B1/00
    • B03B7/00B01F13/1041B03D1/02B04B5/10B07B1/00
    • 본발명은응집제가함유된미세광미로부터중금속제거방법에관한것으로, 더욱바람직하게는폐광산광미내에존재하는광물들의광물학적특성을정확하게파악하여폐기된광미로인한주변환경의 2차오염을유발하는중금속광물과환경적으로무해한비금속광물들을선별할수 있도록하기위한응집제가함유된미세광미로부터중금속제거방법에관한것이다.상기공정은폐광미를스크린(0.3mm, 50Mesh)에투입하여중금속오염도가낮은나무뿌리및 이물질과처리대상인 50mesh 이하의광미를분리하는체가름단계; 상기체가름된 폐광미를물과함께조건조에투입하여광액을조절하는단계; 상기광액에존재하는응집체들을해쇄시킴과동시에광물표면에흡착되어있는화학응집제들을탈착시키기위하여물리적교반을실시하여응집된미분체들을해쇄시키는물리적교반단계; 상기물리적교반단계를통해해쇄된광미를초미립광미와조립광미를분리하고광액에있는화학응집제들을제거해주기위해원심콘 분리기에투입하여분리·선별하는원심콘분리단계; 상기원심콘분리단계에서분리·선별된광미를조건조에투입하여광액의농도를조절하고 1종이상의포수제와, 1종이상의기포제및 1종이상의분산제를첨가하여부유선별조건을부여하는조건부여단계; 상기조건부여단계에서처리된광액을대상으로부유선별을실시하는부유선별단계;를포함하여이루어지는것을특징으로한다.
    • 本发明涉及一种从含有凝结剂的精细拖尾中去除重金属的方法,其中更为优选的是,矿物中存在于矿物中的矿物的矿物学特性被正确理解,重金属矿物,通过废弃物尾矿造成二次污染, 与环境无害的非金属矿物区分开来。 去除重金属的方法包括:将筛网(0.3mm,50目)插入废料拖尾的筛分步骤,以分离具有低于重金属污染程度的树根和杂质的具有50目或更小的待处理尾料 ; 通过将经过筛分的尾料与水一起插入调理剂来调整矿石溶液的步骤; 物理搅拌步骤,通过进行物理搅拌以溶解存在于矿石溶液中的凝结体并且分离吸附在矿物表面上的化学凝结剂来溶解凝固的微粒; 离心锥分离步骤,通过物理搅拌步骤分离和选择尾矿中的超细拖尾和粗拖尾,并将矿石溶液插入离心锥形分离器中以除去矿石溶液中的化学凝结剂; 条件提供步骤,通过将通过离心锥分离步骤分离和选择的尾料插入调理器中调整矿石溶液的浓度,并添加一种或多种吸水剂,提供浮选选择条件,一种或 更多种类的发泡剂和一种或多种分散剂; 以及相对于由条件提供步骤处理的矿石溶液进行浮动选择的浮动选择步骤。
    • 9. 发明授权
    • 초미립자 무기금속산화물 수분산체 및 이의 제조방법
    • 具有分散在水中的精细粉末型无机金属氧化物的分散体系及其制备方法
    • KR100791555B1
    • 2008-01-03
    • KR1020070010965
    • 2007-02-02
    • 선진뷰티사이언스(주)주식회사 랜코
    • 이성호강우규
    • A61K8/29A61K8/27A61K8/46A61Q17/04
    • B01F3/1221A61K8/0241A61K8/26A61K8/27A61K8/29A61K8/466A61K2800/262A61K2800/413A61K2800/621A61K2800/623A61Q17/04B01F13/1041B01F17/0007B01F17/0021B01F17/0057B01F2013/1086
    • A method for preparing an aqueous dispersion of fine powder-type inorganic metal oxide is provided to obtain the hydrophobized aqueous dispersion which shows high transparency in visible rays region and is able to provide light feeling of use, excellent UV blocking capability and excellent water-resistance when being applied to a cosmetic composition. A method for preparing an aqueous dispersion of fine powder-type inorganic metal oxide comprises a step of mixing a hydrophobized fine powder-type inorganic metal oxide having a particle size of 0.005-0.1mum, a sulfosuccinate-based or a sulfosuccinamate-based dispersing agent selected from the group consisting of disodium cetearyl sulfosuccinate, disodium deceth-5 sulfosuccinate, disodium oleyl sulfosuccinate, disodium isostearyl sulfosuccinate, disodium tridecyl sulfosuccinate, disodium stearyl sulfosuccinamate, and tetrasodium dicarboxyethyl stearyl sulfosuccinamate, and water and the dispersing the mixture using a high speed bead mill. A cosmetic composition comprises 0.1-50 wt.% of the aqueous dispersion of fine powder-type inorganic metal oxide.
    • 提供了一种制备细粉末型无机金属氧化物的水性分散体的方法,以获得在可见光区域中显示出高透明度的疏水化水分散体,并且能够提供使用感,优异的UV阻隔能力和优异的耐水性 当被用于化妆品组合物时。 制备细粉末型无机金属氧化物的水分散体的方法包括将粒径为0.005-0.1μm的疏水化细粉型无机金属氧化物,磺基琥珀酸盐或磺基琥珀酸盐基分散剂 选自鲸蜡硬脂基磺基琥珀酸二钠,癸基磺基琥珀酸二钠,油基磺基琥珀酸二钠,异硬脂基磺基琥珀酸二钠,十二烷基磺基琥珀酸二钠,硬脂基磺基琥珀酸二钠和硬脂酰基磺基琥珀酸四钠,水和分散混合物使用高速珠 磨。 化妆品组合物包含0.1-50重量%的细粉末型无机金属氧化物的水分散体。