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    • 1. 发明授权
    • 이형제 크리닝 장치
    • KR101782892B1
    • 2017-09-28
    • KR1020160110679
    • 2016-08-30
    • 주식회사 디알오토텍(주)동우로테크
    • 노유승
    • C10M175/00B21J3/00B09B3/00B01D35/02
    • C10M175/0058B01D35/02B09B3/00B21J3/00
    • 본발명은사용된폐 이형제를정화하여재활용하는이형제크리닝장치에있어서: 도포되어사용된폐 이형제(A)와보충수(11)를수용한상태로기름성분과이물질을제거하는집수조(10); 상기집수조(10)의이물질이제거된폐 이형제(A)를유입하게흡입펌프(21)를구비하고, 폐이형제(A) 상에미세이물질을제거하게필터(22)를구비하는필터부(20); 상기필터부(20)의폐 이형제(A)를유입하여미세기포의파괴압력을통한폐 이형제(A)의세척과이물질제거를수행하게기포발생기(31)와다수개로이루어진산기관(32)을구비하고, 내부에수용된폐 이형제(A)의일정한수심을유지하여정화된이형제(B)를완성하게폐 이형제(A)를유입하여미세기포를통한폐 이형제(A)의세척과제거되어비중의의해떠오른이물질을수집하는집수탱크(32)와, 폐이형제의일정한수심을유지하게이형제(B)를투입하는투입부(33)를구비하는기포발생부(30); 및상기기포발생부(30)의이형제(B)를수용하여보관하는다수개의보관조(40);를포함하여이루어지는것을특징으로한다.이에따라본 발명은, 사용된폐 이형제상에존재하는각종이물질을미세기포의파괴압력을통해제거함에따라높은이물질제거율과함께세척률이향상되고, 재활용이가능함으로비용절감의효과를가져다오는효과를제공한다.
    • 2. 发明授权
    • 연료유 정제장치
    • 油净化装置
    • KR101638618B1
    • 2016-07-11
    • KR1020140104435
    • 2014-08-12
    • 주식회사 에너빅
    • 김성중
    • C10M175/00
    • C10G53/02C10G2300/1007C10G2400/10C10M175/00C10M175/0058C10M175/02
    • 본발명은연료유를공급하는연료유입구와, 정제가완료된연료유를배출하는연료배출구및 미처리된연료유가수집되어배출되는드레인배관과, 연료유로부터분리된슬러지가저장되는슬러지박스가구성된본체부; 상기연료유입구로부터연료유를공급받아초음파에의해연료유의입자크기, 연료유의점성및 표면장력을조절하는초음파탱크; 상기초음파탱크로부터연료유를공급받으며, 내부가진공상태로유지되어베플패널을통해연료유의비체적및 표면적을극대화하는진공챔버; 일측이상기진공챔버와연결되며, 타측이진공펌프와연결되어진공챔버에의해진공상태의감압및 높은온도로가열된공기를이용해연료유로부터수분을제거하는수분제거탱크; 상기진공챔버로부터연료유를공급받으며, 공급받은연료유를원심분리방식으로여과하여연료유에포함된슬러지를포집하는오일정제필터; 슬러지가제거된상태의연료유에잔존하는미세이물질을포함하는파티클을제거및 연소시키는이온챔버; 및상기본체부의일면에구성되어초음파탱크, 진공챔버및 수분제거탱크의구동조건을설정하고, 연료유의정제를위한동력의제공유무를제어하는콘트롤패널;을포함하는것을특징으로한다.
    • 3. 发明公开
    • 칼슘-몬모릴로나이트를 이용한 폐윤활유의 정제방법
    • 使用CA-MONTMORILLONITE的废油精制方法
    • KR1020150113721A
    • 2015-10-08
    • KR1020140038112
    • 2014-03-31
    • 변희준
    • 변희준
    • C10G45/60C10G45/04C10L1/00
    • C10M175/0016B01J20/12C10M175/0033C10M175/0058C10M175/06
    • 본발명은칼슘-몬모릴로나이트를이용한폐윤활유의정제방법에관한것으로, 더욱상세하게는폐윤활유를상압/감압증류하거나열분해하여추출된정제연료유에잔류된금속유기화합물및 타르등의불순물을칼슘-몬모릴로나이트의흡착, 정제, 촉매특성을활용하여제거함으로써청정한정제연료유를얻기위한칼슘-몬모릴로나이트를이용한폐윤활유의정제방법에관한것이다. 이러한본 발명은, 폐윤활유를가열하고교반시키는전처리공정; 상기전처리공정을거친폐윤활유에원심력을이용하여상기폐윤활유의이물질을제거하는침강공정; 상기침강공정을거친폐윤활유를가열하여상기폐윤활유에함유된수분과경질유를증발시키는탈수공정; 상기탈수공정을거친폐윤활유를증류하여유증기를발생시키는증류공정; 상기유증기를응축하여오일을얻는유증기응축공정; 촉매인공극을가진칼슘-몬모릴로나이트표백토를상기오일을포함하는반응기내로공급하여상기오일에함유된불순물을상기칼슘-몬모릴로나이트표백토의공극에포집시키는촉매처리공정; 상기공극에포집된불순물을포함하는상기칼슘-몬모릴로나이트표백토를상기오일로부터분리시켜상기불순물이포집된칼슘-몬모릴로나이트표백토로부터분리된정제유을수득하는불순물분리공정; 및상기정제유의이물질을필터링시키는여과공정;을포함하는것을특징으로하는칼슘-몬모릴로나이트를이용한폐윤활유의정제방법을기술적요지로한다.
    • 本发明涉及一种通过使用钙 - 蒙脱石来精炼废润滑剂的方法。 更具体地说,本发明涉及一种通过使用钙 - 蒙脱石来净化废润滑剂以通过除去通过进行室压/还原而提取的精炼燃料油中剩余的杂质如金属有机化合物,焦油等来纯化精炼燃料油的方法。 通过利用钙 - 蒙脱土的吸附,细化和催化性能对废润滑剂进行高压蒸馏或热解。 根据本发明,该方法包括:加热和搅拌废润滑剂的预处理过程; 通过对来自预处理过程的废润滑剂的离心力来除去废润滑剂的异物的下沉过程; 通过从下沉工艺加热废润滑剂来蒸发废润滑剂中含有的水分和硬油的脱水方法; 通过从脱水过程中蒸馏出废润滑剂产生油雾的蒸馏过程; 通过冷凝油雾获得油的油雾冷凝过程; 通过将含有作为催化剂的孔的钙蒙脱土漂白粘土供给到包含该油的反应器中,来收集钙 - 蒙脱土漂白粘土的孔隙中的油中的杂质的催化剂处理方法; 从石油中分离含有从孔中收集的杂质的钙 - 蒙脱石漂白粘土的杂质分离方法,得到从其中收集杂质的钙 - 蒙脱石漂白粘土分离出的精制油; 以及过滤精炼油外来物质的过滤过程。
    • 5. 发明公开
    • 수용성 절삭유의 부패방지 처리 시스템
    • 用于防止切割液体衰减的处理系统
    • KR1020130102385A
    • 2013-09-17
    • KR1020120023582
    • 2012-03-07
    • 현대자동차주식회사
    • 성광모하수현양희재조복주
    • B23Q11/00C10M175/00B03D1/00C02F1/24
    • B01D17/0205B01D21/06B01D2201/087C10M175/0058
    • PURPOSE: A system for preventing water-soluble cutting oil from decaying is provided to reduce decay bad smells and to extend lifetime of the cutting oil by efficiently preventing a decay of the water-soluble cutting oil as floating materials which are nutrients of microorganisms in the cutting oil are removed and the microorganism is sterilized with ultraviolet rays. CONSTITUTION: A system for preventing water-soluble cutting oil from decaying comprises a cutting oil storage tank (100), a flotation plant, a sterilizer (300), and a bubble generating device (400). The flotation plant floats floating materials floating on cutting oil transferred from the cutting oil storage tank to the surface of the cutting oil by using supplied micro-bubbles and removes the floating material by separating the same. The sterilizer sterilizes microorganisms in the cutting oil where the floating materials are removed from the flotation plant. The bubble generating device generates bubbles supplied to the flotation plant.
    • 目的:提供防止水溶性切削油腐烂的系统,通过有效防止水溶性切削油的腐烂作为微生物营养物质的漂浮物质,减少腐烂的难闻气味,延长切削油的使用寿命 切割油被除去,微生物用紫外线灭菌。 构成:防止水溶性切削油腐烂的系统包括切割油储存罐(100),浮选装置,灭菌器(300)和气泡产生装置(400)。 浮选机将漂浮在切削油上的漂浮材料漂浮在切削油储罐上,通过使用提供的微气泡将其切割到切削油的表面,并通过分离浮选材料来除去浮动材料。 灭菌器对切割油中的微生物进行灭菌,其中漂浮物质从浮选机中移出。 气泡生成装置产生供给浮选装置的气泡。
    • 7. 发明公开
    • 자동차와 기계류의 폐윤활유 동시정제 방법
    • 同一时间使用润滑油精炼工艺的电动汽车和机械
    • KR1020090078006A
    • 2009-07-17
    • KR1020080003748
    • 2008-01-14
    • (주)성광화학
    • 이재광
    • C10M175/00C10G7/00
    • C10M175/0058C10G7/04C10G7/06C10G2300/1007C10M175/0033
    • A method for purifying the waste lubricant of automobiles and machinery at the same time is provided to minimize the discharge of harmful materials and to maximize the recycling of the waste lubricant. A method for purifying the waste lubricant of automobiles and machinery at the same time comprises the steps of mixing the waste lubricant of automobiles and machinery and the room pressure residue with stirring and transferring it to a dehydration separation tank; separating moisture, and removing the impurities of microparticle in a centrifuge(11) to transfer an asphalt manufacture tank(19); distilling it in an intermediate storage tank(11a), a preheater(12) and a thin film evaporation evaporator(13); transferring the fuel oil component to a filler tower(14) by a form of vapor and transferring the remaining dreg oil to the asphalt manufacture tank; condensing the fuel oil component of the filler tower at a first condenser(15) and a second condenser(16) to produce the recycled fuel oil; condensing the low boiling point oil at a third condenser(17) to transfer it to the asphalt manufacture tank; and collecting the remaining gas at an absorption tower(18) to remove the pollutant and burning it at an incineration furnace by pyrolysis.
    • 提供同时净化汽车和机械的废润滑剂的方法,以最大限度地减少有害物质的排放并最大化废润滑剂的再循环。 一种净化汽车和机械废润滑剂的方法,同时包括将汽车和机械的废润滑剂与室压残渣混合搅拌并将其转移到脱水分离罐中的步骤; 分离水分,并除去离心机(11)中的微粒的杂质以转移沥青制造罐(19); 将其蒸馏在中间储罐(11a),预热器(12)和薄膜蒸发蒸发器(13)中; 通过蒸汽的形式将燃料油组分转移到填料塔(14),并将剩余的渣油转移到沥青制造罐; 在第一冷凝器(15)和第二冷凝器(16)处将填料塔的燃料油组分冷凝以产生再循环的燃料油; 在第三冷凝器(17)处冷凝低沸点油以将其转移到沥青制造罐; 并在吸收塔(18)处收集剩余的气体以除去污染物并通过热解在焚化炉中燃烧。