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    • 3. 发明公开
    • 수산화알루미늄이 함유된 건축 자재용 접착제
    • 含有羟基氢氧化铝的构造材料的粘合剂及其制备方法
    • KR1020070006076A
    • 2007-01-11
    • KR1020050061084
    • 2005-07-07
    • 김재열
    • 김재열
    • C09J11/04
    • C09J11/04C01D1/04C09J201/00
    • Provided is an adhesive for building materials, which has excellent antibacterial and anti-mould activities, shows anion- and far infrared ray-emitting effects and has deodorizing effect. The adhesive for building materials comprises a resin, a solvent and other additives. The adhesive for building materials further comprises 0.1-5.0 parts by weight of aluminum hydroxide based on 100 parts by weight of the adhesive. In the adhesive, the resin is at least one resin selected from the group consisting of natural resins such as starch and synthetic resins including phenolic resins, urea resins, melamine resins, xylene resin, epoxy resins, isocyanate resins, vinyl acetate resins, polyester resins, polyvinyl alcohol resins, acrylate resins, cyanoacrylate resins and synthetic resins.
    • 提供了一种具有优异抗菌,抗霉菌活性的建筑材料用粘合剂,具有阴离子和远红外线发射效果,具有除臭效果。 用于建筑材料的粘合剂包括树脂,溶剂和其它添加剂。 用于建筑材料的粘合剂还包含基于100重量份粘合剂的0.1-5.0重量份的氢氧化铝。 在粘合剂中,树脂是选自淀粉等天然树脂,酚醛树脂,脲醛树脂,三聚氰胺树脂,二甲苯树脂,环氧树脂,异氰酸酯树脂,乙酸乙烯酯树脂,聚酯树脂等合成树脂中的至少一种树脂 ,聚乙烯醇树脂,丙烯酸酯树脂,氰基丙烯酸酯树脂和合成树脂。
    • 7. 发明授权
    • 티탄산바륨 나노분말의 제조방법
    • 钛酸钡纳米粉的制造方法
    • KR101261497B1
    • 2013-05-13
    • KR1020110116865
    • 2011-11-10
    • 한국세라믹기술원
    • 신효순여동훈박국효
    • C04B35/468C01G23/04B01J19/10B82B3/00
    • H01G4/1227B01J19/10C01D1/04
    • PURPOSE: A manufacturing method of barium titanate nanopowder is provided to synthesize barium titanate at a lowered reaction temperature by adding a small amount of water and/or applying ultrasonic energy to a mixture of salt and material powder. CONSTITUTION: A manufacturing method of barium titanate nanopowder comprises the following steps: barium titanate is synthesized by heating and reacting a mixture of oxalate, BaCO3 or BaO composition material powder, and TiO2 composition material powder; and barium titanate powder is manufactured by drying the synthesized barium titanate. Water is added to the mixture. The ultrasonic energy is applied to the water-added mixture. The concentration of the oxalate to the added water is 0.1-50N. The oxalate includes at least one among KOH salt and KOH-KCl mixed salt. The particle size of the powder is 5-200nm. The synthesizing reaction temperature is 100-400 deg. C.
    • 目的:提供钛酸钡纳米粉末的制造方法,通过向盐和材料粉末的混合物中加入少量的水和/或施加超声波能量,在降低的反应温度下合成钛酸钡。 构成:钛酸钡纳米粉末的制造方法包括以下步骤:通过加热和反应草酸盐,BaCO 3或BaO组合物材料粉末的混合物和TiO 2组合物材料粉末来合成钛酸钡; 通过干燥合成的钛酸钡制造钛酸钡粉末。 向混合物中加入水。 将超声能量施加到添加水的混合物。 草酸盐与加入水的浓度为0.1-50N。 草酸盐包括KOH盐和KOH-KCl混合盐中的至少一种。 粉末的粒径为5-200nm。 合成反应温度为100-400度。 C。
    • 10. 发明授权
    • 화력발전소의 바닥재를 이용한 합성 제올라이트 제조방법
    • 使用热电厂煤层气制造合成沸石的方法
    • KR101602933B1
    • 2016-03-11
    • KR1020150155353
    • 2015-11-05
    • 주식회사 지엔티엔에스
    • 이경우정유식신희용
    • C01B39/02C01D1/04C01D7/00C01F7/02C01F11/02C30B29/10
    • C01B39/02C01D1/04C01D7/00C01F7/02C01F11/02C30B29/10
    • 본발명은화력발전소의바닥재를이용한합성제올라이트제조방법에관한것으로, 더상세하게는화력발전소의석탄폐기물인바닥재(Bottom Ash)를분쇄하고, 바닥재분쇄물과알카리물질을분말상으로혼합한다음열을가하여균일하게융합되도록하고, 융합된분말상의융합물은알루미늄함유물질및 제올라이트시드와함께물에혼합시키고, 숙성과결정화및 건조과정을통해제올라이트생산하되, 상기분쇄한바닥재분쇄물은결정화방해물질인 CaO함량을일정수준이하로감소시킨다음알카리물질과혼합되도록하여결정화가이루어지게함으로써결정화도를향상시켜대량생산이가능하고제올라이트의품질을일정수준으로유지시킬수 있는합성제올라이트제조방법에관한것이다.
    • 本发明涉及使用火力发电厂的底灰的合成沸石的制造方法。 更具体地说,合成沸石的制造方法包括以下步骤:粉碎作为火力发电厂的废煤的底灰; 将粉碎的底灰与粉末形式的碱性物质混合并加热粉末混合物以均匀熔合在一起; 将熔融粉末混合物与含铝物质和沸石种子混合在水中; 并进行熟化,结晶和干燥以产生沸石的方法。 粉碎的底灰与碱性物质混合后,CaO的含量作为结晶中的阻碍物减少至低于或等于一定水平,然后进行结晶。 因此,本发明的制造方法可以基于提高的结晶度使批量生产成为可能,并且可以将沸石的质量保持在一定水平。