• 제목/요약/키워드: ferric manganese oxide

검색결과 6건 처리시간 0.025초

개발도상국에서 Hybrid Ferric-Manganese-Silica Oxide를 적용한 비소 제거용 정수 BSFilter 적정기술개발 (Improvement of biosand filter embedded with ferric-manganese-silica oxide adsorbent to remove arsenic in the developing countries)

  • 정인규;독고석
    • 상하수도학회지
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    • 제27권5호
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    • pp.641-648
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    • 2013
  • Arsenic (As) contamination in drinking water is severe problem for about 100 million people who live in Bangladesh, Cambodia, Nepal, India, Vietnam, Myanmar, Mongolia, and Ethiopia etc. Chronic doses cause skin cancer, blackfoot disease, and cardiac damage. Even though the biosand filter (BSF) is popular in many developing countries, it could not remove effectively hazardous ions as As. Adsorbent is effective and feasible to reduce As. In this study the improved biosand filter (iBSF) was embedded with adsorbent, was tested to evaluate As removal as well as organic removal. In 20 days removal of turbidity, bacteria, and $UV_{254}$ have shown 60-95 % removal. Arsenic was removed more than 99.9 % in the columns embedded with silica oxides of ferric manganese ($FM{\alpha}$) while 5.8 ~ 38.3 % in columns without $FM{\alpha}$. Isotherm test showed that average amount of the adsorbed arsenic on the oxides was 0.56 mg/G.

나트륨 아지드와 금속산화물과의 혼합물에 대한 열분해 특성 (Thermal Decomposition Characteristics on Sodium Azide and Metallic Oxide Mixtures)

  • 이내우;최재욱;박광수;설수덕;왕석주
    • 한국안전학회지
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    • 제12권3호
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    • pp.106-113
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    • 1997
  • The thermal characteristics of two binary mixtures by sodium azide/manganese dioxide and ferric oxide, two ternary mixtures by sodium azide/silicon dioxide/manganese dioxide and ferric oxide were studied to obtain the basic data of gas-generating agents for air bags. The thermal reaction for all mixtures started at about $420^{\circ}C$, but the temperature at which the reaction rate reached a maximum was different with the states of samples. According to reaction results, nitrogen, nitrogen oxide and nitrogen dioxide were detected by GC-MS and so many kinds of new chemicals from sodium azide and metal oxide mixtures by XRD. NMS is considered as most stable and reasonable mixture for this types of gas-generating agents.

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Preparation of high Purity manganese oxide by Pyrolysis of solution extracted from ferromanganese dust in AOD process

  • Lee, Gye-Seung;Song, Young-Jun;Kim, Mi-Sung;Shin, Kang-Ho;Cho, Dong-Sung
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2001년도 The 6th International Symposium of East Asian Resources Recycling Technology
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    • pp.409-412
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    • 2001
  • The high purity manganese oxides were made from the dust, generated in AOD process that produces a medium-low carbon ferromanganese and collected in the bag filter. Manganese oxide content in the dust was about 90%, and its phase was confirmed as Mn₃O₄. In the extraction of manganese, because of remaining amorphous MnO₂, the dust was reduced to MnO by roasting with charcoal. The pulp density of the reduced dust can control pH of the solution more than 4 and then Fe ion is precipitated to a ferric hydroxide. Because a ferric hydroxide co precipitates with Si ion etc, Fe, Si ion was removed f개m the solution. Heating made water to be volatized and nitrates was left in reactor Then nitrates were a liquid state and stirring was possible. Among the nitrates in reactor, only the manganese nitrate which have the lowest pyrolysis temperature pyrolyzed into β-MnO₂powder and NO₂(g) at the temperature less than 200℃. When the pyrolysis of manganese nitrate has been completed about 90%, injection of water stopped the pyrolysis. Nitrates of impurity dissolved and the spherical high purity β-MnO₂powders were obtained by filtering and washing. Mn₂O₃or Mn₃O₄ powder could be manufactured from β-MnO₂powder by controlling the heating temperature. Lastly, a manufactured manganese oxide particle has 99.97% purity.

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Suppression of Methane Emission from Rice Paddy Soils with Fly ash Amendment

  • Ali, Muhammad Aslam;Oh, Ju-Hwan;Kim, Pil-Joo
    • 한국환경농학회지
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    • 제26권2호
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    • pp.141-148
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    • 2007
  • Fly ash, a by-product of the coal-burning industry, and a potential source of ferro-alumino-silicate minerals, which contains high amount of ferric oxide and manganese oxide (electron acceptors), was selected as soil amendment for reducing methane $(CH_4)$ emission during rice cultivation. The fly ash was applied into potted soils at the rate of 0, 2, 10, and 20 Mg $ha^{-1}$ before rice transplanting. $CH_4$ flux from the potted soil with rice plants was measured along with soil Eh and floodwater pH during the cropping season. $CH_4$ emission rates measured by closed chamber method decreased gradually with the increasing levels of fly ash applied but rice yield significantly increased up to 10 Mg $ha^{-1}$ application level of the amendment. At this amendment level, total seasonal $CH_4$ emission was decreased by 20% along with 17% rice grain yield increment over the control. The decrease in total $CH_4$ emission may be attributed due to suppression of $CH_4$ production by the high content of active and free iron, and manganese oxides, which acted as oxidizing agents as well as electron acceptors. In conclusion fly ash could be considered as a feasible soil amendment for reducing total seasonal $CH_4$ emissions as well as maintaining higher grain yield potential under optimum soil nutrients balance condition.

망간침출액에서 불화칼슘화에 의한 高純度 망간酸化物의 製造 (Production of High purity $Mn_3O_4$Powder by Precipitation of Calcium fluoride in the Manganese Leaching Solution)

  • 한기천;이계승;최재석;신강호;조동성
    • 자원리싸이클링
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    • 제11권1호
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    • pp.3-8
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    • 2002
  • 고탄소페로망간을 중저탄소페로망간으로 제조하는 AOD공정에서 발생되는 분진은 약 90%가 $Mn_3$$O_4$이므로, 이를 이용하여 soft ferrite의 원료인 고순도 $Mn_3$$O_4$분말을 제조하기 위해서는 침출한 액의 Mn을 더욱 정제하여야 한다. 분진을 활성탄으로 배소하여 MnO로 환원시키고, 상온의 4N 염산수용액에 180g/L의 환원된 분진을 첨가하면 용액의 pH가 5이상이 되고 Fe와 Si가 침전으로 제거된 약 10%의 망간침출액이 얻어진다. Mn의 농도가 약 15000 ppm이 되도록 희석한 $70^{\circ}C$의 침출액에 F의 농도가 3000ppm이 되도록 $NH_4$F를 첨가하면 Ca가 침전하여 약14 ppm이하로 제거된다. Ca를 침전시킨 상징액에(NH$ 1.5M_4$)$_2$$CO_3$수용액을 2L/min으로 Mn의 당량만큼 첨가하면 미립의 고순도 $MnCO_3$가 침전한다. 침전을 여과하고 건조한 후에 $1000^{\circ}C$에서 2 시간 소성하면 median size가 $8.2mu$m인$ Mn_3$O$_4$를 얻을 수 있다. 제조된 산물은 99%이상의 순도로 soft ferrite용 Mn$O_3$$_4$분말의 규격을 만족한다.

용해도 차이를 이용한 질산망간 용액의 정제 (Refinement of the manganese nitrate solution prepared by leaching the reduced Ferromanganeses dust with nitric acid.)

  • 조영근;송영준;이계승;신강호;김형석;김윤채;조동성
    • 자원리싸이클링
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    • 제12권1호
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    • pp.33-40
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    • 2003
  • 약 90%의 $Mn_3$$O_4$를 함유하는 고탄소폐로망간을 중저탄소폐로망간으로 제조하는 과정의 bag filter에 채집된 분진에는 소량의 Na, K, Fe, Si, Ca, Mg등의 불순물이 함유된다. 환원배소로 망간을 MnO의 상태로 만든 분진을 질산으로 침출하여 고농도 망간 침출액을 조제하고, 조제된 침출액에서 불순물을 제거하기 위한 기초실험을 하였다. 침출액중의 철 성분은 침출액의 pH를 4 이상으로 하여 수산화철 침전을 생성시킨 다음 여과에 의해 제거하므로써 여액 내의 잔류농도가 수ppm 이하가 되도록 하였고, 이 때 규소성분도 수산화철과 함께 공침시켜 10ppm 이하로 제거하였다. 4N의 질산을 사용하는 경우 질산 $1ell$ 대하여 환원된 분진 150g을 첨가하면 침출액의 pH가 4이상으로 되어 철과 규소 성분이 제거된 Mn농도가 약 10%인 침출액을 조제 할 수 있었다. 그리고 Ca 와 Mg를 옥살산염 형태로 침전시켜 제거할 목적으로 수행한 단일 옥살산염 수용액에서의 Mn과 Ca, Mg의 용해 및 침전 특성 조사에서는 수용액의 온도가 높을수록 반응속도가 빨라져 Mg의 제거에 유리하며, pH가 낮을수록 고농도의 Mn용액을 얻을 수 있으며 이 때 용액내의 Ca/Mn 및 Mg/Mn은 pH에 관계없이 일정하였다.