• Title/Summary/Keyword: Ferrous

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Study on Effect of Particle Size of Ferrous Iron and Polishing Abrasive on Surface Quality Improvement (자기연마가공에서 자성입자와 연마재의 크기에 따른 표면개선 효과)

  • Lee, Sung-Ho;Son, Byung-Hun;Kwak, Jae-Seob
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.38 no.9
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    • pp.1013-1018
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    • 2014
  • Magnetic Abrasive Polishing (MAP) process is a nontraditional method for polishing the surface of workpiece by using the flexibility of tool. At present, a mixture of polishing abrasives and ferrous particles is used as the tool in the MAP process. Previously, an experiment was conducted with different sizes of polishing abrasives with an aim to improve the polishing accuracy. However, the sizes of ferrous particles are also expected to have a dominant effect on the process, warranting a study on the effect of the size of ferrous iron particles. In this study, an experiment was conducted using three different sizes of ferrous particles. Iron powder of average diameters 8, 78 and $250{\mu}m$ was used as ferrous particles. The effect of each ferrous particle size was evaluated by comparing the improvements in surface roughness. The particle size of a ferrous iron was found to play a significant role in MAP and particles of $78{\mu}m$ facilitated the best improvement in surface roughness.

The effect of iron ions on the reducing of natural organic matter and THMFP in ozonation (오존 처리 시 철 2가 이온이 자연유기물질과 트리할로메탄 저감에 미치는 영향)

  • Kwak, Yeonwoo;Lee, Seulki;Jang, Gyuhwan;Hong, Seongho
    • Journal of Korean Society of Water and Wastewater
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    • v.33 no.6
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    • pp.447-456
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    • 2019
  • This study focused on natural organic matter and trihalomethane removal by ozonation with various ferrous concentration in surface water. Ozonation is more affected by injection concentration than reaction time. dissolved organic carbon removal rates in ozonation increased with the increase in ferrous concentration. The highest removal was obtained at 6 mg/L of ferrous concentration. When 1 mg/L of ferrous was added with 2 mg/L of ozone concentration, it was found to be a rapid decrease in specific ultraviolet absorbance at the beginning of the reaction because ferrous acts as a catalyst for producing hydroxyl radical in ozonation. As ozone concentration increased, trihalomethane formation potential decreased. When 2 mg/L of ozone was injected, trihalomethane formation potential was shown to decrease and then increase again with the increase in ferrous concentration.

Influence of Mineral Nutritions and Phosphorus Concentration in Culture Solution to the Ferrous Absorption of Rice and Barley (배양액중의 무기영양, 인산통도가 수도, 대맥의 철흡수에 미치는 영향)

  • Kyeong-Bea Park;Ho-Sung Ha
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.23 no.1
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    • pp.14-20
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    • 1978
  • To find out the influence of mineral nutritions and phosphorus concentration to ferrous absorption of rice and barley plants were studied in the culture solution which has various levels of ferrous and phosphorus with deficiency of mineral nuritiont. The ferrous absorption of rice and barley plants were greatly affected by phosphorus and potassium in the culture solution among mineral nutritions. The ferrous absorption was decreased with the increasing of phosphorus concentration. The rate of ferrous translocation was higher in barley plant than that of rice plant. And also, the symptoms of ferrous toxicity occurred easily in the barley plant. From these results, it was concluded that the ferrous was more influential upon the growth of barley than that of rice.

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Effect on the Formation of Fe3O4 with Ferrous Sulfate/Ferric Sulfate Molar Ratio (Fe3O4 생성에 미치는 황산제일철/황산제이철 몰비의 영향)

  • Eom, Tae-Hyoung;Tuan, Huynh Thanh;Kim, Sam-Joong;An, Suk-Jin;Oh, Kyoung-Hwan;Suhr, Dong-Soo
    • Korean Journal of Materials Research
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    • v.21 no.4
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    • pp.225-231
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    • 2011
  • The effect of ferrous/ferric molar ratio on the formation of nano-sized magnetite particles was investigated by a co-precipitation method. Ferrous sulfate and ferric sulfate were used as iron sources and sodium hydroxide was used as a precipitant. In this experiment, the variables were the ferrous/ferric molar ratio (1.0, 1.25, 2.5 and 5.0) and the equivalent ratio (0.10, 0.25, 0.50, 0.75, 1.0, 2.0 and 3.0), while the reaction temperature ($25^{\circ}C$) and reaction time (30 min.) were fixed. Argon gas was flowed during the reactions to prevent the $Fe^{2+}$ from oxidizing in the air. Single-phase magnetite was synthesized when the equivalent ratio was above 2.0 with the ferrous/ferric molar ratios. However, goethite and magnetite were synthesized when the equivalent ratio was 1.0. The crystallinity of magnetite increased as the equivalent ratio increased up to 3.0. The crystallite size (5.6 to 11.6 nm), median particle size (15.4 to 19.5 nm), and saturation magnetization (43 to 71 $emu.g^{-1}$) changed depending on the ferrous/ferric molar ratio. The highest saturation magnetization (71 $emu.g^{-1}$) was obtained when the equivalent ratio was 3.0 and the ferrous/ferric molar ratio was 2.5.

Iron Oxidation using Limestone in Groundwater (석회석을 이용한 지하수 철분 산화)

  • Sim, Sang Jun;Kang, Chang Duk;Lee, Ji Hwon;Cho, Young Sang
    • Journal of Korean Society of Environmental Engineers
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    • v.22 no.1
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    • pp.73-81
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    • 2000
  • The removal of ferrous iron (Fe(II)) in groundwater is generally achieved by simple aeration or the addition of oxidizing agent. Aeration followed by solid-liquid separation is the most commonly used as physico-chemical treatment method for iron removal. In general aeration has been shown to be very efficient in insolubilizing ferrous iron at the pH level greater than 6.5. In this study pH was maintained over 6.5 using limestone granules under constant aeration to oxidize ferrous iron. In batch experiments, oxidation rate of ferrous iron was investigated under different conditions including limestone granule size. initial concentration of the ferrous iron, pH, temperature and ionic strength in groundwater. The pH in groundwater was presumed as the most important factor determining oxidation rate of ferrous iron. According as the size of the limestone granules decreased, the pH of the iron contaminated water increased quickly and oxidation of the ferrous iron was achieved immediately too. The oxidation rate of the ferrous iron was found to be proportion to initial concentration of the iron contaminated water, temperature and ionic strength, respectively.

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A Review on the Demand and Supply of Major Non-Ferrous Metals and their Recycling of Scraps during 2014-2018 in Korea (국내 범용 비철금속의 2014-2018 년간 수요 공급과 스크랩 리싸이클링 현황 조사)

  • Park, Hyungkyu;Kang, Jungshin;Lee, Taehyuk;Lee, Jinyoung;Kim, Youngmin
    • Resources Recycling
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    • v.28 no.3
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    • pp.68-76
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    • 2019
  • It is very necessary for the metal recycling industries and the researchers to understand the current status of demand and supply of non-ferrous metals and their scraps. Domestic demand and supply of non-ferrous metals and their scraps have been surveyed and reported on the journal of the Korean Institute of Resources Recycling since ten years before. However, it was confined to six major non-ferrous metals such as copper, aluminum, zinc, lead, nickel and magnesium because there are so many kind of non-ferrous metals. In this article also, demand and supply of these non-ferrous metals in addition tin during recent five years (2014 ~ 2018) in Korean markets were reviewed, and their recycling ratio of scraps were briefly estimated. The statistical data were mainly cited from the data issued by Korea Customs Service (KCS) and Korea Non-Ferrous Metal Association, and some fragmental published review articles from magazines and other technical reports.

A Postscript of the Session Titled "Al-Mg Alloys Processes" in the 74th World Foundry Congress (제 74회 세계주조대회 "Al-Mg Alloys Processes" 세션을 마치며)

  • Seong-Ho Ha;Nam-Seok Kim;Young-Gil Jung;Seung-Yoon Yang;Kweon-Hoon Choi;Heon Kang;Bong-Hwan Kim;Young-Ok Yoon;Hyun-Kyu Lim;Shae-Kwang Kim;Franco Chiesa;David Levasseur;Jin-Kyu Lee;Sunki Kim;Dawid Kapinos;Boguslaw Augustyn;Bartłomiej Płonka;Sonia Boczkal;Jang Hum Yeon;Si Woo Lee;Jeong Hun Hong
    • Journal of Korea Foundry Society
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    • v.43 no.1
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    • pp.43-49
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    • 2023