• Title/Summary/Keyword: Ferric iron

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Improved Plant Growth from Seed Bacterization Using Siderophore Overproducing Cold Resistant Mutant of Pseudomonas fluorescens

  • Katiyar, Vandana;Goel, Reeta
    • Journal of Microbiology and Biotechnology
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    • v.14 no.4
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    • pp.653-657
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    • 2004
  • The cold resistant mutants of P. fluorescens strain $PRS_{9}$ and ATCC13525 were developed which could grow equally well at $28^{\circ}C$ and $10^{\circ}C$. All the mutants were tested for siderophore production, of which $CRPF_9$ (ATCC13525 mutant) was selected, as there was a 16.8-fold increase when compared to its wild-type. Under in vitro conditions, $CRPF_9$ showed better growth promotion both in wheat (29.1% increase in root length) and mung bean (51.5% increase in root length) at $10^{\circ}C$. Greenhouse trials showed a significant increase in root (13.84cm) and shoot (15.0cm) length of $CRPF_9$-treated mung bean seeds, indicating increased rhizocompetence of the mutant. Ferric citrate was a better iron source than ferric hydroxide for plant growth.

필터시스템을 이용한 비소처리흡착제의 성능비교분석

  • Bang Seon-Taek;Kim Ju-Yong;Kim Gyeong-Ung
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 2005.04a
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    • pp.13-16
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    • 2005
  • Laboratory and field experiments were conducted to study the effectiveness of five adsorbents for the removal of arsenic. The adsorbents included activated alumina (AA), iron coated AA (ICAA), and granular ferric hydroxide (GFH), granular ferric oxide (GFO), and granular titanium dioxide (GTD). Laboratory experiments were conducted to investigate arsenic removal using challenge water prepared in accordance with NSF International Standards 53 (ANSl/NSF 53-2001). Field experiments were conducted using arsenic-contaminated groundwater In laboratory experiment, the treatment capacity decreased in the following order GTD > GFO > GFH. In contrast, the treatment capacity decreased in the following order GFO > GTD > GFH > ICAA > Ah in field experiments.

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The Effect of the Use of Sodium Hypochlorite and Iron Salts on Sewage Sludge Dewaterability (차아염소산과 철염을 이용한 하수슬러지의 탈수효과)

  • Sung, Il-Wha
    • Journal of Environmental Health Sciences
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    • v.35 no.1
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    • pp.58-63
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    • 2009
  • This study investigated improvement to sludge dewaterability and coagulation for sewage treatment plant sludge by using sodium hypochlorite solution (NaOCl), ferric sulfate [$Fe_2(SO_4)_3$] and zeolite. The specific resistance to filtration(SRF), chloride, pH and turbidity were used to evaluate the sludge dewatering behaviors. The results of study were as follows: By varying the amount of NaOCl added the optimum result in terms of enhancement for pretreatment occurred when 34 mg/l of NaOCl was injected. When the total solids concentration of the sludge was 10,000 mg/l, the optimum ferric sulfate dosage for the sludge dewaterability was 150 mg/l and the corresponding SRF was $1.7{\times}10^7sec^2/g$. It was observed that injecting zeolite into sludge was effective in improving the dewaterability of sludge.

M ssbauer Study and Atomic Migration in MgFe2O4

  • Lee, Seung Wha;Yoon, Sung Hyun;An, Sung Yong;Kim, Woo Chul;Kim, Chul Sung
    • Journal of Magnetics
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    • v.4 no.4
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    • pp.115-118
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    • 1999
  • $MgFe_2O_4$ has been studied with X-ray diffraction, M ssbauer spectroscopy and vibration sample magnetometer (VSM). The crystal structure of the sample is found to have a cubic spinel structure with a lattice constant of $a_0=8.390$\pm$0.005$\AA$.$ The iron ions at both A (tetrahedral) and B (octahedral)sites are found to be in ferric high-spin states. Its Neel temperature TN is found to be 710$\pm$3 K. The Debye temperature for the A and B sites found to be 417$\pm$5 K and 331$\pm$5 K., respectively. Atomic migation from the A to the B sites starts near 425 K and increases rapidly with increasing temperature to such a degree that 31% of the ferric ions at the A sites have moved over to the B sites by 600 K.

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

  • Eom, Tae-Hyoung;Kim, Sam-Joong;An, Suk-Jin;Oh, Kyoung-Hwan;Suhr, Dong-Soo
    • Journal of the Korean Magnetics Society
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    • v.21 no.5
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    • pp.157-162
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    • 2011
  • The effect of ferrous/ferric molar ratio and precipitants on the formation of nano size magnetite particle was investigated by coprecipitation method. Ferrous sulfate and ferric sulfate were used as iron sources and sodium hydroxide and ammonium hydroxide was used as a precipitant. Single phase magnetite was synthesized with all of experiment conditions (ferrous/ferric molar ratios and precipitants). Particle size was smaller, and particle size distribution was narrower when NaOH was used than $NH_4OH$ was used. The crystallinity and particle size was increased and narrower particle size distribution with increasing molar ratio ferrous/ferric sulfate with the same precipitant. Super paramagnetism could be obtained at all of experiment conditions. The highest saturation magnetization (72 emu/g) was obtained when the ferrous/ferric molar ratio was 2.5 and precipitant was used $NH_4OH$.

Immobilization of Arsenic in Tailing using the Hydmgen-Peroxide (과산화수소를 이용한 광미중 비소의 불용화)

  • 정익재;최용수;박흥목
    • Journal of Korea Soil Environment Society
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    • v.4 no.3
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    • pp.67-75
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    • 1999
  • It is difficult to remedy tailings and soils including arsenic because arsenic compounds show anionic behaviour in natural condition and have chemical diversity by Eh/pH. This study was carried out to develop immobilization method of arsenic and iron in tailings and soils into ferric arsenate using hydrogen peroxide. According to experimental results, concentrations of arsenic and iron extracted from tailing of closed Gubong mine were reduced up to 84% and 93%, respectively. in this experiment. arsenic concentration decreased with an increase of hydrogen peroxide dosage. It was also showed that only 10% of arsenic and 20% of iron were extracted from the re-extraction experiments. Therefore, soil and tailing remedied by this method will be able to maintain long-time stability.

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점토로부터 철불순물의 생물학적 제거에 미치는 탄소원의 영향

  • Lee, Eun-Young;Cho, Kyung-Suk;Ryu, Hee-Wook;Bae, Moo
    • Microbiology and Biotechnology Letters
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    • v.25 no.6
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    • pp.552-559
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    • 1997
  • Fe (III) impurities in clay could be microbially removed by inhabitant dissimilatory Fe (III) reducing microorganisms. Insoluble Fe (III) in clay particles was leached out as soluble reductive form, Fe (II). The microorganisms removed from 10 to 45% of the initial Fe (III) when each sugar was supplemented to be in ranges of 1 - 5 % (w/w; sugar/clay). The microorganisms reduced 2.1 - 12.8 mol of Fe (III) per 100 mol of carbon in sugars metabolized when sugars such as glucose, maltose, and sucrose were used as sole carbon source. Bacillus sp. IRB-W and Pseudomonas sp. IRB-Y were isolated from the enrichment culture of the clay. The isolates were considered to participate in metabolizing organic compounds to fermentative intermediates with relatively little Fe (III) reduction at initial Fe (III) reduction process. By the microbial treatment, the whiteness of the clay was increased form 63.20 to 79.64, whereas the redness was obviously decreased form 13.47 to 3.55. This treatment did not cause any unfavorable modifications in mineralogical compositions of the clay.

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The Concentration And Distribution Of Iron In Yeongil Bay Water Of Korea, Late October (가을철 영일만 해수중의 철분량과 그 분포)

  • Kwak, Hi-Sang
    • 한국해양학회지
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    • v.12 no.1
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    • pp.48-53
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    • 1977
  • Various types of iron were determined in 5 meters interval from surface to bottom layers in Yeongil Bay water of Korea, late October 1973. The contents of every type of iron decreased outward from the inner part to the entrance of the bay. But there was not any difference in iron contents among the water masses. Particulate iron and ferric iron were lower in the entrance and central parts than in the inner parts of the bay. It seemed to be caused by turbidity. The concentration of soluble iron showed higher value at the area of entrance of harbour than those of any other stations. It suggests that there may be the origin of pollutants.

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Comparison of Solvent Extraction of Iron(III) from Chloride Solution between Alamine336 and TBP by Using Extraction Isotherm (등온적출곡선(等溫摘出曲線)에 의한 염산용액(鹽酸溶液)에서 TBP와 Alamine336의 철 추출(抽出) 비교(比較))

  • Lee, Man-Seung;Kwak, Young-Ki
    • Resources Recycling
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    • v.17 no.3
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    • pp.29-34
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    • 2008
  • Solvent extraction behaviors of iron(III) from chloride solution at high ionic strength condition between Alamine336 and TBP were compared by using MaCabe-Thiele diagram. Extraction isotherms of iron by the two extractants were obtained by calculating the equilibrium concentrations of iron in both phases from the initial extraction conditions. In calculating the equilibrium concentration of iron, chemical equilibria in the aqueous phase and mass balance together with the solvent extraction reaction were considered. MaCabe-Thiele diagram of iron by 1M Alamine336 indicated that two extraction stages could lead to complete extraction of 0.5M iron from 3M HCl solution at an A/O ratio of 6/5. The extraction power of 1M Alamine336 was found to be the same as 2-3M TBP. MaCabe-Thiele diagram together with the physical properties of the two extractants indicated that Alamine336 is superior to TBP in extracting ferric iron from chloride solution.

A study on Bacterical Leaching of Low-Grade Copper Mineral(III) (저품위 동광석의 세균침출에 관한 연구 3)

  • 이강순;민봉희;장정순
    • Korean Journal of Microbiology
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    • v.11 no.2
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    • pp.69-78
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    • 1973
  • In order to investigate the distribution of an iron-oxidizing bacterium, Ferrobacillus ferrooxidans in Korea, the authors had carried out the chemical and microbiological analysis of mine water. The results obtained were as follows : 1. Ferrobacillus ferrooxidans concerned to leaching was isolated from 10 copper mine water out of 46 sites in Korea. 2. As the results of bacterial oxidation, the contents of sulfuric acid, ferric sulphate and copper in the bacteria-bearing solutions were higher than those in bacteria-free solutions.

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