• 제목/요약/키워드: Metal-chelating

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Chintin, Chitosan, Cellulose 및 혼합 Beads의 중금속 이온 흡착특성에 관한 연구 (Study on the adsorption of Heavy Metals by Chitin, Chitosan, Cellulose and its Composite Beads)

  • 전수진;유병태
    • 환경위생공학
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    • 제10권2호
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    • pp.1-12
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    • 1995
  • Under accelerated industrial developments environment pollution comes out to be very stirious. Especially the ions of heavy metal from wastewater, even if they are minimal, accumulated in ecology circle and do finally injury to human health. The general process for removal of heavy metals include coagulation and following sedimentation, ion -exchange and active carbon adsorption and sedimentation that applicate in popular, needs the expense of coagulant the additional treatment of sludge on the general process of coagulation and sedimentation. It is also a serious problem that the second pollution caused by coagulant. However chelating adsorption that uses natural chelating high- molecular compound has not pollution problem Among chelating high- molecules, the diminishing chitin that contained in crustaceans as crawfish and crab in our country with affluent water resources are easy to get. So it is advantageous to use this ubiquitous material for removing heavy metals because we could reuse natural resource. In this research, the author tested the effectiveness of the adsorption and removal of heavy metal ions by chitin and its derivatives. Chitin and cellulose became beads and used as flocculant, in this test. The results are as follows . First, bead showed higher removal ratio than powder in the comparative test on adsorbents such as chitin, chitosan and cellulose. Secondly, in the variety test by the kinds of adsorbent and time. chitosan bead and cellulose bead that showed the highest removal ratio. One hour need to remove the ions of heavy metal. Thirdly, the results of the adsorption degree test by pH revealed high removal ratio adsorption of chitin, cellulose and chitosan bead in alkalin condition but chitosan bead in acidic condition.

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XAD-16-[4-(2-thiazolylazo)]orcinol 킬레이트 수지에 의한 금속이온의 분리 및 농축에 관한 연구 (Studies on the Separation and Preconcentration of Metal Ions by XAD-16-[4-(2-thiazolylazo)] orcinol Chelating Resin)

  • 이원;설경미;안혜숙;이창헌;임재희
    • 분석과학
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    • 제10권4호
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    • pp.282-290
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    • 1997
  • XAD-16-[4-(2-thiazolylao)]orcinol (TAO)형 킬레이트 수지에 대한 U(VI), Tb(IV), Zr(IV), Cu(II), Pb(II), Ni(II), Zd(II), Cd(II) 및 Mn(II) 이온의 흡착 및 탈착 특성을 용리법으로 조사하였다. 각 금속이온의 총괄용량과 pH 변화에 따르는 혼합 금속이온의 분리능 및 금속이온의 최적 흡착 조건을 조사하기 위하여 금속이온의 흡착에 미치는 흐름속도, 완충용액의 농도에 대한 영향을 검토하였다. 킬레이트 수지에 의한 금속이온의 총괄 흡착 용량은 각각 0.35nmol U(VI)/g resin, 0.49nmol Th(VI)/g resin, 0.41nmol Cu(II)/g resin 및 0.31nmol Zr(IV)/g resin이었다. 그리고 pH 5.0에서 돌파점 용량과 총괄 용량으로부터 얻은 금속이온의 용리순서는 Th(IV)>Cu(II)>U(VI)>Zr(IV)>Pb(II)>Ni(II)>Zn(II)>Mn(II)>Cd(II)이었다. 흐름속도 0.28mL/min 및 pH 2~5범위에서 혼합 금속이온을 분리한 결과 pH가 증가함에 따라 이들 이온의 군분리가 가능하였다. 한편, $HNO_3$, HCl, $HClO_4$, $H_2SO_4$$Na_2CO_3$ 등의 탈착제에 의한 탈착특성을 조사한 결과 2M $HNO_3$는 Zr(IV)을 제외한 대부분의 금속이온들은에 대하여 높은 탈착효율을 나타냈으며, 1M $H_2SO_4$ 용액을 사용하면 Zr(IV)의 탈착 및 회수가 가능하였다. 또한 킬레이트 수지를 이용하여 미량의 U(VI) 이온이 함유된 인공 해수 시료를 용리시키고 회수한 결과 94%이상의 높은 회수율을 나타내었다. 아울러 XAD-16-TAO 킬레이트 수지는 희토류 금속의 혼합시료를 2M $HNO_3$ 용액으로 용리시키면 U(VI)의 선택적인 분리, 농축 및 회수에 유용함을 알 수 있었다.

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Fe(II)와 Cu(II)에 의해 킬레이트화 된 수수추출물 함유 바이오플라스틱의 색상 안정성 (Color Stability of the Bioplastic containing Sorghum Extract Chelated by Fe(II) and Cu(II))

  • 이가현;이성준;정상원;김현철;최진현;배도규;한상익;이세근
    • 한국염색가공학회지
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    • 제27권1호
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    • pp.62-69
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    • 2015
  • To improve the color stability of the bioplastic containing sorghum extract, sorghum extract was chelated by a metal ion. The chelating activity was quantitatively evaluated under the various conditions. Chelation of sorghum extract by Cu(II) was determined by reaction with pyrocatechol violet, whereas Fe(II) chelation was investigated by forming complexes with ferrozine. Chelation of sorghum extract was increased rapidly with increasing concentrations of metal salt and sorghum extract. At a 0.1g/L metal salt addition level, the chelating activity of Fe(II) and Cu(II) were 66.7% and 54.2%, respectively. According to the chelation pH conditions, the sorghum extract was chelated almost 100% by Fe(II) above the pH 6.5. It was confirmed that Fe(II) was a strong chelator of sorghum extract than Cu(II). The sorghum extract chelated with metal salt exhibit higher thermal stability. The bioplastic containing chelated sorghum extract showed relatively less color change than the control.

Metal Biosorption by Surface-Layer Proteins from Bacillus Species

  • Allievi, Mariana Claudia;Florencia, Sabbione;Mariano, Prado-Acosta;Mercedes, Palomino Maria;Ruzal, Sandra M.;Carmen, Sanchez-Rivas
    • Journal of Microbiology and Biotechnology
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    • 제21권2호
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    • pp.147-153
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    • 2011
  • Bacillus species have been involved in metal association as biosorbents, but there is not a clear understanding of this chelating property. In order to evaluate this metal chelating capacity, cultures and spores from Grampositive bacteria of species either able or unable to produce surface layer proteins (S-layers) were analyzed for their capacity of copper biosorption. Only those endowed of S-layers, like Bacillus sphaericus and B. thuringiensis, showed a significant biosorption capacity. This capacity (nearly 50%) was retained after heating of cultures, thus supporting that structural elements of the envelopes are responsible for such activity. Purified S-layers from two Bacillus sphaericus strains had the ability to biosorb copper. Copper biosorption parameters were determined for strain B. sphaericus 2362, and after analyses by means of the Langmuir model, the affinity and capacity were shown to be comparable to other bacterial biosorbents. A competitive effect of $Ca^{2+}$ and $Zn^{2+}$, but not of $Cd^{2+}$, was also observed, thus indicating that other cations may be biosorbed by this protein. Spores that have been shown to be proficient for copper biosorption were further analyzed for the presence of S-layer content. The retention of S-layers by these spores was clearly observed, and after extensive treatment to eliminate the S-layers, the biosorption capacity of these spores was significantly reduced. For the first time, a direct correlation between S-layer protein content and metal biosorption capacity is shown. This capacity is linked to the retention of S-layer proteins attached to Bacillus spores and cells.

Multiform Oxide Optical Materials via the Versatile Pechini-type Sol-Gel Process

  • Lin, J.
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2008년도 International Meeting on Information Display
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    • pp.1247-1250
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    • 2008
  • This presentation highlights work from the authors' laboratories on the various kinds of oxide optical materials, mainly luminescence and pigment materials with different forms (powder, core-shell structures, thin film and patterning) prepared by the Pechini-type sol-gel (PSG) process. The PSG process which uses the common metal salts (nitrates, acetates, chlorides etc) as precursors and citric acid (CA) as chelating ligands of metal ions and polyhydroxy alcohol (such as ethylene glycol or poly ethylene glycol) as cross-linking agent to form a polymeric resin on molecular level, allowing the preparation of many forms of luminescent materials.

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Evaluation of Antioxidant Activity of Essential Oil from Artemisia vulgaris

  • Bhatt, Lok Ranjan;Lee, Jae-Sug;Baek, Seung-Hwa
    • 동의생리병리학회지
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    • 제21권2호
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    • pp.528-531
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    • 2007
  • Artemisia vulgaris essential oil exhibited a strong metal chelating activity but withlow reducing power, and radical scavenging activity. However, a gradual increase in the radical scavenging activity was obtained with increasing concentration and reaction time.

Development of nano-and meso- inorganic membrances for the environmental applications

  • Yi, Jong-Heop
    • 한국막학회:학술대회논문집
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    • 한국막학회 2004년도 첨단 분리막 연구동향
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    • pp.37-59
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    • 2004
  • Advantages : - Multi-functionality of inorganic surface ㆍMetal chelating ligand $\longrightarrow$ metal recovery .Alkylation $\longrightarrow$ hydrophobicity control - Enhanced stability ㆍThermal, mechanical and chemical stability ㆍSeparation in high temperature and pressure (omitted)

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