• 제목/요약/키워드: heavy metal removal

검색결과 483건 처리시간 0.026초

회분식 반응기에서 조류 Spirulina 균체내 중금속 흡착 특성 (Biosorption Characteristics of Heavy Metal by Algae, Spirulina in the Batch Reactor)

  • 신택수;주소영;김재용
    • 환경위생공학
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    • 제13권1호
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    • pp.112-122
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    • 1998
  • In recent years the accumulation of heavy metals in microorganisms, the biosorption has received much attention because of various environmental application. We have been to research the biosorption characteristics using algae, Spirulina, for the removal of heavy metal ions in industrial and polluted waters. In the adsorption of single heavy metal ions, the adsorption equilibrium was reached within 10min., and optimum pH and reaction temperature were 4.5-5 and 30-35$\circ $C, respectively. Under the above conditions, the maximum amounts of Pb, Cu, and Cd adsorbed to the unit weight of Spirulina were 107.6mg/g, 78.0mg/g, and 65.6mg/g, and three values were 1.45, 1.56, and 1.26 times higher than those adsorbed to the unit weight of activated carbon under same conditions. The adsorption kinetics of Pb, Cu, and Cd were fitted very well to the Freundlich isotherm and BET isotherm. Biosorption experiments in single ion solutions and binary ions solutions showed higher removal efficiency in the single ion solutions than in binary ions solutions.

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준설토 산세척 시 염산 농도가 중금속의 정화효율 및 존재형태에 미치는 영향 (Effect of Hydrochloric Acid Concentration on Removal Efficiency and Chemical Forms of Heavy Metals During Dredged Sediment Acid Washing)

  • 김기범;최용주
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제25권1호
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    • pp.74-83
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    • 2020
  • In this study, the effect of hydrochloric acid (HCl) concentrations on removal efficiency and chemical forms of heavy metals in dredged sediment during acid washing was investigated. The removal efficiencies of Zn, Cu, Pb, Ni and Cd by acid washing were 18.4-92.4%, 7.2-83.7%, 9.4-75%, 8.1-53.4% and 34.4-70.8%, respectively. Overall, the removal efficiencies of heavy metals were remarkably enhanced with the increase of the acid strength. However, the removal efficiencies for 0.5 and 1.0 M HCl were comparable, and both cases met the Korean soil contamination standard. Based on the sequential extraction results, concentration of the exchangeable fraction (F1), the most labile fraction, increased whereas concentrations of the other fractions decreased with increasing acid strength. Particularly, the carbonate (F2) and Fe/Mn oxides (F3) fractions drastically decreased by using 0.5 M or 1.0 M HCl. The current study results verified that acid washing could effectively reduce heavy metal concentrations and its potential mobility in dredged sediments. However, the study also found that acid washing may cause significant increase in bioavailable fraction of heavy metals, suggesting the need to evaluate the changes in chemical forms of heavy metals by acid washing when determining the acid strength to be applied.

황산바륨의 공침현상을 이용한 중금속 이온의 제거 (Removal of heavy metal by coprecipitation with barium sulfate)

  • 임헌성;임석근
    • 분석과학
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    • 제19권4호
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    • pp.280-284
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    • 2006
  • The objective of this study is to investigate the removal of heavy metal by using the coprecipitation of barium sulfate. Several parameters governing the efficiency of the coprecipitation method were evaluated by the pH of sample solution, amount of coprecipitant, and addition of sulfide for the removal of As(V), Cd(II), Cr(III), Cr(VI), Cu(II), Hg(II) and Pb(II) metal ions ($10{\mu}g/ml$ each). The coprecipitation was about 80% - 95% only for lead at low pH but under 10% for other ions. The amount of removal was about 95% - 100% for Cd, Hg, Pb, Cu in the all pH range by the addition of sulfide with barium sulfate but As(V) and Cr(III, VI) ions were not affected by the same conditions.

use of immobilized cells

  • Jeong, B.C.;Macaskie, L.E.
    • 미생물과산업
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    • 제19권4호
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    • pp.2-13
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    • 1993
  • Some microorganisms, including actinomycetes, cyanobacteria, and other bacteria, algae, fungi, and yeast, can accumulate and retain relatively high quantities of heavy metals and radionuclides from their external environments (1-4). Both living and dead cells can be used for biosorptive metal/radionuclide removal from solution. Thus microorganisms and products excreted by or derived from microbial cells (2) may provide an alternative or adjunct to conventional techniuqes of metal removal and recovery. Recent approaches have separated the microbial growth and metal removal process to manipulate production of metal-adsorptive capacity of bacteria and metal removal process. If pre-grown cells are immobilized and used for metal removal, mathematical modeling can be applied to predict immobilized cell reactor behavior under specific process conditions. Waste and microbial adsorbent could be separated from the treated flow in one step. Once treated, the metal waste is concentrated in a small volume of sorbed form for easy metal disposal or recovery.

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유독 중금속 오염물질 처리를 위한 미생물균주의 최근 이용 및 개발 (Recent Development of Removal and Treatment of Toxic Heavy Metals by Microorganisms)

  • 방상원;최영길;한명수
    • 환경생물
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    • 제19권2호
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    • pp.93-99
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    • 2001
  • 중금속을 처리하는 방법에는 일반적으로 화학적, 물리적 그리고 생물학적 처리방법 등이 있다. 이중 생물학적 처리방법은 미생물들의 자연 생체기작을 이용하는 방법으로, 생체축적 (biosorption & bioaccumulation), 산화환원반응 (oxidation & reduction), 메칠화 및 탈메칠화반응 (methylation & demethylation), 금속 유기물질 복합반응 (metal-organic complexation)과 비용해성 복합체형성 (insoluble complex formation) 등의 기작을 이용한 방법이다. 이런 중금속에 대한 생물학적 기작들은 중금속으로 오염된 환경을 복원시키는 데에 중요한 기술기반을 제공한다. 최근 금속의 종류와 미생물균주의 종류와 조건 그리고 오염환경에 따른 다양한 방법의 중금속 처리들이 제시되었고, 이는 주로 곰팡이, 박테리아, 조류(algae) 등을 이용한 방법들이다. 또한 분자생물학의 발전과 더불어 중금속 제거능력을 배가시킨 균주의 최근 개발시도는 기존의 생물학적 처리방법을 개량 발전시킬 수 있는 가능성을 제시하고 있다.

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Cu-Zn 금속합금의 산화 환원반응과 Al-Silicate의 흡착반응을 이용한 폐수 중 중금속처리에 관한 연구 (A Study on the Treatment of Heavy Metal in Wastewater by Redox Reaction of Cu-Zn Metal Alloy and Adsorption reaction of Al-Silicate)

  • 이수정;김종화;송주영
    • 한국응용과학기술학회지
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    • 제33권3호
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    • pp.441-448
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    • 2016
  • 본 연구는 구리 아연 금속합금의 산화 환원 반응과 합성 알루미늄 실리케이트의 흡착 반응을 이용한 폐수 중 중금속 처리에 관한 연구이다. 극세사 형태로 제조된 구리 아연 금속합금이 수용액 중에서 산화 환원반응에 의해 아연보다 이온화 경향이 작은 중금속은 환원 처리되고, 이온화 된 아연 및 미반응 중금속은 흡착 처리하여 제거하는 연구이다. 극세사 형태로 제조된 금속합금 물질은 표면적이 커서 1회 처리만으로도 반응 평형에 도달하게 하여 효율이 높은 것으로 나타났다. 크롬($Cr^{+3}$)은 redox 반응 1회 처리만으로도 100.0 % 제거 되었으며, 수은은 98.0 %, 주석 92.0 %, 구리는 91.4 % 정도 제거되었다. 카드뮴, 니켈, 납도 각각 40.0 %, 50.0 %, 58.0 %가 제거 되었다. 크롬($Cr^{+3}$)은 아연과 이온화 경향 차이가 거의 없지만 제거 효율이 높은 것으로 나타났는데 이는 3가 크롬은 이온 상태로 존재하면 redox 반응에서 발생한 $OH^-$ 이온과 결합하여 수산화물 침전을 형성하는 것으로 판단된다. Redox 반응 후 증가한 아연 및 미반응 중금속 농도를 알루미늄실리케이트를 1회 통과하여 거의 100.0 % 제거할 수 있었다. 이는 합성 알루미늄 실리케이트의 비표면적이 크고 금속 이온의 흡착능력이 우수한 것으로 나타났으며, 반응 후 알루미늄 이온은 증가하지 않는 것으로 보아 이온 교환이 아닌 흡착으로 아연 및 중금속 이온들을 제거할 수 있는 것으로 나타났다.

Removal of Cu(II) ions by Alginate/Carbon Nanotube/Maghemite Composite Magnetic Beads

  • Jeon, Son-Yeo;Yun, Ju-Mi;Lee, Young-Seak;Kim, Hyung-Il
    • Carbon letters
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    • 제11권2호
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    • pp.117-121
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    • 2010
  • The composites of alginate, carbon nanotube, and iron(III) oxide were prepared for the removal of heavy metal in aqueous pollutant. Both alginate and carbon nanotube were used as an adsorbent material and iron oxide was introduced for the easy recovery after removal of heavy metal to eliminate the secondary pollution. The morphology of composites was investigated by FE-SEM showing the carbon nanotubes coated with alginate and the iron oxide dispersed in the alginate matrix. The ferromagnetic properties of composites were shown by including iron(III) oxide additive. The copper ion removal was investigated with ICP AES. The copper ion removal efficiency increased greatly over 60% by using alginate-carbon nanotube composites.

마이크로나노버블 토양세척시스템 및 산세척 복합공정의 산 농도변화에 따른 중금속 제거효율에 관한 연구 (Heavy Metal Removal Efficiency in Accordance with Changes in Acid Concentrations in a Micro-nano Bubble Soil Washing System and Pickling Process)

  • 정진희;최호은;정병길;성낙창;이기철;최영익
    • 한국환경과학회지
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    • 제26권1호
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    • pp.23-28
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    • 2017
  • This study was aimed at determining the changes in heavy metal removal efficiency at different acid concentrations in a micro-nanobubble soil washing system and pickling process that is used to dispose of heavy metals. For this purpose, the initial and final heavy metal concentrations were measured to calculate the heavy metal removal efficiency 5, 10, 20, 30, 60, and 120 min into the experiment. Soil contaminated by heavy metals and extracted from 0~15 cm below the surface of a vehicle junkyard in the city of U was used in the experiment. The extracted soil was air-dried for 24 h, after which a No. 10 (2 mm) was used as a filter to remove large particles and other substances from the soil as well as to even out the samples. As for the operating conditions, the air inflow rate in the micro-nano bubble soil washing system was fixed at 2 L/min,; with the concentration of hydrogen peroxide being adjusted to 5%, 10%, or 15%. The treatment lasted 120 min. The results showed that when the concentration of hydrogen peroxide was 5%, the efficiency of Zn removal was 27.4%, whereas those of Ni and Pb were 28.7% and 22.8%, respectively. When the concentration of hydrogen peroxide was 10%, the efficiency of Zn removal was 38.7%, whereas those of Ni and Pb were 42.6% and 28.6%, respectively. When the concentration of hydrogen peroxide was 15%, the efficiency of Zn removal was 49.7%, whereas those of Ni and Pb were 57.1% and 42.6%, respectively. Therefore, the efficiency of removal of all three heavy metals was the highest when the hydrogen peroxide concentration was 15%.

Carboxylated alginic acid bead를 이용한 중금속 제거에 대한 염료폐수의 영향 연구 (Effect of Dye Wastewater on Heavy Metal Removal using Carboxylated Alginic Acid Bead)

  • 전충
    • 유기물자원화
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    • 제17권4호
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    • pp.74-80
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    • 2009
  • Carboxylated alginic acid bead를 이용한 중금속 제거에 관한 염색폐수의 영향에 대해 연구를 수행하였다. Carboxylated alginic acid bead를 담체로 사용하였을 때 때 납과 구리이온의 흡착에 미치는 염색폐수의 영향은 매우 작았다. 또한, 납 이온이 염색폐수와 같이 섞여 있을 때 흡착공정은 거의 2-3 시간 내에 이루어졌으며 50ppm의 납 이온은 0.3g의 담체만으로 대부분 제거 되었다. 이와 같은 결과는 Carboxylated alginic acid bead가 염색폐수 내에 존재하는 중금속 이온의 제거에 대해서 효과적인 흡착제임을 의미한다.

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석탄회부착활성탄의 제조 및 중금속 제거에 관한 연구 (A Study on the Preparation of the Fly ash Adhesion-Activated Carbon and on the Removal of Heavy Metals)

  • 문옥란;신대윤;고춘남
    • 환경위생공학
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    • 제14권4호
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    • pp.1-8
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    • 1999
  • This study was aimed ultimately to develop an adsorption process treating heavy metal wastewater by utilizing activated carbon using flyash. The affecting factors in adsorption process on heavy metal by flyash adhesion-activated carbon are s follows. Factors such as pH, and quality of activated carbon, and reaction time made batch adsorption isotherm described adsorption capacity was made use of the investigation to evaluate adsorptive possibility of heavy metal.As the results of this study, H ion has influence on adsorption of heavy metal if pH is low. As reaction time is transformed, factors such as optimum reaction time is taken into consideration an adsorptive process of heavy metal because an adsorption and a reduction process occur. Adsorption isotherm of adhesion-activated carbon was generally obeyed to Freundlich formular than Langmuir formular and Freundlich constant, l/n were obtained in the range of 0.1~0.5.

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