• Title/Summary/Keyword: Heavy metal adsorption rate

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Properties of Heavy Metal Adsorption of Clay Minerals (점토광물에 의한 중금속 흡착 특성)

  • 엄태호;김유택;이기강;김영진;강승구;김정환
    • Journal of the Korean Ceramic Society
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    • v.39 no.7
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    • pp.663-668
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    • 2002
  • Cation exchange capacity of clay, white clay and zeolite was estimated by performing the powder adsorption test for 6 different heavy metal (Cd, Cr, Cu, Fe, Pb and Zn) standard solutions whose concentrations were varied by 5,10,15 and 20 ppm. The adsorption rate of heavy metals decreased with increasing the concentration of standard heavy metal solutions. The adsorption rate of the clay and the white clay showed more than 80% for the all tested heavy metals except Cr and especially above 99% for the Fe and the Pb. The Cr adsorption rate of the mixture of the clay and the white clay increased, however, that of Zn decreased. The adsorption rate of Cr and Zn showed relatively lower values as compared with those of the other heavy metals because the cation exchange H$\^$+/ ions and heavy metal ions of the clay or the white clay were in competition at low pH region.

Heavy Metal Ion Adsorption Characteristics of Cuttle fish Born (갑오징어뼈를 이용한 중금속의 흡착 특성)

  • 방명렬;현근우;이광춘;박정희;김영진
    • Journal of environmental and Sanitary engineering
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    • v.15 no.1
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    • pp.54-61
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    • 2000
  • We studied the adsorption characteristics on the treatment process of heavy metal wastewater by using cuttle fish bones powder. When adding the 0.25% cuttle fish born powder in the heavy metal solution, $Fe^{3+}$ and $Pb^{2+}$ were high removed than other heavy metals as above 95%. In the solution which was adjusted to pH 5, 7 and 9, there was not observed the difference thing on the heavy metal removal rate. At test using plating wastewater treatment, adding 1%, 1.5% and 2% of the cuttle fish born powder, the heavy metal removal rate were as follows; Zn 12.5 - 37.5%, Mn 18.0 - 62.2%, Cd 36.8 -93.0%, Cu 51.4 - 97.4%, Cr 70.8 - 99.1%, Fe 87.2 - 99.3% and Pb 92.8 - 99.9%. When adding the 0.15% cuttle fish born powder and mixing for 20 minutes, the solution was happened the adsorption equability. Applied this results to the Freundlich's iso-thermal equation, we found the cuttle fish born's probability as a good adsorbent.

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Heavy Metal Adsorption Characteristics of Extracellular Polysaccharide Produced by Zoogloea ramigera Grown on Various Carbon Sources

  • Kim, Se-Kyung;Lee, Choul-Gyun;Yun, Hyun-Shik
    • Journal of Microbiology and Biotechnology
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    • v.13 no.5
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    • pp.745-750
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    • 2003
  • Zoogloea ramigera produces an extracellular polysaccharide called zooglan, which adsorbs heavy metals. In the current study, Zoogloea ramigera was cultured in media containing various carbon sources. When different carbon sources were included in the cultivation medium, there was a change in the composition of zooglan that is mainly composed of glucose, galactose, and pyruvic acid. The various zooglan compositions were analyzed by HPLC, and changes in the heavy metal (lead (II) and cadmium) adsorption characteristics relative to a change in the composition were examined using an atomic absorption spectrophotometer. A high adsorption capacity was observed at a pH higher than 3.0. The adsorption of metal ions was the highest at $35^{\circ}C$, and a higher adsorption was obtained with a lower flow rate. Changes in the zooglan composition did result in changes in the heavy metal adsorption characteristics. Furthermore, it was also found that the pyruvic acid content was more important than the glucose or galactose content for heavy metal adsorption.

Adsorption of Heavy Metal Ions(Cadmium etc.) using Chitosan Bead (Chitosan Bead를 이용한 Cd등의 중금속 이온의 흡착제거)

  • 권성환;김기환;장문석;유재근
    • Journal of environmental and Sanitary engineering
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    • v.11 no.3
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    • pp.21-27
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    • 1996
  • Chitosan is a natural polyelectrolytic compound. Researches of adsorption capacity using chitosan have been doing actively. We prepared bead type gel, simple modifier of chitosan, And then experimented adsorption test of heavy metals (Cd etc) using it. According to the result adsorption capacity of chitosan bead was five times higher than chitosan powder. Removal rate of cadmium resulted 90% over in the test that initial concentration of Cd was 100mg/L and bead dosage was 6g/100mL. Adsorption type of heavy metals was similar to general adsorption curve. And optical pH range was 4 - 10 in the adsorption test. In the experiments of other heavy metals (Pb, Zn, Cu, Mn) adsorption types had two stages, highly removal rate-stage at the short time (20minutes) and then slow rate-stage at the after. And removal efficiency at the variable pH ranges revealed relatively good.

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Stabilization Behavior of Heavy Metal ions by Treatment Conditions (처리조건에 따른 중금속 이온의 안정화 거동)

  • 엄태호;김유택
    • Journal of the Korean Ceramic Society
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    • v.40 no.6
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    • pp.583-588
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    • 2003
  • Cation exchange capacity of clay, white clay and zeolite was measured by the adsorption test for 3 different heavy metal (Cd, Cr, Zn) standard solutions whose concentrations were varied by 10, 20, 30 ppm and pH were varied by 3, 5, 7, 9, respectively. The adsorption rate of Cd and Zn increased with increasing pH and slowly increased with increasing pH above pH 5. However, adsorption rate of Cr did not increase with increasing pH. Especially, Cr adsorption rate of the mixture of clay and white clay at pH 5 showed an half decrease compared to that at pH 3. The adsorption rate of mixed heavy metal solutions was in the order of Cd, Zn > Cr; however, the order was changed by Fe>Pb, Cu>Cr>Zn>Cd in case of Cu, Fe and Pb addition.

Adsorption Characteristics Evaluation of Natural Zeolite for Heavy-metal Contaminated Material Remediation (중금속 오염물질 정화를 위한 천연제올라이트의 흡착특성)

  • Shin, Eun-Chul;Park, Jeong-Jun;Jeong, Cheol-Gyu;Kim, Sung-Hwan
    • Journal of the Korean Geosynthetics Society
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    • v.13 no.2
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    • pp.59-67
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    • 2014
  • The amount of the contaminants that can be adsorbed on the drain was evaluated for the effective remediation of the contaminated soil, and the contaminants adsorptivity of the drain was evaluated by comparing the isothermal adsorption model after carrying out the contaminants adsorption test of the reactants coated on the surface of the drain. The reactant used in the experiment is a natural zeolite, and the contaminants are copper, lead and cadmium. The results that Freundlich and Langmuir adsorption isotherm model are compared to the adsorption amount according to the change of the initial concentration by the contaminants. As a result of the component analysis, because Si, Al and O are contained approximately 28%, 11% and 48%, respectively, it is identified that the material coated on the surface of the drain is the component of the zeolite which is the reactant for the adsorption of the heavy-metal (Cu, Pb, Cd) contaminants. The heavy-metal adsorption kinetic of the zeolite which is the reactant was decreased in order of lead, copper and cadmium. The important factor of the performance evaluation of the adsorbent is the reaction rate, and if zeolite is used as the reactant in the relationship between the maximum amount of adsorption and reaction rate, it can be utilized as the design factor that determine the removal order of the complex heavy-metal. In other words, because the maximum adsorption quantity of lead is smaller compared to copper but the reaction rate is relatively fast, it can be primarily removed, and copper can be removed after removing the lead. It was analyzed that Cadmium can be finally removed after that other heavy-metal is removed.

Formation of iron oxides from acid mine drainage and magnetic separation of the heavy metals adsorbed iron oxides

  • Kwon, Hee-won;Kim, JeongJin;Ha, Dong-Woo;Kim, Young-Hun
    • Progress in Superconductivity and Cryogenics
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    • v.18 no.1
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    • pp.28-32
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    • 2016
  • There are a few thousand abandoned metal mines in South Korea. The abandoned mines cause several environmental problems including releasing acid mine drainage (AMD), which contain a very high acidity and heavy metal ions such as Fe, Cu, Cd, Pb, and As. Iron oxides can be formed from the AMD by increasing the solution pH and inducing precipitation. Current study focused on the formation of iron oxide in an AMD and used the oxide for adsorption of heavy metals. The heavy metal adsorbed iron oxide was separated with a superconducting magnet. The duration of iron oxide formation affected on the type of mineral and the degree of magnetization. The removal rate of heavy metal by the adsorption process with the formed iron oxide was highly dependent on the type of iron oxide and the solution pH. A high gradient magnetic separation (HGMS) system successfully separated the iron oxide and harmful heavy metals.

A Study on Adsorption Characteristics of the Heavy Metals using Melting Slag of Incinerator Ash (소각재 용융슬래그를 이용한 중금속 흡착특성에 관한 연구)

  • Yoo, Seung-Chol;Kim, Hwan-Gi
    • Journal of Korean Society of Water and Wastewater
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    • v.22 no.4
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    • pp.413-420
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    • 2008
  • In order to utilize cinder melting slag as a filter media to control the quality of early rainwater, its environmental stability was verified by heavy metal elution experiment and improved by pre-treatment. Possibilities of improving its function as an absorbent was considered. Absorption characteristics of melting slag before and after the pre-treatment were analyzed by heavy metal equilibrium and stationary-phase column experiments, which in turn were analyzed by comparison experiment with activated carbon. As a result of heavy metal elution experiment, every metal item existed in a much lower amount than the criteria or was not detected, implying that there is no problem recycling it. Absorption equilibrium experiment showed that the time for pre-treatment melting slag to reach the equilibrium was reduced, while the absorbed amount was greatly increased. Stationary-phase column experiment assures us that the elimination rate was not changed much by influx rate, pH and the change in packing volume rate, indicating that this melting slag can be used not only as a filter media to control the quality of early rainwater but also in many areas of water-processing.

Adsorption of Heavy Metal Ions on Bark(I) (수피에 의한 중금속 흡착(I))

  • Paik, Ki-Hyon;Kim, Dong-Ho;Yoon, Seung-Lak
    • Korean Journal of Environmental Agriculture
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    • v.15 no.3
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    • pp.391-398
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    • 1996
  • The pretreatment of bark powder with sodium hydroxide and formalin showed the most excellent adsorption ratio, but this method could not practically be used because of the occurrence of dark-colored pigments in filtrates during pretreatment. Instead, acid and formalin were the most affirmative and effective among the pretreatment methods tested, and could be used for this purpose. Among tested species, Quercus acutissima and Robinia pseudo-accacia showed the largest amount of metal adsorption, and $Pb^{2+}$ was the best(83 to 96%) among the four heavy metals tested. The order of adsorption ratios other metals was as follows; $Cu^{2+}$ > $Zn^{2+}$ > $Cd^{2+}$, and the ratio was approximately 45 to 55%. In addition, as the substrate amount increased, the amount of adsorbed heavy metals in subtrates gradually increased, but the adsorbed amount was not proportional to the substrate amount. The order of heavy metal adsorption was as follows; $Pb^{2+}$ > $Cu^{2+}$ > $Cd^{2+}$ > $Zn^{2+}$. Depending on flow rate and column size, pine bark power adsorbed more heavy metals in the 5ml/min flow rate and 3.5cm column size rather than the 10ml/min and 2.0cm. However, oak bark power showed contrary results compared with pine bark powder. The adsorption of $Pb^{2+}$ occurred rapidly in the incipient stagte. Even though bark powders were repeatedly used three times, there was no change in the adsorption ratio(45%), but after four times, the adsorption ratio was significantly reduced to 35%.

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Adsorption Characteristics of Multi-Metal Ions by Red Mud, Zeolite, Limestone, and Oyster Shell

  • Shin, Woo-Seok;Kang, Ku;Kim, Young-Kee
    • Environmental Engineering Research
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    • v.19 no.1
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    • pp.15-22
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    • 2014
  • In this study, the performances of various adsorbents-red mud, zeolite, limestone, and oyster shell-were investigated for the adsorption of multi-metal ions ($Cr^{3+}$, $Ni^{2+}$, $Cu^{2+}$, $Zn^{2+}$, $As^{3+}$, $Cd^{2+}$, and $Pb^{2+}$) from aqueous solutions. The result of scanning electron microscopy analyses indicated that the some metal ions were adsorbed onto the surface of the media. Moreover, Fourier transform infrared spectroscopy analysis showed that the Si(Al)-O bond (red mud and zeolite) and C-O bond (limestone and oyster shell) might be involved in heavy metal adsorption. The changes in the pH of the aqueous solutions upon applying adsorbents were investigated and the adsorption kinetics of the metal ions on different adsorbents were simulated by pseudo-first-order and pseudo-second-order models. The sorption process was relatively fast and equilibrium was reached after about 60 min of contact (except for $As^{3+}$). From the maximum capacity of the adsorption kinetic model, the removal of $Pb^{2+}$ and $Cu^{2+}$ were higher than for the other metal ions. Meanwhile, the reaction rate constants ($k_{1,2}$) indicated the slowest sorption in $As^{3+}$. The adsorption mechanisms of heavy metal ions were not only surface adsorption and ion exchange, but also surface precipitation. Based on the metal ions' adsorption efficiencies, red mud was found to be the most efficient of all the tested adsorbents. In addition, impurities in seawater did not lead to a significant decrease in the adsorption performance. It is concluded that red mud is a more economic high-performance alternative than the other tested adsorption materials for applying a removal of multi-metal in seawater.