• 제목/요약/키워드: Cr(VI) separation

검색결과 10건 처리시간 0.026초

실관막모듈에 의한 중금속염 혼합용액으로부터 Cr(VI) 분리 (Separation of Cr(VI) from Heavy Metal Salts Mixed Solution by using Hollow Fiber Module)

  • 최대웅
    • 한국환경보건학회지
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    • 제27권3호
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    • pp.107-112
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    • 2001
  • This work reports the application of a hollow fiber module(HFM) for Cr(VI) extraction from heavy metal salts mixed solution by using microporous hydrophobic hollow fiber module. In HFM configuration, the organic extraction used for the extraction of Cr(VI) was di-(2-ethyl hexyl) phosphoric acid(D2EHPA) diluted with n-heptane. The study of HFM includes the influence of hydrodynamic and chemical condition, i.e., the flow rate of feed solution, the time of reactive extraction, the concentration of feed solution, and the pH of aqueous phase solutions. Several experiments with synthetic solution of different mixed components system of Cr(VI) solutions established optimum condition to achieve a clean separation of Cr(VI). It was possible to separate Cr(VI) in the presence of metal salts mixed solution, such as Zn(II), Ni(II), Cu(II), and Cd(II) using the HFM technique.

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Cr (VI) separation by PolyHIPE membrane immobilized with Aliquat 336 by solvent-nonsolvent method

  • Chen, Jyh-Herng;Mai, Le Thi Tuyet;Hsu, Kai-Chung
    • Membrane and Water Treatment
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    • 제8권6호
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    • pp.575-590
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    • 2017
  • PolyHIPEs membrane prepared with styrene (St), divinylbenzene (DVB), and ethylhexyl acrylate (EHA) can yield a unique pore structure provided by large voids highly interconnected by many small window throats. With the advantageous pore structure, PolyHIPE presents a potential as a support for carrier facilitated transport membrane. Tricaprylmethylammonium chloride (Aliquat 336) can be efficiently incorporated into the PolyHIPE membrane by a two-step solvent-nonsolvent method to obtain an Aliquat 336-immobilized PolyHIPE membrane with good stability. The study of Cr (VI) transport through Aliquat 336-immobilized PolyHIPE membrane indicates that the membrane has high initial flux and maxima stripping flux ($J_f^o=15.01({\mu}mol/m^2s)$, $J_s^{max}=6.15({\mu}mol/m^2s)$). The reusability study shows that the Aliquat 336-immobilized PolyHIPE membrane can maintain high Cr(VI) recovery efficiency even after 15 cycles of operations. The developed membrane was also used in the separation of Cr (VI) from other anions (i.e., $SO_4{^{2-}}$ and $NO_3{^-}$) and other cations (i.e., Ni (II), Mg (II) and Cu (II)) with good selectivity.

한강수계해서의 크롬(III,VI) 종(species) 분포 및 분석방법 정립 (New Analytical Method to Identify Chromium Species, Cr(III) and Cr(VI), and Characteristic Distribution of Chromium Species in the Han River)

  • 정관조;김덕찬;박현
    • 대한환경공학회지
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    • 제27권6호
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    • pp.590-598
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    • 2005
  • 본 연구에서는 HPLC와 DRC ICP-MS를 연결하여 수중의 Cr(III)와 Cr(VI) 측정을 위한 최적의 분석조건을 설정하고, 서울시 6개 취수장 원수에서의 Cr(III)와 Cr(VI)의 분포 특성을 조사하였다. 크롬 종(species) 분리를 위한 HPLC 이동상으로는 tetrabutylammonium phosphate monobasic(1.0 mM TBAP), ethylenediaminetetraacetic acid(0.6 mM EDTA) 그리고 2% v/v 메탄올을 사용하였으며, flushing solvent로는 5% v/v 메탄올을 사용하였다. 또한 크롬 종 분리 시 방해물질인 $ArC^+$의 제거를 위한 반응가스로 암모니아($NH_3$) 가스를 사용하였으며, Cr(III)와 Cr(VI)의 최적의 분리를 위해 이동상의 solvent ratio, pH 유속 및 시료 주입량의 변화에 따른 시험을 실시하였다. 외국의 경우 Cr(III)가 Cr(VI)보다 분석 감도가 우수한 것으로 보고되고 있으나 본 연구 결과 반응가스($NH_3$)를 사용할 경우, Cr(III)에 비해 Cr(VI)의 분석 감도가 더 우수한 것으로 나타났으며, 검출한계는 Cr(III)와 Cr(VI)에 대해 각각 $0.061\;{\mu}g/L$, $0.052\;{\mu}g/L$로 분석시간은 3분 이내로 나타났다. 서울시 6개 취수장 원수에서의 Cr(III)는 $0.048{\sim}0.064\;{\mu}g/L$(평균 $0.054\;{\mu}g/L$), Cr(VI)는 $0.014{\sim}0.023\;{\mu}g/L$(평균 $0.019\;{\mu}g/L$)의 농도 범위로 검출되었다. 회수율은 $90.1{\sim}94.1%$ 범위로 우수하게 나타났으며, Cr(III)가 Cr(VI)에 비해 $2{\sim}3$배 정도 높은 농도로 나타났다.

8-Hydroxyquinoline을 이용한 크롬 3가 및 6가의 분리 및 분석 (Separation and analysis of Cr(III) and Cr(VI) using 8-hydroxyquinoline complexation of Cr(III))

  • 임헌성;이석근
    • 분석과학
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    • 제20권3호
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    • pp.246-250
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    • 2007
  • The quantitative determination of chromium(VI) by separation from chromium(III) complex of 8-hydroxyquinoline using solvent extraction has been studied. The reaction conditions for chromium(III) complex of 8-hydroxyquinoline and the solvent extraction of complex were investigated in detail. The chromium(III) complex was extracted with organic solvent (n-hexane) and residual chromium(VI) was determined by ICP-AES in aqueous layer. This technique is quantitative in the pH range of 8-9 and the limitations such as interfering ions were discussed.

Speciation of Cr(III)/Cr(VI) in Tannery Waste Waters by Using Ion-Exchange Resins

  • Kartal, S.;Tokalloglu, S.;Ozkan, B.
    • Bulletin of the Korean Chemical Society
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    • 제27권5호
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    • pp.694-698
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    • 2006
  • A method has been described for the chemical speciation, preconcentration and determination of Cr(III) and Cr(VI) species in filtered tannery waste waters by flame atomic absorption spectrometry using ion-exchange resins. Amberlite IR-120($H^+$) strongly acidic cation exchanger and Amberlite IRA-410($CI ^-$) strongly basic anion exchanger resins were used for the separation and preconcentration of Cr(III) and Cr(VI) species, respectively. Optimum condition for preconcentration and speciation was obtained by testing pH of sample and eluent, flow rates of sample and eluent, amount of resins, volume of sample and eluents, and effect of foreign ions. The recommended method has been successfully applied for the preconcentration and determination of chromium species in the dissolved phase of waste water samples collected from a tannery waste water treatment plant in Kayseri, Turkey. The detection limits achieved were 0.73 $\mu$g/L for Cr(III) and 0.81 $\mu$g/L for Cr(VI). Recovery studies showed 99% for Cr(III) and 98% for Cr(VI), for samples spiked with single species.

XAD-16-Chromotropic Acid 킬레이트 수지에 의한 몇 가지 금속이온의 선택적 분리 및 농축에 관한 연구 (Studies on the Selective Separation and Preconcentration of Cr(VI) Ion by XAD-16-Chromotropic Acid Chelating Resin)

  • 이원;이창열;김미경;김인환
    • 분석과학
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    • 제17권3호
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    • pp.199-210
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    • 2004
  • Amberite XAD-16 다공성 수지에 4,5-dihydroxynaphthalene-2,7-disulfonic acid (chromotropic acid, CTA)를 화학적으로 결합시켜 XAD-16-CTA형 새로운 킬레이트 수지를 합성하고, 적외선분광법과 원소분석법으로 확인하였다. 이 킬레이트 수지에 대한 금속마감 산업과 관련 있는 9개 금속이온을 포함하는 Cr(III) 및 Cr(VI) 이온들의 흡착 및 탈착 특성을 뱃치법과 용리법으로 조사하였다. XAD-16-CTA 킬레이트수지는 1~5 M의 HCl, $HNO_3$ 및 NaOH 등의 산과 염기 용액에서 매우 안정하였다. pH 2에서 Cr(VI) 이온과 Cr(III) 이온이 공존하는 혼합용액으로부터 Cr(VI) 이온만을 선택적으로 분리할 수 있음을 확인하였으며, Cr(VI)의 최대 흡착용량은 1.2 mmol/g 이었다. 또한 Cr(VI) 이온의 흡착에 미치는 공존 음이온의 영향을 검토한 결과 음이온인 $F^-$, $SO{_4}^{2-}$, $CN^-$, $CH_3COO^-$, $NO{_3}^-$ 이온은 흡착율을 감소시켰으며, $PO{_4}^{3-}$$Cl^-$는 흡착에 큰 영향을 미치지 않았다. pH 2에서 킬레이트 수지에 의한 돌파점용량과 총괄용량으로부터 얻은 금속이온의 용리순서는 Cr(VI)>Sn(II)>Fe(III)>Cu(II)>Cd(II)${\simeq}Pb(II){\simeq}Cr(III){\simeq}Mn(II){\simeq}Ni(II){\simeq}Al(III)$이었다. 한편 $HNO_3$, HCl 및 $H_2SO_4$ 등의 탈착제에 의한 Cr(VI) 이온의 탈착특성을 조사한 결과 3 M HCl에서 높은 탈착효율을 나타내었다. 결과적으로, XAD-16-CTA 킬레이트 수지는 여러 가지 금속이온이 혼합된 금속마감산업 인공폐액 중 Cr(VI) 이온의 선택적 분리, 농축 및 회수에 매우 유용함을 알 수 있었다.

Removal of Aqueous Cr(VI) using Magnetite Nanoparticles Synthesized from a Low Grade Iron Ore

  • Do, Thi May;Suh, Yong Jae
    • 한국입자에어로졸학회지
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    • 제9권4호
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    • pp.221-230
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    • 2013
  • We demonstrated the efficacy of magnetic nanoparticles (MNPs) produced from a low grade iron ore as an adsorbent for the removal of Cr(VI), a toxic heavy metal anion present in wastewater. The adsorption of Cr(VI) by these MNPs strongly depended on the dosage of MNPs, the initial concentration of the Cr(VI) solutions, and pH. The highest Cr(VI) adsorption efficiency of 22.0 mg/g was observed at pH 2.5. The adsorption data were best fit with the Langmuir isotherm and corresponded to a pseudo-second-order kinetic model. The used adsorbent was regenerated by eluting in highly alkaline solutions. Sodium bicarbonate showed the highest desorption efficiency of 83.1% among various eluents including NaOH, $Na_2HPO_4$, and $Na_2CO_3$. Due to the high adsorption capacity, the simple magnetic separation, and the high desorption efficiency, this nano-adsorbent produced from inexpensive and abundant resources may attract the attention of the industries to apply for removing various metal anionic contaminants from wastewater.

이온 교환수지에 의한 철 및 강의 분석에 관한 연구 (제2보). 음이온 성분의 분리 (The Study on the Separation of the Subsidiary Elements in Iron and Steel by Using Ion Exchangers (II). The Separation of Anions)

  • 이병조;박면용;박기채
    • 대한화학회지
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    • 제17권6호
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    • pp.428-433
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    • 1973
  • 음이온교환수지관(Dowex 1${\times}8,\;20cm{\times}3.14cm^2$)을 통하여 0.1M Si(IV), As(V), P(V), S(VI), W(VI), Cr(VI)의 용액을 각기 1ml씩 취하여 섞은 용액 6ml를 다음과 같은 용리액으로 용리시켜 정량적으로 분리하였다. 이때에 용리액은 Si(IV), As(V), P(V)에 대하여 0.07M 염산과 0.03M 염화나트륨을 섞은 용액(pH 1.3)을, S(VI), W(VI), Cr(VI)에 대하여 0.6M 염화나트륨과 0.3M 수산화나트륨을 섞은 용액을 사용하였다. 이때에 함께 용출된 P(V)와 As(V)의 혼합액은 아황산나트륨용액으로 처리하여 As(V)를 As(III)으로 환원시킨다음 0.1N 아황산나트륨용액(pH 3.48)으로 용리하여 분리하였다. 많은 양의 철(97% 이상)과 Si(IV), As(V), S(VI), P(V), W(VI)이 혼합된 용액은 양이온교환수지관(Dowex 50w${\times}12,\;30cm{\times}3.14cm^2$)을 통하여 디메틸술포옥시드와 질산나트륨의 혼합용리액으로 용리하여 철을 먼저 분리하고 다시 음이온들은 음이온교환수지관을 통하여 분리하였다. 철강중에 들어있는 음이온 성분들도 같은 방법으로 분리할 수 있었다.

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Speciation of Chromium in Water Samples with Homogeneous Liquid-Liquid Extraction and Determination by Flame Atomic Absorption Spectrometry

  • Abkenar, Shiva Dehghan;Hosseini, Morteza;Dahaghin, Zohreh;Salavati-Niasari, Masoud;Jamali, Mohammad Reza
    • Bulletin of the Korean Chemical Society
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    • 제31권10호
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    • pp.2813-2818
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    • 2010
  • A novel method was developed for the speciation of chromium in natural water samples based on homogeneous liquid-liquid extraction and determination by flame atomic absorption spectrometry (FAAS). In this method, Cr(III) reacts with a new Schiff's base ligand to form the hydrophobic complex, which is subsequently entrapped in the sediment phase, whereas Cr(VI) remained in aqueous phase. The Cr(VI) assay is based on its reduction to Cr(III) by the addition of sodium sulfite to the sample solution. Thus, separation of Cr(III) and Cr(VI) could be realized. Homogeneous liquid-liquid extraction based on the pH-independent phase-separation process was investigated using a ternary solvent system (water-tetrabutylammonium ion ($TBA^+$)-chloroform) for the preconcentration of chromium. The phase separation phenomenon occurred by an ion-pair formation of TBA and perchlorate ion. Then sedimented phase was separated using a $100\;{\mu}L$ micro-syringe and diluted to 1.0 mL with ethanol. The sample was introduced into the flame by conventional aspiration. After the optimization of complexation and extraction conditions such as pH = 9.5, [ligand] = $1.0{\times}10^{-4}\;M$, [$TBA^+$] = $2.0{\times}10^{-2}\;M$, [$CHCl_3$] = $100.0\;{\mu}L$ and [$ClO_4$] = $2.0{\times}10{-2}\;M$, a preconcentration factor (Va/Vs) of 100 was obtained for only 10 mL of the sample. The relative standard deviation was 2.8% (n = 10). The limit of detection was sufficiently low and lie at ppb level. The proposed method was applied for the extraction and determination of chromium in natural water samples with satisfactory results.

DRUM impactor를 이용한 대기 입자상 물질 중 원소성분의 입경분포 특성 : 제주도 고산지역의 2002년 봄철 (3.29-5.30) 측정 연구 (Size Distributions of Trace Elements in Airborn Particulates Collected using Drum impactor at Gosan, Jeju Island : Measurements in Springtime 2002)

  • 한진석;문광주;류성윤;안준영;공부주;홍유덕;김영준
    • 한국대기환경학회지
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    • 제20권4호
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    • pp.555-569
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    • 2004
  • Size -segregated measurements of aerosol composition using 8-stage DRUM impactor are used to determine the transport of natural and anthropogenic aerosols at Gosan site from 29 March to 30 May in 2002. Separation of ambient aerosols by DRUM impactor offers many Advantages over other standard filtration techniques. Some of the most important advantages are the ability to segregate into details by particle tire, to better preserve chemical integrity since the air stream doesn't pars through the deposit, to collect samples as a function of time, and to have a wide variety of impaction surfaces available to match analytical needs. Although the transport of Yellow sand is a well-known phenomenon in springtime, the result of measurement shows that not only soil dust but also anthropogenic aerosols, including sulfur, enriched trace metals such as Pb, Ni, Zn. Cu, Cr, As, Se, Br, are transported to Gosan in springtime. This study combines the size- and time-resolved aerosol composition measurements with isentropic, backward air-mass trajectories in order to identify some potential source regions of anthropogenic aerosols. As a result, during the NYS period, the average concentration of PM$_{10}$ was 46$\mu\textrm{g}$/㎥, Si, Al. S, Fe, Cl, K, Ca were higher than 1,000 ng/㎥ and Ti was about 100 ng/㎥. The concentrations of Zn, Mn, Cu. Pb, Br, Rb, V, Cr, Ni. At, Se ranged between 1 and 70 ng/㎥. More than 50% typical soil elements, tuck as Al, Si, Fe, Cd. Ti, Cr, Cu, Br. were distributed in a coarse particle range(5.0-12${\mu}{\textrm}{m}$). In other hand, anthropogenic pollutants, luck as S, N, Vi, were mainly distributed in a fine particle range (0.09-0.56${\mu}{\textrm}{m}$). During the YS period, PM$_{10}$ increased about 8 times than NYS period, and main soil elements, such as Al, Si, S, K, V, Mn, Fe also doubled in coarse particle range (1.15-12${\mu}{\textrm}{m}$). But Zn, As, Pb, Cu and Se, which distributed in the time aerosols (0.09-0.56${\mu}{\textrm}{m}$), were on the same level with or decreased than NYS period. Finally. except the YS Period, coarse particles (2.5-12${\mu}{\textrm}{m}$) are inferred to be influenced by soil, coal combustion, waste incineration, ferrous and nonferrous sources through similar pathways with Yellow Sand. But fine particles have different sources, such as coal combustion, gasoline vehicle, biomass burning, oil or coal combustion, nonferrous and ferrous metal sources, which are transported from China, Korea peninsula and local sources.ces.