• 제목/요약/키워드: Chrome (VI)

검색결과 7건 처리시간 0.015초

금속이온의 흐름주입법에 의한 정량, 8-배위착물의 광학적 특성 및 중합체에 관한 연구(제1보): 계면활성제 존재하에서 Chrome Azurol S를 사용하여 우라늄 및 토륨이온의 흐름 주입법에 의한 분광광도 정량 (Studies on the Determination of Heavy Metal Ions by Flow Injection, the Photochemical Characterization and Polymerization of Eight-Coordinated Complex(Part I): Spectrophotometric Determination of Uranium and Thorium Ions by Flow Injection Analysis using Chrome Azurol S in the Presence of Surfactant)

  • 장주환;강삼우;손병찬;조광희
    • 분석과학
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    • 제8권1호
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    • pp.1-7
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    • 1995
  • 흐름주입법에 의해 분광광도법으로 U(VI) 및 Th(IV) 이온을 정량하였다. Chrome Azurol S는 양이온 계면활성제인 CTAB 존재하에서 U(VI) 및 Th(IV) 이온과 착물을 형성한다. 아세트산 완충용액에서 U(VI) 착물의 최대 흡수 파장은 pH 5.0에서 600nm이고 몰흡광계수는 약 $2.3{\times}10^5Lmol^{-1}cm^{-1}$이며, Th(IV) 착물의 최대 흡수파장은 pH 5.5에서 611nm이고 몰흡광계수는 약 $3.8{\times}10^5Lmol^{-1}cm^{-1}$였다. FIA에 의한 U(VI) 및 Th(IV)의 검정곡선은 0.1~0.8ppm 범위에서 직선 관계를 보였고, 이 검정곡선은 상관계수는 0.9960 및 0.9930이었다. 검출한계(S/N)는 U(VI)에 대하여는 20ppb이고, Th(IV)에 대하여는 15ppb였다. 상대표준편차는 시료 0.4ppm에 대하여 각각 ${\pm}1.8%$${\pm}2.1%$이고 시료의 분석속도는 약 $50hr^{-1}$이었다.

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Ion Chromatography/Visible Absorbance Detection을 이용한 Cr(VI) 분석의 정확도 및 정밀도 평가 (Accuracy and Precision of Ion Chromatography/Visible Absorbance Detection for Analyzing Hexavalent Chromium Collected on PVC Filter)

  • 신용철;오세민;백남원
    • 한국산업보건학회지
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    • 제7권2호
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    • pp.223-232
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    • 1997
  • The accuracy and precision of a modified method of NIOSH Method 7600 and EPA method 218.6 was determined for analyzing hexavalent chromium, Cr(VI), collected on PVC filter from workplace air. The method was designed to extract from Cr(VI) on PVC filter with a alkali solution, 2% NaOH/3% $Na_2CO_3$, and to analyze it using ion chromatography/visible absorbance detection(IC/VAD). The results and conclusion are as the following. 1. The peak of Cr(VI) was separated sharply on chromatogram and was linearly related with Cr(VI) concentration in sloution. The correlation coefficient was 0.9999 in a calibration curve. The limit of detection was 0.25 $0.25{\mu}g/sample$. 2. The accuracy(% recovery) was 93.3% in a set of sample($9-50{\mu}g$) stored for a day, and 100.1%($10-60{\mu}g$) in another set of samples stored for 2 hours. It is assumed that the difference in recovery by storage time was due to reduction of Cr(VI) to Cr(III). 3. The precision(coefficient of variation, CV) of the method was 0.015 in spiked samples with Cr(VI) standard solution, and 0.010 in spiked samples with plating solution from a chrome electroplating factory. The overall CV in all types of samples was 0.0013. 4. The Cr(VI) was stable in 2% NaOH/3% $Na_2CO_3$ at least for 10 hours. In conclusion, the IC/VAD method is appropriate for determining low-level Cr(VI) in workplace air containing various interferences.

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피혁분의 효율적인 탈 크롬 방법에 관한 연구 (Effective Chrome Removal Process from Shaving Dust)

  • 윤선규;박성하;이상섭;나정원;고명한
    • 공업화학
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    • 제10권8호
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    • pp.1104-1108
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    • 1999
  • 본 연구에서는 피혁분에서 크롬을 제거하여 여러 면으로 활용 가능한 단백질자원을 얻고자 하였다. 피혁분은 크롬이 콜라겐사이에 가교결합을 하여 크롬-콜라겐염(Cr-collagenate)을 형성하므로 1단계 공정에서 $Ca(OH)_2$용액에 침지(steeping)하여 팽윤(swelling)-팽창(plumping)시켜, $H_2SO_4$용액으로 크롬을 용출시켰다. 2단계 공정에서 NaOH용액으로 팽윤-팽창시키고 $H_2O_2$용액으로 용해도가 큰 Cr(VI)으로 산화하여 $H_2SO_4$용액으로 용출시켜 탈 크롬을 마무리하였다. 1단계 공정에서 $3%-Ca(OH)_2$용액, $0.8%-H_2SO_4$용액으로 2단계 공정에서 0.1%-NaOH용액, $3%-H_2O_2$용액, $1%-H_2SO_4$용액으로 순차적으로 침지하여 효율적으로 완전 탈 크롬을 할 수 있었다. 완전 탈 크롬된 피혁분에는 수분 10.68%일 경우, 조 단백질이 79.81% 함유하였으며, 각 공정의 침지용액들은 3회까지 반복 사용하여도 완전히 크롬을 제거할 수 있었다.

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도금업체 공정별 근로자의 총크롬 및 6가 크롬 노출 평가 (Worker Exposure Assessment on Airborne Total Chromium and Hexavalent Chromium by Process in Electroplating Factories)

  • 이광용;김부욱;신용철
    • 한국산업보건학회지
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    • 제25권1호
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    • pp.89-94
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    • 2015
  • Objectives: The objective of this study was to determine characteristics of workers' exposures to airborne total and hexavalent chromium by job title in electroplating processes. Methods: Total Cr was determined through a modified method based on NIOSH Method 7024. Airborne hexavalent Cr, Cr(VI), was sampled and extracted according to NIOSH Method 7600 and analyzed at 520 nm using an ion chromatograph/visible detector. Results: The geometric mean(GM) of total Cr concentrations from all factories was $11.2{\mu}g/m^3$(GSD=4.9). The GM of Cr(VI) concentrations from all factories was $2.84{\mu}g/m$ (GSD=5.2), and the concentrations among factories were significantly different (p<0.05). The Cr(VI) levels were lower than total Cr levels. Total Cr exposure levels were highest among buffing workers ($21.6{\mu}g/m^3$), but Cr(VI) levels were highest among plating workers($4.15{\mu}g/m^3$). The concentrations of Cr(VI) and total Cr from plating tasks was highly correlated(r=0.91). Conclusions: In the electroplating industry, plating workers were mainly exposed to Cr(VI), but others were not. Oxidation-reduction states of Cr and job titles should be considered in the exposure or risk assessments of chrome electroplating factories.

선탄경석(選炭硬石)과 광산화물(鑛酸化物)로 제조(製造)한 담체(擔體)의 중금속(重金屬) 불용화(不溶化) 특성연구(特性硏究) (A study of Immobilizing Heavy metals by pellets manufactured from Coal tailings and Iron oxide)

  • 이계승;송영준
    • 자원리싸이클링
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    • 제21권1호
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    • pp.75-81
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    • 2012
  • 선탄경석을 환경개선물질로 순환자원화하기 위해 철산화물과 혼합하여 중금속 불용화제를 제조하고 이의 적정제조 조건과 중금속에 대한 불용화 성능을 평가하였다 선탄경석을 분쇄한 후 철산화물의 분말을 혼합하여 구형의 펠릿을 제조하고 이를 가열하여 중금속 불용화제를 제조하였다. 온도별로 가열한 결과, $1100^{\circ}C$부터 선탄경석에 함유된 탄질분에 의해 영가철이 생성되었다. 제조된 불용화제는 구형의 다공체로서 공극률은 34.63%, 겉보기 밀도는 1.31 g/mL, 공극의 평균크기는 9.82 ${\mu}m$로 측정되었다. 불용화제를 비소(V), 구리(II), 크롬(VI), 카드뮴(II)이 함유된 각각의 중금속 용액과 반응시킨 결과, 영가철이 생성된 $1100^{\circ}C$에서 제조된 펠릿이 중금속 불용화도가 높고 pH를 더 높이는 것으로 나타났다. 중금속농도 10 ppm의 용액을 99.9%이상 불용화하기까지 비소의 경우 1시간, 크롬의 경우 2시간, 구리의 경우 4시간이 필요하였다. 그러나 카드뮴의 경우 불용화도가 낮게 나타났고 중금속농도가 높을수록 불용화도가 더 낮아지는 것으로 나타났다.

일부 중금속과 제초제에 대한 저서규조류 Nitzschia sp.의 광합성 반응 (Photosynthetic Responses of the Benthic Diatom Nitzschia sp. to Selected Heavy Metals and Herbicides)

  • 강은주;최태섭;김광용
    • ALGAE
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    • 제22권4호
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    • pp.319-323
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    • 2007
  • This study was conducted with using chlorophyll a fluorescence (indicated as photosynthetic activity) to examine the toxic effect of 96 h exposure of heavy metals and herbicides on the benthic diatom Nitzschia sp. which was isolated from pristine sediment in Pamquat Harbour, Nova Scotia, Canada. Samples of benthic diatom were exposed to 0, 0.01, 0.1 and 1 mg L–1 of copper, 0, 1, 10 and 100 mg L–1 of chrome (VI), 0, 2.45, 24.5 and 245 mg L–1 of paraquat dichloride, and 0, 4.37, 43.7 and 437 mg L–1 of alachlor during 96 hours. The effective quantum yield of photochemistry (ΔF/Fm’) was evaluated by subjecting light acclimated samples to saturating pulses of light using a pulse amplitude modulated (PAM) fluorometer. The impact of heavy metals on Nitzschia sp. photosynthesis was not severe in < 1 mg L–1 but in the high concentrations (> 1 mg L–1) clearly increased toxic stress during 96 h. Herbicides had a limited impact during the exposure period but clearly increased stress on the benthic diatom with increasing concentrations. Acute response of Nitzschia sp. to selected heavy metals and herbicides was characterized, and the capacity of a benthic diatom to tolerate and recover from toxic stress was assessed.