• 제목/요약/키워드: Na-P zeolite

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수열합성법에 의한 화력발전소 바닥재로부터 zeolite의 합성 (Synthesis of Zeolite from Coal Bottom Ash by Hydrotherimal Process)

  • 한기천;유광석;조계홍;조희찬;안지환
    • 한국자원리싸이클링학회:학술대회논문집
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    • 한국자원리싸이클링학회 2005년도 추계정기총회 및 제26회 학술발표대회 고분자리싸이클링기술 특별심포지엄
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    • pp.243-247
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    • 2005
  • 본 연구에서는 화력발전소 바닥재를 중금속 흡착제로 활용하기 위한 기초연구로서 수열합성법에 의해 제올라이트를 합성하였다. 화력발전소 바닥재를 분쇄하여 반응온도$(80{\sim}150^{\circ}C)$ 및 NaOH 농도$(1{\sim}5M)$를 변화시키면서 알칼리 수열합성법으로 반응시킨 결과, NaP1, hydrxoy-sodalite, tobermorite 등이 생성되었으며, 양이온 교환 능력이 높은 NaP1은 $120^{\circ}C$ 이하의 온도와 2M 이하의 NaOH 농도에서 주로 합성되었다.

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차아염소산과 철염을 이용한 하수슬러지의 탈수효과 (The Effect of the Use of Sodium Hypochlorite and Iron Salts on Sewage Sludge Dewaterability)

  • 성일화
    • 한국환경보건학회지
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    • 제35권1호
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    • pp.58-63
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    • 2009
  • This study investigated improvement to sludge dewaterability and coagulation for sewage treatment plant sludge by using sodium hypochlorite solution (NaOCl), ferric sulfate [$Fe_2(SO_4)_3$] and zeolite. The specific resistance to filtration(SRF), chloride, pH and turbidity were used to evaluate the sludge dewatering behaviors. The results of study were as follows: By varying the amount of NaOCl added the optimum result in terms of enhancement for pretreatment occurred when 34 mg/l of NaOCl was injected. When the total solids concentration of the sludge was 10,000 mg/l, the optimum ferric sulfate dosage for the sludge dewaterability was 150 mg/l and the corresponding SRF was $1.7{\times}10^7sec^2/g$. It was observed that injecting zeolite into sludge was effective in improving the dewaterability of sludge.

Open System 수열반응을 통한 하수슬러지 소각 비산재의 Zeolite 합성가능성 (Synthesis of Zeolite from Sewage Sludge Incinerator Fly Ash by Hydrothermal Reaction in Open System)

  • 이제승;엄석원;최한영
    • 한국환경보건학회지
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    • 제33권4호
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    • pp.317-324
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    • 2007
  • The sewage treatment sludge disposal has become a serious environmental problem because of restricted direct land-filling and oceandumping in spite of their large amounts discharged. So the recycling of sewage treatment sludge is very useful alternative for waste management. Here, we studied the feasibility of zeolite synthesis in open system from the sewage treatment sludge incinerator fly ash by means of hydrothermal synthesis. We considered the concentration of NaOH, reaction time, reaction temperature and reaction step as synthesis variables. The phase of zeolite products was identified by X-ray diffractometer(XRD) and ammonium ion exchange test was performed for the raw fly ash and two zeolite products(Z-3 and Z-5). In leaching test of the raw fly ash, hazard metal is detected very low level compared with regulatory leaching test standard. But in total recoverable test, the total contents of the fly ash were very high in terms of the standard for waste-derived fertilizer. Through hydrothermal reaction, small amount of zeolite P was synthesied in 1 N of NaOH solution and relatively large amount of hydroxysodalite was synthesied in 3 N and 5 N of NaOH solution with similar peak intensity. Addition of an aging step in the synthesis didn't increase the amount of zeolite phase. Maximum $NE_4^+-N$ exchange capacity is 1.49 mg $NH_4^+-N/g$ in Z-3 and 1.38 mg $NH_4^+-N/g$ in Z-5. Most of the ammonium ion is exchanged in 30 minutes and disorption did not occur until 5 hours.

Adsorption Characteristics of Pesticides in Zeolites

  • Chang-Han Lee;Kil-Seong Kim;Sang-Kyu Kam
    • 한국환경과학회지
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    • 제31권12호
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    • pp.1103-1115
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    • 2022
  • The adsorption characteristics of four pesticides (phosphamidon, fenitrothion, triadimefon, and diniconazole) on natural clinoptilolite (CLIN) and three synthetic zeolites were investigated. The synthetic zeolites included faujasite (FAUF) synthesized from coal fly ash; the mixture of FAU and Na-P1 (FAU + Na-P1)SF synthesized using Jeju scoria and coal fly ash at the ratio of 1.5 by weight; and waste fluid catalytic cracking catalyst (FCCW). The distribution coefficient, KD and the Freundlich constant, KF decreased in the following sequence: FCCW > FAUF > (FAU + Na-P1)SF > CLIN among the zeolites and diniconazole>fenitrothion> triadimefon> phosphamidon among the pesticides. The pesticide adsorptivity increased with increasing temperature for FAUF, (FAU+Na-P1)SF and FCCW, however, it decreased for CLIN, regardless of the type of pesticide. The adsorptivity of pesticides was independent of pH for phosphamidon, fenitrothion and triadimefon, whereas it decreased with increasing pH for diniconazole, regardless of zeolite type.

제주 스코리아로부터 합성한 제올라이트 물질에 의한 암모니아성 질소의 흡착 특성 (Adsorption Characteristics of Ammonia-Nitrogen by Zeolitic Materials Synthesized from Jeju Scoria)

  • 이창한;현성수;감상규
    • 한국환경과학회지
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    • 제29권12호
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    • pp.1261-1274
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    • 2020
  • The characteristics of ammonia-nitrogen (NH4+-N) adsorption by a zeolitic material synthesized from Jeju scoria using the fusion and hydrothermal method was studied. The synthetic zeolitic material (Z-SA) was identified as a Na-A zeolite by X-ray diffraction, X-ray fluorescence analysis and scanning electron microscopy images. The adsorption of NH4+-N using Jeju scoria and different types of zeolite such as the Z-SA, natural zeolite, and commercial pure zeolite (Na-A zeolite, Z-CS) was compared. The equilibrium of NH4+-N adsorption was reached within 30 min for Z-SA and Z-CS, and after 60 min for Jeju scoria and natural zeolite. The adsorption capacity of NH4+-N increased with approaching to neutral when pH was in the range of 3-7, but decreased above 7. The removal efficiency of NH4+-N increased with increasing Z-SA dosage, however, its adsorption capacity decreased. For initial NH4+-N concentrations of 10-200 mg/L at pH 7, the adsorption rate of NH4+-N was well described by the pseudo second-order kinetic model than the pseudo first-order kinetic model. The adsorption isotherm was well fitted by the Langmuir model. The maximum uptake of NH4+-N obtained from the Langmuir model decreased in the order of Z-CS (46.8 mg/g) > Z-SA (31.3 mg/g) > natural zeolite (5.6 mg/g) > Jeju scoria (0.2 mg/g).

Na-A형 제올라이트의 합성 및 중금속에 대한 흡착능 (Synthesis of Na-A Type Zeolite and Its Ability to Adsorb Heavy Metals)

  • 채수천;장영남;배인국;이성기;류경원
    • 한국광물학회지
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    • 제21권1호
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    • pp.37-44
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    • 2008
  • 본 연구는 마포소각장에서 발생된 용융슬래그로부터 Na-A형 제올라이트를 합성하여 환경 저감재로 재활용키 위한 목적에서 수행되었다. 초기물질로 사용된 용융슬래그는 용제(flux)로 사용된 Fe 성분(19.6% of $Fe_2O_3$, and 18.9% of FeO)이 비교적 높기는 하지만, 상대적으로 제올라이트의 주요 성분인 $SiO_2$, $Al_2O_3$$Na_2O$가 각각 26.6%, 10.9% 및 2.7% 함유되어 제올라이트의 합성에 유리한 조성을 가지고 있다. 제올라이트의 수열합성은 $80^{\circ}C$에서 수행되었으며, $SiO_2/Al_2O_3\;=\;0.80{\sim}1.96$인 넓은 범위의 화학조성에서 Na-A형 제올라이트가 합성되는 것을 확인하였다. 제올라이트의 양이온 교환 능력은 10 h 이상의 합성시간에서 일정하게 거의 220 cmol/kg인 것으로 측정되었다. 합성된 제올라이트의 중금속 (As, Cr, Cd, Cu, Mn 및 Pb)에 대한 흡착능을 측정한 결과, As 및 Cr을 제외한 모든 중금속에서 높은 흡착율을 보였다. As와 Cr은 Eh-pH분석을 통해 각각 $HAsO_4^{2-}$$CrO_4^{2-}$인 이온상으로 존재하고 있음을 확인하였다. As와 Cr에 대한 제올라이트의 흡착률이 낮은 것은 이들 이온상들의 크기가 Na-A형 제올라이트의 pore size ($4\;{\AA}$)보다 상대적으로 큰 유효 이온반경($4\;{\AA}$, 직경 $8\;{\AA}$)을 가지고 있기 때문인 것으로 결론지었다.

제올라이트/DGEBA 복합재료의 경화 동력학과 기계적 계면특성 (Cure Kinetics and Mechanical Interfacial Characteristics of Zeolite/DGEBA Composites)

  • 박수진;김영미;신재섭
    • 대한화학회지
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    • 제47권5호
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    • pp.472-478
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    • 2003
  • 본 연구에서는 표면처리된 제올라이트에 따른 제올라이트/DGEBA의 경화 동력학과 기계적 계면특성을 고찰하였다. 경화제는 4, 4''-diamino diphenyl methane(DDM)을 사용하였으며, 제올라이트는(PZ) 15와 35 wt% KOH (15-BZ 그리고 35-BZ)로 표면처리하여 XPS와 XRD로 분석하였다. 경화 동력학은 DSC로 분석하였으며, 시편의 기계적 계면특성은 임계응력 세기인자(critical stress intensity factor, $K_{IC}$)와 임계변형에너지 방출속도(critical strain energy release rate, GIC)를 통하여 알아보았다. XPS와 XRD의 결과로부터, KOH로 표면처리된 제올라이트는 나트륨 (Na)이 칼륨(K)으로 이온교환되었으며, 표면처리로 인한 Al-O의 결합세기의 약화로 $Si_{2p}/Al{2p}$의 값이 증가하였다. 동적 DSC와 기계적 계면특성 결과로부터, 제올라이트/DGEBA 중에서 15-BZ의 경화 활성화에너지($E_a$)는 감소하였으며, $K_{IC}$$G_{IC}$는 증가하였다. 이러한 결과들은 제올라이트의 표면처리에 의해 산성도가 증가하였으며, 이렇게 증가된 산성도가 제올라이트와 에폭시 사이의 경화반응에 영향을 준 것으로 관찰된다.

The Effect of Co2+-Ion Exchange Time into Zeolite Y (FAU, Si/Al = 1.56): Their Single-Crystal Structures

  • Seo, Sung Man;Kim, Hu Sik;Chung, Dong Yong;Suh, Jeong Min;Lim, Woo Taik
    • Bulletin of the Korean Chemical Society
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    • 제35권1호
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    • pp.243-249
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    • 2014
  • Three single crystals of fully dehydrated $Co^{2+}$-exchanged zeolite Y (Si/Al = 1.56) were prepared by the exchange of $Na_{75}$-Y ($|Na_{75}|[Si_{117}Al_{75}O_{384}]$-FAU) with aqueous streams 0.05 M in $Co(NO_3)_2$, pH = 5.1, at 294 K for 6 h, 12 h, and 18 h, respectively, followed by vacuum dehydration at 673 K. Their single-crystal structures were determined by synchrotron X-ray diffraction techniques in the cubic space group Fd3m at 100(1) K. They were refined to the final error indices $R_1/wR_2$ = 0.0437/0.1165, 0.0450/0.1228, and 0.0469/0.1278, respectively. Their unit-cell formulas are $|Co_{29.1}Na_{11.8}H_{5.0}|[Si_{117}Al_{75}O_{384}]$-FAU, $|Co_{29.8}Na_{11.0}H_{4.4}|[Si_{117}Al_{75}O_{384}]$-FAU, and $|Co_{30.3}Na_{9.5}H_{4.9}|[Si_{117}Al_{75}O_{384}]$-FAU, respectively. In all three crystals, $Co^{2+}$ ions occupy sites I, I' and II; $Na^+$ ions are also at site II. The tendency of $Co^{2+}$ exchange slightly increases with increasing contact time as $Na^+$ content and the unit cell constant of the zeolite framework decrease.

화력발전소에서 발생하는 석탄비산재로부터 합성한 Na-A 제올라이트의 Sr 이온 제거 특성 (Removal Characteristics of Sr Ion by Na-A Zeolite Synthesized using Coal Fly Ash Generated from a Thermal Power Plant)

  • 이창한;감상규;이민규
    • 한국환경과학회지
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    • 제26권3호
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    • pp.363-371
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    • 2017
  • This study evaluates the adsorption properties of Sr ions in an aqueous solution of the synthetic zeolite (Z-Y1) prepared using coal fly ash generated from a thermal power plant. In order to investigate the adsorption characteristics, the effects of various parameters such as the initial concentrations of Sr ion, contact time, and solution pH were investigated in a batch mode. The Langmuir and Redlich-Peterson model fitted the adsorption isotherm data better than the Freundlich model. The maximum adsorption capacity of Sr ions, as determined the Langmuir model, was 181.68 mg/g. It was found that by varying the Sr ion concentration, pH, and temperature, the pseudo-second-order kinetic model describes the adsorption kinetics of the Sr ion better than the pseudo-first-order kinetic model. The calculated thermodynamic parameters of ${\Delta}H^0$ and ${\Delta}G^0$ showed that the adsorption of Sr ions on Z-Y1 was occurred through a spontaneous and an endothermic reaction. We found that the adsorption of Sr ions by Z-Y1 was more affected by pH than by temperature and Sr ion concentration.