• Title/Summary/Keyword: 인산염제거

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Removal of Phosphate in Solution through the Utilization of Gibbsite (Gibbsite에 의한 용액 중의 인산염제거)

  • 현재혁;남인영
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 1997.05a
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    • pp.97-100
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    • 1997
  • 본 연구에서는 알루미늄 제작 공정에서 폐기물로 발생하는 gibbsite를 이용하여 용액 내에 존재하는 인산염을 제거하였다. 실험을 수행함에 있어 용액의 pH를 3, 7, 10으로 변화시켜 보았고 인산염 제거에 미치는 여러 인자들 중에서 P : Al 의 비율이 미치는 영향을 살펴보고자 인산염의 농도를 100, 200, 500, 800, 1000 mg/l 로 변화시켰으며, gibbsite 의 양을 2, 4, 8, 10 g 으로 변화시켜 실험하였다. 이러한 실험 결과로부터 72 hr 이후에 용액 내의 인산염 농도가 일정하게 유지된다는 것을 알 수 있있다. 인산염의 제거율은 pH가 낮을수록 높아졌다. 또한 인산염의 초기농도가 낮을수록 제거율이 높아졌으며, 투여된 gibbsite 의 양이 많을수록 제거율이 높아지는 것으로 나타났다.

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Fundamental Studies on the Calcium Precipitation for the Reuse of Wastewater Containing Phosphate (칼슘 침전처리에 의한 인산폐수 재사용에 관한 연구)

  • Kim Yaung-Im;Kim Dong-Su
    • Resources Recycling
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    • v.12 no.4
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    • pp.38-43
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    • 2003
  • Phosphate is an essential material for the growth of organisms. However. since relatively small amount is required. a large amount of phosphate is abandoned in wastes and wastewater. which contaminate the ecological environment including aquatic system. Purpose of this study is to treat especially high concentrated phosphate wastewater by use of calcium precipitation method. The pH range considered was from 6 to 12 and the maximum removal of phosphate was attained at pH 12. The con-centration of phosphate was observed to decrease rapidly until a half amount of calcium ion to its equivalent for the formation of calcium phosphate precipitate was added. which resulted in the decrease of the remaining concentration of phosphate down to 0.0027 mM. The effect of fluoride ion was examined and the concentration ratio between the phosphate and fluoride ion did not have any significant influence on the removal efficiency of phosphate. The effect of pH was also investigated. With the increasing of the pH in solution, the removal rate of phosphate was increased. Also it was investigated that the effect of fluoride on the phosphate removal was not significant.

Relation between Leaching Characteristics of the positive Ions and Phosphate Removal by granular Converter Slag for the different Conditions and Concentrations of Phosphate (인산염 농도와 폐수조건 변화에 따른 입상 전로슬래그의 양이온 용출 특성과 인산염 제거의 관계에 관한 연구)

  • Lee, In-Gu;Lee, Sang-Ho
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.8 no.2
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    • pp.372-379
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    • 2007
  • The converter slag can be used to remove phosphate ion into the form of solid state from the wastewater. This research aims to evaluate the change of pH, alkalinity, leaching of positive ion in the wastewater and the removal of phosphate from the initial condition of wastewater. The change of pH was abruptly increased upto pH 11 for the initial condition of pH from 7.0 to 8.5 fer 0.5 unit of pH. The alkalinity was steadily increased from 10 hours of reaction time not same as pH increase. The removal of phosphate was very effective till 10 hours of reaction then it was slow after that time. The positive ion, magnesium ion was leached from the concentration of 2.0 mg/L to 4.3mg/L at the reaction time of 27 hours and 36 hours. Therefore, converter slag can be used to remove the phosphate in the form of Struvite from the wastewater.

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Phosphorous Removal from Synthetic Wastewater Using a Continuous Flow Column Packed with Waste Lime Core (부산석회 Core로 충진된 연속식 칼럼을 이용한 인공폐수 내 인제거)

  • Lee Eui-Sang
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.7 no.4
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    • pp.709-714
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    • 2006
  • The propose of this study was to investigate the feasibility of using waste lime core to remove phosphorus from wastewater in continuous flow reaction. The phosphorus was found to be removed from municipal wastewater by hydroxyapatite crystallization and precipation. Waste lime core size 1, 2 showed phosphorus removal rate of about 90% during early 11 hrs of run time. In addition, breakpoint time was decreased by increased inflow rate regardless of waste lime core size.

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A Study on Phosphate Removal Efficiency by Pre-Treatment Conditioning of Oyster Shells (굴 패각의 전처리 조건에 따른 인산염 제거효율에 관한 연구)

  • Woo, Hee-Eun;Kim, Kyeongmin;Lee, In-Cheol;Kim, Kyunghoi
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.24 no.2
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    • pp.196-202
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    • 2018
  • In this study, we investigated phosphate removal efficiency according to pretreatment (pyrolysis temperature, pyrolysis time, particle size) of oyster shells as a basic study for their recycling. And XAFS analysis and isothermal adsorption experiments were performed to investigate the phosphate removal characteristics of oyster shells. As a result, the removal efficiency was good at $600^{\circ}C$ pyrolysis temperature with 6 hour pyrolysis time and 0.355 ~ 0.075 mm particle size. Isothermal adsorption experiments showed that the Langmuir model is suitable for adsorption of oyster shells. XAFS analysis showed that calcium phosphate formed on the oyster shell pyrolyzed at $600^{\circ}C$. In other words, it was confirmed that the formation of calcium phosphate by the calcium ion elution of the oyster shell contributes to the decrease of phosphate concentration.

Application of Rare Earth Compounds for the Treatment of Phosphate and Fluoride in Wastewater (인산염 및 불소폐수 처리제로서의 희토류 화합물 적용에 관한 연구)

  • Kim, Jin-Wha;Shin, Sung-Hye;Song, Hye-Won;Kim, Dong-Su;Woo, Sang-Mo;Kwon, Young-Shik
    • Journal of Korean Society of Environmental Engineers
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    • v.22 no.6
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    • pp.1127-1137
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    • 2000
  • Applications of lanthanum ion and crude rare earth chloride to the phosphate wastewater and fluorine wastewater, respectively, as treatment agents were studied. For the investigation of phosphate removal characteristics according to the amount of lanthanum ion, initial phosphate content was decreased by about 50% when molar ratio of [$La^{3+}$]:[$PO_4{^{3-}}-P$] was 0.25 and nearly all of phosphate was removed when the molar ratio of [$La^{3+}$]:[$PO_4{^{3-}}-P$] to be doubled. The removal of phosphate by $La^{3+}$ appeared to reach equilibrium state rapidly, and it was exothermic reaction since the removed amount of phosphate was diminished somewhat when the reaction temperature was increased. The zeta potential of combined particulate compound of lanthanum ion and phosphate was located for its isoelectric point at pH 5.5 and the turbidity of treated wastewater was found to vary according to the pH in a similar manner as the absolute value of zeta potential of the combined particulate compound did. For the treatment of fluorine wastewater by crude rare earth chloride, the remaining fluorine content after treatment decreased as the dosage of crude rare earth chloride increased. Whereas, the turbidity of treated wastewater and the amount of sludge generated were shown to increase as more crude rare earth chloride was added. The remaining fluorine content and the turbidity of treated wastewater were decreased and the amount of sludge generated was observed to increase according the increase of coagulant dosage under the condition of constant input of crude rare earth chloride.

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Nickel recovery and phosphorus removal from spent electroless Nickel-plating solution (무전해 니켈도금 폐액으로부터 니켈회수와 인의 제거방법)

  • Kim, Yu-Sang;Jeong, Gwang-Mi
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2015.11a
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    • pp.312-313
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    • 2015
  • 무전해 도금은 석출응력이 낮고 작업하기가 용이하기 때문에 산업분야에 있어서 중요한 역할을 한다. 무전해 도금 공정에 있어서, 니켈금속은 차아인산염, 아미노보레인 혹은 수소화붕소 화합물($HBF_4$)에 의한 니켈이온의 화학적 환원에 의해 도금된다. 환원반응이 진행함에 따라서 도금액 중에서 니켈과 차아인산염 이온은 감소한다. 이에 이러한 이온을 보충하기 위하여 도금액 중에 황산니켈과 차아인산나트륨이 일반적으로 첨가된다. 하지만 축적된 인산염, 황산염, 나트륨과 이외의 물질이 전착 박막의 품질을 떨어뜨리고 도금액은 폐기되기도 한다. 니켈회수 속도는 종래의 50% 이하였던 것이 90%이상으로 향상되었다. 이온교환법은 니켈도금 폐액으로부터 니켈회수에 필요한 친환경적이고 원가절감의 기술이라고 사료된다. 특히, 갈탄이 저렴하고 양이온 교환성능이 뛰어나다. 이유는 -COOH, -OH 등의 기능성 그룹을 갖기 때문이다. Fe-P 화합물은 식물에 유용하지 못하고 마그네슘과 칼슘 기반의 석출물은 저렴하고 취급이 용이하며 비료와 같이 재활용이 가능하기 때문에 일반적인 인의 제거 수단이 될 수 있다. 본고에서는 니켈도금 폐액으로부터 인을 제거하는 데 $Ca(OH)_2$, $CaCl_2$$CaCO_3$를 채택하여 인이 제거되는 정도를 비교하였고 니켈회수율을 높이기 위하여 갈탄을 사용하였다.

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Adsorption of Nitrate and Phosphate onto the Dredged Sediment from a Coastal Fishery (연안어장 준설퇴적물에 대한 질산염과 인산염의 흡착)

  • Sun, Young-Chul;Kim, Myoung-Jin;Song, Young-Chae
    • Journal of Navigation and Port Research
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    • v.36 no.6
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    • pp.459-463
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    • 2012
  • In the present study, experiments have been performed to investigate the effects of the type of adsorbent, pH, and ionic strength on the adsorption of nutrients (nitrate and phosphate in artificial solution) onto the dredged sediment from a coastal fishery. In addition, this study aims to evaluate the possibility of removing the nutrients from the water using the dredged sediment. In the adsorption experiments of the nutrients, the reactions were completed within 10 minutes using ${NO_3}^-$-N($100{\mu}M$, 10mM) and ${PO_4}^{3-}$-P($100{\mu}M$, 10mM). In the steady state, 61% and 77% of the initial amounts were removed respectively for $100{\mu}M$ ${NO_3}^-$-N and $100{\mu}M$ ${PO_4}^{3-}$-P. The thermal treatment of the dredged sediment at $900^{\circ}C$ was not helpful to increase the removal efficiencies of the nutrients. Additives such as CaO and MgO dropped the removal efficiency of ${NO_3}^-$ to 0%, but increased that of ${PO_4}^{3-}$ up to 98%. Adsorption isotherms of ${NO_3}^-$ and ${PO_4}^{3-}$ could be explained by the Freundlich equation ($R^2$>0.99). The adsorption reaction was little influenced by the pH and ionic strength. Based on the results showing short reaction time and considerably high removal efficiencies of the nutrients, it is proposed to apply the dredged sediment from a coastal fishery to removing nutrients such as nitrate and phosphate in the water.

Phosphate Removal in the Wastewater by the different Size of Granular Converter Slag (입상 전로슬래그의 입도 차이에 따른 인공폐수의 인산염 제거에 관한 연구)

  • Lee, Sang-Ho;Lee, In-Gu
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.8 no.1
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    • pp.136-142
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    • 2007
  • Recent publications have paid attention on the utilization of solid reagents for the removal of substances causing eutrophication, in particular $PO_4^{3-}$ ions. The adsorption of dissolved inorganic phosphate on slag produced by the refining process of iron ore was fundamentally studied for suppressing the liberation of phosphate from wastewater. This study has been conducted in order to find a possibility to improve the phosphate removal and to evaluate the phosphate removal variation to form hydroxyapatite, when the converter slag is used for phosphate removal. The result shows that the converter slag can be applied to remove phosphate using Freundlich isotherm. The size of converter slag, $2{\sim}0.425 mm$ was more efficient than $2{\sim}4.75mm$ to remove phosphate. In particular, 1 mg/L of phosphate can be removed up to 80% of the initial concentration for the continuous column experiment.

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