• Title/Summary/Keyword: 응집제 염기도

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Effect of the Al(III) Coagulant Basicity on Phosphorus Removal in Sewage Treated Water (하수처리수의 인 제거에 미치는 Al(III) 응집제 염기도의 영향)

  • Han, Seung-Woo;Lee, Chul-Hee;Lee, Jae-Kwan;Kang, Lim-Seok
    • Journal of Korean Society of Environmental Engineers
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    • v.34 no.3
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    • pp.149-154
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    • 2012
  • According to the coagulation tests for PACs with various basicities, the PACB with lower basicity showed higher coagulation efficiencies of organics and phosphorus than the PAC with higher basicity. The PACB contained higher amount of monomeric Al (III) hydrolytic species comparing with PAC. In case of the coagulation for the sewage treated water, the coagulation efficiency by the charge neutralization and sweep floc formation was higher with PACB than with PAC. Accordingly, when $Al_2O_3$ concentration was similar in the coagulant, PACB showed higher removal efficiencies of turbidity, $COD_{Mn}$, TP, and $PO_4$-P comparing with PAC, especially in the lower range of coagulant dose.

Comparison of Al(III) and Fe(III) Coagulants for Improving Coagulation Effectiveness in Water Treatment (정수처리 응집효율 개선을 위한 Al(III)염과 Fe(III)염 응집제의 비교)

  • Han, Seung woo;Kang, Lim seok
    • Journal of Korean Society of Environmental Engineers
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    • v.37 no.6
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    • pp.325-331
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    • 2015
  • The experimental results of the characteristics of aluminum based and ferric based coagulants for the Nakdong River water showed that the main hydrolysis species contained in alum and $FeCl_3$ are monomeric species of 98% and 93.3%, respectively. The PACl of r=1.2 produced by the addition of base contained 31.2% of polymeric Al species and the PACl of r=2.2 contained 85.0% of polymeric Al species, as showing more polymeric Al species with increasing r value. Coagulation tests using Al(III) and Fe(III) salts coagulants for the Nakdong River water showed that the coagulation effectiveness of turbidity and organic matter was high in the order of $FeCl_3$ > PACl (r=2.2) > PACl (r=1.2) > alum. $FeCl_3$ has showed better flocculation efficiency than Al(III) salts coagulants. In addition, in case of Al(III) coagulants, the Al(III) coagulants of higher basicity, which contained more polymeric Al species, resulted in better coagulation efficiency for both turbidity and organic matter removed. The optimum pH range for all of the coagulants investigated was around pH 7.0 under the experimental pH range of 4.0~9.5. Especially, the highest basicity PACl (r=2.2) and $FeCl_3$ were considered as more appropriate coagulants for the removal of turbidity in the case of raw water exhibiting higher pH.

Removal Mechanism of Phosphorus in Wastewater Effluent using Coagulation Process (응집공정을 이용한 하수처리수 중의 인 제거 Mechanism)

  • Han, Seung-Woo;Kang, Lim-Seok
    • Journal of Korean Society of Environmental Engineers
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    • v.32 no.8
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    • pp.774-779
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    • 2010
  • The experimental results for the analysis of aluminum hydrolysis species with PACls (polyaluminum chloride) prepared by different basicity (r value) showed that monomeric Al species were reduced while polymeric Al species were increased with an increase in basicity for PACls. The PACl with 2.2 of r value contained the highest amount of polymeric Al species. According to the experimental results for the phosphorus removal, the alum and PACl (r=0), which consisted of mainly monomeric Al species, were the most effective for phosphorus removal. Therefore, it was concluded that the Al coagulant containing higher amount of monomeric or lower molecular Al species would be more beneficial for phosphorus removal.

Development of Coagulants and Application in Field (국내 수질에 맞는 응집제 개발 및 현장적용)

  • 곽종운;김용태;김봉준;김철웅
    • Environmental engineer
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    • s.173
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    • pp.71-76
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    • 2001
  • 본 연구과제는 기존의 응집제에 비하여 우수한 신규 응집제를 개발하는 것으로 목표로 추진했다. 그간의 연구에서 기존의 응집제에 비하여 탁월한 응집성능을 발휘하는 고염기도(70$\%$)응집제인 Ca-PAX를 개발하였다. Ca-PAX는 탁도 제거에서 기존의 PAC에 비하여 70$\%$ 이하의 투입량으로도 동일한 처리결과를 보이며, 유기물 제거에서도 탁월한 성능을 보였다. 또한 적은 투입량으로도 우수한 처리성능을 보이기

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The Effects of pH and Dosages According to Qualities of Raw Waters and Basicity of Coagulants (원수 수질특성과 응집제 염기도에 따른 응집 pH 및 주입량의 영향)

  • Park, Noh-Back;Lee, Bum;Tian, Dong-Jie;Lee, Young-Ju;Jun, Hang-Bae
    • Journal of Korean Society of Water and Wastewater
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    • v.24 no.5
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    • pp.581-593
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    • 2010
  • The objectives of this study were to investigate the effects of raw water pH and basicity of coagulants on turbidity removal with several raw waters having different level of turbidity, alkalinity and pH. Raw waters were sampled from M, S and B water treatment plants(WTP) located at Miryang, Nakdong, Han river, respectively. Six coagulants which have different levels of basicity and aluminum contents were used for this evaluation. High basicity of the coagulant helped to properly control coagulation processes for treating turbid and low alkali raw water. It was difficult for operators to determine optimum coagulant dose for high basicity coagulants, since residual turbidity tended to decrease continuously as coagulant dose increased. Turbidity removal efficiencies with high basicity coagulants(E and F) were higher than the other coagulants at ambient pH for the M WTP. Turbidity removal efficiencies, however, at adjusted pH 7.0 showed similar among six coagulants. Residual turbidity kept low at excess dosages with high basicity coagulants. Optimum coagulant dosages at adjusted pH 7.0 showed higher than those at ambient pH in M WTP. On the contrary in B WTP, optimum coagulant dosage at ambient pH were higher than that at adjusted pH 7.0.

Comparison of Fe(III) Coagulants and their Characterization for Water Treatment (수처리용 Fe(III)계 응집제의 특성 및 응집특성 비교)

  • Han, Seung Woo;Kang, Lim Seok
    • Journal of Korean Society of Environmental Engineers
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    • v.38 no.4
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    • pp.169-176
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    • 2016
  • This research explored the feasibility of preparing and utilizing preformed polymeric solution of Fe(III) as coagulants for water treatment. The differentiation and quantification of hydrolytic Fe(III) species in coagulant was done by utilizing spectrophotometric method based on the interaction of Fe(III) with Ferron as a complexing agent. The properties of the synthesized polymeric iron chloride (PICl) showed that the quantity of polymeric Fe(III) produced at r = 1.5 was 20% of the total iron in solution, as showing maximum contents. Coagulation experiments were conducted under the condition of various coagulant doses and pH for each coagulant prepared. From the comparison of the characterization of coagulation for $FeCl_3$ (r = 0.0) and PICl (r = 0.5, 1.0, 1.5) coagulants, PICl (r = 0.5, 1.0, 1.5) coagulants was found to be more effective than other coagulant for the removal of organic matters. The experimental results for the coagulation tests at various pH ranges showed that the PICl was least affected by the coagulation pH and PICl was very effective for the removal of turbidity and organic materials over wide pH range (pH 4-9) tested.

Changes in the Removal Efficiency of Total Phosphorus by the Basicity of Al(III) Coagulant (Al(III) 응집제의 염기도에 따른 총인 제거효율의 변화)

  • Han, Seung-Woo;Lee, Chul-Hee;Lee, Jae-Kwan;Kang, Lim-Seok
    • Journal of Korean Society of Water and Wastewater
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    • v.26 no.2
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    • pp.229-236
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    • 2012
  • The analysis of Al (III) hydrolysis species with PACls prepared by different basicity showed that mononmeric Al species were reduced while precipitate Al species were increased with an increase in basicity for PACls. In the case of the PACl with 13.6% basicity, monomeric Al species were 81%, polymeric Al (III) species 19%, precipitate Al (III) species was 0%, as showing the dominant monomeric Al species. The PACl with 13.6% basicity showed above 80% of turbidity removal efficiency without any restabilization. In addition, the PACl with 13.6% basicity showed higher organic removal expressed by $UV_{254}$ which was caused by lower coagulation pH. The PACl containing the higher amount of monomeric Al species was the most beneficial for T-P and $PO_{4}-P$ removal.

The Study on Manufacture of PACl(Polyaluminum Chloride) from Water Treatment Plant Sludges (정수장 슬러지(Alum Sludge)로부터 PACl(Polyaluminum Chloride) 응집제 제조에 관한 연구)

  • Kim, In-Bae;Lee, Sang-Bong;Kim, Dong-Youn;Kim, Boo-Gil
    • Journal of Korean Society of Environmental Engineers
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    • v.22 no.3
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    • pp.441-451
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    • 2000
  • Sludge produced from water treatment plants contains plenty of aluminum due to addition of coagulants, polyaluminum chloride(PACI) which has been widely used in most of water treatment plants. however. the whole of PACI is imported from other countries. In this research. the effective methods for recycling PACI from sludge of water treatment plants were developed and evaluated. Aluminum chloride hexahydrate($AlCl_3{\cdot}6H_2O$) was obtained by sparging HCl gas aluminum extracted from sludge using hydrochloric acid (HCI). This aluminum chloride hexahydrate was solidified by decomposition at $180^{\circ}C$. and dissolved in water to produce PACI. The optimum extraction rate was obtained at the condition of 10 minutes of reaction time. $105^{\circ}C$ of reaction temperature. 27.65%(W/W) of HCI concentration. The KS experiment proved that manufactured aluminum chloride hexahydrate was 98.7% degree and the recycled PACI coagulants agreed with the KS standard. The optimum temperature of decomposition was $180^{\circ}C$ and the basicity of the PACI was decided upon the extent of decomposition The compared experiments between purchased coagulant and manufactured coagulant presented that both coagulants had same performance for turbidity, DOC, $UV_{254}$ absorbance. and chlorophyll-a.

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The Predilution Effect of Al-based Liquid Coagulants for the Optimal Efficacy (최적 응집 효율을 위한 Al계 액상 응집제의 희석 효과)

  • Heo, Jae-Yong;Lee, Sang-Wha
    • Applied Chemistry for Engineering
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    • v.17 no.1
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    • pp.37-43
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    • 2006
  • The coagulation efficacy of Al-based coagulants (such as Alum, PACS, and PACC) was investigated to ascertain removal efficiencies of turbidity and phosphate with variation of solution pH, coagulant dosages, and pre-dilution ratios. The efficacy of Al-based coagulants was maximized in the pH range of 6~9. Under the initial condition of pH 8, $10mg/L\;{PO_4}^{3-}$, and 20 NTU, Al-based coagulants exhibited a similar efficacy in the removal of turbidity, whereas the removal efficiency of phosphate was clearly dependent on the basicity of coagulants: Alum (0%) > PACS (45~50%) > PACC (70%). At high initial turbidity of 100 NTU, polymeric coagulants, such as PACS and PACC, exhibited a higher removal efficiency of turbidity compared to Alum. In comparison to direct injection of coagulants at low initial turbidity (20 NTU), 500~2000 times pre-diluted Alum, exhibited reduced coagulation efficacy; however, removal efficiencies of turbidity and phosphate increased with the increase of retention time. Pres-diluted PACC exhibited the enhanced coagulation efficacy followed by silght decrease of the removal efficiencies with increase of the retention time. At high initial turbidity of 100 NTU, pre-diluted Alum and PACC exhibited higher removal efficiencies of turbidity and phosphate.

Improved Coagulant for High Efficiency Phosphorus Removal in Secondary Effluent of Waste Water Treatment Plant (하수처리장 2차 처리수의 고효율 인 제거를 위한 응집제 개선)

  • Choi, Jeung-seung;Lee, Byung-ha;Kim, Ki-pal;Baek, Dae-jin
    • Journal of Korean Society of Water and Wastewater
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    • v.30 no.6
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    • pp.683-690
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    • 2016
  • Modified coagulants were investigated for the removal of phosphorus from secondary effluent of wastewater treatment. The modified coagulants were prepared by mixing alkali earth metal ions such as calcium and magnesium. The basicity of a coagulant influenced on the removal of phosphorus, and coagulants with basicity of 5.9% showed a better removal of total phosphorus than that of 38.5%. Also, coagulants with alkali earth metals enhanced the performance of coagulation by 10% and resulted in 67.1% for total phosphorus removal. Moreover, the removal of suspended solids and chemical oxygen demand was improved using coagulants with low basicity and earth metal ions. Results of this study demonstrated that the use of coagulants with low basicity, and calcium and magnesium ions is recommended to improve wastewater effluent quality.