• 제목/요약/키워드: $TiO_2$ wastewater

검색결과 110건 처리시간 0.025초

다기능 금속산화물의 하수처리 적용-흡착 및 살균 (The application of multifunctional metal oxide for wastewater treatment: Adsorption and disinfection)

  • 김희곤;박덕신;안병렬
    • 상하수도학회지
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    • 제33권4호
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    • pp.251-258
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    • 2019
  • The physical treatment such as chemical precipitation or adsorption was usually added after biological treatment in wastewater treatment process since it was enforced to reduce the concentration of phosphate for wastewater effluent to 0.2 mg/L as P which was well known as one of main nutrient causing eutrophication in waterbody. Therefore, the new material functioned for both adsorption and disinfection was prepared with Fe and Cu, and $TiO_2$, respectively, by changing the ratio of concentration referred to tri-metal (TM). According to SEM-EDS, $TiO_2$ was 30~40% composition for any TM regardless of any synthesis condition. However, the ratio of composition for Fe and Cu was dependent on the initial Fe and Cu concentration, respectively. The removal efficiency of phosphate was obtained to 15% at low initial concentration and the maximum uptake (Q) was calculated to ~11 mg/g through Langmuir isotherm model using TM1 which was synthesized at 1000 mg/L, 1000 mg/L, and 2 g (10 g/L) for $Fe(NO_3)_3$, $Cu(NO_3)_2$, $TiO_2$, respectively. In disinfection test, the efficiency of virus removal using TM was increased with increase of dosage of TM and can be reached 98% at 0.2 g.

Study of COD Removal Efficiency from Synthetic Wastewater by Photocatalytic Process

  • Rojviroon, Orawan;Rojviroon, Thammasak;Sirivithayapakorn, Sanya
    • Environmental Engineering Research
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    • 제19권3호
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    • pp.255-259
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    • 2014
  • In this research, we compared the COD removal efficiencies of titanium dioxide ($TiO_2$) thin films coated on the surfaces of borosilicate glass that prepared by three different numbers of coating layer; i) 3 layers ii) 4 layers and iii) 5 layers by sol-gel method. All of the prepared $TiO_2$ thin films consisted of pure anatase crystalline structure with grain sizes in the range 20-250 nm. The calculated optical band gaps of the $TiO_2$ thin films were 3.24. The total apparent surface area per total weight of $TiO_2$ thin films were 4.74, 3.86 and $2.79m^2g^{-1}$ for 3, 4 and 5 layers coating, respectively. The kinetics of the photodegradation reactions of COD under UVA light source were described by the Langmuir-Hinshelwood (L-H) kinetic model. The specific rates of the photodegradation of $TiO_2$ thin films at 3 layers coating was $1.40{\times}10^{-4}min^{-1}mW^{-1}$, while for the 4 layers coating and the 5 layers coating were $1.50{\times}10^{-4}$ and $4.60{\times}10^{-4}min^{-1}mW^{-1}$, respectively. The photocatalytic performance of COD degradation was higher with smaller grain size, higher surface area and narrow optical band gaps. Moreover, the numbers of coating layer on substrate also have great influence for kinetic of COD removal.

UV/$TiO_2$ 시스템을 이용한 Rhodamine B의 색도 제거 (Decolorization of Rhodamine B Using UV/$TiO_2$ System)

  • 박영식;나영수;안갑환
    • 한국환경보건학회지
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    • 제28권5호
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    • pp.59-64
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    • 2002
  • The photocatalytic decolorization of the Rhodamine B (RhB) was studied using a UV/TiO$_2$ reactor. Yakuri titanium dioxide(anatase) was used as the suspended photocatalyst and proved to be effective for decolorization irradiated with UV light (254 mm). The photocatalyzed dioxide concentrations, light intensity and air flow rates. In 0.01 mM RhB, color could be completely photodegraded after 3 hours. Absorption spectrum of an aqueous solution containing RhB showed a continued diminution of the RhB concentration in the solution bulk : concomitantly, no new absorption peaks appeared. This confirmed the decolorization of RhB, i.e., the break up of the chromopore. The optimum loaded titanium dioxide for the decolorization was 0.75 g/(equation omitted). The light intensity showed exponential decay with distance. The decay of light intensity of RhB solution showed different tendency from TiO$_2$. These results suggested that the photocatalytic decolorization of dyes may be available method for decolorizing in wastewater.

TiO2를 이용한 암모니아성 질소 제거에 관한 광촉매 산화반응 (Photocatalytic oxidation reaction in removal of NH4-N by using TiO2)

  • 박상원;김정배
    • 한국환경과학회지
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    • 제12권10호
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    • pp.1071-1077
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    • 2003
  • The aim of this study is, firstly, to find out what kinds of inorganic species are produced in the photocatalytic oxidation of ammonium-nitrogen containing water and, secondly, to seek the influence of anion for the photocatalytic oxidation of ammonium contained compounds. The photoenergy above 3 eV(λ <415 nm) was effectively absorbed by TiO$_2$ and TiO$_2$/polymer was used to be oxidized NH$_4$-N in wastewater to NO$_3$-N. Existing the anion as Cl$\^$-/, the rate of photocatalytic oxidation decreased regardless of other condition. This result showed that the chloride ions reduced the rate of oxidation by scavenging oxidizing radical species as OH$\^$-/ and OCl$\^$-/. Some of the added ion might have blocked the active sites of the catalyst surface, thus deactivated the catalyst.

태양광/자외선/이산화티타늄($TiO_2$)을 이용한 에너지 절약형 광촉매 반응 처리시스템 개발 (Development of Wastewater Treatment System by Energy-Saving Photocatalyst Using Combination of Solar Light, UV Lamp and $TiO_2$)

  • 김현용;양원호
    • 한국환경보건학회지
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    • 제29권1호
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    • pp.51-61
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    • 2003
  • Pollution purification using titanium dioxide (TiO$_2$) photocatalyst has attracted a great deal of attention with increasing number of relent environmental problems. Currently, the application of TiO$_2$ photocatalyst has been focused on purification and treatment of waste water. However. the use of conventional TiO$_2$ powder photocatalyst results in disadvantage of stirring during the reaction and of separation after the reaction. And the usage of artificial UV lamp has made the cost of photocatalyst treatment system high. Consequently, we herein studied the pilot-scale design to aid in optimization of the energy-saving process for more through development and reactor design by solar light/UV lamp/ TiO$_2$system. In this study, we manufactured the TiO$_2$sol by sol-gel method. According to analysis by XRD, SEM and TEM, characterization of TiO$_2$ sol were nano-size (5-6 nm) and anatase type. Inorganic binder (SiO$_2$) was added to TiO$_2$ lot to be coated for support strongly, and support of ceramic bead was used to lower separation rate that of glass bead The influences were studied of various experimental parameters such as TiO$_2$ quantity, pH, flow rate. additives, pollutants concentration, climate condition and reflection plate by means of reaction time of the main chararteristics of the obtained materials. In water treatment system, variable realtor as solar light/ or UV lamp according to climate condition such as sunny and cloudy days treated the phenol and E-coli(Escherichia coli) effectively.

UV/TiO2 광촉매반응에 의한 페놀의 분해 특성 (Characteristics of Phenol Degradation by using UV/TiO2 Photocatalysis)

  • 신인수;최봉종;이승목
    • 한국물환경학회지
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    • 제20권5호
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    • pp.488-493
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    • 2004
  • The effects were examined from several conditions of $TiO_2$ photocatalysis reaction to phenols degradation by changing it's reacting conditions such as phenol concentration, pH, $TiO_2$ concentration, $H_2O_2$ concentration, flow rate, and intensity of ultraviolet rays. Phenol degradation was more efficient in low concentration of phenol, neutral pH. Phenol degradation appeared to increase as concentration of $TiO_2$ photocatalyst, that of $H_2O_2$ and intensity of ultraviolet rays increased. As $TiO_2$ dosage increased, initial rate constant k linearly increased. When $H_2O_2$ was injected more than optimum, phenol removal rate didn't increase in proportional to the change of $H_2O_2$ concentration as OH radicals was being consumed. When flow rate is less than $4.75m^3/m^2$ day, phenol removal efficiency appeared to decrease as ultraviolet rays transmission rate becomes low by $TiO_2$ suspension coated in photo reaction column. Meanwhile, initial rate constant according to light intensity change in less than $25mW/cm^2$ appeared to be in proportion to light intensity ($mW/cm^2$) Removal efficiency decreased about 12% after 180 minutes of reaction time while showed stable removal efficiency of 100% after 300 minutes when using regenerated $TiO_2$.

광촉매(光觸媒) 산화(酸化) 반응(反應)을 이용한 클로로페놀 분해(分解)에 관한 연구(硏究) (A Study on the Removal of Chloro-Phenols by Photocatalytic Oxidation)

  • 이상협;박주석;박중현
    • 상하수도학회지
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    • 제9권4호
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    • pp.87-96
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    • 1995
  • The Electron/Hole Pair is generated when the activation energy produced by ultraviolet ray illuminates to the semiconductor and OH- ion produced by water photocleavage reacts with positive Hole. As a results, OH radical acting as strong oxidant is generated and then Photocatalytic oxidation reaction occurs. The photocatalytic oxidation can oxidate the non-degradable and hazardous organic substances such as pesticides and aromatic materials easier, safer and shorter than conventional water treatment process. So in this study, many factors influencing the oxidation of chlorophenols, such as inorganic electrolytes addition, change of oxygen and nitrogen atmosphere, temperature, pH, oxygen concentration, chlorophenol concentration, were throughly examined. According to the experiments observations, it is founded that the rate of chlorophenol oxidation follows a first-order reaction and the modified Langmuir-Hinshelwood relationship. And the photocatalytic oxidation occurs only when activation energy acting as Electron/Hole generation, oxygen acting as electron acceptor to prevent Electron/Hole recombination, $TiO_2$ powder acting as photocatalyst are present. The effects of variation of dissolved oxygen concentration, temperature and inorganic electrolytes concentration on 2-chlorophenol oxidation are negligible. And the lower the organic concentration, the higher the oxidation efficiency becomes. Therefore, the photocatalytic oxidation is much effective to oxidation of hazardous substances at very low concentration. The oxidation is effective in the range of 0.1 g/L-10 g/L of $TiO_2$. Finally when the ultra-violet ray is illuminated to $TiO_2$, the surface characteristics of $TiO_2$ change and Adsorption/Desorption reaction on $TiO_2$ surface occurs.

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UV-assisted surface modification of polyethersulfone (PES) membrane using TiO2 nanoparticles

  • Singh, Shruti;Karwa, Vinay;Marathe, K.V.
    • Membrane and Water Treatment
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    • 제9권6호
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    • pp.393-403
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    • 2018
  • In this research commercial polyethersulfone (PES) membrane was modified using $TiO_2$ nanoparticles (P-25 Degussa) and further irradiated using UV light to overcome the hydrophobicity and fouling nature of the membrane. Further the membranes were characterized using SEM and FTIR. Contact angle measurements study confirmed the hydrophilic tendency of the modified membrane by decreasing the contact angle from $73^{\circ}$ to $20.28^{\circ}$. The modified membranes showed higher flux and better anti-fouling properties as compared to the unmodified counterparts. The optimum conditions were found to be 0.5 wt% $TiO_2$ loading with 60 min membrane immersion and 10 min UV light illumination. The effect of different pH conditions of feed was analysed. Real wastewater filtration experiments also indicated better performance of modified membranes as opposed to neat PES membranes.

염료폐수 분해를 위한 가시광 감응형 Pt-C-TiO2 광촉매의 합성 (Synthesis of Visible-working Pt-C-TiO2 Photocatalyst for the Degradation of Dye Wastewater)

  • 한미선;윤창연;이종협
    • 청정기술
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    • 제11권3호
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    • pp.123-128
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    • 2005
  • $TiO_2$는 금속 산화물의 일종으로서 자체가 가지고 있는 물리화학적 안정성, 무독성, 탁월한 유기물의 산화분해력 등으로 인해 저농도의 환경 유해물질 정화 분야로 응용이 활발히 연구되고 있는 반도체 물질이다. 그러나 $TiO_2$는 자외선 영역대(${\lambda}$ < 387 nm, 태양광의 2.7%가 UV)의 빛을 통해서 활성을 나타내고, 여기된 전자의 빠른 전자-정공 재결합속도로 인해 광 효율이 저하되는 단점을 갖는다. 따라서 광 감응 파장대를 넓히고 재결합속도를 길게 함으로써 광효율을 높이고, 광촉매 활성을 증대하는 방향으로 연구의 초점이 모아지고 있는 실정이다. 본 연구에서는 $TiO_2$ 광촉매의 광 감응 파장대를 가시광선 영역으로 확대함과 동시에 여기된 전자와 정공의 재결합시간을 연장하기 위하여 백금(Pt)이 광침적(photodeposition)된 탄소(C) 도핑 $TiO_2$를 제조하였다. 제조한 $Pt-C-TiO_2$의 특성은 전자투과현미경(Transmission Electron Microscopic; TEM), 질소흡탈착법(Brunauer-Emmett-Teller method; BET), X-ray 회절 분석법(X-ray Diffractometer; XRD), 분광 산란 광도계(UV-visible diffuse reflectance spectroscopy; UV-Vis DRS), X-ray 광전자 광도계(X-ray Photoelectron Spectroscopy; XPS)를 통하여 살펴보았다. $Pt-C-TiO_2$의 광촉매 활성을 검증하기 위하여 아조 계열의 붉은색 염료인 Acid Red 44 ($C_{10}H_7N=NC_{10}H_3(SO_3Na)_2OH$)의 광분해 실험을 수행하였다. 광원은 Xe arc 램프(300 W, Oriel)를 사용하였으며 420 nm 이하 제거 필터를 사용하여 가시광 영역대의 빛만을 조사되도록 하였다. 그 결과, 제조한 $Pt-C-TiO_2$는 가시광선 하에서 사용제품과 비교하여 월등히 뛰어난 분해력을 보이며 $C-TiO_2$의 활성을 한 층 더 향상시킴을 확인하였다. 이는 무한 에너지 자원인 태양광을 이용한 염료 폐수 정화 시스템 응용으로의 유용한 결과라 할 수 있겠다.

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오염물질 분해를 위한 광촉매 분리막: 총설 (Photocatalytic Membrane for Contaminants Degradation: A Review)

  • 라비아 카갛니;라즈쿠마 파텔;김종학
    • 멤브레인
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    • 제32권1호
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    • pp.33-42
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    • 2022
  • 성장하는 산업화는 심각한 수질 오염으로 이어진다. 폐수로 배출되는 약품과 섬유산업에서 나오는 유기배출물은 환경과 생명에게 악영향을 미친다. 항균치료에 사용되는 항생제가 폐수에 존재하면 인체에 매우 해로운 약제 내성균의 성장을 야기하게 된다. 섬유산업에서 사용되는 유기염료 분자의 제조에는 다양한 유기 저분자가 사용된다. 이러한 분자들은 인쇄 및 염색 산업의 폐수 배출물에 존재하여 분해가 잘 이루지지 않는다. 이러한 문제들을 해결하기 위해 광분해성 촉매를 분리막에 도입하고 폐수를 처리한다. 이 과정을 통해 유기 분자는 광분해되며 동시에 분해된 화합물들은 분리막을 통과하여 분리된다. 이산화티타늄(TiO2)은 뛰어난 광촉매 역할을 하는 반도체이다. 다른 전이 금속 산화물과 화합물을 만들고 고분자 막에 도입하여 광촉매 능력을 증가시킨다. 본 총설에서는 광촉매성 분리막에 의한 염료 및 약물 분자의 분해에 대해 논의한다.