• 제목/요약/키워드: Oxidation efficiency

검색결과 952건 처리시간 0.022초

비열플라즈마에 의한 NO의 산화와 NaOH 샤워해 의한 NOx의 제거특성 (NO Oxidation using Non-Thermal Plasma and NOx removal by NaOH-Water Solution Shower)

  • 박재윤;고용술;김익균;박상현;고희석;이덕출
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1998년도 추계학술대회 논문집 학회본부 C
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    • pp.947-949
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    • 1998
  • In this paper, the NO was oxidized $NO_2$ by using the non-thermal plasma and NOx removal characteristics were measured by showering NaOH water-solution to $NO_2$. The NO oxidation increased in the order of DC, AC, and Pulse. NOx oxidation for two stage with applied voltage was better than that for one stage with applied voltage. NO oxidation didn't depend on applied voltage. While NO oxidation was going on, NOx removal efficiency was 20-25%, however, significantly depended on the injection method of air and $H_2O$ + air. When NaOH water-solution density of 20% was showered to flue gases, NOx removal efficiency increased to 64%.

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과황산염과 나노영가철을 이용한 페놀의 전기화학적 산화 (Electrochemical Oxidation of Phenol using Persulfate and Nanosized Zero-valent Iron)

  • 김철용;안준영;김태유;황인성
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제22권2호
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    • pp.17-25
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    • 2017
  • The efficiency and mechanism of electrochemical phenol oxidation using persulfate (PS) and nanosized zero-valent iron (NZVI) were investigated. The pseudo-first-order rate constant for phenol removal by the electrochemical/PS/NZVI ($1mA^*cm^{-2}/12$ mM/6 mM) process was $0.81h^{-1}$, which was higher than those of the electrochemical/PS and PS/NZVI processes. The electrochemical/PS/NZVI system removed 1.5 mM phenol while consuming 6.6 mM PS, giving the highest stoichiometric efficiency (0.23) among the tested systems. The enhanced phenol removal rates and efficiencies observed for the electrochemical/PS/NZVI process were attributed to the interactions involving the three components, in which the electric current stimulated PS activation, NZVI depassivation, phenol oxidation, and PS regeneration by anodic or cathodic reactions. The electrochemical/PS/NZVI process effectively removed phenol oxidation products such as hydroquinone and 1,4-benzoquinone. Since the electric current enhances the reactivities of PS and NZVI, process performance can be optimized by effectively manipulating the current.

Removal Efficiency of Arsenic by Adsorbents having Different Type of Metal Oxides

  • Min, Sang-Yoon;Kim, Byeong-Kwon;Park, Sun-Ju;Chang, Yoon-Young;Yang, Jae-Kyu
    • Environmental Engineering Research
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    • 제14권2호
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    • pp.134-139
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    • 2009
  • In this study, oxidation of As (III) as well as removal of total arsenic by adsorbents coated with single oxides or multi-oxides (Fe (III), Mn (IV), Al (III)) was investigated. In addition, multi-functional properties of adsorbents coated with multi-oxides were evaluated. Finally, application of activated carbon impregnated with Fe or Mn-oxides on the treatment of As (III) or As (V) was studied. As (V) adsorption results with adsorbents containing Fe and Al shows that adsorbents containing Fe show a greater removal of As (V) at pH 4 than at pH 7. In contrast adsorbents containing Al shows a favorable removal of As (V) at pH 7 than at pH 4. In case of iron sand, it has a negligible adsorption capacity for As (V) although it contains 217.9 g-Fe/kg-adsorbent, Oxidation result shows that manganese coated sand (MCS) has the greatest As (III) oxidation capacity among all metal oxides at pH 4. Oxidation efficiency of As (III) by IMCS (iron and manganese coated sand) was less than that by MCS. However the total removed amount of arsenic by IMCS was greater than that by MCS.

Rapid Thermal Oxidation 기반의 표면 보호막을 이용한 n-type 실리콘 태양전지의 제작과 전기적 특성 분석 (N-type Silicon Solar Cell Based on Passivation Layer Grown by Rapid Thermal Oxidation)

  • 류경선;김성진
    • 한국전기전자재료학회논문지
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    • 제26권1호
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    • pp.18-21
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    • 2013
  • $SiO_2$ layer grown by rapid thermal oxidation and $SiN_x$ layer were used for passivating the surface of n-type silicon solar cell, instead of only $SiN_x$ layer generally used in photovoltaic industry. The rapid thermal oxidation provides the reduction of processing time and avoids bulk life time degradation during the processing. Improvement of 30 mV in Voc and $2.7mA/cm^2$ in Jsc was obtained by applying these two layers. This improvement led to fabrication of a large area ($239cm^2$) n-type solar cell with 17.34% efficiency. Internal quantum efficiency measurement indicates that the improvement comes from the front side passivation, but not the rear side, by using $SiO_2/SiN_x$ stack.

과황산나트륨을 이용한 내분비계장애물질 산화제거 (Oxidation of Endocrine Disrupting Chemicals Using Sodium Persulfate)

  • 임찬수;윤여복;김도군;고석오
    • 대한토목학회논문집
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    • 제33권2호
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    • pp.609-617
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    • 2013
  • 본 연구에서는 역삼투 공정 농축수에 존재할 수 있는 내분비계 장애물질의 처리에 있어, 고급산화 공정의 적용가능성을 다양한 조건하에서 평가하였다. 오염물 제거에는 Fe(II)를 촉매로 한 과황산나트륨 산화를 이용하였으며, 초기 pH와 이온강도 등, 영향인자에 따른 산화능을 검토하였다. Fe(II) 촉매 과황산나트륨에 의한 $17{\alpha}$-ethynylestradiol(EE2) 제거효율은 초기 pH와 이온강도가 증가할수록 감소하였다. 반면, 이온강도 물질로 염소이온과 같은 할로겐족 이온을 적용 시 산화반응에 긍정적인 영향을 나타냈는데, 이는 라디칼 전이에 따른 영향으로 판단된다.

ILSAC GF3 가솔린엔진유 개발 (Development of ILSAC GF3 Gasoline Engine Oil)

  • 류재곤;조연근;문우식
    • 한국윤활학회:학술대회논문집
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    • 한국윤활학회 2001년도 제33회 춘계학술대회 개최
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    • pp.143-148
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    • 2001
  • ILSAC GF 3/API SL specification will be adopted in July 2001. The background and characteristics of GF3 specification is reviewed. GF3 specification consists of five new engine tests, two new bench tests and new limits on three bench tests currently used to define ILSAC GF-2. GF 3 engine oil shows good performance compared to GF2 engine oil in fuel efficiency, protecting ability the emission catalyst and high temperature oxidation stability.

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가변 주파수 Sono-Fenton 산화를 이용한 Spent-GAC 재생기술 (Spent-GAC Regeneration Using Variable Frequency Sono-Fenton Oxidation)

  • 주수빈;이상민;김형준;심인태;김희진
    • 대한토목학회논문집
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    • 제43권4호
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    • pp.449-458
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    • 2023
  • 용존 유기물을 흡착 제거하는 기술로서, 흡착능이 우수한 입상활성탄을 우선적으로 적용할 수 있지만, 흡착탑의 운전기간에 따라 GAC의 흡착능이 현저히 저하되어 파과되는 한계가 있으며 파과된 활성탄인 spent-GAC는 교체나 재생이 불가피하다. 활성탄 교체는 비용의 경제성 때문에 기피되며 상업적으로 열재생법을 사용하고 있으나, 800℃ 이상의 고온 조건으로 인한 높은 에너지 비용과 활성탄의 질량 손실이 발생하는 단점이 있다. 본 연구에서는 CSOs내의 용존 유기물 처리에 사용된 spent-GAC의 재생효율을 제고하기 위해, Fenton 산화법과 초음파 산화를 융합한 다중산화기술인 Sono-Fenton 방법을 적용하였고, 산화제 주입농도와 초음파 주파수별 spent-GAC의 재생효율을 조사하였다. 적용된 Sono-Fenton 처리에서 Fe2+ 10 mmol/L, H2O2 농도 1,000 mmol/L, 120분 초음파 주사시간, 초음파 주파수 40 kHz 재생처리 조건에서 68.5%의 가장 높은 재생효율을 얻을 수 있었고, 750 kHz에서도 유사한 효율을 얻을 수 있었으며, 다른 주파수의 초음파는 재생효율이 불량했고 주파수의 크기와 GAC 재생효율은 선형 관계를 나타내지 않았다. 실 하수를 희석하여 제조한 CSOs로 GAC 흡착탑을 연속운전 한 경우, 재생없이 700시간 내외의 운전이 가능했고 1회의 Sono-Fenton 처리를 적용한 결과, 총 1,000시간의 GAC 흡착 운전 기간 동안 40~70%의 CODcr 제거 효율이 확보하였다.

한강수계 주요하천과 호수내 TOC와 DOC분포 및 BOD와 COD의 산화율 비교 (Comparison of TOC and DOC Distribution and the Oxidation Efficiency of BOD and COD in Several Reservoirs and Rivers in the Han River System)

  • 김재구;신명선;장창원;정성민;김범철
    • 한국물환경학회지
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    • 제23권1호
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    • pp.72-80
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    • 2007
  • The seasonal variation of organic matter and the oxidation efficiency of BOD and COD were investigated in several reservoirs and rivers located in the Han River system from March 2005 to April 2006. The concentrations of TOC in the Dong River, the Myeongjicheon stream and the Han-River varied with season. Mean concentration of TOC in the lotic environment ranged from 1.9 to 6.8 mgC/L. Oxidation efficiencies calculated from carbon were approximately 12.6 to 27.1% for BOD and 27.2 to 75.0% for COD, respectively. DOC to TOC ratio in the rivers ranged from 64.3 to 79.0%. Epilimnetic TOC concentrations in two clear and deep lakes (Lake Soyang and Paro) ranged from 2.0 to 2.8 mgC/L. TOC concentrations in the lower three dams (Lake Chunchon, Uiam, and Chungpyung) were relatively high that ranged from 3.4 to 3.7 mgC/L.Oxidation efficiencies in five lakes ranged from 10.6 to 17.2% for BOD and 32.6 to 49.5% for COD, respectively. The range of DOC to TOC in Lake Soyang and Paro was approximately 69. 0 to 73.4%. The ratios of lower three dams ranged from 48.2 to 62.3%. The differences among the lakes seemed to be asociated with limnological and hydrological characteristics of the lakes.

전착과산화납양극에 의한 옥소산염 전해산화 (Anodic Oxidation of Iodate to Periodate by Lead Peroxide Anode)

  • 남종우;김학준
    • 대한화학회지
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    • 제15권6호
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    • pp.324-329
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    • 1971
  • In order to evaluate the mechanism of electrolytic oxidation of iodate and to determine the optimum conditions for the electrolysis, studies were made using the cells without diaphragm and the lead peroxide anode. Results are summarized as followings: 1) Current density vs. anode potential curve by lead peroxide electrode had the different limiting current densities from platinum electrode and was more positive than platinum electrode. 2) Additions of potassium bichromate in the electrolyte contribute to maintain high current efficiency. 3) In the acid and alkaline regions, the current efficiencies decreased by reduction of iodate and discharge of hydroxyl ion, so maximum current efficiency was shown at pH 7. 4) Higher current density lowered the current efficiency in the region of 60-80% conversion of iodate. 5) Influence of the conversion on current efficiency in the region of 60-80% conversion of iodate.

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Catalytic Oxidative and Adsorptive Desulfurization of Heavy Naphtha Fraction

  • Abbas, Mohammad N.;Alalwan, Hayder A.
    • Korean Chemical Engineering Research
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    • 제57권2호
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    • pp.283-288
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    • 2019
  • Catalytic removal of sulfur compounds from heavy naphtha (HN) was investigated using a combination of an oxidation process using hydrogen peroxide and an adsorption process using granulated activated carbon (GAC) and white eggshell (WES). This study investigated the impact of changing several operating parameters on the desulfurization efficiency. Specifically, the volume ratio of $H_2O_2$ to HN (0.01~0.05), agitation speed ($U_{speed}$) of the water bath shaker ($100-500{\pm}1rpm$), pH of sulfur solution (1~5), amount of adsorbent (0.1~2.5 g), desulfurization temperature ($25{\sim}85{\pm}1^{\circ}C$) and contact time (10~180 minutes) were examined. The results indicate that the desulfurization efficiency resulting from catalytic and adsorption processes of GAC is better than that of WES for oxidation and removing sulfur compounds from HN due to its high surface area. The desulfurization efficiency depends strongly on all investigated operating parameters. The maximum removal efficiency of GAC and WES achieved by this study was 86 and 65, respectively.