• 제목/요약/키워드: Maximum removal

검색결과 1,133건 처리시간 0.03초

면포에서 Triglyceride 단독 오염의 세척성에 관한 연구 (A study on the removal of triglyceride from cotton fabric)

  • 곽혜원
    • 대한가정학회지
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    • 제23권1호
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    • pp.19-24
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    • 1985
  • The effect of temperature, washing time, mechanical agitation and concentration on the removal from cotton fabrics of tripalmitin labelled with C\sup 14\ were studied. In order to correlate the detergency with the removal mechanism, solubilization and suspending power of surfactants were observed. RESULTS : 1. The detergency from cotton fabric was increased with elevating temperature and over the temperature of maximum detergency, the rate of soil removal was rather decreased. 2. The effects of washing time and mechanical agitation on the removal of triplamitin were obvious at lower temperature. 3. The removal of tripalmitin was remarkably increased at higher concentration over cmc for all surfactants. The detergency of nonionic surfactant -NPPG- was best, this was resulted from its large solubilization and suspending power.

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간헐폭기식 활성슬러지 공법에 의한 질소, 인 제거 (Removal of N and P by Intermittented Aeration Activated Sludge Process)

  • 김동밀;이영신
    • 한국환경보건학회지
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    • 제18권2호
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    • pp.57-61
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    • 1992
  • This study was made for enhanced removal of N and P by intermittented aeration Activated Sludge Process. Experiment were conducted to find the effects of aeration interval and nutrient removal efficiency. When applied aeration interval were 30~60 min, 2~4 h, 4~8 h, organic matter was not affected while phosphorous removal was aeration interval 30~60 min. Also, when applied mixing intensity were 15, 30, 45 and 60 rpm, organic matter was not affected while removal was maximum at 15 rpm. Total nitrogen and phosphorous removal were in the range of 76 and 85%. Density and MLSS of Sludge were in the range of 2.3~2.6 and 7198~7810 mg/l. Release of phosphorous from activated sludge under unaerobic condition was increased as pass time.

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외부탄소원을 사용한 SBBR의 공정 특성 및 질소제거 (Evaluation of SBBR Process Performance Focused on Nitrogen Removal with External Carbon Addition)

  • 한혜정;윤주환
    • 한국물환경학회지
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    • 제22권3호
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    • pp.566-571
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    • 2006
  • A sequencing batch biofilm reactor (SBBR) operated with a cycle of anaerobic - aerobic - anoxic - aerobic has been evaluated for the nutrient removal characteristics. The sponge-like moving media was filled to about 10% of reactor volume. The sewage was the major substrate while external synthetic carbon substrate was added to the anoxic stage to enhance the nitrogen removal. The operational results indicated that maximum T-N and T-P removal efficiencies were 97% and 94%, respectively were achieved, while COD removal of 92%. The observations of significant nitrogen removal in the first aerobic stage indicated that nitrogen removal behaviour in this SBBR was different to conventional SBR. Although the reasons for aerobic nitrogen removal has speculated to either simultaneous nitrification and denitrification or anoxic denitrification inside of the media, further researches are required to confirm the observation. The specific oxygen uptake rate (SOUR) test with biofilm and suspended growth sludge indicated that biofilm in SBBR played a major role to remove substrates.

Hydrogel 키토산비드를 이용한 수중의 양이온 중금속과 음이온의 제거 효율 평가 (Removal of both cation and anion pollutant from solution using hydrogel chitosan bead)

  • 안병렬
    • 상하수도학회지
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    • 제32권3호
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    • pp.253-259
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    • 2018
  • Cu(II) can cause health problem for human being and phosphate is a key pollutant induces eutrophication in rivers and ponds. To remove of Cu(II) and phosphate from solution, chitosan as adsorbent was chosen and used as a form of hydrogel bead. Due to the chemical instability of hydrogel chitosan bead (HCB), the crosslinked HCB by glutaraldehyde (GA) was prepared (HCB-G). HCB-G maintained the spherical bead type at 1% HCl without a loss of chitosan. A variety of batch experiment tests were carried out to determine the removal efficiency (%), maximum uptake (Q, mg/g), and reaction rate. In the single presence of Cu(II) or phosphate, the removal efficiency was obtained to 17 and 16%, respectively. However, the removal efficiency of Cu(II) and phosphate was increased to 50~55% at a mixed solution. The maximum uptake (Q) for Cu(II) and phosphate was enhanced from 11.3 to74.4 mg/g and from 3.34 to 36.6 mg/g, respectively. While the reaction rate of Cu(II) and phosphate was almost finished within 24 and 6 h at single solution, it was not changed for Cu(II) but was retarded for phosphate at mixed solution.

Characteristics of Immobilized PVA Beads in Nitrate Removal

  • Cho Kyoung-Sook;Park Kyoung-Joo;Jeong Hyun-Do;Nam Soo-Wan;Lee Sang-Joon;Park Tae-Joo;Kim Joong-Kyun
    • Journal of Microbiology and Biotechnology
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    • 제16권3호
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    • pp.414-422
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    • 2006
  • Before applying PVA bio-beads to practical biological treatment of nitrate-containing wastewater, their characteristics were examined. PVA bio-beads could steadily produce nitrogen gas from nitrate for 28 batches with 0.04 ml/l/h of the maximum gas production rate; however, the maximum gas production rate dropped remarkably thereafter with apparent deformation of beads. Addition of 2.2% solution containing 1% casamino acid, 1% yeast extract, 0.1% mineral solution, and 0.1% vitamin solution to the culture medium resulted in not only recovery of activity of deactivated beads, but also a higher rate of gas production. Calculation of economic benefit for the use of bio-beads in a long-run operation indicated that reactivation of bio-beads by chemicals had economical advantages over packing new bio-beads in the system. The continuously stirred bioreactor exhibited a satisfactory performance at HRT of 20.0 h. With a 9.5 mg $NO_{3}^{-}N/l/h$ nitrate removal rate, nitrate could completely be removed without nitrite accumulation. The use of PVA bio-beads in nitrate removal appears very promising.

Assessment of kinetics behavior of electrocoagulation process for the removal of suspended solids and metals from synthetic water

  • Singh, Hariraj;Mishra, Brijesh Kumar
    • Environmental Engineering Research
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    • 제22권2호
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    • pp.141-148
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    • 2017
  • Globalization, industrialization, mining, and uncontrolled population growth have fostered a shortage of potable water. Therefore, it has become imperative to understand an effective and reasonable water purification technique. A renewed interest in electrocoagulation (EC) has been spurred by the search for reliable, cost-effective, water-treatment processes. This paper has elucidated a technical approach for getting rid of heavy metals and total suspended solids (TSS) from synthetic water using an aluminum electrode. The effect of operational parameters, such as current density, inter-electrode distance, operating time, and pH, were studied and evaluated for maximum efficiency. This study corroborates the correlation between current density and removal efficiency. Neutral pH and a low electrode gap have been found to aid the efficacy of the EC setup. The outcome indicates that a maximum TSS removal efficiency of 76.6% occurred at a current density of $5.3mA/cm^2$ during a contact time of 30 min. In the case of heavy metals remediation, 40 min of process time exhibited extremely reduced rates of 99%, 59.2%, and 82.1%, for Cu, Cr, and Zn, respectively. Moreover, kinetic study has also demonstrated that pollutants removal follows first-and second-order model with current density and EC time being dependent.

Nitrogen removal and electrochemical characteristics depending on separators of two-chamber microbial fuel cells

  • Lee, Kang-yu;Choi, In-kwon;Lim, Kyeong-ho
    • Environmental Engineering Research
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    • 제24권3호
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    • pp.443-448
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    • 2019
  • The present study was conducted to compare the voltage generation in two-chamber microbial fuel cells (MFCs) with a biocathode where nitrate and oxygen are used as a terminal electron acceptors (TEA) and to investigate the nitrogen removal and the electrochemical characteristics depending on the separators of the MFCs for denitrification. The maximum power density in a biocathode MFC using an anion exchange membrane (AEM) was approximately 40% lower with the use of nitrate as a TEA than when using oxygen. The MFC for denitrification using an AEM allows acetate ($CH_3COO^-$) as a substrate and nitrate ($NO_3{^-}$) as a TEA to be transported to the opposite sides of the chamber through the AEM. Therefore, heterotrophic denitrification and electrochemical denitrification occurred simultaneously at the anode and the cathode, resulting in a higher COD and nitrate removal rate and a lower maximum power density. The MFC for the denitrification using a cation exchange membrane (CEM) does not allow the transport of acetate and nitrate. Therefore, as oxidation of organics and electrochemical denitrification occurred at the anode and at the cathode, respectively, the MFC using a CEM showed a higher coulomb efficiency, a lower COD and nitrate removal rate in comparison with the MFC using an AEM.

Polyester 직물에의 Hematite 입자의 부착과 제거에 관한 계면 전기적고찰 (제2보) (Interfacial Electrical Studios on Adhesion of Hematite Particles to Polyester Fabric and their Removal from the Fabric(Part 2))

  • 강인숙;김성련
    • 한국의류학회지
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    • 제19권5호
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    • pp.765-773
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    • 1995
  • Effect of interfacial electrical conditions such as, the f potential of PET fiber and u-Fe203 particles, the stability parameter and potential energy of interaction on adhesion of a-Fe903 particles to PET fabric and their removal from the fabric, were investigated as functions of pH, electrolyte and ionic strength. The stability parameter, potential energy of interaction between a-Fe2O3 particles and PET fabric were calculated by using the heterocoagulation theory for a sphere-plate model The adhesion of a-Fe2O3 particles to PET fabric and their removal from PET fabric were carried out by using water bath shaker and Terg-O-Tometer under various solution conditions. The adhesion of a-Fe2O3 particles to the PET fabric and the removal of a-Fe2O3 particles from the PET fabric were biphasic and were maximum and minimum at pH 7~8, respectively. With high pH and polyanion electrolytes in solution, the adhesion of a-Fe2O3 particles to the PET fabric was low but effects of electrolytes on the removal of a-Fe2O3 particles from the PET fabric was small. The adhesion of a-Fe2O3 particles to the PET fabric and the removal of a-Fe2O3 Particles from the PET fabric were biphasic, and were lowest and highest at the ionic strength 1$\times$10-3, respectively. The adhesion of a-Fe2O3 particles to PET fabric was well related with the interfacial electrical conditions; it was negatively correlated with the f potentials of a-Fe2O3 Particles of its absolute value, the stability parameter and the maximum of total potential energy, while, the adhesion was not related with the t potentials of PET fiber itself. Therefore, the primary factor determining the adhesion of a-Fe203 particles to PET fabric may be the stability of dispersed particles caused by the electrical repulsion of particles. The removal of a-Fe203 particles from PET fabric was not related to such interfacial electrical conditions as the t potentials of PET fiber, the stability parameter and the maximum of total potential energy but removal was related to t potential of a-Fe203 particles.

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계면활성제를 이용한 오염복원에 있어서 계면 활성제 용액 pH의 효과 (Effect of Surfactant Solution pH on Surfactant-Assisted Remediation)

  • Dal-Heui Lee;Rovert D. Cody
    • 자원환경지질
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    • 제34권3호
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    • pp.301-306
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    • 2001
  • 계면활성제를 이용한 오염복원에 있어서 제거효율에 영향을 주는 계면활성제 용액 pH의 최적범위를 조사하기 위하여 주상실험이 수행되었다. 톨루엔과 1,2,4-trichlorobenzene이 소수성 유기 화합물로서 선택되었다. 4%(v/v)의 sodium diphenyl oxide disulfonate(DOSL), trideceth-19-carboxylic acid(TDCA), octylphenoxypoly ethosye-thanol(OPEE)을 사용하여 두 종류의 아이오와 토양(Fruitfield sand, Webster clay loam)에 대한 용출실험을 수행하였다. 실험결과, 톨루엔과 1,2,4-trichlorobenzene의 제거효율은 계면활성제 용액 pH 10에서 나타났고, Furifield 사질토양에서 DOSL을 이용한 경우 최대 제거효율은 각각 94%, 97%였다. Fruitfield 사질토양에서 DOSL을 사용한 경우, pH 조절에 의하여 증가된 톨루엔과 1,2,4-trichlorobenzene의 제거효율은 각각 16%와 20%였다. Webster clay loam에서 DOSL을 이용한 경우 최대 제거효율은 각각 89%, 93%였다. Webster clay loam에서 DOSL을 사용한 경우, pH 조절에 의하여 증가된 톨루엔과 1,2,4-trichlorobenzene의 제거효율은 각각 26%와 19%였다. 이러한 실험결과는 NAPLs로 오염된 토양을 복원하는데 있어서 계면활성제 용액의 pH를 높게 유지하는 것이 바람직하다는 것을 의미한다.

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무성-연면 복합방전형 오존발생기의 오존생성 및 NO 가스 제거특성 (Ozone Generation and NO Gas Removal Characteristics a Silent-Surface Hybrid Discharge Type Ozonizer)

  • 송현직;이광식
    • 조명전기설비학회논문지
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    • 제19권7호
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    • pp.32-38
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    • 2005
  • 본 논문에서는 대기오염물질인 Nitrogen Oxides(NO) 가스를 제거하기 위하여 3개의 전극이 장착된 하나의 방전 공간에 무성방전과 연면방전을 동시에 발생가능한 복합방전형 오존발생기를 설계 제작하였다. 전압인가 방식에 따라 3가지 형태의 오존발생기로 구성가능한 복합방전형 오존발생기에 유입하는 산소원료가스의 유량, 방전전력 및 오존발생기의 종류에 따른 방전 및 오존생성특성을 연구 검토한 결과, 8334[ppm] 및 3249[mg/h]의 오존을 얻을 수 있었다. 또한 NO(1200[ppm])/$N_2$ 가스의 입력방식에 따른 NO 가스 제거특성을 방전전력 및 오존발생기의 종류에 따라 연구 검토한 결과, 최대 100[%]의 제거율을 얻을 수 있었다.