• 제목/요약/키워드: Ammonia-water

검색결과 953건 처리시간 0.024초

해수 유동층 여과시스템의 적정 운용 조건 (Examine the Proper Operating Conditions in the Seawater Fluidized Bed filter System)

  • 손맹현;조기채;전임기;임한규;박민우
    • 한국양식학회지
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    • 제18권4호
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    • pp.280-286
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    • 2005
  • 순환여과 사육시스템에서 유동층 여과조의 적정 유동조건을 구명하기 위하여 메디아 유동을($50\%,\;100\%$), 수은($15^{\circ}C,\;25^{\circ}C$) 및 암모니아 부하량(2 mg/L, 5 mg/L) 차이에 따른 암모니아 제거율을 조사하였다. 유동층 여과 시스템은 직경 8.3 cm, 높이는 2.0 m의 원통형으로 상부는 여과재료의 유동 비율의 조절이 용이하며 육안적으로 관찰이 가능한 아크릴관을 이용하였고 하부는 PVC 재질로 제작하였다. 유동층 여과 시스템의 여과 메디아로 직경 0.5$\pm$0.1mm 크기의 모래와 제올라이트 입재를 각각 5.4 L씩 여과조에 넣었다. 유동층 여과조의 암모니아 제거 능력은 암모니아 부하량에 따라 부하량이 적은 2 mg/L 실험구에 비해 부하량이 큰 5 mg/L실험구에서 암모니아 제거 효율이 높았고, 여과 메디아 별로는 제올라이트 메디아가 모래 메디아에 비해 암모니아 제거율이 높았다. 수은에 따른 유동층 여과 시스템의 암모니아제거 능력은 수은이 높은 $25^{\circ}C$ 가 수온이 낮은 $15^{\circ}C$에 비해 암모니아 제거율이 높았으며, 메디아의 유동율에 따른 유동층 여과조의 암모니아 제거율은 유동을 $50\%$가 유동을 $100\%$에 비해 높았다. 이상의 결과로부터 유동층 여과조의 운용조건이 수온 $25^{\circ}C$, 암모니아부하량이 5 mg/L이고 여과메디아의 유동율이 $50\%$일 때, 유동층 여과조의 일간 암모니아 제거량은 $80.6{\~}210.6g/m^3$으로 산정되었다.

액체암모니아 처리한 셀룰로오스계 직물의 물성 및 염색성 (Physical Properties and Dyeing Behaviors of Cellulosic Fabrics Treated with Liquid Ammonia)

  • 배소영;이문철;김경환;일본명
    • 한국염색가공학회지
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    • 제7권1호
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    • pp.10-22
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    • 1995
  • Cellulosic fabrics, i.e. rayon, polynosic, and linen were treated with liquid ammonia at -33.4$^{\circ}C$. The fine structures, bending properties, tensile strength, wrinkle recoveries, and dyeing properties of the treated fabrics were studied. Dyeing was carried out with two direct dyes, C. I. Direct Red 2 and Blue 1. The liquid ammonia treatment for three fabrics brought about the transition of crystal lattices and the decrease of crystallinity; transforming cellulose I structure of original linen to cellulose I and III structure, and cellulose II structure of original rayon and polynosic to cellulose II and III structure. Moisture regain of liquid ammonia- treated polynosic and linen was higher than that for untreated, and water absorbency of liquid ammonia-traeated fabrics was all lower than that of untreated. Also, bending properties of treated fabrics were not improved compared with those of untreated ones. The rayon treated with liquid ammonia was increased not only the apparent diffusion coefficient and the rate of dyeing but also equilibrium dye adsortion, whereas polynosic and linen were increased only equilibrium dye adsortion. It is suggested that the pore sizes of liquid ammonia-treated rayon, polynosic, and linen are much smaller than that of liquid ammonia-treated cotton.

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Electrochemical nitrate reduction using a cell divided by ion-exchange membrane

  • Lee, Jongkeun;Cha, Ho Young;Min, Kyung Jin;Cho, Jinwoo;Park, Ki Young
    • Membrane and Water Treatment
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    • 제9권3호
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    • pp.189-194
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    • 2018
  • Electrochemical reduction of nitrate was studied using Zn, Cu and (Ir+Ru)-Ti cathodes and Pt/Ti anode in a cell divided by an ion exchange membrane. During electrolysis, effects of the different cathode types on operating parameters (i.e., voltage, temperature and pH), nitrate removal efficiency and by-products (i.e., nitrite and ammonia) formation were investigated. Ammonia oxidation rate in the presence of NaCl was also determined using the different ratios of hypochlorous acid to ammonia. The operating parameter values were similar for all types of cathode materials and were maintained relatively constant. Nitrate was well reduced and converted mostly to ammonia using Zn and Cu cathodes. Ammonia, produced as a by-product of nitrate reduction, was oxidized in the presence of NaCl in the electrochemical process and the oxidation performance was enhanced upon increasing the hypochlorous acid-to-ammonia ratio to 1.09:1. Zn and Cu cathodes promoted the nitrate reduction to ammonia and the produced ammonia was finally removed from solution by reacting with hypochlorite ions. Using Zn or Cu cathodes, instead of noble metal cathodes, in the electrochemical process can be an alternative technology for nitrate-containing wastewater treatment.

하수처리장에서의 암모니아 플럭스 산정을 위한 물질전달모형 개발 (Development of Mass Transfer Models for Ammonia Flux Estimation from Sewage Treatment Plants)

  • 사재환;전의찬;정재학
    • 한국대기환경학회지
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    • 제22권5호
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    • pp.701-711
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    • 2006
  • Sewage treatment plants located near to large cities emit extremely higher concentration of odorous materials. This study evaluated flux profiles of ammonia emitted from the water surface of sewage treatment plants using a dynamic flux chamber. Also, an ammonia overall mass transfer coefficient and a mass transfer model was developed in order to estimate fluxes of ammonia using environment parameters and the flux from the sewage treatment plants. The developed mass transfer model was evaluated through a fitness analysis. Comparison modeled flux applying empirical overall mass transfer coefficients of ammonia and measured ammonia flux show a high linearity with 0.977. The flux ratio of 1.282 demonstrated highly statistical fitness, also. Modeled flux using the mass transfer model was compared with measured flux. In result, it indicated that empirical overall mass transfer coefficients were similar to measured flux. The mass transfer model using the empirical overall mass transfer coefficient developed in this study was proved to be an easy and effective method to make accurate and precise predictions for ammonia flux discharged from sewage treatment plants.

서울시 수도수의 이화학적 수질조사 (An Experimental Study on the Chemical Values of the Tap Water in Seoul)

  • 홍태용
    • 한국환경보건학회지
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    • 제7권1호
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    • pp.21-31
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    • 1981
  • This survey was carried out to investigate the temperature, pH value, nitrogen (ammonia, nitrite, nitrate), turbidity, color, chloride ion, $KMnO_4$ consumed, and hardness as chemical analysis of the tap water in Seoul city area during the period from September to Octobor, 1979, and to observe the differences among the values by the distance from the water purification plant and by the district supplied tap water from-the each water purification plant. The results obtained were as follows: 1) An average of the water temperature was $19.8\pm 0.2\circ$C. 2) An average of pH was $7.18\pm 0.02$. The difference among each district was statistically significant (p<0.01), but it was not observed among each distance. 3) An average of turbidity was $1.25\pm 0.12$ ppm. The difference among each district was highly significant (p<0.01), respectively, but not among each distance. 4) An average of color was $1.43\pm 0.16$ ppm, and there were statistically significant differences by the distance and by the district (p<0.01). 5) An average of ammonia nitrogen was $0.022\pm 0.005$ ppm. The differences among each distance, and district were statistically significant (P<0.01). 6) An average of nitrite nitrogen was $0.0050\pm 0.0013$ ppm, and the difference among each distance was highly significant (p<0.01), respectively, and each district showed statistical significance (p<0.01). 7) An average of nitrate nitrogen was $0.82\pm 0.08$ ppm. The difference among each district was significant (p<0.05), and each distance showed high significance (p<0.01). 8) An average of $KMnO_4$ consumed was $3.73\pm 0.16$ ppm, and the difference among each district was significant (p<0.05), but it was not observed among each distance. 9) An average of chloride ion was $8.56\pm 0.28$ ppm, and the difference among each district was higly significant (p<0.01), respectively, but it was not observed among each distance. 10) An average of hardness was $40.69\pm 1.17$ ppm, and there was statistically significant difference by each district (P<0.01), but not by distance. 11) The interrelation between temperature and pH of the tap water revealed the negative correlation from the coefficient of it as showed r=-0.6073 and p<0.01. 12) Except water temperature, there were negative correlationships between pH and other water qualities. 13) Correlation coefficients of $KMnO_4$ comsumed and ammonia nitrogen, nitrite nitrogen were statistically significant but that of $KMnO_4$ consumed and nitrate nitrogen showed no statistical correlationship. 14) Ammonia nitrogen seems to have high correlationship with nitrite nitrogen(r= +0.6669), but not with nitrate nitrogen. 15) Nitrate nitrogen seems to have statistically significant correlationship with nitrite nitrogen (r=+0.4959), but not with ammonia nitrogen. 16) The interrelation between chloride ion and hardness of the tap water revealed positive correlation from the coefficient of it as showed as r=+0.4888 and p<0.01.

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일부 농촌지역의 정호에 대한 환경위생학적 조사연구 (A study on the sanitary condition of wells in a rural area, Korea.)

  • 이성호;이선덕
    • 한국환경보건학회지
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    • 제3권1호
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    • pp.48-52
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    • 1976
  • A study was carried out to investigate the sanitary condition of 107 wells in Jungil Ri, Kyunggi province and Daeso Ri, Choongbuck province, from July 1, to August 30, 1975. In this study, coliform groups were examined by the membrane filter method as well as general sanitary condition, pH value, ammonia nitrogen, hardness and water temperature. The following results were obtained: 1. Average value of general sanitary condition in the wells were 15$\circ$C in temperature, pH 6.4, hardness 124ppm and Cl ion 34ppm. 2. Coliform group was positive at all out of 30 open wells and 33 out of 45 pumped wells, while only 7 out of 32 tap water in the simple typed water supply system showed the evidence of coliform groups. 3. The positive rate of ammonia nitrogen revealed 13% out of 107 wells and that of nitrite nitrogen was 36.4% and 6 wells rate of 5.6% were ammonia nitrogen and nitrite nitrogen positive at same time. 4. Colflorin group positive of 32 tap water in the simple typed water supply system 3(27%) out of 11 samples with no residual chlorine, 3(17%) out of 17 with 0.1 to 0.5ppm, 1 out of 3 with 0.6 to 1.0 ppm and none out of 1 with 1.1 to 1.5 ppm.

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순환여과식 양어장의 암모니아 제어를 위한 최적 수리학적 부하 (Optimal Hydraulic Loading for Ammonia Control in Water Recycling Fish Culture System)

  • 이석모;김도희;송교욱
    • 한국수산과학회지
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    • 제25권3호
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    • pp.176-180
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    • 1992
  • 어류를 고밀도 순환여과식으로 양식하는 담수양어장에서 암모니아를 제거하기 위하여 고정 생물막 질산화 반응으로 처리하는 잠수여상 장치를 사용할 때 최대의 양식밀도와 최적의 운전조건을 파악 할 목적으로 수리학적 부하율에 따른 암모니아 제거효율 실험을 실시한 결과는 다음과 같다. 유입수의 암모니아 농도가 약 10mg/l(9.43-13.66mg/l)일 때 암모니아 제거율은 각각의 수리학적 부하가 0.028, 0.037, 0.056 및 $0.111m^3/m^2\;\cdot\;day$로 증가함에 따라서 76.24, 62.88, 39.09 및 $9.20\%$로 감소하였다. 이상의 실험 자료를 어류사육조내 암모니아 농도의 물질수지식으로 적용시킨 결과, 어류 사육조의 암모니아 농도를 10mg/l이하로 유지시키고자 할 경우, 양식 가능한 최대 양식밀도는 암모니아 생성량을 기준으로 1.52mg/min이었으며 이 조건에서 잠수여상 반응조의 최적의 수리학적 부하율은 $0.047m^3/m^2\;\cdot\;day$로 운전되어야 한다.

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활성탄 물성에 따른 암모니아성 질소 흡착의 동력학적 연구 (A Kinetic Study on the Ammonia Nitrogen Adsorption by Physical Characteristics of Activated Carbon)

  • 서정범;강준원;이익수
    • 한국물환경학회지
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    • 제24권3호
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    • pp.311-316
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    • 2008
  • This study aimed to obtain equilibrium concentration on adsorption removal of ammonia nitrogen by activated carbon, to express the adsorption characteristics following Freundlich isotherm and also, based on the value obtained, to investigate the relationship between physical characteristics of activated carbon and dynamics of ammonia nitrogen removal by obtaining rate constant and effective pore diffusivity. The results summarized from this study are as follows. It was noted that powdered activated carbon showed better adsorption ability than granular activated carbon. The value of constant (f) of Freundlich isotherm of powered activated carbon was $4.6{\times}10^{-8}$ which is bigger than that of granular activated carbon. The adsorption rate constant on ammonia nitrogen of powered activated carbon with high porosity and low effective diameter was highest as 0.416 hr-1 and the effective pore diffusivity ($D_e$) was lowest as $1.17{\times}10^{-6}cm^2/hr$, and the value of ammonia nitrogen adsorption rate constant of granular activated carbon was $0.149{\sim}0.195hr^{-1}$. It was revealed that, with the same amount of dosage, the adsorptive power of activated carbon with lower effective diameter and bigger porosity was better and its rate constant was also high. With a little adsorbent dosage of 2 g, there was no difference removal ability of ammonia nitrogen as change of adsorption properties.

Production of Sulfuric Acid and Ammonia Water from Ammonium Sulfate Using Electrodialysis with Bipolar Membrane and Ammonia Stripping

  • Yeon Kyeong-Ho;Song Jung-Hoon;Shim Bong-Sup;Moon Seung-Hyeon
    • Korean Membrane Journal
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    • 제7권1호
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    • pp.28-33
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    • 2005
  • The feasibility of producing sulfuric acid and ammonia water from ammonium sulfate was investigated by an integrated process including ammonia stripping (AS) and electrodialysis with bipolar membrane (EDBM). It was suggested that the production of sulfuric acid using ammonia stripping-electrodialysis with bipolar membrane (ASEDBM) was effective in obtaining high concentration of sulfuric acid compared with EDBM alone. AS was carried out over pH 11 and within the range of temperatures, $20^{\circ}C{\~}60^{\circ}C$. Sodium sulfate obtained using AS was used as the feed solution of EDBM. The recovery of ammonia increased from $40\%$ to $80\%$ at $60^{\circ}C$ due to the increased mobility of ammonium ion. A pilot-scale EDBM system, which is composed of two compartments and 10 cell pairs with an effective membrane area of $200 cm^2$ per cell, was used for the recovery of sulfuric acid. The performance was examined in the range of 0.1 M${\~}$1.0 M concentration of concentrate compartment and of $25 mA/cm^2{\~}62.5 mA/cm^2$ of current density. The maximum current efficiency of $64.9\%$ was obtained at 0.1 M sulfuric acid because the diffusion rate at the anion exchange membrane decreased as the sulfuric acid of the concentrate compartment decreased. It was possible to obtain the 2.5 M of sulfuric acid in the $62.5 mA/cm^2$ with a power consumption of 13.0 kWh/ton, while the concentration of sulfuric acid was proportional to the current density below the limiting current density (LCD). Thus, the integrating process of AS-EDBM enables to recover sulfuric acid from the wastewaters containing ammonium sulfate.

Solid SCR용 암모니아 저장물질인 Calcium Ammine Chloride의 합성방법 및 물질분석 연구 (A Study on Synthetic Method and Material Analysis of Calcium Ammine Chloride as Ammonia Transport Materials for Solid SCR)

  • 신종국;윤천석;김홍석
    • 한국자동차공학회논문집
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    • 제23권2호
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    • pp.199-207
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    • 2015
  • Solid materials of ammonia sources with SCR have been considered for the application of lean NOx reduction in automobile industry, to overcome complex problems of liquid urea based SCR. These solid materials produce ammonia gas directly with proper heating and can be packaged by compact size, because of high volumetric ammonia density. Among ammonium salts and metal ammine chlorides, calcium ammine chloride was focused on this paper due to low decomposition temperature. In order to make calcium ammine chloride in lab-scale, simple reactor and glove box was designed and built with ammonium gas tank, regulator, and sensors. Basic test conditions of charging ammonia gas to anhydrous calcium chloride are chosen from equilibrium vapor pressure by Van't Hoff plot based on thermodynamic properties of materials. Synthetic method of calcium ammine chloride were studied for different durations, temperatures, and pressures with proper ammonia gas charged, as a respect of ammonia gas adsorption rate(%) from simple weight calculations which were confirmed by IC. Also, lab-made calcium ammine chloride were analyzed by TGA and DSC to clarify decomposition step in the equations of chemical reaction. To understand material characteristics for lab-made calcium ammine chloride, DA, XRD and FT-IR analysis were performed with published data of literature. From analytical results, water content in lab-made calcium ammine chloride can be discovered and new test procedures of water removal were proposed.