• 제목/요약/키워드: SO2 gas

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반건식 배연탈황법에 의한 연소 페가스 중 $SO_2$제거에 관한 연구 (A Study on $SO_2$Removal in Flue Gas by Semidry Flue Gas Desulfurization Method)

  • 송호철;이윤기;박진원
    • 한국대기환경학회지
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    • 제14권4호
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    • pp.273-280
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    • 1998
  • The investigation on the removal of 502 gas fro.In flue gas which causes serious air pollution was made by using a semi dry flue gas desulfurization method. Experiments were carried out as a function of process variables which would affect SO2 removal efficiency. Process variables inclilded SO2 inlet concentration, inlet temperature of simulated flue gas, sorbent weight fraction, and volume flow rate of sorbent slurry. In this study, used sorbent was Ca(OH), and simulated flue gas was prepared by mixing pure SO2 gas with air. Experimental conditions were varied at 140~18$0^{\circ}C$ of inlet temperature of the simulated flue gas, 500~2000ppm of inlet SO2 concentration, 0.4~1.0% of sorbent concentration, and 10~25 mL/min of flow rate of sorbent slurry. Among process variables, inlet concentration of SO2 was found to be the most significant factor to affect SO2 removal efficiency. The concentration of Ca(OH2) had a lower effect on SO2 removal than SO2 inlet concentration removal amount was 0.108, 0.141, 0.153 g SO2/g Ca(OH)2 respectively- As 200 mmol of HNO3 was added into slurry to improve removal efficiency, initial pH was maintained and solubility of slurry increased, so that removal efficiency elevated. Adding over 200 mmol of HNO3 into slurry caused removal efficiency lower. Therefore it could be concluded the optimum was 200 mmol of HNO3 input.

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지류.섬유질 유물에 대한 대기유해가스($SO_2$, $NO_2$)의 영향 (The Effects of $NO_2$ and $SO_2$ Gas on the Paper and the Textile Cultural Properties)

  • 이규식;한성희
    • 보존과학연구
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    • 통권17호
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    • pp.65-99
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    • 1996
  • We exanmined the each effect of $NO_2$ and $SO_2$gas, the maincomponets of air pollutants, on the deterioration of 6 organic materials with Gasexposure cabinet. The organic materials were used 2 kind of papers(Korean paper, Oldbook paper) and 4 kind of textiles (Cotton, Silk, Hemp, ramie) in gas exposure experiments. In order to know how to change of physical conditions, the materials were exposed to 2000, 1000 ppm. h of $SO_2$dose, to 100 ppm. h of $NO_2$ dose at 65% RH. The color difference, tensile strength, elongation coeffient, mass reduction and fabric status of each materials were discussed the following below.1. The color difference of cotton and hemp was larger than that of silk and ramie in the presence of $SO_2$ gas. and the color difference of korean paper was less than that of the textile materials in the presence of $SO_2$ gas.2. The tensile strength of cotton fell suddenly at 100ppm.h of $SO_2$ dose and even became 56% of the unexposed cotton.3. The weight of 6 materials began to decrease in the presence of $SO_2$ gas.4. The tensile strength and elongation of the materials tended to decrease at 12.5ppm.h of $NO_2$ especially silk was the strongest tendency to decrease.5. Cotton, hemp and ramie were influenced by $SO_2$ gas more than by $NO_2$, but silk were influenced by $NO_2$ more thang by $SO_2$ at 10ppm.h of each noxious gas.

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직접분사식 디젤엔진에서 아산화질소의 생성에 관한 실험적 연구 (A Experimental Study on Nitrous Oxide Formation in Direct Injection Diesel Engine)

  • 유동훈
    • 해양환경안전학회지
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    • 제21권2호
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    • pp.188-193
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    • 2015
  • 일반적으로 선박용 디젤엔진의 아산화질소($N_2O$)배출률은 이산화황($SO_2$)배출률과 밀접한 상관성을 갖고 있고, 선박에서 사용되는 연료의 다양성은 $N_2O$배출특성에 영향을 미친다고 받아들여져 왔다. 최근의 연구보고에 의하면 연료 연소에서 발생한 충분한 일산화질소(NO)가 존재할 경우, 배기의 $SO_2$배출률이 $N_2O$생성에 미치는 영향은 NO의 영향보다 막대하게 크다. 그러므로 $SO_2$성분으로부터 기인하는 $N_2O$생성은 NOx저감을 위한 배기가스 재순환(EGR) 시스템에서 중요한 인자로 작용한다. 본 실험적인 연구의 목적은 $SO_2$유량 증가를 갖는 디젤엔진의 흡기가 배기의 $N_2O$배출률에 미치는 영향에 대하여 조사하는 것이다. 실험에 사용된 테스트 엔진은 2600rpm에서 12kW의 출력을 갖는 4행정 직접분사식 디젤엔진이고, 운전조건은 75% 부하에서 실시되었다. 0.499%($m^3/m^3$)의 $SO_2$표준가스는 흡기의 $SO_2$농도를 변화시키기 위해 사용되었다. 결과적으로 황 성분을 포함하지 않는 연료는 $SO_2$를 배출시키지 않았고, 흡기 중에 $SO_2$표준가스의 증가에 따른 배기의 $SO_2$배출률은 $SO_2$흡입률과 비교하여 거의 같은 비율이었다. 또한, 흡기의 $SO_2$유량 상승은 $N_2O$배출률을 상승시켜 배기 중의 $N_2O$는 흡기의 $SO_2$혼합기에 의해 생성되었다. 결국 황 성분을 함유한 연료는 연소 중에 $SO_2$를 형성하고 배기 중의 $N_2O$는 연소실에 존재하는 NO와 $SO_2$의 반응에 의해 발생된다고 할 수 있다.

포도 저장을 위한 아황산가스 발생제의 제조 및 처리 방법 (Preparation and Treatment of Sulfur Dioxide Gas Generating Agent for Storage of Grape Fruits)

  • 최성진
    • 한국식품저장유통학회지
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    • 제15권6호
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    • pp.791-795
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    • 2008
  • 아황산가스 발생제를 자가 제조하여 포도의 저장 중 병해발생 방지에 이용하는 방법을 확립하기 위하여 sulfite 화합물의 아황산가스 발생 정도와 지속 기간을 측정하고 아황산가스 발생 조절 및 간이 검출 방법을 개발하였다. 포도의 저장 중 잿빛곰팡이병을 일으키는 B. cinerea의 포자 발아와 균사생장은 각각 400 ppm과 3200 ppm의 아황산가스 농도 조건에서 억제되었다. 5종류의 sulfite 및 bisulfite 화합물 중 sodium hydrosulfite는 아황산가스 발생량이 가장 높았으며 이를 비닐 포장하여 포장의 pinhole수를 조절하거나 산 또는 알카리의 pH 조절제를 혼합하면 가스 발생량과 발생 지속 기간을 조절할 수 있었다. Malachite green 용액은 아황산가스에 의해 정량적으로 탈색되어 아황산가스 검출에 이용할 수 있었으며 여과지에 흡수하여 건조할 경우 아황산가스 검출지로 활용할 수 있었다. MBA 포도를 속효성과 지효성의 아황산가스 발생제를 동시에 처리하여 저온 저장할 경우 병해 발생을 감소시킬 수 있었다.

A Study on Gas-Liquid Contact in a Perforated Plate-Type $SO_2$ Absorber at Flooding Conditions

  • Han, Seung-Ho;Soowoo Kwon;Sangwon Jung;Jaehyuk Junk;Yang, Chang-Ryung;Carl Weilert
    • Journal of Korean Society for Atmospheric Environment
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    • 제15권E호
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    • pp.17-28
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    • 1999
  • Gas-liquid contact tests above a perforated-plate were conducted with air and water at flooding gas-flow conditions in order to study two-phase flow characteristics in a limestone-gypsum SO2 absorber. Gas layers were in the form of air pockets and confined to the limited areas around each duct pipe, while the remaining tary area were in the wet condition. The liquid above the tray was always in the flooded and even fluidized conditions at gas flows over the range studied, although vigorous bubbly or churn-turbulent two-phase regime was only observed in the immediate vicinity of the gas hole exit at low gas loads. The froth zone was extremely active to provide intimate contact between gas and liquid so that the necessary mass transfer operation can take place, which is the primary purpose of high-performance SO2 absorbers. Howefer, the absorber $\Delta$P was 250mmH2O for the initial water level at 150mm, which is an important issue to be resolved for economical operation of the SO2 absorber. It was seen in the liquid level-and gas flow-transient tests that changes in the absorber liquid inventory were much more pronounced for intimate gas-liquid contact than changes in the gas flow. Based on the 4- and 8-duct pipe test results, grouping the duct pipes near the center of the test tray seemed to promote better recirulation of liquid from gas-liquid contact zone back to the reaction tank so that the absorbed SO2 can be neutralized.

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PVDF 중공사막 제조 및 벤치규모 기-액 접촉기를 이용한 SO2 흡수특성 (Preparation of PVDF Hollow Fiber Membrane and Absorption of SO2 from Flue Gas Using Bench Scale Gas-Liquid Contactor)

  • 박현희;조항대;김인원;이형근
    • Korean Chemical Engineering Research
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    • 제46권3호
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    • pp.521-528
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    • 2008
  • 중공사막 접촉기에 적절한 PVDF 중공사막을 상전이 공정에 의하여 제조하였으며, SEM 과 기체투과도에 의하여 그 특성을 분석하였다. 벤치규모 중공사막 접촉기에서 $SO_2$ 제거를 위한 흡수제는 수산화나트륨 수용액을 사용하였다. 기체는 shell side, 액체는 lumen side로 흐르는 counter-current로 실험하였으며, 흡수제의 농도, 기체의 유속, 액가스비, 유입 $SO_2$ 농도에 따른 영향을 알아보았으며, 수학적 모델링에 의해 막 물질전달계수($k_m$)를 측정하였다. 흡수제의 농도와 액기비가 증가함에 따라 기-액 계면에서 충분한 알칼리도가 제공되므로, 액체막 저항이 감소하며, 총괄물질전달 용량계수는 증가하였다. 기체유속이 증가함에 따라 기체막저항은 감소하게 되므로 총괄물질전달 용량계수는 증가하였다.

대기중(大氣中) 배출(排出)된 일산화탄소(一酸化炭素)와 아황산(亞黃酸)가스의 지속시간(持續時間) (On Effluent Concentration and Time of Fading Out of Carbon Monoxide and Sulful Dioxide in Atmosphere)

  • 김두희
    • Journal of Preventive Medicine and Public Health
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    • 제7권2호
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    • pp.373-375
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    • 1974
  • 일산화(一酸化) 탄소(炭素)에 대한 피해와 대기오염(大氣汚染) 기준을 아황산(亞黃酸)까스를 기준으로 한다는 데의 관심을 가지고 가정에서 많이 사용하고 인는 연탄을 중심으로 관찰한 결과 CO는 연소온도와 비례하나 $SO_2$는 비례하지 않으며 일단 발생된 CO는 적어도 24시간(時間) 이내에는 변화가 거의 없으며 비교적 장시간 유지한다. $SO_2$는 대기중에서 곧 변화를 일으켜 ($H_{2}SO_{4}$로 전환) 30분이내에 극소량으로 되므로 대기중의 황화물 측정은 $SO_2$보다 유황자체나 $H_{2}SO_{4}$를 측정함이 더욱 효과적이라 하겠다.

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아황산가스가 건조 과정중 잎담배 내용성분에 미치는 영향 (The Effect of $SO_2$ Gas on Chemical Composition of Tobacco Leaves During Flue-curing)

  • 황건중;석영선
    • 한국환경보건학회지
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    • 제11권1호
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    • pp.9-14
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    • 1985
  • This experiment was carried out to study on the effect of SO$_2$ gas to chemical composition of tobacco leaves during flue-curing. The results were as follows: SO$_2$ gas in briquet was the major factor to damage with tobacco leaves. The damage only occured in a presence of moisture in tobacco leaves, it did not occured after color fix'lng stage which is a little leaf moisture. The danger of damage to tobacco leaves lies in 10ppm of SO$_2$ gas concentration. Follow with the SO$_2$ gas concentration increased, sugar and nitrogen contents became higher, polyphenol contents were loss, and the quality of tobacco leaves declined.

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플라즈마 방전에 의한 $SO_x, NO_x$의 분해 (Decomposition of $SO_x, NO_x$ by Plasma Discharge)

  • 우인성;강현춘
    • 한국안전학회지
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    • 제14권1호
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    • pp.73-77
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    • 1999
  • In this study, $SO_2$ and $NO_2$ reduction have been investigated by using coil type plasma reactor. The experiments have been carried out changing discharge power, gas flow rate frequency and electrode style to obtain the decomposition rate. Decomposition rates of $SO_2$ and $NO_2$ were obtained 20~98% at gas flow rate 100ml/min~1,000ml/min and discharge power 5~25w respectively. The energy efficiency is very good at the high frequency power. The decomposition rate of $SO_2$ for 5kHz power supply is only 90%, but for 10kHz power supply is very high, more than 98% for 15w. The decomposition rate is increasing according to the residence time or the power consumption of the discharge. About 15W discharge power for 17$cm^2$ reactor is necessary to obtain the decomposition rate of $SO_2$ and $NO_2$ of more than 85% or 98%. From these experiments, the consumption power of the decomposition rate of 98% in 300ppm $NO_2$ gas in nitrogen gas proved to be 18W and 300ppm $SO_2$ gas to be 15w.

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$SO_2$ 가스에 對한 植物의 感受性 및 耐性에 關한 硏究 (A Study on the Resistance and the Sensitivity of Plants to $SO_2$ Gas)

  • 金貞圭;裵貞伍;金在鳳;朴在桂
    • 한국대기환경학회지
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    • 제2권2호
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    • pp.1-8
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    • 1986
  • To obtain the guidance of plants sensitivity or resistance to $SO_2$ gas, 16 species, 25 varieties of plants were exposed to 0, 0.2, 0.4, 0.7 and 1.5 ppm of $SO_2$ gas in controlled environmental chamber and the visible injury on the plants was observed. Plant sensitivity and/or resistance rankings at each guidance appeared different, based on first injured time, injury degree, and injury index. Only 10 varieties of plant are equal in the ranking at different base. It is concluded that recommended guidance for sensitivity and resistance of plants to $SO_2$ gas are the first injured time and the injury degree, respectively.

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