• 제목/요약/키워드: Aluminum salt

검색결과 95건 처리시간 0.026초

Effect of Low Salt Concentrations on Microbial Changes During Kimchi Fermentation Monitored by PCR-DGGE and Their Sensory Acceptance

  • Ahmadsah, Lenny S. F.;Min, Sung-Gi;Han, Seon-Kyeong;Hong, Yeun;Kim, Hae-Yeong
    • Journal of Microbiology and Biotechnology
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    • 제25권12호
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    • pp.2049-2057
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    • 2015
  • Various salt concentrations (1.0%, 1.3%, 1.6%, 1.9%, and 2.1% labeled as sample A, B, C, D, and E, respectively) were investigated for microbial diversity, identification of Lactic Acid Bacteria (LAB) in salted kimchi cabbage, prepared under laboratory conditions. These samples were stored at 4°C for 5 weeks in proper aluminum-metalized pouch packaging with calcium hydroxide gas absorber. A culture-independent method known as polymerase chain reaction - denaturing gradient gel electrophoresis was carried out to identify LAB distributions among various salt concentration samples that had identified 2 Weissella (W. confusa and W. soli), 1 Lactobacillus (Lb. sakei), and 3 Leuconostoc (Lc. mesenteroides, Lc. lactis, and Lc. gelidum) in the overall kimchi samples. The pH, titratable acidity, viable cell counts, and coliform counts were not affected by salt variations. In order to assess sensory acceptance, the conducted sensory evaluation using a 9-point hedonic scale had revealed that samples with 1.3% salt concentration (lower than the manufacturer's regular salt concentration) was more preferred, indicating that the use of 1.3% salt concentration was acceptable in normal kimchi fermentation for its quality and safety. Despite similarities in pH, titratable acidity, viable cell counts, coliform counts, and LAB distributions among the various salt concentrations of kimchi samples, the sample with 1.3% salt concentration was shown to be the most preferred, indicating that this salt concentration was suitable in kimchi production in order to reduce salt intake through kimchi consumptions.

알루미늄 가공 공장 배출 방류수의 독성 원인물질 탐색 (Application of Toxicity Identification Evaluation Procedures for Toxic Effluents from the Aluminum Rolling Industry)

  • 나진성;이지호;김기태
    • 한국환경보건학회지
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    • 제41권5호
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    • pp.305-313
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    • 2015
  • Objectives: The objective of this study is to identify toxicants causing acute toxicity in effluents from the aluminum rolling industry that violate the discharge limits in Korea. Methods: Whole effluent toxicity tests (WET) were conducted on effluent discharged from the aluminum rolling industry following the US EPA WET test methods. We collected effluent samples three times and evaluated acute toxicity by using Daphnia magna. We employed toxicity identification evaluation (TIE) procedures to identify toxicants causing toxicity in the effluent. Results: No specific chemical groups were identified in the seven different manipulations applied to the of wastewater effluent samples showing 1.3 toxic units (TU) according to the TIE phase I procedures. Water quality parameters for water hardness, electric conductivity and heavy metals (Mn) were 4,322 mg/l as $CaCO_3$, 11.39 mS/cm, and $5,551{\mu}g/l$, respectively. Considering water hardness and reference toxicity, high concentrations of Mn can be disqualified from the causative toxicants. Consequently, high ionic concentrations of $Na^+$(1,648 mg/l), $Ca^{2+}$(1,048 mg/l), $Mg^{2+}$(1,428 mg/l) and $SO_4{^{2-}}$(7,472 mg/l) were identified to be causative toxicants. Water hardness and electric conductivity exceed the $EC_{50}$ value obtained by biological toxicity tests using Daphnia magna. Conclusion: According to TIE procedures, high salt concentration is determined to be a major toxicant in the effluent of agro-industrial wastewater treatment plants receiving wastewater from the aluminum rolling industry.

3 wt% NaCl 수용액에서 알루미늄과 스테인리스강의 부식에 따른 광 반사 거동 (Corrosion and Photo-Reflection Behavior of Aluminum and Stainless Steel During Immersion Test in Salt Solution)

  • 조수연;나현규;조혜리;문종주;안태정;장희진
    • Corrosion Science and Technology
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    • 제19권3호
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    • pp.109-114
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    • 2020
  • The photo-reflectance of aluminum and AISI 304 stainless steel during cyclic immersion test in 3 wt% NaCl solution was examined in this study. Overall, corrosion was not recognized by a visual inspection or weight measurement up to 310 h. When evaluated, it was noted that the roughness of the specimens did not change significantly. However, localized corrosion, which is located at the vicinity of intermetallic precipitation of aluminum or at the grain boundary of stainless steel, was confirmed by the use of an optical microscope and scanning electron microscopy after tens of hours of utilizing the corrosion test. In this respect, an increase of the peak intensity for metallic Al after 90 h of test, and for metallic Fe after 153 h was detected from the X-ray photoelectron spectra. In this context, it was shown that from the photo-reflectance spectra, the reflection of the visible light from the tested samples was changed noticeably over the test duration. As a result, the intensity of reflected light was decreased up to 90 h ~ 153 h, and thereafter was shown to increase higher than the initial intensity before the corrosion test.

Al/Fe 이종금속 접합부의 부식특성 (Corrosion Assessment of Al/Fe Dissimilar Metal Joint)

  • 강민정;김철희;김준기;김동철;김종훈
    • Journal of Welding and Joining
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    • 제32권4호
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    • pp.55-62
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    • 2014
  • The use of light-weight Al alloys in the automotive industry is increasing to meet requirements for fuel efficiency and emission reduction. Joining Al alloy to the conventional steel sheet is also very important issue with the increased use of Al alloy, and several joining processes have been introduced to enhance joining strength between dissimilar metals. This paper deals with a galvanic corrosion in the dissimilar metal joining. Salt spray tests up to 2000 hours were conducted on a self-piercing rivet, spot welded, adhesive bonded and weld-bonded joints, and cross-sections and tensile shear strength according the salt spray duration were analyzed at every 500-hour. Self-piercing rivet joint had relative low initial strength but the joint strength did not change regardless of the salt spray duration. The strength of other joints (spot welded, adhesive bonded and weld-bonded joints) decreased with the increase of salt spray duration and the corrosion behaviour of each joint was discussed.

가압수열 수용액중에서 인산석고로부터 $\alpha$형 반수석고의 생성에 미치는 염류의 영향 (Effects of Salts on the Formation of $\alpha$-Calcium Sulfate Hemihydrated from by-Product Gypsum of Phosphoric Acid Process at Hydrothermal Condition)

  • 이구종;최상흘
    • 한국세라믹학회지
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    • 제24권4호
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    • pp.343-348
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    • 1987
  • The effects of salts such as aluminum sulfate as inorganic salt(2-4%), and sodium salts of citrate, tartrate, succinate, potassium tartrate and gelatin as organic salts(0.1%) on the formation of ${\alpha}$-calcium sulfate hemihydrate from by-product gypsum of phosphoric acid process under hydrothermal condition at 123$^{\circ}C$ and 133$^{\circ}C$ were investigated. Aluminum sulfate solution exhibited the catalystic effected on the crystallization of ${\alpha}$-calcium sulfate hemihydrate of which was assumed in the prismatic form, and organic salts solution exhibited little effect on the catalystic action to the crystallization, than inorganic salts. In the acidic solution with sulfuric acid(pH=2), needle like crystal of calcium sulfate hemihydrate was obtained. Hydrothermal process with aluminum sulfate solution also showed certain amounts of impurity removal such as phosphorus penataoxide from calcium sulfate hemihydrate.

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Development of the Limit Switch Box for a Ship and Its Performance Evaluation against Salt Water

  • Lee, Seung-Heui;Go, Seok-Jo;Lee, Min-Cheol;Kim, Chang-Dong
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2005년도 ICCAS
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    • pp.1334-1338
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    • 2005
  • A limit switch box is used for an indicator of a valve actuator. This device indicates an opening and closing of a valve or a throttle in the valve actuator. In a ship, equipments require safety and robustness because of a rough environment and a specific condition during a voyage. However, the limit switch box has been used in an indoor environment generally. This study developed a new limit switch box which can be used at an outdoor environment. This study designed the new limit switch box. The housing of the limit switch box was made by an aluminum die cast method with surface painting after anodizing or chromate coating. In order to evaluate the endurance of the housing, the endurance tests against salt water have been conducted. Experiment results showed that the proposed device provides a reliable performance against salt water.

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고온 축열 시스템의 개발에 관한 연구 (A System Development of Thermal Energy Storage at High Temperatures)

  • 홍성안;박원훈;최형준
    • 태양에너지
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    • 제8권1호
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    • pp.13-21
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    • 1988
  • Heat transfer phenomena in a high-temperature heat storage unit were investigated using molten salts. Carbonate salt, an equimolar mixture of $Li_2CO_3$ and $K_2CO_3$, which melts at $505^{\circ}C$ with a latent heat of 82 cal/g, was selected as the most promising latent heat storage material based on its low cost and excellent thermophysical properties at moderately high temperatures. It was also found that nitrate salts were good candidates of sensible heat storage materials. For the carbonate salt to be utilized commercially, however, several means of enhancing thermal recovery must be explored by promoting heat conduction through the solid salt formed during the heat discharge period. These would be achieved by the additions of aluminum screens and wool, and stainless fins. Finally, experimental results of moving boundary of phase change were well compared with predictied values obtained from the approximate solution.

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바나듐광 염배소물 수침출 용액으로부터 바나듐 회수공정 고찰 (Recovery Process of Vanadium from the Leaching Solution of Salt-Roasted Vanadate Ore)

  • 윤호성;허서진;박유진;김철주;정경우;김리나;전호석
    • 자원리싸이클링
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    • 제31권2호
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    • pp.40-48
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    • 2022
  • 본 연구에서는 바나듐광 염배소-수침출 과정을 거쳐 얻어지는 바나듐 함유 수용액으로부터 바나듐을 암모늄메타바나데이트로 침전시켜 회수할 때, 수용액에 존재하는 다른 성분의 이온들이 바나듐 회수에 미치는 영향을 알아보았다. 바나듐 함유 수용액은 pH가 13 정도인 강알칼리 용액으로서, 암모늄메타바나데이트 침전효율을 높이기 위해서는 수용액 pH를 9 이하로 낮춰야 한다. 그러나 황산으로 수용액 pH를 조절하는 과정에서 알루미늄 이온은 바나듐과 같이 공침되기 때문에 알루미늄 이온을 먼저 제거시켜야 한다. 본 연구에서는 소듐실리케이트를 사용하여 알루미늄-실리케이트 화합물 형태로 침전시킴으로서 알루미늄을 제거하였으며, 이 과정에서 바나듐 손실을 최소화하는 조건에 대하여 알아보았다. 알루미늄 제거 후, 황산을 이용하여 수용액 pH를 9 이하로 조절하는 과정에서 수용액의 실리케이트 성분을 침전시켜 제거하였다. 이 때 황산의 농도와 첨가속도가 바나듐 손실에 큰 영향을 미치며, 가급적 25% 묽은 황산을 사용하여 천천히 첨가함으로서 바나듐 손실을 최소화 하였다. 알루미늄 제거 그리고 수용액 pH 조절 과정을 통하여 얻은 바나듐 수용액에 3 당량의 염화암모늄을 첨가하여 상온에서 침전시킨 결과, 전체적으로 81% 이상의 바나듐을 암모늄메타바나데이트로 회수할 수 있었다. 회수된 암모늄메타바나데이트를 세척한 후 550℃에서 2시간 열처리하여 98.6% 순도의 오산화바나듐을 얻을 수 있었다

알루미늄염에 의한 인 제거 시 pH와 초기 인 농도의 영향 (Effect of pH and Initial Phosphorus Concentration on Phosphorus Removal by Aluminum Salts)

  • 박정원;곽효은;민소진;정형근;박병규
    • 상하수도학회지
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    • 제30권2호
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    • pp.123-130
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    • 2016
  • Phosphorus (P) removal by aluminum sulfate solution was investigated with varying pH and initial P concentrations. P removal was the highest at around pH 6. The pH range where P removal occurred was slightly wider at higher initial P concentrations. Compared to theoretical calculations, it was confirmed that $AlPO_4$ precipitation was the main reason for P removal at low pH. At high pH, where there should be no $AlPO_4$ precipitates, the P removal by adsorption of amorphous $Al(OH)_3$ precipitates was experimentally observed. The P removal by adding amorphous $Al(OH)_3$ precipitates prepared before the adsorption experiments, however, was lower than that by injecting aluminum sulfate solution because the prepared precipitates became larger, leading to less specific surface area available for adsorption. Ions other than sulfate had little influence on P removal.