• Title/Summary/Keyword: 황산염이온

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Chemical Properties and Long-Range Transport Characteristics of $PM_{2.5}$ Particles at Taean (태안에서의 대기오염물질의 장거리 이동과 에어로졸 입자의 특성에 관한 연구)

  • 홍천상;김영준;전전고상
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2000.11a
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    • pp.74-75
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    • 2000
  • 중국대륙에서부터 유입되는 대기오염물질은 우리나라에서 수백킬로미터가 떨어져 있음에도 불구하고, 적게는 우리나라 서해안 일대에서부터 멀리는 일본에까지 영향을 미치는 것으로 알려져 있다. 특히 대기 중 입자상 이온성 물질 중 질산염과 황산염의 경우 대부분이 인간 활동의 결과로 유입되는 NOx(NO+$NO_2$)와 대기중의 $SO_2$가 대기 중에서 화학적 반응에 의해 형성된 2차 오염물질이다. 자동차, 공장의 가동 등으로 인하여 발생되는 이들 오염물질들은 국지적으로 기상조건에 따라 이동되고 있는 것으로 알려져 있고, 각 지역에서 측정을 비롯한 많은 연구가 이루어지고 있다. (중략)

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Effect of Sulfate Source on Removal Efficiency in Electrokinetic Bioremediation of Phenanthrene-Contaminated Soil (Pnenanthrene-오염토양의 동전기 생물학적복원에서 제거효율에 대한 황산염원의 영향)

  • Kim, Sang-Joon;Park, Ji-Yeon;Lee, You-Jin;Yang, Ji-Won
    • KSBB Journal
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    • v.21 no.6 s.101
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    • pp.428-432
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    • 2006
  • This study investigated the effect of sulfate source on removal efficiency in electrokinetic bioremediation which needs sulfate to degrade contaminants by an applied microorganism. The representative contaminant and the applied microorganism were phenanthrene and Sphingomonas sp. 3Y, respectively. When magnesium sulfate was used, the magnesium ion combined with hydroxyl ion electrically-generated at cathode to cause the decrease of electrolyte pH, and then the microbial activity was inhibited by that. When ammonium sulfate and disodium sulfate were used to solve the pH control problem, the pH values of electrolyte and soil solution were maintained neutrally, and also the high microbial activity was observed. With the former sulfate source, however, ammonium retarded the phenanthrene degradation, and so the removal efficiency decreased to 12.0% rather than 21.8% with magnesium sulfate. On the other hand, the latter improved the removal efficiency to 27.2%. This difference of removal efficiency would be outstanding for an elongated treatment period.

Remediation of Acid Mine Drainage from an Abandoned Coal Mine Using Steel Mill Slag, Cow Manure and Limestone (제강슬래그, 우분 및 석회석을 활용한 폐 석탄광의 산성광산배수 처리)

  • Jung Myung-Chae
    • Journal of Soil and Groundwater Environment
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    • v.10 no.3
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    • pp.16-23
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    • 2005
  • In order to remediate acid mine drainage (AMD) from the Jeongam coal mine, steel mill slag, cow manure and limestone were used. As a result of batch test, the proper amounts for treating 1 L of acid mine water from the mine were determined as 15 g of steel mill slag, 15 g of cow manure and 500 g of limestone. After feasibility test, remediation system was arranged in the order of steel mill slag tank combination of cow manure and limestone, precipitation tank and oxidation tank. During 54 days' operations, the pH values of the treated waters increased from 3.0 to 8.3 and 61 % of sulfate concentration in an initial water was decreased. In addition, the removal efficiencies for metals in the water were nearly 99.9% for Al, Fe, Zn and 92.6% for Mn. Thus, the combination of steel mill slag, cow manure and limestone can be used as neutralization 때d metal removal for acid mine drainage.

A Study on the Kinetics of Copper Ions Reduction and Deposition Morphology with the Rotating Disk Electrode (RDE를 이용한 구리이온의 환원속도 및 전착형태에 관한 고찰)

  • Nam, Sang Cheol;Um, Sung Hyun;Lee, Choong Young;Tak, Yongsug;Nam, Chong Woo
    • Applied Chemistry for Engineering
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    • v.8 no.4
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    • pp.645-652
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    • 1997
  • Electrochemical characteristics and kinetic parameters of copper ion reduction were investigated with a platinum rotating disk electrode (RDE) in a diffusion controlled region. Reduction of Cu(II) in sulfate had one-step two-xelectron process, while the reduction of Cu(II) in chloride solution was involved two one-electron processes. The transfer coefficient of Cu(II) in sulfate solution was lowest, and the transfer coefficient of Cu(I) in halide solutions had the value of nearly one. In chloride solutions, electrodeposition rate of Cu(II) was about one hundred times faster than Cu(I). Diffusion coefficient increased in the order of Cu(II) in chloride solution, Cu(I) in the iodide, bromide, chloride solution, Cu(II) in sulfate solution. The calculated ionic radii and activation energy for diffusion decreased in the same order as above. Morphological study on the copper electrodeposition indicated that the electrode surface became rougher as both concentration and reduction potential increases, and the roughness of the surface was analyzed with UV/VIS spectrophotometer.

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Development on Antibiotic Concrete Mixed with Antibacterial Metals and Metallic Salts (금속 및 금속염계 항균제가 혼입된 항균 콘크리트 개발)

  • Choi, Hong-Shik;Heo, Kwon;Lee, Ho-Beom;Lee, Si-Woo;Kwak, Hong-Shin
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.1 no.2
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    • pp.136-143
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    • 2013
  • In the sewage structures and wastewater facilities, concrete is exposed to hydrogen sulfide ($H_2S$) which acts as an acid material in a solution, and a strongly acidic sulfate ion ($SO{_4}^{-2}$) is generated by a sulfuric bacteria. Hence, a degradation of concrete with biochemical corrosion would be accelerated. Finally, durability of concrete and concrete structures may be greatly reduced. In this study, in order to remove the hydrogen sulfide which is used by the sulfuric bacteria organic-biologically, the antibiotic metal and metallic salt powders were mixed to concrete, and a suppressing performance of the sulfate ion was assessed. For the sulfuric acid bacteria, a comparative evaluation of antimicrobial performance on neutralized concrete specimens were carried out, also by a rapid chloride penetration test, chloride penetration depths and diffusion coefficients were measured for antibiotic concrete in accordance with the amount of metal and metallic salt-based antibacterial agents. Eventually, by an observation of the biochemical state of the surface of concrete specimens exposed outdoors, the performance and applicability of antibiotic concrete were confirmed.

Chemical Composition of Imported Table Salts and Kimchi Preparation Test (시판 수입 소금의 성분과 김치제조 시험)

  • 신동화;조은자;홍재식
    • Journal of Food Hygiene and Safety
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    • v.14 no.3
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    • pp.277-281
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    • 1999
  • Chemical composition of imported table salts from China (sun dried), Thailand (sun dried) and Australia (rock salt) were compared the mineral content and heavv metal contamination with Korean sun dried salt. Kimchies prepared by those salts were analyzed the quality by pH, acidity and sensory evaluation. Chemical compositions were as follows : moisturefrom 1.7% (Australia) to 8.7% (Korea), sodium chloride-from 86.7% (China, summer) to 97% (Australia), insoluble matter in water-from 0.02% (Australia) to 0.18 (China), and sulfate ionfrom 0.03% (Australia) to 1.65% (China, summer). Judging by Korean Standard(KS) of salt, salt from Australia and Thailand belong to 1st grade, Korean and Chinese (winter) to 2nd grade, and China (summer) were out of 3rd grade. Ca and Mg content of the salts tested were 0.022% (Australia) to 0.246 (China, winter), 0.036% (Australia) to 0.841% (China, summer) respectively and Pb was 1.23 ppm(China, summer)~0.61ppm(Korea) which is within the Korean regulation. The other heavy metals, Pb, Cd, As and Hg were not detected in all salts tested. The quality of Kimchi prepared by those salts were significantly no difference with Korean sun dried salt.

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Chemical Resistance of Low Heat Cement Concrete Used in Wastewater Treatment Structures Built on Reclaimed Land (해안매립지 하수처리시설물에 적용한 저발열시멘트 콘크리트의 내화학성 평가)

  • Chung, Yongtaek;Lee, Byungjae;Kim, Yunyong
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.23 no.7
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    • pp.113-119
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    • 2019
  • Concrete structures built on reclaimed land are combined with chemical erosion such as chlorine and sulfate ions from seawater. Chloride attack deteriorates the performance of the structure by corroding reinforcing bars. In addition, the waste water treatment structure has a problem that the concrete is deteriorated by the sulfate generated inside. Therefore, in this study, the characteristics and chemical resistance of low heat cement concrete used in wastewater treatment structures constructed on reclaimed land were evaluated. As a result of the experiment, the target slump and air content were satisfied under all the mixing conditions. The slump of low heat cement (LHC) concrete was higher than that of ordinary portland cement (OPC) concrete, while the air content of LHC concrete was smaller than that of OPC concrete with the same mix proportion. As a result of compressive strength test, OPC concrete showed higher strength at younger age compared to 28 days. In contrast, LHC concrete exhibited higher strength than OPC concrete at the age of 56 days. As a result of chlorine ion penetration tests, LHC-B concrete showed chlorine ion penetration resistance performance of the "very low" level at the age of 56 days. As a result of chemical resistance evaluation, when the LHC concrete is applied without epoxy treatment, chemical resistance is improved by about 18% compared to OPC concrete. In testing chemical resistance, the epoxy coated concrete exhibited less than 5% strength reduction when compared to sound concrete.

A Study on Corrosion Resistance of the Reinforement in Concrete Using Blast-Furnace Slag Powder (고로슬래그미분말을 사용한 콘크리트의 염화물이온에 의한 철근부식 저항성 연구)

  • Kim Eun-Kyun;Kim Jin-Keun;Lee Dong-Hyuk;Kim Young-Ung;Kim Yong-Chul
    • Journal of the Korea Concrete Institute
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    • v.16 no.1 s.79
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    • pp.1-9
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    • 2004
  • This paper represents the permeability of chloride ions and the corrosion performance in the concrete blended with granulate blast furnace slag exposed to chloride environment. An ordinary cement (type I ) and sulfate resisting cement(type V) were used for the experiment. The two cements were combined with $0\%$, $25 \%$, $40\%$, and $55\%$ of the granulated blast furnace slag. The accelerated permeability tests of chloride ions were performed in accordance with ASTM C1202, and the accelerated corrosion tests of steel were carried out by using the method of immersion/drying cycles. After water curing 28 days, 56 days and 91 days, these tests were conducted until 30 cycles. In every cycle, test specimens were wetted in $3\%$ NaCl solution for three days and dried again in $60^{\circ}C$ air for four days. As an experimental results, the diffusion coefficient of chloride ions of the ordinary cement Concrete Combined granulated blast furnace slag was much lower than that of non granulated blast furnace slag concrete. Moreover, the diffusion coefficient of chloride ions of sulfate resisting cement concrete was higher than that of ordinary cement concrete. On the basis of the results of accelerated corrosion tests, corrosion resistance of the concrete mixed with granulated blast furnace slag shows good to corrosion resistance, however, the concrete with sulfate resisting cement shows bad to corrosion resistance.

Study on-Gas-generating Property Of Lithium Polymer Drone batteries (리튬 폴리머 드론 배터리 방전시 이상가스에 대한 연구)

  • Jong-Heon Lee;Jae-Won Kim;Hong-Joo Yoon;Won-Chan Seo
    • The Journal of the Korea institute of electronic communication sciences
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    • v.18 no.1
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    • pp.195-204
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    • 2023
  • The drone's battery system uses lithium-ion or lithium-polymer batteries, and it is known that the cause of fire during the disposal process after using the drone is combustible gas from the battery being discarded. Most of the batteries in the disposal process generated oxygen, but a small amount of flammable gas was also generated, and a large amount of chlorine ions and sulfates were also detected in the equipment used for treatment. If a system that detects this early is configured, it will be possible to reduce the risk of accidents caused by discarded batteries.

Preparation of porous silica gel powders from sodium silicates

  • 장감용;전영관;임광일;이광희
    • Proceedings of the Korea Association of Crystal Growth Conference
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    • 1996.06b
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    • pp.29-53
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    • 1996
  • 다공성 실리카 게 분말은 저밀도, 고비표면적의 특성을 가지며 물리적, 화학적 성질이 우수하여 필름의 점착방지제, 페인트의 소광제, 맥주의 흡착제, 촉매의 담지체등 산업전반에 걸쳐 여러용도로 사용되고 있다. 이러한 다공성 실리카 겔 분말은 고상법, 기상법, 액상법등으로 제조할 수 있으며, 이 중에서 sodium silicate를 원료로 하는 액상공정은 다공성의 제어가 용이하고, 공정이 간단하며, 고순도의 균질한 실리카를 얻을 수 있는 방법으로 많이 사용되고 있다. 본 연구에서는 액상법(sol-gel method)를 사용하여 점착방지제, 소광제 등으로 사용되는 다공성 실리카 겔 미분말의 개발에 초점을 두어 연구하였다. 그리고, 겔 분말의 다공성 제어를 위하여 공정 각 단계에서의 겔 내부의 구조의 변화에 대한 연구와 함께 수화겔의 숙성이 기공특성에 미치는 영향, 건조조건의 기공특성에 대한 영향 등을 살펴보았다. 다공성 실리카 겔 미분말은 다음과 같은 공정에 의해 제조되었다. sodium silicate를 황산과 반응시켜 겔화하고 추가의 황산을 투입하여 미반응분의 Na를 제거한 후 pH 7이상의 알카리 영역에서 숙성하여 다공성을 지닌 실리카 수화겔을 제조하였다. 수화겔의 탈수, 세척, 건조 공정을 거쳐 건조겔을 제조하고, 1-20$\mu\textrm{m}$의 크기로 분쇄하여 최종 제품을 얻을 수 있었다. 최종 다공성 실리카 겔 분말은 비표면적 200-700$m^2$/g, 기공부피 0.5-2.5cc/g, 평균 입경 3-5$\mu\textrm{m}$, 백색도 95% 이상의 물성을 보였다. sodium silicate와 황산의 겔화 반응에 의해 생성된 수화겔은 수 nm크기의 일차입자들의 연속적인 network로이루어져 있으며, 일차입자크기가 너무 작기 때문에 내부의 기공들은 별로 존재하지 않는 상태이다. 2차 주가황산 투입에 의해 미반응의 알카리 이온들을 중화, 제거시킬 수 있으며, 겔의 다공성을 좌우하는 숙성단계에서 숙성 pH, 온도, 시간등의 인자에 의해 수화겔의 기공특성을 제어할 수 있다. pH 7이상에서 실리카의 용해도가 크고, 용해도의 입자크기 의존성이 크므로, 일자입자는 Ostwald-ripening에 의해 계속 성장할 수 있으며, 이때, 입자의 성장은 숙성 온도와 시간에 의존한다. 탈수, 세척공정에 의해 가용성 염인 Na2SO4를 제거하고, 건조조건을 변화시킴으로써 기공부피를 증가시키는 것이 가능하였으며, Fast drying을 사용하여 점착방지제에 적합한 기공부피를 갖는 실리카 건조겔을 제조할 수 있었다.

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