• Title/Summary/Keyword: Anion

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A Comparative Study of Sulfate and Chloride Intrusion in Mortar Sections: An Approach Using Laser Induced Breakdown Spectroscopy and Ion Exchange Membrane (LIBS와 이온교환막을 활용한 모르타르 단면 침투 황산염과 염화물 분석)

  • Park, Won-Jun
    • Journal of the Korea Institute of Building Construction
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    • v.23 no.3
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    • pp.221-229
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    • 2023
  • This research aimed to conduct an empirical assessment of the penetration of chloride and sulfate ions into mortar sections using an anion exchange membrane(AEM) and laser-induced breakdown spectroscopy(LIBS). The study involved a simultaneous ion chromatography(IC) analysis and LIBS analysis performed on mortars immersed in varying concentrations of chloride and sulfate. The findings revealed that at the wavelengths specific to Chloride(837.59nm) and Sulfur(921.30nm), the LIBS intensity achieved using AEM surpassed that obtained with a paper substrate at equivalent penetration concentrations. A robust correlation was confirmed between LIBS intensity and chloride ion concentration. Furthermore, when juxtaposed with IC analysis concentration outcomes at identical depths, the AEM displayed a higher intensity. The research noted an enhancement in LIBS intensity and a diminution in errors within the low-concentration section when deploying AEM. However, for the Sulfur wavelength of 921.3nm, there remains a need to augment the sensitivity of the LIBS signal within the low-concentration section in future studies. The findings underscore the potential of employing AEM and LIBS for precise analysis of chloride and sulfate ion penetration into mortar sections. This strategy can aid in bolstering assessment precision and mitigating errors, particularly in regions with low concentrations. It is recommended to further research and develop methods to amplify the sensitivity of the LIBS signal for sulfur detection in low-concentration sections. In sum, the study accentuates the significance of employing advanced techniques like AEM and LIBS for efficacious and precise analysis in the domain of mortar section assessment.

Effects of Electrolyte Cation on Electrochemical Properties of Negative and Positive Electrodes in Aluminum-Air Batteries (알루미늄-공기 전지의 음극 및 양극의 전기화학적 특성에 미치는 전해질 양이온의 영향)

  • Lee, Seunghwan;Yoon, Sungjae;Choi, Weon-Kyung;Baeg, Changhyun;Jeong, Soon-Ki
    • Journal of Convergence for Information Technology
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    • v.12 no.2
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    • pp.134-141
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    • 2022
  • To improve the performance of aluminum-air batteries, it is very important to understand the effect of electrolytes on the electrochemical properties of electrodes. In this study, the effects of electrolyte cations on the electrochemical redox reactions proceeding at the negative and positive electrodes were investigated using electrolytes having the same anion but different cations such as NaCl, LiCl, CaCl2, and ZnCl2. It was confirmed by discharge test, scanning electron microscopy and X-ray diffraction analysis that electrolyte cations affect the discharge potential and specific capacity of the electrode. Precipitates were formed on the surface of the positive electrode by Ca2+ and Zn2+ ions, resulting in degradation of the performance of the positive electrode. In addition, Ca2+ ions passivated the negative electrode and accelerated the performance degradation. This suggests that the positive ions of the electrolyte have different effects on the electrochemical performance of the positive and negative electrodes.

Urea Conversion via Enzymes Immobilized on Magnetic Microparticles (자성 미세입자에 고정된 효소를 통한 요소 전환)

  • Yeseul Park;Jieun Kwon;Seungjun Jung;Hyukjin Cho;Gounhanul Shin;Gangik Cho;Jin-Won Park;Kyung-Hyuk Lee
    • Korean Chemical Engineering Research
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    • v.61 no.3
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    • pp.407-411
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    • 2023
  • The urease is covalently immobilized on the surface of the magnetic particles to catalyze the conversion of urea to bicarbonate anion. The conversion was confirmed qualitatively using high-pressure liquid chromatography and UV/Vis spectrometry, and analyzed quantitatively with cyclic voltammetry. The amount of conversion with respect to time was measured and analyzed by the reaction rate equation to calculate a reaction rate constant of 0.0474 min-1. In the 1 to 3 cycles, a conversion percentage of over 90% was found, and it was possible to reuse the urease 8 times up to the percentage of 50%. It was also observed that the stability evaluated for storage for 30 days was maintained. As a result of this study, it can be seen that the urease covalently immobilized on the scaffold can be used for urea removal for the purpose of producing ultrapure water.

Study of sweat content analysis and latent fingerprint developing (땀의 성분 분석과 잠재지문 현출에 관한 연구)

  • Choi, Mi-Jung;Sun, Yale-Shik;Kim, Chang-Seong;Choi, Man-Sik;Sung, Nack-Do;Park, Sung-Woo
    • Analytical Science and Technology
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    • v.20 no.2
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    • pp.147-154
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    • 2007
  • Sweat contents were investigated for using those data to forensic purpose. The experiments of identifying sweat contents were as follow: 1) measurement of amino acids (aspartic acid, serine, glycine etc) by HPLC, 2) anions ($Cl^-$, $F^-$, and $SO{_4}^{2-}$) by IC and 3) trace elements (Cu, Zn, Li, B, etc.) by ICP-MS. Amino acid contents in sweat are varied with individual samples and glycine, threonine, alanine, valine and histidine are detected as the prime one. The detected anions are $Cl^-$(2167~4073 ppm) and $F^-$(454~582 ppm) mostly. Trace elements of Rb, Zn and Cu are detected and those concentrations are relatively very high. The compositions of sweat can be influenced by various factors (diet, anthropometric, characteristics, physical fitness, age, gender and the state of the health).

A Study on electrophoresis and Activity of Alcohol Dehydrogenase of Drosophila melanogaster (한국산 노랑초파리 (Drosophila melanogaster) Alcohol dehydrogenase의 전기영동산 및 활성에 대한 연구)

  • Chung, Yong-Jai;Yoon, Youn-Sik
    • The Korean Journal of Zoology
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    • v.23 no.3
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    • pp.125-136
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    • 1980
  • The purpose of the present study is to investigate the electrophoretic patterns of ADH isozymes and activity at various developmental stages of Oregon-R and Kwangju strains of D. melanogaster. The ADH isozymes were seperated by agarose gel plate eletrophoresis and they were stained for ADH activity study. The optical density was measured by using densitometer and the total activity was determined by measuring the enzyme solution's absorbance of 340 nm by spectrophotometer. The results are as follows: 1. At egg stages of Oregon-R and Kwangju strains ADH 2, ADH 3, ADH 4 were observed in te zymograms, but all of ADH 1, ADH 2, ADH 3, ADH 4 and ADH 5 were detected in larval, pupal and imaginal stages. 2. The amount of ADH 1+ADH 2 (anion) was 20-40% and that of ADH 3+ADH 4+ADH 5 (cation) was 60-805. In the developmental stages other, than egg stages, ADH 3 of both strains showed the largest amount among all ADH isozymes, and especially ADH 4 of Kwangju strain showed less amount than that of Oregon-R strain. 3. The total activity of the ADH at the egg stage was found to be the lowest, at larval stage became to be higher and to be lower at pupal stage and then became to be the highest at the imaginal stage. It is noticeable that the activity of the ADH in Kwangju strain was higher than that in Oregon-R strain.

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Development of Bi0.5(Na0.78K0.22)0.5TiO3 Lead-free Piezoelectric Ceramic Material with Core-shell Structure for Biomedical (바이오 메디컬용 코어-쉘 구조의 Bi0.5(Na0.78K0.22)0.5TiO3계 무연압전세라믹 소재의 개발)

  • Seong-jun Yun;Joonsoo Bae
    • Journal of Korean Society of Industrial and Systems Engineering
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    • v.46 no.3
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    • pp.15-22
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    • 2023
  • BNKT Ceramics, one of the representative Pb free based piezoelectric ceramics, constitutes a perovskite(ABO3) structure. At this time, the perovskite structure (ABO3) is in the form where the corners of the octahedrons are connected, and in the unit cell, two ions, A and B, are cations, A ion is located at the body center, B ion is located at each corner, and an anion O is located at the center of each side. Since Bi, Na, and K sources constituting the A site are highly volatile at a sintering temperature of 1100℃ or higher, it is difficult to maintain uniformity of the composition. In order to solve this problem, there should be suppression of volatilization of the A site material or additional compensation of the volatilized. In this study, the basic composition of BNKT Ceramics was set to Bi0.5(Na0.78K0.22)0.5TiO3 (= BNKT), and volatile site (Bi, Na, and K sources) were coated in the form of a shell to compensate additionally for the A site ions. In addition, the physical and electrical properties of BNKT and its coated with shell additives(= @BNK) were compared and analyzed, respectively. As a result of analyzing the crystal structure through XRD, both BNKT(Core) and @BNK(Shell) had perovskite phases, and the crystallinity was almost similar. Although the Curie temperature of the two sintered bodies was almost the same (TC = 290 ~ 300 ℃), it was confirmed that the d33 (piezoelectric coefficient) and Pr (residual polarization) values were different. The experimental results indicated that the additional compensation for a shell additive causes the coarsening, resulting in a decrease in sintering density and Pr(remanent polarization). However, coating shell additives to compensate for A site ion is an effective way to suppress volatilization. Based on these experimental results, it would be the biggest advantage to develop an eco-friendly material (Lead-free) that replaced lead (Pb), which is harmful to the human body. This lead-free piezoelectric material can be applied to a biomedical device or products(ex. earphones (hearing aids), heart rate monitors, ultrasonic vibrators, etc.) and skin beauty improvement products (mask packs for whitening and wrinkle improvement).

Purification and Characterization of Mitochondrial Mg2+-Independent Sphingomyelinase from Rat Brain

  • Jong Min Choi;Yongwei Piao;Kyong Hoon Ahn;Seok Kyun Kim;Jong Hoon Won;Jae Hong Lee;Ji Min Jang;In Chul Shin;Zhicheng Fu;Sung Yun Jung;Eui Man Jeong;Dae Kyong Kim
    • Molecules and Cells
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    • v.46 no.9
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    • pp.545-557
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    • 2023
  • Sphingomyelinase (SMase) catalyzes ceramide production from sphingomyelin. Ceramides are critical in cellular responses such as apoptosis. They enhance mitochondrial outer membrane permeabilization (MOMP) through self-assembly in the mitochondrial outer membrane to form channels that release cytochrome c from intermembrane space (IMS) into the cytosol, triggering caspase-9 activation. However, the SMase involved in MOMP is yet to be identified. Here, we identified a mitochondrial Mg2+-independent SMase (mt-iSMase) from rat brain, which was purified 6,130-fold using a Percoll gradient, pulled down with biotinylated sphingomyelin, and subjected to Mono Q anion exchange. A single peak of mt-iSMase activity was eluted at a molecular mass of approximately 65 kDa using Superose 6 gel filtration. The purified enzyme showed optimal activity at pH of 6.5 and was inhibited by dithiothreitol and Mg2+, Mn2+, Ni2+, Cu2+, Zn2+, Fe2+, and Fe3+ ions. It was also inhibited by GW4869, which is a non-competitive inhibitor of Mg2+-dependent neutral SMase 2 (encoded by SMPD3), that protects against cytochrome c release-mediated cell death. Subfractionation experiments showed that mt-iSMase localizes in the IMS of the mitochondria, implying that mt-iSMase may play a critical role in generating ceramides for MOMP, cytochrome c release, and apoptosis. These data suggest that the purified enzyme in this study is a novel SMase.

Stomatal Closure due to Water Stress in Plants (수분 스트레스에 의한 식물의 기공 닫힘)

  • Joon Sang Lee
    • Journal of Life Science
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    • v.34 no.6
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    • pp.426-433
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    • 2024
  • The environmental stress that plants are most susceptible to is water stress. Abscisic acid (ABA) is a plant hormone synthesized by plants to counteract environmental stress. The role of stomata in plants is to allow the synthesis of sucrose by absorbing CO2, which greatly affects photosynthetic activity. In addition, stomata are pathways for transpiration, which releases H2O and help establish a water potential gradient that allows plant roots to continuously absorb water and inorganic substances from the soil. Plants have a mechanism to minimize water loss by closing their stomata when exposed to water-stressed environments. The most well-studied hypothesis concerning the mechanism of stomatal closure is the response to water stress. When a plant receives sufficient water, its stomata open during the day and close at night due to its circadian rhythm. In addition, stomatal closure occurs when the concentration of CO2 in the intercellular space increases. However, the mechanism of stomatal closure due to circadian rhythm and increased CO2 concentration in the intercellular space is not well understood. When plants undergo water stress, the increased concentration of ABA in the guard cell cytoplasm induces an increase in Ca2+ concentration, resulting in cytoplasmic depolarization. As a result, the outward K+-channel of the tonoplast and the slow-type anion channels SLAC1 and SLAH3 are activated, releasing K+, Cl-, and malate2-, causing the stomata to close. Therefore, in this paper, the mechanism of stomatal closure caused by water stress was investigated.

Comparison of Antioxidant, Antidiabetic, and Antithrombotic Activities of Native Korean and Improved Pepper Varieties (국내 재래종 고추 및 개량종 고추의 항산화, 항당뇨 및 항혈전 활성의 비교)

  • Eun-Seo Lim;Seong-Im Park;Jong-Sik Kim;Ho-Yong Sohn
    • Journal of Life Science
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    • v.34 no.6
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    • pp.385-392
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    • 2024
  • Hot pepper (Capsicum annuum L.) is a valuable plant that is widely used worldwide for food and medicinal purposes. This study compared ethanol extracts of five native Korean varieties (Yuwol-cho, Subi-cho, Sumihyang, Gounbit, and Chilseong-cho) and five improved varieties (Dabok, Cheongyang, Chungseong, Olbokhap, and Shin-honggildong) of peppers cultured in Korea. The extracts were analyzed for color difference, polyphenol content, and their antioxidant, antidiabetic, and antithrombotic activities. The extracts of the improved varieties exhibited higher levels of redness and lower levels of yellowness compared to the native varieties. Polyphenol and flavonoid content analysis revealed significantly higher levels in the Yuwol-cho and Sumihyang varieties, which also exhibited scavenging activities in 1,1-diphenyl-2-picryl hydrazyl anion-, 2,2-azobis(3-ethylbenzothiazoline-6-sulfonate) cation-radical scavenging, and reducing power assay. The Chilseong-cho, Yuwol-cho, and Dabok varieties showed significantly higher nitrite scavenging activity. Antidiabetic activity based on α-glucosidase inhibition was observed in the Subi-cho, Sumihyang, and Gounbit extracts. Evaluation of antithrombotic activity showed that the Yuwol-cho extract prolonged thrombin time by 1.61 times compared to the solvent control at a concentration of 5 mg/ml, while the Dabok extract prolonged prothrombin time and activated partial thromboplastin time by 1.33 times and 2.21 times, respectively. All pepper extracts showed no erythrocyte hemolysis activity up to a concentration of 5 mg/ml. Our results suggest that native Korean peppers have the potential to serve as valuable sources of antioxidant, antidiabetic, and antithrombotic agents. This research also indicates the possibility of replacing improved pepper varieties, which incur significant seed usage fees, with native Korean pepper varieties.

Characterization and Purification of Subtilosin A Produced by Bacillus vallismortis MCBL 1012 Isolated from Seasoned Dried Radish

  • Se-Yeon Lee;Dae-Ook Kang
    • Journal of Life Science
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    • v.34 no.8
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    • pp.576-587
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    • 2024
  • In this study, diverse bacterial strains were isolated from fermented foods to screen those with antibacterial activity. Among them, one strain, identified as Bacillus vallismortis MCBL 1012 through 16S rRNA gene sequence analysis, was selected for its bacteriocin production. The culture supernatant of B. vallismortis MCBL 1012 showed antibacterial activity, mainly against Gram-positive bacteria. Scanning electron microscopy (SEM) revealed that bacteriocin treatment led to cellular content leakages in Listeria monocytogenes KCCM 40307, Enterococcus faecium KCCM 12118, and Streptococcus mutans KCTC 3065. PCR analysis confirmed B. vallismortis MCBL 1012 harbored subtilosin A gene (sbo A). Antibacterial activity was decreased by proteolytic enzymes like proteinase K, subtilisin A, and α-chymotrypsin. The bacteriocin demonstrated stability at 40℃ and 60℃ for 120 min, and up to 80℃ for 60 min, with rapid activity loss at 100℃. It retained full antibacterial activity within a pH range of 4.0 to 8.0 and was not affected by up to 100% organic solvents like ethanol, methanol, acetonitrile, and tetrahydrofuran. Nevertheless, activity decreased with more than 40% isopropanol and 80% acetone. Most tested inorganic salts and detergents had no effect on antibacterial activity except, CuSO4 and NiSO4 at specified concentrations. The bacteriocin exerted its antibacterial effect through bactericidal action against L. monocytogenes KCCM 40307. The bacteriocin was purified by ammonium sulfate precipitation, DEAE anion exchange chromatography, and RP-HPLC. The purification resulted in a final yield of 0.03% and a 283.7-fold increase in specific activity. MALDI-TOF MS analysis determined the exact molecular weight of purified bacteriocin to be 3,326.1 Da.