• Title/Summary/Keyword: 브롬산염

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Removal of Bromate by Iron, Copper and Silver Impregnated Activated Carbon (철, 구리, 은 첨착활성탄을 이용한 브롬산염의 제거)

  • Choi, Seong-Woo;Park, Seung-Cho
    • Journal of Korean Society of Environmental Engineers
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    • v.28 no.2
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    • pp.178-182
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    • 2006
  • The purpose of this research is to remove the bromate that is a disinfection by-poduct of water purification by ozone. I achieved a high rate of removal with iron, copper, or silver impregnated activated carbon by using both the adsorbing power of granular activated carbon and the oxidizing power of metal ions as deoxidizing agents. In the removal test of bromate with the quantity of activated carbon input I injected each activated carbon by 0.1, 0.3, 0.1, and 1.0 g and let them react for 240 minutes. I found the quantity of removed bromate was in proportion to the amount of input. The removal rate of bromate increased about 20% when I used acid treated activated carbon. The metal impregnated activated carbon had a higher removal rate of bromate than that of general activated carbon by about $30{\sim}50%$. Iron impregnated activated carbon showed a 92% removal rate of bromate. Iron, copper, or silver impregnated activated carbon removed about $0.9{\sim}1.5mg\;{BrO_3}^-/g$ while general activated carbon removed about $0.02{\sim}0.45mg\;{BrO_3}^-/g$. In the continuous column reaction, there were breakthrough phenomena at 96, 180, and 252 hours when I tested EBCT by 1, 2 and 3 minutes while I was changing the flux rate of bromate from 15.6 to 46.8 mL/min.

Comparison of Boiling Point and Distillaiion Ranige, Melting Range, and Identification Methods of Various Organizations on Synthetic Food Additives (식품첨가물에 대한 여러 기관의 비점 및 유분측정법, 융점측정법 및 확인시험법 비교)

  • Shin Dong-Hwa;Kim Yong-Suk;Lee Young-Hwan;Bang Jeong-Ho;Om Ae-Son;Shin Jae-Wook;Lee Tal-Soo;Jang Young-Mi;Hong Ki-Hyoung;Park Sung-Kwan;Kwon Yong-Kwan;Park Jae-Seok
    • Journal of Food Hygiene and Safety
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    • v.20 no.3
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    • pp.134-140
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    • 2005
  • Boiling point and distillation range, melting range, and identification methods in general test method of Korea, Japan, Joint FAO/WHO Expert Committee of Food Additives (JECFA), and USA on chemical food additives were compared. Boiling point of propylene glycol was indicated as boiling point in Korea, distillate in Japan, distillation range in JECFA and USA, and its value was up to the standard. Distillation range of propionic acid was indicated as distillate in Korea and Japan, distillation range in JECFA and USA, and its value was up to the standard. There is no standard on distillation range of isopropyl alcohol in Japanese method. Test method of melting range on synthetic food additives was identical in all organizations, and there are 28 items to which this test method applies in Korean Food Additives Code. The standards on molting range of D-mannitol were different in various organizations, and in USA method there are no standards to which L-ascorbic acid, calciferol, and fumaric acid apply. Synthetic food additives performing the identification test were 251 items in Korean Food Additives Code, but there are no items to which manganese, glycerophosphate, bromate, thiosulfate, and bromide apply. Calcium benzoate was dissolved by heating in benzoate test and we could not identify the citrate in ferric citrate by method (2) of Korea and Japan. Identification test methods for ammonium, lactate, magnesium, copper, sulfate, phosphate, and zinc were identical in all organizations, and these could be identifed by current identification methods.

A Study on the Distribution Characteristics of Bromide and Bromate in Drinking Water in Northern Gyeonggi Area (경기북부지역 먹는 물 중 브롬이온 및 브롬산염의 분포특성에 관한 연구)

  • Jung, Jong-Pil;Choi, Si-Rim;Ryu, Hyeung-Rial;Park, Gyoung-Su;Song, Hee-Il;Lee, Hyun-Jin;Jo, Mi-Hyun;Oh, Jo-Gyo;Yoon, Mi-Hye
    • Journal of Environmental Health Sciences
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    • v.44 no.3
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    • pp.244-249
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    • 2018
  • Objectives: The purpose of this study was the investigation of bromide and bromate in drinking water of water supply plants, mineral springs and small water supply system located in northern area of Gyeonggi province. Methods: Analytical method was based on EPA 326.0 to use Postcolumn reaction (PCR). The instrument was 887 professional UV/VIS detector IC manufactured in Metrohm. Results: Bromate was detected at $0.5{\sim}2.4{\mu}g/L$ in tap water from 5 water supply plants. These plants were used as disinfection method for sodium hypochlorite and on-site chlorine that causes generate bromate as a by products even if not used ozone. Conclusions: The bromate was detected up to $2.5{\mu}g/Lin$ drinking water in northern Gyeonggi area that showed within $10{\mu}g/L$ for standard of tap water. However, the continuous monitoring of bromate is necessary in drinking water.

Synthesis of Tridentate Poly-amine Ligands and Determination of Stability Constants of Transition Metal Complexes (세자리 폴리아민리간드의 합성과 양성자 해리상수 및 전이금속과의 착물 안정도상수의 결정)

  • Kim, Sun-Deuk;Kim, Jun-Kwang;Ko, Moon-Soo
    • Analytical Science and Technology
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    • v.15 no.2
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    • pp.135-141
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    • 2002
  • The new tridentate poly-amine ligands, N,N-Bis(2-amino-ethyl)-methyl amine${\cdot}$2HBr (BAMA${\cdot}$2HBr), N,N-Bis(2-amino-ethyl)-ethylamine${\cdot}$2HBr (BAEA${\cdot}$2HBr), N,N-Bis(2-amino-ethyl)-propylamine${\cdot}$2HBr (BAPA${\cdot}$2HBr) and N,N-Bis(2-amino-ethyl)-butylamine${\cdot}$2HBr (BABA${\cdot}$2HBr) were synthesized as their dihydrobromic-salt and characterized by EA, IR, NMR and Mass spectroscopy. The protonation constants of the ligands and stability constants of transition metal(II) complexes were determined in aqueous solutions by potentiometry and compared with diethylenetriamine. Stability constants for transition metal complexes of ligands are in the order of BAMA < BAEA < BAPA > BABA. The larger value of stability constants of BAPA compared to these BABA, may be attributed to the more distorted structure of the complex due to the increased steric crowding caused by the presence of the bulky N-butyl group.

Synthesis of new N2O2 tetradentate ligands and the substituent effect on the stability constants of the transition metal complexes (새로운 산소-질소(N2O2)계 네 자리 리간드의 합성과 전이금속 착물 안정도상수에 대한 치환기 효과)

  • Kim, Sun Deuk;Jin, Gyoung Rok
    • Analytical Science and Technology
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    • v.19 no.2
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    • pp.131-141
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    • 2006
  • Hydrobromic acid salt of a $N_2O_2$ tetradentate ligand, N,N'-bis(2-hydroxybenzyl)-ethylene-diamine ($H-BHE{\cdot}2HBr$) was synthesized. $Br-BHE{\cdot}2HBr$, $Cl-BHE{\cdot}2HBr$, $CH_3-BHE{\cdot}2HBr$ and $CH_3O-BHE{\cdot}2HBr$ having Br, Cl, $CH_3$ and $CH_3O$ substituents at 5-position of the phenol group of $H-BHE{\cdot}2HBr$ were also synthesized. $Nap-BHE{\cdot}2HBr$ having naphthalen-2-ol instead of the phenol group was also synthesized. The potentiometry study in aqueous solution revealed that the proton dissociations of the synthesized ligands occurred in four steps and the order of the calculated overall proton dissociation constants (${\log}{\beta}_p$) of each ligand was Br-BHE < Cl-BHE < H-BHE < Nap-BHE < $CH_3$-BHE < $CH_3O$-BHE. The order showed a similar trend to that of Hammett substituent constants(${\sigma}_P$). The order of the stability constants (${\log}K_{ML}$) was CO(II) < Ni(II) < Cu(II) > Zn(II) > Cd(II) > Pb(II). The order in their stability constants (${\log}K_{ML}$) of each transition metal complex agreed well with that of the overall proton dissociation constants (${\log}{\beta}_p$).

Development of Dissolution Test Method for Acebrophylline Capsules and Bromhexine Hydrochloride Tablets in Korean Pharmaceutical Codex (고시수재 의약품 중 아세브로필린 캡슐 및 브롬헥신염산염 정의 용출시험법 개발)

  • Lee, Tae-Woong;Jeong, Rae-Seok;Jeong, Seung-A;Kim, Jeong-Hyun;Shim, Young-Hun;Kim, In-Kyu;Park, Chang-Won
    • YAKHAK HOEJI
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    • v.57 no.3
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    • pp.226-233
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    • 2013
  • Although the dissolution test can serve as an effective tool for quality control and predictor of in vivo performance, there are a number of drugs with no established dissolution specification in Korean Pharmaceutical Codex (KPC). So, with each reference and test drugs, the dissolution test method and an analytical procedure by HPLC were developed and validated to establish dissolution specification for acebrophylline capsules and bromhexine hydrochloride tablets. The dissolution condition was determined based on the "Guidelines on Specifications of Dissolution tests for Oral dosage forms" of Ministry of Food and Drug Safety (MFDS). The analytical method of HPLC was validated in specificity, linearity, precision and accuracy. Final dissolution test was performed with commercially available samples of 3 lots to establish specification. In addition, no difference was observed by the inter-laboratory evaluation. Dissolution specifications and conditions will be used for revising the monograph of acebrophylline capsules and bromhexine hydrochloride tablets in next supplement of KPC.