• Title/Summary/Keyword: formaldehyde adsorption

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pH-Controlled Synthesis of Carbon Xerogels for Coin-Type Organic Supercapacitor Electrodes (pH를 조절하여 제조한 카본제어로젤을 이용한 코인타입 유기계 슈퍼커패시터 전극)

  • Ji Chul Jung;Wonjong Jung
    • Korean Journal of Materials Research
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    • v.33 no.10
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    • pp.430-438
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    • 2023
  • In this study, we synthesized pH-controlled resorcinol-formaldehyde (RF) gels through the polymerization of two starting materials: resorcinol and formaldehyde. The prepared RF gels were dried using an acetone substitution method, and they were subsequently carbonized under nitrogen atmosphere to obtain carbon xerogels (CX_Y) prepared at different pH (Y). The carbon xerogels were utilized as active materials for coin-type organic supercapacitor electrodes to investigate the influence of pH on the electrochemical properties of the carbon xerogels. The carbon xerogels prepared at lower pH (CX_9.5 and CX_10) exhibited sufficient particle growth, with a three-dimensional network of particles during the RF gel formation, resulting in the development of abundant mesopores. Conversely, the carbon xerogels prepared at higher pH (CX_11 and CX_12) retained densely packed structures of small particles, leading to pore collapse and low specific surface areas. Consequently, CX_9.5 and CX_10 showed high specific surface areas, and provided ample adsorption sites for the formation of electric double layers with electrolyte ions. Moreover, the three-dimensional particle network in CX_9.5 and CX_10 significantly enhanced electrical conductivity. The presence of well-developed mesopores in these materials further facilitated the effective transport of electrolyte ions, contributing to their superior performance as organic supercapacitor electrodes. This study confirmed that pH-controlled carbon xerogels are one of the promising active materials for organic supercapacitor electrodes. Furthermore, we concluded that pH during RF gel formation is a crucial factor determining the electrode performance of the carbon xerogels, highlighting the need for precise pH control to obtain high-performance carbon xerogel electrodes.

Effect of Conductive Additive Amount on Electrochemical Performances of Organic Supercapacitors (유기계 슈퍼커패시터에서 도전재의 양이 전기화학적 특성에 미치는 영향)

  • Yang, Inchan;Lee, Gihoon;Jung, Ji Chul
    • Korean Journal of Materials Research
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    • v.26 no.12
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    • pp.696-703
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    • 2016
  • In this study, we intensively investigated the effect of conductive additive amount on electrochemical performance of organic supercapacitors. For this purpose, we assembled coin-type organic supercapacitor cells with a variation of conductive additive(carbon black) amount; carbon aerogel and polyvinylidene fluoride were employed as active material and binder, respectively. Carbon aerogel, which is a highly mesoporous and ultralight material, was prepared via pyrolysis of resorcinol-formaldehyde gels synthesized from polycondensation of two starting materials using sodium carbonate as the base catalyst. Successful formation of carbon aerogel was well confirmed by Fourier-transform infrared spectroscopy and $N_2$ adsorption-desorption analysis. Electrochemical performances of the assembled organic supercapacitor cells were evaluated by cyclic voltammetry, galvanostatic charge/discharge, and electrochemical impedance spectroscopy measurements. Amount of conductive additive was found to strongly affect the charge transfer resistance of the supercapacitor electrodes, leading to a different optimal amount of conductive additive in organic supercapacitor electrodes depending on the applied charge-discharge rate. A high-rate charge-discharge process required a relatively high amount of conductive additive. Through this work, we came to conclude that determining the optimal amount of conductive additive in developing an efficient organic supercapacitor should include a significant consideration of supercapacitor end use, especially the rate employed for the charge-discharge process.

Hydrogen Storage Properties of Microporous Carbon Nitride Spheres (구형의 질화탄소 마이크로세공체의 수소저장 특성)

  • Kim, Se-Yun;Suh, Won-Hyuk;Choi, Jung-Hoon;Yi, Yoo-Soo;Lee, Sung-Keun;Stucky, Galen D.;Kang, Jeung-Ku
    • 한국신재생에너지학회:학술대회논문집
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    • 2009.06a
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    • pp.744-744
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    • 2009
  • The development of safe and suitable hydrogen storage materials is one of key issues for commercializing hydrogen as an energy carrier. Carbon based materials have been investigated for many years to store hydrogen by the adsorption of the gas on the surface of the carbon structure. Recently, it is reported that carbon nitride nanobells have high hydrogen storage capacity since the nitrogen atom plays an important role on attracting hydrogen molecules. Here we report carbon nitride microporous spheres (CNMS) which have the maximum surface area of 995.3 $m^2/g$. Melamine-Formaldehyde resin is the source of carbon and nitrogen in CNMS. Most of the CNMS pores have diameters in the range of 6 to 8 A which could give a penetration energy barrier to a certain molecule. In addition, the maximum hydrogen storage capacities of carbon nitride spheres are 1.9 wt% under 77 K and 1 atm.

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A Study on the Physical Properties and Environment Efficiency Evaluation in Activated Carbon Concrete Bricks (활성탄을 첨가한 콘크리트벽돌의 물리적 특성 및 환경 성능 평가에 관한 연구)

  • Woo, Jong-Kwon;Hong, Sang-Hee;Jun, Kyoung-Bin;Ryu, Hyun-Gi
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2006.11a
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    • pp.47-51
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    • 2006
  • Modern residing equipment developed much quantitatively along with economic growth but improvement for agreeable residing space of indoor environment is insufficient situation yet. Also, the latest sick-building syndrome discharging room contaminant such as Formaldehyde, toluene, radon etc. built house or buildings newly human body threaten. Radon of them is real condition that raise origination of lung cancer next to smoke. So, wish to in this research by one of solution way of these problems adsorption performance and specie performance excellent activated carbon to concrete bricks for deconstipating suppository that is room finish fare mix and examine closely after grasp physical, mechanical special quality, hazardous substance and specie performance effect. According to result that estimate environment efficiency evaluation, the $CO_2$ absorption amount displayed decrease effect more than about 90% in activated carbon metathesis rate 40% and radon release amount displayed tendency that decrease about $76{\sim}96%$ in activated carbon metathesis rate 40%.

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A Study on the Development of Friendly Environment Mortar by Using Activated Carbon as Fine Aggregate (활성탄을 잔골재로 이용한 친환경 모르타르 개발에 관한 연구)

  • Woo Jong-Kwon;Hong Sang-Hee;Jun Kyoung-Bin;Ryu Hyun-Gi
    • Journal of the Korea Institute of Building Construction
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    • v.6 no.2 s.20
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    • pp.105-109
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    • 2006
  • Modern residing equipment developed much quantitatively along with economic growth but improvement for agreeable residing space of indoor environment is insufficient situation yet. Also, the latest sick-building syndrome discharging room contaminant such as Formaldehyde, toluene, radon etc. built house or buildings newly human body threaten. Radon of them is real condition that raise origination of lung cancer next to smoke. So, wish to in this research by one of solution way of these problems adsorption performance and specie performance excellent activated carbon to mortar for deconstipating suppository that is room finish fare mix and examine closely after grasp physical, mechanical special quality, hazardous substance and specie performance effect. According to result that estimate friendly-environment performance, the $CO_2$ absorption amount displayed decrease effect more than about 90% in activated carbon metathesis rate 80% and radon release amount displayed tendency that decrease about $75{\sim}85%$ in activated carbon metathesis rate 80%.

A Study on the Pretreatment of the Spent Coffee Grounds using Electrocoagulation and Its Filter Characteristics (전기 응고법을 이용한 커피박의 전처리 및 기능성 필터 특성 연구)

  • Park, Soobin;Han, Haneul;Park, Haneul;Lim, Seunghyun;Yoo, Bongyoung;Yoon, Sanghwa
    • Journal of the Korean institute of surface engineering
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    • v.54 no.4
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    • pp.209-214
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    • 2021
  • As coffee consumption per person increases annually to 323 cups in 2018, treating the spent coffee ground has arisen because spent coffee ground results in soil and air pollution. The demands of air purification filters are increasing more and more because the air pollution due to the fine dust has become worse. The spent coffee grounds had a porous structure, however, the pore was blocked by organic oil compounds. Electrocoagulation, which is one of the electrochemical methods, has the potential to remove the organic compounds. The surface area of spent coffee grounds increased effectively after the electrocoagulation treatment, and surface morphology and surface area were confirmed using SEM and BET, respectively. Using the FT-IR, both the spent coffee grounds and the electrocoagulated spent coffee grounds were characterized. The filter characteristics were examined by the adsorption test using formaldehyde, one of the air pollutants.

Evaluation of Indoor Air Quality Performance of Paste According to Carbon Black Replacement Ratio (카본블랙 치환율에 따른 페이스트의 실내 공기질 성능 평가)

  • Kim, Yeon-Ho;Lee, Snag-Soo
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2020.11a
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    • pp.135-136
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    • 2020
  • Recently, there is a problem that is most important in constructing buildings and building materials. It is a harmful substance generated in buildings. These harmful substances are CO2, radon and formaldehyde, volatile organic compounds generated from building materials. These are bad for the human body, may have a negative effect and cause large illnesses such as cancer. Recently built apartments have a high density, so there is a problem that harmful substances do not escape well. As a result, people's interest in indoor air quality is growing and in order to solve this problem and various researches are being conducted on the materials used for concrete pouring to find out how much the materials used adsorb harmful substances. this study uses carbon black as a material that can adsorb these harmful substances. The purpose of this study is to measure the bending strength, compressive strength, and to determine whether the paste containing carbon black can improve indoor air quality.

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Physical Propertise of Non-Cement Matrix with Red Mud (레드머드를 혼입한 무시멘트 경화체의 물리적 특성)

  • Kwon, Hyeong-Soon;Lee, Sang-Soo
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2023.05a
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    • pp.93-94
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    • 2023
  • Through the industrial revolution that began in the 18th century, the amount of carbon dioxide in the atmosphere increased rapidly as humans used fossil energy such as coal and oil as fuel for steam engines and factory machines. The amount of carbon dioxide emitted while producing cement, the main material of concrete used in construction, is large enough to account for 5-8% of the world's carbon dioxide emissions. In this study, Non cement-based matrix were used to reduce carbon dioxide emissions from cement production. Red mud is an industrial by-product generated in the manufacturing process of aluminum hydroxide using bauxite, and more than 120 million tons are produced worldwide. In addition, red mud is a porous material that can be physically adsorbed, and causes a photocatalytic reaction of TiO2 to remove harmful substances such as nitrogen oxide formaldehyde in the air and chemically adsorbs ammonia and hydrogen sulfide. Therefore, this study aims to examine the physical properties of the matrix by mixing red mud, an industrial by-product with good adsorption performance, into the Non cement-based matrix.

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Studies on Polymer Chelates Binding with Metallic Ions (金屬이온結合性 高分子킬레이트에 關한 硏究)

  • Kyu Suck Choi;Sae Kun Shin;Kil Hyun Choi;Mun Kul Kim
    • Journal of the Korean Chemical Society
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    • v.21 no.1
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    • pp.60-66
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    • 1977
  • In the addition condensation reaction of m-phenylenediamine(MPD) and resorcinol (RES) with formaldehyde, the suspension polymerization in liquid paraffin was performed and the bead polymers were obtained with good results. The polymers were treated with dilute aqueous sodium hydroxide solutions in order to improve the adsorption capacity to the metallic ions and the adsorptivity to the several metallic ions, such as $Cd^{2+},\;Pb^{2+},\;Al^{3+},\;Mg^{2+},\;Co^{2+},\;and\;Hg^{2+}$ of the alkali-treated and untreated polymers were tested. These MPD-RES-F type resins showed better adsorption capacity to the heavy metallic ions such as $Cd^{2+}\;and\;Hg^{2+}$ than the light metallic ions such as $Pb^{2+},\;Al^{3+}\;and\;Mg^{2+}$, and the treatment of the resins with about 20 percent aqueous sodium hydroxide solution showed significant improvement of the adsorption capacity to the metallic ions in all cases.

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Studies on Aromatic Diamine and Aminophenol-Formaldehyde Type Synthetic Resins (II) (芳香族디아민 및 아미노페놀-포름알데히드系 樹脂에 관한 硏究 (第2報))

  • Choi Kyu Suck
    • Journal of the Korean Chemical Society
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    • v.18 no.5
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    • pp.381-388
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    • 1974
  • When mixture of p-phenylenediamine (PPD) and m-aminophenol (MAP) were reacted with formaldehyde (F) varying their amounts under $N_2$ stream at the temperature of -5∼0$^{\circ}$, addition condensation reaction occurred and brown colored resins(in some cases orange colored) were formed immediately. All resins thus formed were insoluble in most ordinary organic solvents and did not melt up to 300$^{\circ}$. When the resins were treated with dilute(7 %) aqueous sodium hydroxide solution, the adsorptivity of methylene blue on them showed marked improvement reaching as much as 80 mg of methylene blue on 1 g of the resin. On the other hand, in the case of bromophenol blue, its amount of adsorption appeared 250 mg per 1 g of the resin. The TGA under $N_2$ atmosphere indicated that the resin formed in molar ratio of 1 : 3 : 8 (PPD : MAP : F) showed the best heat-resistant property among others. About 40 % weight loss was observed for this resin at 900$^{\circ}$ with heating rate of 2$^{\circ}$ per minute.

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