• Title/Summary/Keyword: Polymer stabilization

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Microbial Amelioration of Acid Mine Drainage Impaired Soil using the Bacterial Consortia of Klebsiella sp. and Raoultella sp.

  • Park, Seon Yeong;Lee, Gi Won;Kim, Chang Gyun
    • Journal of Soil and Groundwater Environment
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    • v.26 no.1
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    • pp.34-44
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    • 2021
  • Acid mine drainage (AMD) resulting from pyrite oxidation in mining areas, subsequently leads to soil acidification accompanied by lowering pH and high concentration of metals and metalloids in its surrounding environment. Regarding to this, the microbial amelioration has been considered as a promising option for a more cost-effective and eco-friendlier countermeasure, compared to the use of alkaline chemicals. This study was aimed to evaluate influencing factors in microbially-mediated amelioration of acidic soil spiked by simulated AMD. For this, microcosm experiments were conducted by acid-neutralizing bacterial consortium (dominated by Klebsiella sp. and Raoultella sp.) under the various conditions of AMD spikes (0-2,500 mg SO42-/L), together with acidic mine soil (0-100 g) or sphagnum peat (0-5 g) in the 200 mL of nutrient medium. The employed bacterial consortium, capable of resisting to high level of sulfate concentration (up to 1,500 mg SO42-/L) in low pH, generated the ammonium while concomitantly reduced the sulfate, subsequently contributing to the effective soil stabilization with an evolution of soil pH up to neutral. Furthermore, it demonstrates that suitable condition has to be tuned for successful microbial metabolism to facilitate with neutralization during practical application.

Characteristics and Properties of Fluoro/Silicone Rubber Blend System (불소/실리콘 고무 블렌드의 특성과 물성)

  • Lee, Jin-Kook;Song, Hwan-Jae;Kim, Mi-Ra
    • Journal of Adhesion and Interface
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    • v.9 no.3
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    • pp.14-19
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    • 2008
  • In this study, silicone rubber (SR40) and fluororubber (FKM) mixture blends were prepared by various weight percentages, and their properties were characterized. The crosslinking rate increased as the contents of SR40 due to the crosslinking agent in SR40. As contents of FKM increase in SR40/FKM blends, thermal decomposition temperature of blends increased. When SR40/FKM blend ratio was at 50/50, the thermal decomposition stabilization was higher than that of pure SR40. The contact angle of SR40/FKM blend increased as the increase of SR40 contents in blend. All composition of SR40/FKM blends showed typical phase separation morphology. As the contents of SR40 increase in SR40/FKM blend, the degree of separation in SR40/FKM blends also increased.

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Synthesis of Polymers in Supercritical Carbon Dioxide (초임계 유체를 이용한 고분자 합성 연구)

  • Lee, Hyun-Suk;Kim, Jin-Woong
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.36 no.1
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    • pp.17-32
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    • 2010
  • This review shows the design and the development of new $CO_2$-soluble hydrocarbon copolymers which can be used as effective stabilizers for successful dispersion polymerizations of bio-compatible materials in supercritical carbon dioxide ($scCO_2$). The basic concepts of supercritical fluid including its solvent properties and applications in polymer synthesis are described. We report the facile synthesis of highly soluble hydrocarbon based copolymers, prepared with good control via controlled free radical polymerization from readily accessible and commercially available monomers. The phase behaviour of these materials was monitored in pure $CO_2$ to investigate how the molecular weights and the composition of the copolymers affect their solubility in $CO_2$. Their activity as a stabilizer was then tested in dispersion polymerization of N-vinyl pyrrolidone in $CO_2$ at various reaction conditions to identify the key parameters required for a successful dispersion stabilization of growing PVP particles. Some prospective potentials of this research which can be applied in developing new polymer materials in an environmentally-friendly fashion for use in cosmetics are also discussed.

Thermal and Rheological Characterizations of Polycarbosilane Precursor by Solvent Treatment (폴리카보실란 전구체의 용매 처리에 따른 열적 및 유변학적 특성 분석)

  • Song, Yeeun;Joo, Young Jun;Shin, Dong Geun;Cho, Kwang Youn;Lee, Doojin
    • Composites Research
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    • v.35 no.1
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    • pp.23-30
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    • 2022
  • Polycarbosilane(PCS) is an important precursor for melt-spinning the silicon carbide(SiC) fibers and manufacturing ceramics. The PCS is a metal-organic polymer precursor capable of producing continuous SiC fibers having excellent performance such as high-temperature resistance and oxidation resistance. The SiC fibers are manufactured through melt-spinning, stabilization, and heat treatment processes using the PCS manufactured by synthesis, purification, and control of the molecular structure. In this paper, we analyzed the effect of purification of unreacted substances and low molecular weight through solvent treatment of PCS and the effect of heat treatment at various temperatures change the polymerization and network rearrangement of PCS. Especially, we investigated the complex viscosity and structural arrangement of PCS precursors according to solvent treatment and heat treatment through the rheological properties.

Characterization of Poly(methyl methacrylate)-tin (IV) Chloride Blend by TG-DTG-DTA, IR and Pyrolysis-GC-MS Techniques

  • Arshad, Muhammad;Masud, Khalid;Arif, Muhammad;Rehman, Saeed-Ur;Saeed, Aamer;Zaidi, Jamshed Hussain
    • Bulletin of the Korean Chemical Society
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    • v.32 no.9
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    • pp.3295-3305
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    • 2011
  • Thermal behavior of poly (methyl methacrylate) was analyzed in the presence of tin (IV) chloride. Five different proportions - polymer to additive - were selected for casting films from common solvent. TG, DTG and DTA were employed to monitor thermal degradation of the systems. IR and py-GC-MS helped identify the decomposition products. The blends start degrading at a temperature lower than that of the neat polymer and higher than that of the pure additive. Complex formation between tin of additive and carbonyl oxygen (pendent groups of MMA units) was noticed in the films soon after the mixing of the components in the blends. The samples were also heated at three different temperatures to determine the composition of residues left after the expulsion of volatiles. The polymer, blends and additive exhibited a one step, two-step and three-step degradation, respectively. $T_0$ is highest for the polymer, lowest for the additive and is either $60^{\circ}C$ or $70^{\circ}C$ for the blends. The amount of residue increases down the series [moving from blend-1 (minimum additive concentration) to blend-5 (maximum additive concentration)]. For blend-1, it is 7% of the original mass whereas it is 16% for blend-5. $T_{max}$ also goes up as the concentration of additive in the blends is elevated. The complexation appears to be the cause of observed stabilization. Some new products of degradation were noted apart from those reported earlier. These included methanol, isobutyric acid, acid chloride, etc. Molecular-level mixing of the constituents and "positioning effect" of the additive may have brought about the formation of new compounds. Routes are proposed for the appearance of these substances. Horizontal burning tests were also conducted on polymer and blends and the results are discussed. Activation energies and reaction orders were calculated. Activation energy is highest for the polymer, i.e., 138.9 Kcal/mol while the range for blends is from 51 to 39 Kcal/mol. Stability zones are highlighted for the blends. The interaction between the blended parts seems to be chemical in nature.

An MO Theoretical Studies on Conformations of Methyl and Ethyl Chanoacetates

  • Lee, Ikchoon;Kim, Jik-Tae;Kim, Ui-Rak
    • Nuclear Engineering and Technology
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    • v.6 no.3
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    • pp.155-159
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    • 1974
  • The extended Huckel molecular orbital calculations have been carried out on rotamers of methyl and ethyl cyanoacetates. Results show that cis orientation of C≡N group is favored while for $CH_3$group trans orientation is favored. The major part of the stabilization energies can be accounted for by the electrostatic energies between the atoms involved.

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Geotechnical behavior of a beta-1,3/1,6-glucan biopolymer-treated residual soil

  • Chang, Ilhan;Cho, Gye-Chun
    • Geomechanics and Engineering
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    • v.7 no.6
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    • pp.633-647
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    • 2014
  • Biopolymers, polymers produced by living organisms, are used in various fields (e.g., medical, food, cosmetic, medicine) due to their beneficial properties. Recently, biopolymers have been used for control of soil erosion, stabilization of aggregate, and to enhance drilling. However, the inter-particle behavior of such polymers on soil behavior are poorly understood. In this study, an artificial biopolymer (${\beta}$-1,3/1,6-glucan) was used as an engineered soil additive for Korean residual soil (i.e., hwangtoh). The geotechnical behavior of the Korean residual soil, after treatment with ${\beta}$-1,3/1,6-glucan, were measured through a series of laboratory approaches and then analyzed. As the biopolymer content in soil increased, so did its compactibility, Atterberg limits, plasticity index, swelling index, and shear modulus. However, the treatment had no effect on the compressional stiffness of the residual soil, and the polymer induced bio-clogging of the soil's pore spaces while resulting in a decrease in hydraulic conductivity.

PDMS Nanoslits without Roof Collapse

  • Lee, Jin-Yong;Yun, Young-Keu;Kim, Yoo-Ri;Jo, Kyu-Bong
    • Bulletin of the Korean Chemical Society
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    • v.30 no.8
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    • pp.1793-1797
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    • 2009
  • Soft lithography of polydimethyl-siloxane (PDMS), an elastomeric polymer, has enabled rapid and inexpensive fabrications of microfluidic devices for various biochemical and bioanalytical applications. However, fabrications of nanostructured PDMS components such as nanoslits remain extremely challenging because of deformation of PDMS material. One of the well-known issues is the unwanted contact between the surfaces of PDMS roof and bottom substrate, called ‘roof collapse’. Here we have developed a novel approach for the facile stabilization of PDMS nanoslits in the low height (130 nm)/width (100 $\mu$m) ratio without roof-collapse. Within 130 nm high nanoslits, we demonstrate the confinement of single DNA molecules. We believe that this approach will serve as a key to utilize PDMS as nanoslits for integrated microfluidic devices.

A Study on the Hybrid PCS using Energy Storage System for Grid Stabilization. (에너지 저장장치 내장형 하이브리드 전력변환장치를 이용한 계통안정화연구)

  • Lee, Seong Su;Kim, Hyung Jun;Han, Gi Jun;Cho, Dustin;Seo, Gwang Deok
    • Proceedings of the KIPE Conference
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    • 2012.07a
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    • pp.503-505
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    • 2012
  • 본 연구에서는 실증기능 구현을 위해 75KW로 설계된 리튬-폴리머배터리(Lithium Polymer Battery 이하 배터리)와 ESS(Energy Storage System) 내장형 Hybrid-PCS(이하 PCS)을 이용하여 불균일한 풍력 발전원에 대한 Smoothing 제어 및 정출력 제어 대한 연구를 진행 하였다. 잦은 전류 변동으로 인해 발생되는 출력 변동의 안정화를 위해 인버터 전류제어, 벅/부스트 전압제어 기법을 사용하였다. 최적의 Smoothing 제어를 위한 필터 계수 값을 찾기 위한 시험을 진행 하였으며 Energy shift을 위한 정출력 시험도 진행 하였다. 또한 각 제어 모드에서 ESS 중요 파라미터인 SOC(State Of Charge 이하 SOC)변화를 배터리 특성과 관련하여 분석해 보았다.

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Biodistribution and Hemolysis Study of Terplex Gene Delivery System in Mice

  • Oh, Eun-Jung;Shim, Jin-young;Kim, Jin-Seok
    • Macromolecular Research
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    • v.11 no.1
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    • pp.19-24
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    • 2003
  • Polymeric gene delivery system attracts profound attention as it shows less toxicity, versatility, and reasonable gene expression efficiency. Terplex system, a synthetic biopolymeric gene delivery system consisting of stearyl poly-L-lysine (stearyl-PLL) and low density lipoprotein (LDL) was evaluated for its body distribution of gene expression of exogenously administered pDNA after tail-vein injection in mice. Kidney and spleen are two major organs with highest gene expression, whereas liver and heart showed marginal gene expression among the organs examined. Hemolytic effect of the terplex system was evaluated using human red blood cells, where terplex system did not cause significant hemolysis at the concentrations above the experimental ranges, although unmodified PLL or stearyl-PLL without LDL did. Serum stability of terplex system against enzymatic degradation was also significantly enhanced, presumably due to the steric stabilization from the polymers. Based on these findings and along with its high in vitro transfection efficiency, terplex system could serve as a safe and efficient polymeric gene delivery system with many applications for the in vivo gene therapy.