• 제목/요약/키워드: polymer microparticle

검색결과 28건 처리시간 0.034초

탁도 측정을 통한 지료의 응집거동 평가 (Evaluation of Stock Flocculation Phenomena Based on Turbidity Measurement)

  • 이지영;윤혜정;이학래
    • 펄프종이기술
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    • 제40권4호
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    • pp.10-15
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    • 2008
  • Flocculation phenomena of the stock mixed with cellulosic fibers, fillers and polymers were investigated by a new turbidity measurement system consisted of a probe-type turbidimeter, data acquisition system and computer. The probe-type turbidimeter allowed to measure the real time flocculation of the stock induced by single polymer and microparticle systems. Flocculation phenomena were evaluated by average and final relative turbidity indices. Turbidity and flocculation showed inverse relationship, i.e. the turbidity decreased with the formation of flocs. Relative turbidity of the stock treated with microparticle system was lower than that of the stock containing single polymer system, which indicated that the microparticle system showed greater floc forming efficiency than single polymer system.

New Retention System Using Branched Polymer

  • Son, Dong-Jin;Kim, Bong-Yong
    • 한국펄프종이공학회:학술대회논문집
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    • 한국펄프종이공학회 2006년도 PAN PACIFIC CONFERENCE vol.2
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    • pp.251-256
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    • 2006
  • The purpose of this study was to confirm multiple retention system of C-PAM, A-PAM and Inorganic micro particles vs. traditional micro particle system and dual polymer system by measuring retention, drainage and formation using RDA HSF and Techpap 2D -F Sensor The benefits of dual polymer system were easy to use, low chemical consumption and good retention property but defect was worse drainage property than inorganic microparticle systems. On the other hand, Inorganic microparticle system had benefit of good drainage effect but defects were difficult to use, high chemical consumption. Therefore, we tried to find optimal morphology of polyacrylamide and applied to multiple retention system of C-PAM, A-PAM and inorganic microparticles to compensate defects of both of retention systems. As a result, we found the performance of branched C-PAM, branched A-PAM and inorganic micro particle triple system was more appropriate than traditional inorganic mircoparticle systems or dual polymer systems by comparing retention, drainage and formation.

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재생 지료 공정에서의 PEO/cofactor 보류 시스템의 적용 (Application of PEO/Cofactor System on Papermaking Process for Recycled Fibers)

  • 정철헌;이진호;길정하;박종문
    • 펄프종이기술
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    • 제44권4호
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    • pp.25-31
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    • 2012
  • Ionic trash in furnish decreases retention and drainage performance of the microparticle retention system using recycled fibers in closed papermaking system. Two retention systems, such as the microparticle system and the PEO/cofactor system, were compared and analyzed to improve retention. The PEO/cofactor system achieved similar retention performance at low addition level as the microparticle system. Optimum ratio of PEO/cofactor dual polymer system was 1:10. Ash retention was increased when using the fixing agent. As the TMP ratio increased, the PEO/cofactor system was more efficient in retention and drainage than the other system. The high molecular weight and non-ionic polymer retention system had less effect on flocculation hindrance than the traditional electrostatic retention system.

Control of Encapsulation Efficiency and Initial Burst in Polymeric Microparticle Systems

  • Yeo, Yeon;Park, Ki-Nam
    • Archives of Pharmacal Research
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    • 제27권1호
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    • pp.1-12
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    • 2004
  • Initial burst is one of the major challenges in protein-encapsulated microparticle systems. Since protein release during the initial stage depends mostly on the diffusional escape of the protein, major approaches to prevent the initial burst have focused on efficient encapsulation of the protein within the microparticles. For this reason, control of encapsulation efficiency and the extent of initial burst are based on common formulation parameters. The present article provides a literature review of the formulation parameters that are known to influence the two properties in the emulsion-solvent evaporation/extraction method. Physical and chemical properties of encapsulating polymers, solvent systems, polymer-drug interactions, and properties of the continuous phase are some of the influential variables. Most parameters affect encapsulation efficiency and initial burst by modifying solidification rate of the dispersed phase. In order to prevent many unfavorable events such as pore formation, drug loss, and drug migration that occur while the dispersed phase is in the semi-solid state, it is important to understand and optimize these variables.

보류시스템, 고분자 전해질 분자량과 약품투입순서에 따른 보류, 탈수, 지합, 파괴인성의 변화 (Retention, Drainage, Formation, and Fracture Toughness Depending on Retention System, Molecular Weights of Polyelectrolytes and Dosage Sequences)

  • 채희재;김문성;박창순;박종문
    • 펄프종이기술
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    • 제41권2호
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    • pp.13-19
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    • 2009
  • In order to produce high quality paper at the lowest cost in high speed, typically various polyelectrolytes as retention aids were used. Retention systems such as single polymer system, dual polymer system, and microparticle system were used. The objective of this study was to analyze the changes of retention, drainage, formation and fracture toughness depending on types of retention system, molecular weight of C-PAM and dosage sequences of agents. When single polymer system was applied, retention was increased with poor formation and drainage. When common microparticle system(C-PAM/bentonite) was used, high molecular weight PAM gave high retention and fast drainage, but poor formation. When the microparticle system with reverse dosage sequence(bentonite/C-PAM) was used, low molecular weight PAM gave high retention, fast drainage and good formation. When various retention agents were applied, fracture toughness was increased than that of blank. When using high molecular weight PAM and consequently causing excessive flocculation, fracture toughness was decreased.

전기분사법에 의한 다공성 실크 피브로인 미세입자의 제조 (Fabrication of Porous Silk Fibroin Microparticles by Electrohydrodynamic Spraying)

  • 김무곤;이기훈
    • 폴리머
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    • 제38권1호
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    • pp.98-102
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    • 2014
  • 실크 피브로인은 뛰어난 생체적합성 및 생분해성으로 인해 의료용 천연고분자소재로 각광받고 있으며 다양한 형태로 제조되어 이용되고 있다. 전기분사법은 고분자 용액에 고전압을 적용하여 미세입자를 제조하는 방법으로 진행과정이 간단하고 첨가제를 필요로 하지 않는다는 장점을 지닌다. 본 연구에서는 실크 피브로인 다공성 미세입자를 제조하기 위하여 폴리(에틸렌 글리콜)(PEG)을 첨가한 후 전기분사를 실시하였다. PEG를 첨가함으로써 분사원액의 전도도는 감소하였고 점도는 증가하였다. 제조된 미세입자의 크기는 PEG 첨가에 따라 감소하였는데 이는 분사용액의 전도도 및 점도보다는 피브로인과 PEG간의 상분리에 의한 효과인 것으로 보인다. 제조된 실크 피브로인 미세입자를 물에 침지한 결과 PEG가 제거되었으며 최종적으로 실크 피브로인 다공성 입자를 제조할 수 있었다. 제조된 다공성 실크 피브로인 미세입자는 약물전달체 및 조직공학용 세포전달체로 이용가능성이 높을 것으로 기대된다.