• Title/Summary/Keyword: 폐 폴리프로필렌

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Characteristics and Synergistic Effects of Coal/Waste Tire/Polypropylene Coliquefaction (석탄, 폐타이어, 폴리프로필렌의 공동액화 특성 및 상승효과)

  • Jeong, Tae-Jin;Jeong, Dae-Heui;Kim, Sung-Chul;Lim, Myung-Hoon;Na, Byung-Ki;Song, Hyung-Keun;Yoon, Do-Young;Kim, Dae-Heum;Han, Choon
    • Journal of Energy Engineering
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    • v.9 no.3
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    • pp.228-236
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    • 2000
  • 본 연구에서는 순간 고온식 tubing-bomb reactor를 사용하여 41$0^{\circ}C$에서 Alaska산 아역청탄, 폐타이어, 폴리프로필렌 혼합물의 공동액화 시 액화특성 및 상승효과를 연구하였다. 석탄, 폐타이어와, 폴리프로필렌의 조성을 변화시키고 수소공여용매인 tetralin의 양을 변화시켜가며 공동액화를 진행했을 경우 공동액화율을 살펴보면, 무촉매 반응의 경우 폴리프로필렌의 양이 많아지면 tetralin이 첨가되지 않았을 경우 액화율이 증가하였으나 tetralin이 첨가되었을 경우 공동액화율이 감소하였다. 촉매 반응의 경우에는 모든 반응조건에서 상승효과가 나타났으며 폴리프로필렌의 양이 증가할수록 공동액화율이 증가하여 석탄 : 폐타이어 : 폴리프로필렌의 조성이 1:1:3에서 tetralin 4$m\ell$, Co-naphthenate 촉매 사용하였을 때가 최적의 반응조건으로 83%의 공동액화율을 나타내었다.

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Effects of Ultrasonic Treatment and Particle Size on Mechanical Properties of Waste Polypropylene/WGRT Composites (초음파 처리와 분말 크기가 재생 폴리프로필렌/폐타이어 분말 복합체의 기계적 특성에 미치는 영향)

  • Kim, Donghak;Kim, Seonggil;Lee, Minji;Park, Jong-Moon;Oh, Myung-Hoon;Kim, Bong-Suk;Kim, Jinkuk;Bang, Daesuk
    • Resources Recycling
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    • v.24 no.2
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    • pp.36-45
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    • 2015
  • In this study, various sizes of waste ground rubber tire (WGRT) were devulcanized by a single screw extruder equipped with a sonicator in front of the die, and waste PP and devulcanized waste ground rubber tire (DWGRT) composites were prepared by an intermeshing co-rotating twin screw extruder. The crosslink density and percent devulcanization of WGRT and DWGRT for 40, 80 and 140 meshes were calculated. The mechanical properties of the composites were compared with each other. The effect of SEBS-g-MA as a compatibilizer was investigated on mechanical properties of both waste PP/WGRT and waste PP/DWGRT composites. The crosslink density was decreased with decreasing the WGRT size. On the other hand, the percent devulcanization was increased by adding the smaller size of WGRT. Also, tensile strength, impact strength and elongation at break of the composite with DWGRT were higher than those with WGRT. Especially, mechanical properties of the composites were significantly increased by adding the smaller size of WGRT and DWGRT. Addition of SEBS-g-MA into both waste PP/(D)WGRT composites exhibited better impact strength and elongation at break than the composites themselves.

Mechanical Properties of Polyethylene/Polypropylene/Waste Tire Rubber Powder Composites (폴리에틸렌/폴리프로필렌/폐타이어고무분말 복합체의 기계적 특성)

  • Choi, Jeong-Su;Park, Cha-Cheol
    • Elastomers and Composites
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    • v.46 no.4
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    • pp.318-323
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    • 2011
  • To recycle the waste tire rubber powder, rubber powder composite for waterproof sheet was prepared, and analyzed the effect of the kind of resin and the amount of crosslinking agent on the mechanical property of the composites. The elongation-at-break of the PE composite increased more than 3 times as EPDM was added into rubber composites. As the content of the crosslinking agent increased, the tensile strength of composite increased as well. When recycled polypropylene was used, the increase in composite's tensile strength was more than 3 times. Therefore to use the recycled PP in composite is more effective rather than PP in term mechanical properties.

Effect of Compatibilizers on the Mechanical Properties of Waste Polypropylene/Waste Ground Rubber Tire Composites (상용화제의 첨가에 따른 재생 폴리프로필렌/폐타이어 분말 복합체의 기계적 특성 분석)

  • Park, Ki-Hun;Kim, Dong-Hak;Jung, Jong-Ki;Kim, Seong-Gil;Bang, Daesuk;Oh, Myung-Hoon;Kim, Bong-Suk
    • Resources Recycling
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    • v.23 no.1
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    • pp.70-79
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    • 2014
  • In this study, waste polypropylene and waste ground rubber tire(WGRT) composites were prepared by using a modular intermeshing co-rotating twin screw extruder. The effect of three main factors such as WGRT contents, particle size, compatibilizers on the properties of waste PP/WGRT composites was extensively investigated. Tensile strength of the composites was decreased with an increase in WGRT contents, whereas elongation at break and impact strength were increased. The tensile strength, elongation at break and impact strength of the composites with the smaller size of the WGRT were more enhanced. Addition of PP-g-MA into waste PP/WGRT composites exhibited better tensile strength. However, elongation at break and impact strength were slightly decreased with increasing of PP-g-MA. On the other hand, tensile strength, impact strength and elongation at break of the composites were increased by adding the EPDM-g-MA and SEBS-g-MA. Especially, elongation at break was significantly increased compared to the composite with PP-g-MA.

The Study for Manufacturing Technology of Industrial Fuel from Mixed Waste Plastics (혼합폐플라스틱으로부터의 대체연료유 생산기술에 대한 실증연구)

  • Lee, Dae-Sik;Lee, Gwang-Sik;Kim, Seong-Ok;O, Se-Cheon;Kim, Su-Ryong;Gwon, U-Taek
    • 한국신재생에너지학회:학술대회논문집
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    • 2005.11a
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    • pp.405-413
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    • 2005
  • 본 연구에서는 3톤/일의 플라스틱 투입량을 기준으로 혼합폐플라스틱으로부터 대체연료유를 생산할 수 있는 소용량 중심의 폐플라스틱 유화설비를 설계 제작하였으며 장기간에 걸친 시운전을 통하여 유화설비의 운전성 평가에 대한 실증연구를 수행하였다. 대상 폐플라스틱으로는 플라스틱 재활용 업체에서 분리 선별된 폴리에틸렌과 폴리프로필렌 그리고 이들을 혼합한 폐플라스틱을 각각 적용하였으며 $400\sim420^{\circ}C$의 분해 운전온도에서 폐플라스틱의 종류에 따른 시운전 평가를 하였다. 본 실증연구로부터 폴리에틸렌의 경우에 있어서는 79%의 재생유 회수율을 그리고 폴리프로필렌의 경우에 있어서는 80%의 재생유 회수율을 각각 얻을 수 있었으며 플라스틱 종류별 안정적인 운전조건을 확보할 수 있었다. 또한 폐플라스틱 투입량에 대한 설계용량과 운전용량과의 비교로부터 약 40$\sim$50%의 설계오차가 발생한 것으로 평가되었으며 이는 유화설비의 설계를 위하여 사용된 혼합폐플라스틱의 부정확한 물성 값에 기인한 것으로 판단된다. 따라서 본 연구로부터 얻은 시운전결과를 바탕으로 설계인자들을 확립하는 과정이 반드시 필요할 것으로 판단된다.

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Influence of Alkali or Silane Treatment of Waste Wool Fiber on the Mechanical Properties and Impact Strength of Waste Wool/Polypropylene Composites (폐양모/폴리프로필렌 복합재료의 기계적 특성 및 충격강도에 미치는 폐양모섬유의 알칼리처리 또는 실란처리 영향)

  • Kim, Kihyun;Cho, Donghwan
    • Journal of Adhesion and Interface
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    • v.18 no.3
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    • pp.118-126
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    • 2017
  • In a natural fiber-reinforced composite material, many studies have been devoted to improving the interfacial adhesion between natural fiber and polymer matrix and the composite properties through various fiber surface modifications. In the present study, waste wool-reinforced polypropylene matrix composites were fabricated by compression molding and their mechanical and impact properties were characterized. As a result, the tensile and flexural properties and the impact strength of waste wool/polypropylene composites strongly depended on the treatment medium, alkali treatment with sodium hydroxide (NaOH) and silane treatment with 3-glycidylpropylsilane(GPS). The composite with waste wool by silane treatment exhibited higher mechanical properties and impact resistance than that by alkali treatment. The fracture surfaces of the composites support qualitatively the increased properties, showing the improved interfacial bonding between the waste wool and the polypropylene matrix.

Serum Leakage Control using PP/PDMS Composite Membrane (PP/PDMS 복합막을 이용한 혈청누출 제어)

  • 김기범;이삼철;정순량;정경락
    • Membrane Journal
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    • v.10 no.1
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    • pp.47-53
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    • 2000
  • The artificial lung is a device used to replace the function of the lungs. The major function of the lung is to remove carbon dioxide from the venous blood and replace it with oxygen, or arterialize the blood. And the function of the artificial lung is to provide an adequate amount of oxygenated blood to all the tissues of body during the open heart surgery. Extracorporeal life support(ECLS or ECMO) is standard treatment for severe respiratory failure but poses many contributions to future lung transplantation. Artificial Lung or membrane oxygenators available today, based on microporous polypropylene fibers, are associated with two major problems. They require systemic anticoagulation of the patient and they allow serum leakage across the membrane from the blood side to the gas side during long-term use. We obtained newly fabricated polypropylene(PP)/polydimethylsiloxane(PDMS) membranes which combined PP membrane, a microporous support layer with PDMS, and we had investiaged a technique for minimizing serum lekage of polypropylene(PP) membrane. The gas permeability of each PP/PDMS membrane was almost constant before and after the whole blood test by Lee-White method, while that of PP membrane was significantly reduced. Therefore the PP/PDMS membrane could be prevented serum leakage of PP membrane. In addition, the gas permeability of $CO_2$ in PP/PDMS membrane was 11.5 times higher as compared with that of $O_2$.

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Blood Compatibility of Hollow Fiber Membranes Treated by Plasma Polymerization (플라즈마 중합 처리된 중공사 막의 혈액 적합성)

  • Lee, Sam-Cheol;Kwon, O-Sung
    • Membrane Journal
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    • v.15 no.3
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    • pp.233-240
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    • 2005
  • Surface modification of polypropylene hollow fiber membranes was performed in order to develop blood-compatibility biomaterials for use in the blood contacting surfaces and oxygenation membranes of a lung assist device (LAD), important medical device even more useful. Blood compatibility of materials was determined by using anticoagulation blood and evaluating formation of blood clots on their surfaces as well as activation of plasma coagulation cascade, platelet adhesion, and aggregation. It was verified that the number of platelets on the silicone coated fibers was significantly lower than that on untreated fiber membrane, indicating improved blood compatibility. It was also found that the polypropylene hollow fiber membranes using plasma treatment exhibited suppression of complement activation in blood compatibility test.

Energy Recovery via Pyrolysis of Waste Tire Rubber : Desulfurization Effect of Pyrolysis Oil by Adding Waste Polypropylene (폐타이어의 열분해를 통한 에너지화 : 폐폴리프로필렌 첨가 시 열분해 오일의 탈황 효과)

  • Jeong, Jaeyong;Lee, Uendo;Chang, Wonseok;Oh, Munsei;Jeong, Soohwa
    • Journal of Energy Engineering
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    • v.26 no.3
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    • pp.97-104
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    • 2017
  • In this study, waste tire rubbers were pyrolyzed in a lab-scale pyrolysis plant equipped with a fluidized bed reactor in a temperature ranges of $450-650^{\circ}C$. The main object of this work is to investigate the properties of pyrolysis oil with reaction temperatures and the behavior of sulfur in the products when waste polypropylene was added for co-pyrolysis. The maximum yield of oil was about 52wt.% at the reaction temperature of $456^{\circ}C$. From GC-MS analysis, the pyrolysis oils consisted mainly of limonene, toluene, xylene, styrene, trimethylbenzene, methylnaphthalenes and some heteroatom(sulfur and nitrogen)-containing compounds. The addition of waste polypropylene resulted in decrease in sulfur contents of the pyrolysis oils.

Catalytic degradation of waste plastics over solid acid catalysts (고체 산촉매에서 폐플라스틱의 분해 반응)

  • 이경환;전상구;김광호;노남선;신대현;서영화
    • Proceedings of the Korea Society for Energy Engineering kosee Conference
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    • 2002.11a
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    • pp.185-186
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    • 2002
  • 폐 플라스틱은 석유 물질인 탄화수소로 구성하고 있지만 효과적으로 재활용되지 못하고 대부분 매립, 소각 등의 방법으로 처리하고 있다. 플라스틱은 다양한 용도로 사용되기 때문에 플라스틱의 이용과 소비의 증가는 필연적이다. 예로 미국 가정의 폐 플라스틱은 63% 폴리에틸렌, 11% 폴리프로필렌, 11% 폴리스타이렌, 7% PET 그리고 7% PVC가 발생되는데 이들 화합물 구조가 포화탄화수소형이기 때문에 70% 정도가 방향족 화합물인 석탄에 비해 수소첨가 반응이 요구되지 않는다.(중략)

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