• Title/Summary/Keyword: bio materials

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수성접착제를 이용한 목조주택 내벽용 황토 마감재의 물성 및 친환경성 (Loess(Yellow Soil) Finishing Materials Using Water-based Adhesive for Wooden Construction Indoor Wall)

  • 안재윤;김기욱;김수민;오진경;김현중;박문재
    • Journal of the Korean Wood Science and Technology
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    • 제35권6호
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    • pp.100-107
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    • 2007
  • 현대인들은 실내에서 보내는 시간이 하루 중 90% 달하는 것을 간주할 때 실내의 공기는 현대에게 중요한 요소임을 알 수 있다. 1960년대 이후로 산업이 급격히 발전하면서 건축 재료는 천연재료에서 화학물질을 기본으로 하는 재료로 변하게 되고 에너지 절약의 대책으로 건물의 기밀도를 높임으로써 건축자재에서 발생하는 유해물질이 현대인에게 악영향을 미치기 시작했고 이런 요소들이 근원이 되어 새집증후군을 유발하게 되었다. 생활수준이 높아지면서 사람들은 건강에 대한 관심도 높아지게 되고 보다 유익한 친환경 건축자재를 요구하게 되었다. 본 연구에서는 황토, 물, 수지, 경화제, 무기물 충전제를 이용한 친환경 황토 마감재를 개발하였고 한국형 목조 주택 내장벽에 사용할 수 있는 최적의 비율을 연구하였다. 그리고 이런 황토 마감재가 실내벽에 사용 시 요구물성인 내잔갈림성, 내세척성, 내충격성, 부착강도를 측정하였고 황토마감재의 특성인 원적외선 실험과 포름알데히드, TVOC 방산 농도를 통하여 친환경성에 대한 평가를 하였다.

왕겨 바이오차와 유기농자재 혼합에 따른 주요 양분 용출 모델 적용 및 N2O 배출량 산정 (Application of major plant nutrient releasing model and N2O emissions to the leachate from the mixtures of rice hull biochar and organic fertilizer materials)

  • 이동건;최재이;심창기;남주희;윤석인;송종석;박도균;신중두
    • 유기물자원화
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    • 제31권3호
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    • pp.43-53
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    • 2023
  • This batch experiment evaluated the impacts of major plant nutrient releases by applying the modified Hyperbola model on the leachates and N2O emissions from incorporated rice hull biochar with organic fertilizer materials. The treatments consisted of the control as incorporated with organic fertilizer materials, the incorporated rice hull biochar with organic fertilizer materials, and the incorporated plasma-activated rice hull biochar with organic fertilizer materials under redox conditions. The results indicated that the maximum release amount of NH4-N was 3486.3 mg L-1 in the control, and their reduction rates of NH4-N, NO3-N, PO4-P, and K were 8.0%, 17.5% 44.3.0% and 8.7%, respectively, relative to the control. In the control, the highest soluble amount of PO4-P was 681.0 mg L-1. The estimations for accumulated NH4-N, NO3-N, PO4-P, and K-releases in all the treatments were significantly (p<0.01) fitted with a modified Hyperbola model. For greenhouse gas emissions, the lowest cumulative N2O was 340.4 mg kg-1 in the soil incorporated with plasma-activated rice hull biochar, and the reduction rates were 27.8% and 86.4% in the rice hull biochar and plasma-activated rice hull biochar treatments, respectively, compared to the control. Therefore, it concluded that the incorporated rice hull biochar can be especially useful for controlling PO4-P release and N2O emissions for bio-fertilizer applications.

Newly Developed BioDegradable Mg Alloys and Its Biomedical Applications

  • 석현광;김유찬;;차필령;조성윤;양석조
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2012년도 춘계학술발표대회
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    • pp.55.2-55.2
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    • 2012
  • Intensive theoretical and experimental studies have been carried out at Korean Institute of Science and Technology (KIST) on controlling the bio absorbing rate of the Mg alloys with high mechanical strength through tailoring of electrochemical potential. Key technology for retarding the corrosion of the Mg alloys is to equalize the corrosion potentials of the constituent phases in the alloys, which prevented the formation of Galvanic circuit between the constituent phases resulting in remarkable reduction of corrosion rate. By thermodynamic consideration, the possible phases of a given alloy system were identified and their work functions, which are related to their corrosion potentials, were calculated by the first principle calculation. The designed alloys, of which the constituent phases have similar work function, were fabricated by clean melting and extrusion system. The newly developed Mg alloys named as KISTUI-MG showed much lower corrosion rate as well as higher strength than previously developed Mg alloys. Biocompatibility and feasibility of the Mg alloys as orthopedic implant materials were evaluated by in vitro cell viability test, in vitro degradation test of mechanical strength during bio-corrosion, in vivo implantation and continuous observation of the implant during in vivo absorbing procedures. Moreover, the cells attached on the Mg alloys was observed using cryo-FIB (focused ion beam) system without the distortion of cell morphology and its organ through the removal of drying steps essential for the preparation of normal SEM/TEM samples. Our Mg alloys showed excellent biocompatibility satisfying the regulations required for biomedical application without evident hydrogen evolution when it implanted into the muscle, inter spine disk, as well as condyle bone of rat and well contact interface with bone tissue when it was implanted into rat condyle.

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바이오-메디컬 자성나노입자 연구의 현황과 전망 (Research Status and Prospectives of Magnetic Nanoparticles in Bio-medical Applications)

  • 민지현;송아영;김영근;우준화
    • 한국자기학회지
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    • 제19권1호
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    • pp.28-34
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    • 2009
  • 자성나노입자는 초상자성 특성 및 물리적, 화학적으로 안정된 특성으로 인하여, MRI 조영제, 약물전달, 세포분리, 열치료법 등을 비롯한 바이오-메디컬 분야에 널리 응용되고 있다. 초기에는 균일한 물리적/화학적 특성을 유지하기 위하여, 미세하면서도 균일한 크기의 나노입자 제조에 연구가 집중되었으나, 최근에는 바이오-메디컬 분야에 직접 응용하기 위하여, 수용액에 대한 분산도 향상과 생체적합성 및 생체기능화를 부여하는 것에 연구의 초점이 맞추어지고 있다. 본 논문에서는 자성나노입자 연구의 현황을 살펴보고 향후 진행 방향에 대하여 조망해 보고자 한다.

Effects of organic fertilizers mixed with dehydrated food waste powder on agronomic performance of leafy vegetables

  • Jae-Han, Lee;You-Jin, Choi; Jin-Hyuk, Chun;Yun-Gu, Kang;Yeo-Uk, Yun;Taek-Keun, Oh
    • 농업과학연구
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    • 제49권3호
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    • pp.397-405
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    • 2022
  • Castor oil cake is widely used as a raw material for organic fertilizers (OF) in Korea. Compared to other fertilizer raw materials, it is highly dependent on imports. In terms of replacing raw materials, dehydrated food waste powder (FDP) and castor oil cake have similar nutritional content, and if 30% is replaced, about 20% of the raw material cost can be saved. However, few studies on the effects on crop growth and soil properties when organic fertilizer and dry food waste powder are mixed and applied to the soil have been reported. The effects of an organic fertilizer made by mixing the commercial available organic fertilizer with dehydrated food waste (OF + FDP) on soil properties and the growth of two types of leafy vegetables (lettuce and young radish) were evaluated and compared with the performance of OF. The fresh weights of lettuce and young radish were the highest with OF amendment and stood at 114.3 and 119.0 g·plant-1, respectively. These were followed by OF + FDP amendment, which produced 103.1 and 109.6 g·plant-1, respectively. Compared to the control, OF and OF + FDP increased the lettuce fresh weights by about 69% and 52%, respectively, while the fresh weights of the radish were increased by about 223% and 207%, respectively. The soil pH, EC, total carbon content, and organic matter content in OF and OF + FDP increased. The mixture of dehydrated food waste powder and organic fertilizers is expected to improve soil quality and facilitate stable production of crops and contribute to the substitution of imported organic fertilizer raw materials.

Fe(II)와 Cu(II)에 의해 킬레이트화 된 수수추출물 함유 바이오플라스틱의 색상 안정성 (Color Stability of the Bioplastic containing Sorghum Extract Chelated by Fe(II) and Cu(II))

  • 이가현;이성준;정상원;김현철;최진현;배도규;한상익;이세근
    • 한국염색가공학회지
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    • 제27권1호
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    • pp.62-69
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    • 2015
  • To improve the color stability of the bioplastic containing sorghum extract, sorghum extract was chelated by a metal ion. The chelating activity was quantitatively evaluated under the various conditions. Chelation of sorghum extract by Cu(II) was determined by reaction with pyrocatechol violet, whereas Fe(II) chelation was investigated by forming complexes with ferrozine. Chelation of sorghum extract was increased rapidly with increasing concentrations of metal salt and sorghum extract. At a 0.1g/L metal salt addition level, the chelating activity of Fe(II) and Cu(II) were 66.7% and 54.2%, respectively. According to the chelation pH conditions, the sorghum extract was chelated almost 100% by Fe(II) above the pH 6.5. It was confirmed that Fe(II) was a strong chelator of sorghum extract than Cu(II). The sorghum extract chelated with metal salt exhibit higher thermal stability. The bioplastic containing chelated sorghum extract showed relatively less color change than the control.

생리활성 펩타이드의 피부미용학적 특성 및 활용 (Characteristics and Applications of Bioactive Peptides in Skin Care)

  • 모상현;정대현;김형식;조문진;서효현;김성준
    • KSBB Journal
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    • 제26권6호
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    • pp.483-490
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    • 2011
  • Bioactive peptides (BAP) showed excellent cosmetic activity than bio-materials such as caffeic acid (CA), gallic acid (GA), and nicotinic acid (NA). Caffeoyl tripeptide-1 (CT-1) is a BAP that is stabilized with Gly-His-Lys (GHK) tripeptide and CA by using Fmoc solid phase peptide synthesis. Digalloyl tetrapeptide-19 (DT-19) is stabilized by combining Lys-Glu-Cys-Gly with GA and nicotinoyl tripeptide-1 (NT-1) is synthesized by GHK and NA. According to experiments, CT-1 has an excellent anti-oxidant function even with a very small amount of 10 ppm CT-1. DT-19's tyrosinase inhibition activity has the better effect of about 28.57% in 0.01% and 33.33% in 0.005% of concentration and about 7.89% in 0.001% concentration than vitamin-C. In addition, NT-1 is safer than the NA. Almost BAPs like pal-KTTKS, acetyl hexapeptide, and copper tripeptide-1 have the anti-wrinkle effect while DT-19 and NT-1 are applicable for potential BAPs focused on the whitening effect. The three kinds of BAPs like CT-1, DT-19, and NT-1 consisting of amino acids are safe to the skin, and have more excellent stability than bio-materials which are found to be unstable and cause skin irritation. Due to the high biological activity of BAP in the field of skin care, its utilization will increase constantly.

Response of Odontoblast to the Bio-Calcium Phosphate Cement

  • Kim, Jin-Woo;Kim, Sung-Won;Kim, Gyoo-Cheon;Kim, Yong-Deok;Kim, Cheol-Hun;Kim, Bok-Joo;Kim, Uk-Kyu
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제33권4호
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    • pp.301-307
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    • 2011
  • Purpose: If the tooth structure is damaged, then it is impossible to regenerate the tooth. The materials used to restore the tooth structure are not related to the composition of the tooth. The materials used to restore the structure can't replace the natural tooth because they just fill the defective structure. Calcium phosphate cement remineralizes the dentin and almost replaces the natural tooth, but there are some disadvantages. We conducted basic tests with Biomimetic CPC (Bio-CPC) to make sure of the possibility of the biomaterial to remineralize the defective tooth structure. Methods: In this study, the bioactivity and biocompatibility of Bio-CPC were evaluated for its potential value as the bio-material for regeneration of damaged tooth structure by conducting a cell toxicity assay (WST-1 assay), a cytokinesis-block micronucleus assay, a chromosomal aberration test, total RNA extraction and RT-PCR on MDPC-23 mouse odontoblast-like cells. Results: The in vitro cytotoxicity test showed that the Bio-CPC was fairly cytocompatible for the MDPC-23 mouse odontoblast-like cells. Conclusion: Bio-CPC has a possibility to be a new biomaterial and further study of Bio-CPC is needed.