• 제목/요약/키워드: Functional packaging materials

검색결과 69건 처리시간 0.023초

수산물의 기능성 재사용 포장용기 사용을 통한 물류합리화에 관한 연구 (A Study on the Effects of Functional Reusable Packing Containers for Marine Products on Logistics Rationalization)

  • 김병찬;양대용
    • 디지털산업정보학회논문지
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    • 제11권3호
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    • pp.145-158
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    • 2015
  • Disposable marine product packaging materials such as wooden, Styrofoam, and corrugated cardboard boxes have a very low reuse rate, thus causing the logistics costs to rise and making it difficult to establish a unit load system for marine products. Disposable packing containers to be discarded are accompanied by resource and environmental issues home and abroad. Transportation vehicles for marine products have to return empty without loading different kinds of products after delivery due to the smell and properties of marine products, thus posing as an obstacle to logistics rationalization. In an effort to overcome those limitations, this study examined the stages of transportation including "producer-wholesale market in the producing area-commission merchant-wholesale market in the consumption area-commission merchant-quasi-wholesale market-consumer" and also analyzed the utilization and distribution of disposable packaging materials currently used in the circulation of marine products including wooden, Styrofoam, and corrugated cardboard boxes. Based on the analysis results, the investigator developed a logistics rationalization model capable of promoting semi-permanent reuse and lowering empty vehicle rate on return routes as an alternative to address environmental issues caused by disposable packaging materials, which have been an obstacle to the logistics rationalization of marine products, packaging costs in the process of repeating packing and unpacking at each stage of marine products circulation, and empty vehicle rates on return routes after marine products delivery.

Chemically Bonded Thermally Expandable Microsphere-silica Composite Aerogel with Thermal Insulation Property for Industrial Use

  • Lee, Kyu-Yeon;Phadtare, Varsha D.;Choi, Haryeong;Moon, Seung Hwan;Kim, Jong Il;Bae, Young Kwang;Park, Hyung-Ho
    • 마이크로전자및패키징학회지
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    • 제26권2호
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    • pp.23-29
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    • 2019
  • Thermally expandable microsphere and aerogel composite was prepared by chemical compositization. Microsphere can produce synergies with aerogel, especially an enhancement of mechanical property. Through condensation between sulfonated microsphere and hydrolyzed silica sol, chemically-connected composite aerogel could be prepared. The presence of hydroxyl group on the sulfonated microsphere was observed, which was the prime functional group of reaction with hydrolyzed silica sol. Silica aerogel-coated microsphere was confirmed through microstructure analysis. The presence of silicon-carbon absorption band and peaks from composite aerogel was observed, which proved the chemical bonding between them. A relatively low thermal conductivity value of $0.063W/m{\cdot}K$ was obtained.

나노기술 적용을 통한 포장 분야의 전망 (Expectation of Nanotechnology Applications in Packaging)

  • 김재능;이윤석
    • 한국포장학회지
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    • 제12권1호
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    • pp.27-34
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    • 2006
  • Nanotechnology is playing an increasingly important role in the development on most areas of science and technology. Because of its potential of providing novel performance at the nanoscale, the nanotechnology can influence a wide range of applications such as information, energy, environment and biology, all essential for socioeconomic development in the near future. In the packaging industry, the main applications of nanotechnology are (1) to enhance durability, (2) improve gas and oxygen barriers of raw materials for films and packaging, (3) create new functional sensors, and (4) lengthen shelf life for the packaged food quality and will also help in pharmaceuticals and cosmetics. Nanotechnology is growing in an international interactions which accelerate in science, education, and industrial R&D. Government, industries and the business sector in Korea have shown a strong ambition towards the development of nanotechnology for the future. Meanwhile, a strategic investment in packaging area is much smaller compared to supporting research and development (R&D) of various major research areas. This article were reviewed the status and trends of current packaging research and development activities using nanotechnology in Korea, USA, Japan, and other international nations.

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기능성 소재가 코팅된 골판지상자의 감귤의 신선도 유지 효과 (Freshness Extension of Corrugated Fiberboard Box coated with Functional Materials)

  • 박형우;김동만;김윤호;이선아
    • 한국포장학회지
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    • 제8권2호
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    • pp.27-31
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    • 2002
  • 제주산 감귤을 기존의 골판지와 이골판지에 특성이 다른 선도 유지기능성 소재 3종을 상자 내면에 코팅하여 여기에 감귤을 넣고 $25^{\circ}C$에 8일간 저장하면서 선도 유지효과를 조사하였다. 중량은 모든 포장구에서 2.6-3.7%가 감소하였고 산도와 당도는 포장구간에 차가 없었으며 비타민 C 함량은 대조구 보다 R-Box와 Y-Box가 10% 높게 유지되고 있었다. 부패율도 R-Box는 4%였으나 나머지 포장구는 8-11%의 감귤이 부패되었으며 외관도 R-Box가 가장 양호하였다.

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3-D Hetero-Integration Technologies for Multifunctional Convergence Systems

  • 이강욱
    • 마이크로전자및패키징학회지
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    • 제22권2호
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    • pp.11-19
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    • 2015
  • Since CMOS device scaling has stalled, three-dimensional (3-D) integration allows extending Moore's law to ever high density, higher functionality, higher performance, and more diversed materials and devices to be integrated with lower cost. 3-D integration has many benefits such as increased multi-functionality, increased performance, increased data bandwidth, reduced power, small form factor, reduced packaging volume, because it vertically stacks multiple materials, technologies, and functional components such as processor, memory, sensors, logic, analog, and power ICs into one stacked chip. Anticipated applications start with memory, handheld devices, and high-performance computers and especially extend to multifunctional convengence systems such as cloud networking for internet of things, exascale computing for big data server, electrical vehicle system for future automotive, radioactivity safety system, energy harvesting system and, wireless implantable medical system by flexible heterogeneous integrations involving CMOS, MEMS, sensors and photonic circuits. However, heterogeneous integration of different functional devices has many technical challenges owing to various types of size, thickness, and substrate of different functional devices, because they were fabricated by different technologies. This paper describes new 3-D heterogeneous integration technologies of chip self-assembling stacking and 3-D heterogeneous opto-electronics integration, backside TSV fabrication developed by Tohoku University for multifunctional convergence systems. The paper introduce a high speed sensing, highly parallel processing image sensor system comprising a 3-D stacked image sensor with extremely fast signal sensing and processing speed and a 3-D stacked microprocessor with a self-test and self-repair function for autonomous driving assist fabricated by 3-D heterogeneous integration technologies.

농산물용 복합 골판지의 항균성 및 선도유지기능 평가 (Evaluation of Antibacterial Property and Freshness Maintenance of Functional Hybrid Corrugated Board Used for Agricultural Products)

  • 이지영;김철환;최재성;오석주;김병호;임기백;김선영;김준식
    • 펄프종이기술
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    • 제45권3호
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    • pp.45-51
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    • 2013
  • We developed a new antibacterial material, a non-woven fabric, a sulfur solution, and a new adhesive system to manufacture a new type of functional hybrid corrugated board in previous studies. Based on experimental data, the prototypes of functional hybrid corrugated boards were manufactured and their physical properties and functionalities, including antibacterial property and the freshness maintenance of sweet persimmon, were measured in this study. The functional hybrid corrugated board could be manufactured in the actual process with linerboards, non-woven fabrics, and other materials without any troubles, and was strong enough to be used as a packaging box for agricultural products. The antibacterial property of the hybrid corrugated board showed a value high enough to eliminate bacteria, which could deteriorate the sweet persimmons. Based on appearance observations, weight loss and firmness measurements, the freshness of sweet persimmons in the functional hybrid corrugated board was maintained better than it was in the conventional corrugated board.

Zeolite/Zinc-polypeptide를 코팅한 폴리프로필렌필름의 항균 및 항진균 특성에 관한 연구 (A Study on the Antibacterial and Antifungal Properties of Zeolite/Zinc-polypeptide Coated Polypropylene Film)

  • 이학래;고의석;심원철;김종서;김재능
    • 한국포장학회지
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    • 제27권1호
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    • pp.1-8
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    • 2021
  • 본 연구는 기능성 항균 포장재를 신선식품에 적용하기 위한 연구로서 Zeolite/Zinc-polypeptide를 식품용 포장재 중 하나인 PP 필름에 코팅하여 항균 및 항진균성을 확인하였다. 이를 검증하기 위하여 Zeolite/Zinc-polypeptide를 PP 필름에 각각 5%, 10%, 15% 농도로 코팅하였으며, FESEM과 FT-IR 분석을 통해 분산된 Zeolite/Zinc-polypeptide의 코팅 여부를 확인하였다. 또한 항균 효과를 검증하기 위하여 대조군과 코팅 물질의 농도에 따른 필름의 항균 및 항진균성을 분석하였다. 코팅 필름의 표면 분석 결과 PP 필름의 표면에서 Zeolite/Zinc-polypeptide의 농도에 따라 코팅 액의 분포 크기가 불규칙하지만 넓게 나타났다. 또한 항균 효과에 따른 분석 결과 박테리아 균 중 하나인 E. coli에서 99.9%의 항균 효과를 확인하였으며, R. oryzae의 성장을 약 70% 억제하여 PP 필름 코팅 적용 후에도 Zeolite/Zinc-polypeptide가 E. coli와 R. oryzae에 대하여 항균 및 항진균 특성을 갖고 있음을 확인하였다. 이에 따라 Zeolite/Zinc-polypeptide 코팅 필름은 기능성 포장재로서 신선식품의 부패 방지와 보관수명 향상에 효과적일 것으로 보이며, 향후 다양한 신선식품에 적용하기 위한 저장 실험이 요구되어진다.

트레일 러닝을 위한 아웃도어 웨어 디자인 개발 (Design Development of Outdoor Wear for Trail Running)

  • 김윤
    • 복식
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    • 제65권3호
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    • pp.151-166
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    • 2015
  • This research aims to study the needs of the trail runners as trail running has become a popular outdoor activity, and give suggestions for high functional outdoor menswear design that can satisfy the needs of the highly demanding taste of runners. The design development is as follows: 1) The design had to be made of lightweight material and be easily packable in all situations, and 2) we also considered the ergonomic and compact fit for activity, 3) the functional location of high functional fabric, 4) the reflective use and layering system giving a wide range of outdoor workout time and 5) the trend in 2016 S/S active sports and outdoor wear. Based on the above elements, the men's outdoor wear design has been developed for trail running in spring and summer. The design development includes a total of 7 items. The design focused on lightweight, availability of packaging, "comfortability" and freshness in activity, functional suitability of location of highly functional materials and the layering system to protect body temperature under the changing environment. In particular, the layering system was implemented to provide ventilation, and it was done in body parts that released the most body heat. Therefore, mesh materials were actively used on the side panel, sleeves and center of the back piece for necessary sweat emission without any problems and ventilation for trail running.

식품산업에서 유청 단백질을 이용한 식용 필름과 코팅의 활용 (Whey Protein-Based Edible Films and Coatings in Food Industry)

  • 유자연;;김현욱;배형호;함준상
    • Journal of Dairy Science and Biotechnology
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    • 제41권4호
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    • pp.219-229
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    • 2023
  • Consumer demand for products with health benefits and natural ingredients is significant for the expansion of functional foods. Edible films and coatings are an excellent way to diversify the market for functional foods and as substitutes for the prevailing packaging and products. Incorporation of whey protein (WP) and its active ingredients into edible films and coatings is a promising technique that can be applied to various food products. Numerous combinations can be used on an industrial scale depending on the purpose, product, nature of the film, type of active ingredient, and type of inclusions. In this review, we describe several characteristics of edible WP films and coatings used as novel packaging materials. WP-based packaging can play a beneficial role in sustainability because of the option of recycling materials rather than incinerating, as in synthetic laminates, because of the use of natural byproducts from the food industry as raw materials. However, cost-effectiveness is a driving force against industrial setbacks in current and future WP processing developments. The industrial application of this new technology depends on further scientific research aimed at identifying the mechanism of film formation to improve the performance of both the process and product. Furthermore, research such as consumer studies and long-term toxicity assessments are required to obtain significant market shares.

Enhancement in the Textural Properties and Hydrophobicity of Tetraethoxysilane-based Silica Aerogels by Phenyl Surface Modification

  • Dhavale, Rushikesh P.;Parale, Vinayak G.;Kim, Taehee;Choi, Haryeong;Kim, Younghun;Lee, Kyu-Yeon;Jung, Hae-Noo-Ree;Park, Hyung-Ho
    • 마이크로전자및패키징학회지
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    • 제27권2호
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    • pp.27-32
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    • 2020
  • Robust and hydrophobic tetraethoxysilane (TEOS) based silica aerogel was synthesized by supercritical alcohol drying with surface modification using the phenyl based silica co-precursor (PTMS). The aerogels were synthesized by hydrolysis and polycondensation reaction in which TEOS and PTMS in methanol were reacted together in presence of oxalic acid and ammonium hydroxide as the catalysts. Supercritical alcohol dried PTMS/TEOS composite silica aerogel were examined for the hydrophobicity, chemical interaction, surface morphology, and textural characteristics. The hydrophobic silica-based aerogels were characterized by Fourier transform infrared spectroscopy to investigate the presence of functional groups and chemical bonds. The prepared silica demonstrates hydrophobicity (76°-149°), a high specific surface area (398 ㎡/g to 739 ㎡/g). The present investigation provides a simple approach to synthesize hydrophobic and thermally stable silica aerogels.