• Title/Summary/Keyword: Environmental-friendly material

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Eco-friendly Control of Harmful Algal Bloom Species Using Biological Predators (포식성 천적생물을 이용한 친환경 유해조류 제어기술 개발)

  • Kim, Sok;Lee, Changsu;Vo, Thi-Thao;Han, Sang-Il;Choi, Yoon-E
    • Korean Journal of Environmental Biology
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    • v.34 no.2
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    • pp.91-96
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    • 2016
  • This study presents the potentiality of harmful algal bloom (HAB) control through the zooplankton, Daphnia magna. In case of co-cultivated D. magna with cyanobacteriums (Microcystis aeruginosa, Anabaena variabilis, and Limnothrix planctonica), the D. magna showed the $80.2{\pm}4.2%$, $39.7{\pm}4.0%$, and $25.9{\pm}10.9%$ of control efficiency for M. aeruginosa, A. variabilis and L. planctonica, respectively. Furthermore, algal control was investigated by using supernatant including metabolite/secretion of D. magna. The algal control efficiencies of supernatant were recorded as $24.9{\pm}9.9%$ and $8.9{\pm}4.0%$ for M. aeruginosa and A. variabilis, respectively. From the results of present study, it may be possible to provide a feasible way for development of eco-friendly HAB control methods.

The oral dose toxicity test and skin irritation test of eco-friendly plasticizer using crude glycerol derived (폐글리세롤을 이용한 친환경 가소제의 경구투여독성 및 피부자극성 시험)

  • Kang, Soo-Jung;Kim, Heeyoung;Park, Sangwon;Sim, Eunyoung;Kim, Jinhwan
    • Journal of Korean Society of Occupational and Environmental Hygiene
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    • v.25 no.3
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    • pp.322-327
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    • 2015
  • Objectives: The major objective of this study is the oral dose toxicity test and skin irritation test of eco-friendly plasticizer using crude glycerol derived from the biodiesel process. Methods: Glyceroldiacetate laurate(GDL) was synthesized from glycerol monolaurat(GML) and acetic acid. The synthesis of the GDL plasticizer was measured with nuclear magnetic resonance spectroscop(NMR) and FT-IR(Fourier Transform Infrared Spectrometer). To provide information on the safety of GDL, we carried out an oral dose toxicity test for GDL in Sprague-Dawley rats. Also, we carried out a skin irritation test for GDL in New Zealand White rabbits. Results: The oral dose toxicity test in Sprague-Dawley rats showed that GDL is a non-toxic material. The result of the skin irritation test on New Zealand White rabbits showed that GDL is non-irritating. Conclusions: From the results of oral dose toxicity test and skin irritation test, we concluded that the developed plasticizer showed excellent eco-friendly property. Based on our results, we confirmed the development of an eco-friendly non-phthalate plasticizer. Applicability for PVC toys and food and drug packaging materials was found.

A Feasibility Analysis on Steel Net Gabion Reinforcement of Reinforced Earth-retaining Wall (자연친화적인 보강토 옹벽의 철판망 gabion 보강재 타당성 분석)

  • Chung, Dae-Seouk
    • Journal of Environmental Science International
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    • v.17 no.2
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    • pp.135-140
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    • 2008
  • Steel net gabion is eco-friendly retaining wall structure showing favorable ability to overcome construction and environmental restriction and also to resist corrosion, chemical attack and degradation. This paper is dealt with the applicability of gabion metal net as a substitution of existing strengthening material. Pull out test was carried out to verify the applicability of gabion metal net. According to results, the increase of surcharge loading and horizontal load resulted in a yield of metal net. The stress at the time of yield was in the range of elasticity. Accordingly, gabion metal net can be substituted for existing geogrid and there is a need for experiment and analysis of arrangement direction and durability of gabion steel net.

Global warming effect Comparison of each material for railway vehicle (철도차량 차체재료별 온실가스발생량 비교)

  • Lee, Cheul-Kyu;Kim, Yong-Ki;Phirada, Pruitichaiwiboon
    • Proceedings of the KSR Conference
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    • 2009.05a
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    • pp.219-222
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    • 2009
  • Green ocean is one of the main issues internationally. Most governments are leading the role in boosting the economy through creating new green market and establishing system of coping with increasing international environmental regulation. Green ocean, which is a solution for the environmental issue of global warming, is applied throughout the industry. Domestic transportation industry including railway is also developing technology for creating green ocean. Transportation must decrease energy consumption at running stages because it shows high environmental loads expecially on using stages during its life cycle. Therefore, There are some tries for developing technologies; new engine through alternative energies, hybrid and lightweight. Railway transportation can not be exception. it is intended for this paper to suggest the direction of manufacturing environmentally friendly railway vehicle through the global warming effect evaluation of several materials being applied to vehicle and comparison of the results.

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Biodegredible material application of insulation oil of OF CABLE (OF 케이블 절연유의 환경친화적 자재 적용)

  • Kim, Jong-Won;Lee, Kee-Soo;Ha, Jae-Cheong;Choi, Bong-Nam;Lee, Seung-Yol
    • Proceedings of the KIEE Conference
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    • 2000.07c
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    • pp.2023-2025
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    • 2000
  • Globally, movements for an environmental preservation have been further extended in all the areas of industries. In the manufacturing area. environment-friendly properties for all the manufactured products are increasingly required by many national standards. For EHV oil-filled cables. Hard Alkylbenzen has been applied as an impregnated insulating oil. But as it flows into the soil during failures, such as oil leakage, the oil is not dissolved by microbes and then causes an environmental pollution. Recently some countries are increasingly requiring Soft Alkylbenzen which is dissolved by microbes. This paper describes the electrical and environmental properties of Soft Alkylbenzen. applied for a 230kV oil-filled cables at a Singapore's project.

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Bioethanol Production Using Lignocellulosic Biomass - review Part I. Pretreatments of biomass for generating ethanol

  • Sheikh, Mominul Islam;Kim, Chul-Hwan;Yesmin, Shabina;Lee, Ji-Yong;Kim, Gyeong-Chul;Ahn, Byeong-Il;Kim, Sung-Ho;Park, Hyeon-Jin
    • Journal of Korea Technical Association of The Pulp and Paper Industry
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    • v.42 no.5
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    • pp.1-14
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    • 2010
  • Bio-ethanol is a promising alternative energy source for reducing both consumption of crude oil and environmental pollution from renewable resources like lignocellulosic biomass such as wood, forest residuals, agricultural leftovers and urban wastes. Based on current technologies, the cost of ethanol production from lignocellulosic materials is relatively high, and the main challenges are the low yield and high cost of the hydrolysis process. Development of more efficient pretreatment technology (physical, chemical, physico-chemical, and biological pretreatment), integration of several microbiological conversions into fewer reactors, and increasing ethanol production capacity may decrease specific investment for ethanol producing plants. The purpose of pretreatment of lignocellulosic material is to improve the accessible surface area of cellulose for hydrolytic enzymes and enhance the conversion of cellulose to glucose and finally high yield ethanol production which is economic and environmental friendly.

Simulation of greenhouse gas emissions of small ships considering operating conditions for environmental performance evaluation

  • Jeong, Sookhyun;Woo, Jong Hun;Oh, Daekyun
    • International Journal of Naval Architecture and Ocean Engineering
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    • v.12 no.1
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    • pp.636-643
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    • 2020
  • This study developed a method for simulating greenhouse gas (GHG) emissions considering changes in conditions that may occur during the actual operation of small ships. Additionally, we analyzed and compared the results of the proposed method with that of existing emission simulations according to life-cycle assessment (LCA), thus verifying the proposed method's effectiveness. Through the results of the study, we confirmed that the proposed method improves the simulation by considering emissions due to ship operation, whereas existing methods focus on emissions caused by raw material production. Additionally, the proposed method could identify and quantify the relationship between changes in operating conditions and GHG emissions. We expect this GHG emissions simulation technique to help improve the environmental performance of ships in the future.

A Study on the Fashion Design of Hanji(Korean traditional paper) Textile Using the Formative Features of Scallop (가리비의 조형성을 이용한 한지직물 의상 디자인 연구)

  • Kwon, Min-Jung;Yu, Kum-Wha
    • Journal of the Korea Fashion and Costume Design Association
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    • v.13 no.3
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    • pp.149-163
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    • 2011
  • Hanjisa(Korean paper yarn), a new material made from the traditional Korean paper, has been developed through local R&D efforts, reflecting the current trend highly valuing environmental friendly. This new material is considered suitable for the 21C lifestyle and culture pursuing improved quality of human life and the environment. Therefore, this study aims to widely make known the originality and functions of the environmentally friendly Korean paper yarn, as well as to increase its commercial value. Furthermore, a new category of apparel design is presented by studying painting dyeing based on transformational tuck techniques and wax resist dyeing with formative features of repeated lines and rhythms of shells in order to implement three-dimensional and decorative artistic expressions. The texture of the Korean cotton paper yarn was particularly suitable to employ tuck and dyeing techniques Which express formative features of shell. Also, the material was useful for expressing the three-dimensional feelings with repeated curves and cross sections of shells. Moreover, paraffin resist dyeing and stitch techniques were used in order to avoid monotony and the images of shells visually materialized. Through the results stated above, this study could explore how to overcome obstacles to globalization of the Korean modern apparel such as its uniqueness, limit of materials or absense of internationality by applying modern design to the Korean paper fabrics. In the future, it is expected that more manufactures could produce and supply the new materials so as to make widely known the originality of the Korean paper fabrics and develop the material into a popular organic product fitting the modern lifestyle.

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Development of Naturally Dyed Bedding Design Applying a Healing Concept (힐링 개념을 적용한 천연염색의 침구류 디자인개발 연구)

  • Song, Jung-Hee;Kwak, Tai-Gi
    • Journal of the Korea Fashion and Costume Design Association
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    • v.19 no.2
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    • pp.15-28
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    • 2017
  • Today, modern people are exposed to various environmental pollutants such as harmful substances and stress, which can compromise health. Therefore, a healing culture that seeks to enjoy human life based on the healing of body and mind is attracting great attention. The purpose of this study is to develop environmentally friendly natural dyeing considering a healing concept with four elements: color, dye, material, and pattern. The research methods and scope are based on a theoretical review of healing and research on the literature of bedding related to natural dyes, national and international books, the Internet, etc., and naturally dyed bedding. This paper presents actual production research. The results of this study are as follows. First, the elements of color, dyeing, material and pattern were developed through the process of a bedding design development model that applies a healing concept and can be commercialized as a healing bedding product. Second, a healing color proposal was expressed in an intermediate color system of pink, ocher, lavender, and indigo colors for emotional stability, warmth, calmness, comfort and softness. Third, eco-friendly bedding using natural dyes with medicinal efficacy can obtain the healing effect of the natural treatment method, which can aid healthy sleep. Fourth, the pattern used in the bedclothes was a motif of Sarasa embroidery, flower embroidery, ribbon embroidery, and wave quilting motifs to provide psychological stability as a healing concept in the sleeping environment. The natural healing bedding with the healing concept proposed in this study has natural treatment that is beneficial to human health and the development of bedding with natural dyes will lead to an increase of demand for the sleeping environment.

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Mechanical Properties of Hwangtoh-Based Alkali-Activated Concrete

  • Yang, Keun-Hyeok;Hwang, Hey-Zoo;Lee, Seol
    • Architectural research
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    • v.11 no.1
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    • pp.25-33
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    • 2009
  • This study presents the testing of 15 hwangtoh-based cementless concrete mixes to explore the significance and limitations of the development of eco-friendly concrete without carbon dioxide emissions while maintaining various beneficial effects. Hwangtoh, which is a kind of kaolin, was incorporated with inorganic materials, such as calcium hydroxide, to produce a cement-less binder. The main variables investigated were the water-to-binder ratio and fine aggregate-to-total aggregate ratio to ascertain the reliable mixing design of hwangtoh-based cementless concrete. The variation of slump with elapsed time was recorded in fresh concrete specimens. Mechanical properties of hardened concrete were also measured: including compressive strength gain, splitting tensile strength, moduli of rupture and elasticity, stress-strain relationship, and bond resistance. In addition, mechanical properties of hwangtoh-based cement-less concrete were compared with those of ordinary portland cement (OPC) concrete and predictions obtained from the design equations specified in ACI 318-05 and CEB-FIP for OPC concrete, wherever possible. Test results show that the mechanical properties of hwangtoh-based concrete were significantly influenced by the water-to-binder ratio and to less extend by fine aggregate-to-total aggregate ratio. The moduli of rupture and elasticity of hwangtoh-based concrete were generally lower than those of OPC concrete. In addition, the stress-strain and bond stress-slip relationships measured from hwangtoh-based concrete showed little agreement with the design model specified in CEB-FIP. However, the measured moduli of rupture and elasticity, and bond strength were higher than those given in ACI 318-05 and CEB-FIP. Overall, the test results suggest that the hwangtoh-based concrete shows highly effective performance and great potential as an environmental-friendly building material.