• Title/Summary/Keyword: Environmental-friendly material

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Sustainability Practices and Implications of Fashion Brands at the Vegan Fashion Week

  • Jeong, Jiwoon;Chun, Jaehoon
    • Fashion & Textile Research Journal
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    • v.24 no.4
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    • pp.357-371
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    • 2022
  • With the expansion of the vegan fashion industry and increasing consumer interest in vegan goods, the first inaugural Vegan Fashion Week was held in LA in 2019. However, there are no studies examining the sustainability of vegan fashion brands; this study underlines the necessity to close this research gap. This study aimed to ascertain how these issues are handled by vegan fashion brands. Using the "sustainable criterion of fashion brands," we investigated the companies that participated in Vegan Fashion Week. This study analyzed the featured brands, conducted case studies, and examined each brand's sustainability strategies and procedures. Press releases, news articles, official websites, and web magazines served as raw data for this study. Analyses of individual networks were performed and brands' approaches to veganism and sustainability were evaluated; eco-friendly material, fair trade, local production, and vegan inspiration were among these techniques. Every brand had put at least one of these requirements into practice for their business, with vegan inspiration being the most popular approach. Additionally, it was discovered that vegan fashion brands deliberately employed vegan messaging that aligns with their corporate values. After its initial launch, VFW continues to advance the discourse on vegan fashion both within the industry and with the general public. The study's implications include the analysis of vegan fashion brands' ethical manufacturing, environmental practices, and overall sustainability.

A study on fashion mask design trends for individual safety protection from harmful environments (유해환경으로부터 개인의 안전보호를 위한 패션 마스크 디자인 경향)

  • Dal A Lee;Chan Ho Kim
    • Journal of the Korea Fashion and Costume Design Association
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    • v.24 no.4
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    • pp.101-116
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    • 2022
  • The purpose of this study is to understand the trends of fashion mask designs as a fashion item with characteristics to protect individual health and safety from harmful environments. To this end, the concept, the trend analysis of the domestic and foreign mask markets, the type, characteristics of functional masks, and the design trend of fashion masks were analyzed. Research methods included case studies and literaturte on mask design, fashion magazines, fashion brand websites, fashion collections, and promotional material. First, masks for personal safety were classified as protective function masks from the natural environment, functional masks by industrial groups, masks for protective functions from biohazards, and masks for protective functions from various external activities. Through this analysis, the design trends of fashion masks were analyzed. The functional orientation of structure and functionality, the environmental orientation of sustainable eco-friendly methods, the fashion orientation of individual fashion styling, and the social functional orientation tend to transmit social messages. In the harmful environment of everyday life, items such as fashion masks with functionality and fashion characteristics should be continuously studied to integrate functional and design characteristics that can contribute to the future fashion industry and the fashion market as a sense of unity and responsibility.

Effect of waste glass as powder and aggregate on strength and shrinkage of fiber reinforced foam concrete

  • Mayada A. Kareem;Ameer A. Hilal
    • Advances in materials Research
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    • v.12 no.4
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    • pp.331-349
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    • 2023
  • Foam concrete can be considered as environmental friendly material due to its low weight, its minimal cost and a possibility to add waste materials in its production. This paper investigates the possibility of producing foam concrete with waste glass as powder and aggregate. Then, the effect of using waste glass on strength and drying shrinkage of foam concrete was examined. Also, the effect of incorporating polypropylene fibers (12 mm length and proportion of 0.5% of a mix volume) on distribution of waste glass as coarse particles within 1200 kg/m3 foam concrete mixes was evaluated. Waste glass was used as powder (20% of cement weight), as coarse particles (25%, 50% and 100% instead of sand volume) and as fine particles (25% instead of sand volume). From the results, the problem of non-uniform distribution of coarse glass particles was successfully solved by adding polypropylene fibers. It was found that using of waste glass as coarse aggregate led to reduce the strength of foam concrete mixes. However, using it with polypropylene fibers in combination helped in increasing the strength by about 29- 50% for compressive and 55- 71% for splitting tensile and reducing the drying shrinkage by about (31- 40%). In general, not only the fibers role but also the uniformly distributed coarse glass particles helped in improving and enhancing the strength and shrinkage of the investigated foam concrete mixes.

Microstructure and mechanical properties of ternary pastes activated with multi-colors glass and brick wastes

  • I.Y. Omri;N. Tebbal;Z. Rahmouni
    • Advances in concrete construction
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    • v.17 no.3
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    • pp.167-177
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    • 2024
  • Disposal of waste glass derived from bottle or packaging glass, flat glass, domestic glass is one of the major environmental defies. Moreover, the remnants of bricks resulting from the remnants of buildings are also considered an important factor in polluting the environment due to the difficulty of filling or getting rid it. The aim of this study is to valorize these wastes through chemical activation to be an environmentally friendly material. The Microstructure, compressive strength, setting time, drying shrinkage, water absorption of different pastes produced by clear glass (CG), green glass (GG) and brick waste (BP) activated were tested and recorded after curing for 3, 7, 28 and 365 days. Five samples of pastes were mixed in proportions represented by: 100% GP (GP), 100% GGP (GGP), 100% BP (BP), 90% GP + 10% BP (GPB) and 90% GGP + 10% BP (GGPB). Various parameters considered in this study include sodium hydroxide concentrations (10 mol/l); 0.4 as alkaline liquid to binder ratio; 2.5 as sodium silicate to sodium hydroxide ratio and cured at 60℃ for 24 hours. Experimental results revealed that the addition of 10% of BP resulted in an increased strength performance of geopolymer paste especially with GGPB compared to GGP in 365 days. In addition, the 10% amount of BP increases the absorption and shrinkage rate of geopolymer pastes (GPB and GGPB) by reducing the setting time. SEM results revealed that the addition of BP and GP resulted in a dense structure.

Screening of Seed Treatment Agents against Leaf Blight and Black Root Rot for Carrot Organic Cultivation (당근 유기재배를 위한 검은잎마름병과 검은무늬병 종자소독제 선발)

  • Lee, Jae-Eun;Yeoung, Young-Rok;Kwon, Soon-Bae;Kim, Byung-Sup
    • Research in Plant Disease
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    • v.17 no.2
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    • pp.148-154
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    • 2011
  • This study was conducted to control the seed borne pathogens (Alternaria spp.) of carrot and to examine the seed germination rate by using 13 environment friendly agricultural materials instead of conventional chemicals for organic cultivation. The growth inhibiting effects on pathogens showed the different responses according to each agricultural material and effective 7 materials against seed borne pathogens were selected. Among 7 materials, the carrot seeds sterilized with plant extracts, Tanger Stop and Land Saver were not germinated at all. The germination rate of seeds sterilized with other materials showed the similar levels with reference chemical (Benlate-T) and non-treated seeds. Infection rates of seeds sterilized with seaweed extract, Bellopper for controlling A. radicina and plant extract, Ssial-100 for A. dauci were similar or low infection rate compared with reference chemical. The germination rate and root length of seeds sterilized with Bellopper and Ssial-100 was similar or superior to those of chemical sterilized seeds. The optimal condition seemed to be a little bit different depending on the concentration of materials. As a result, the sterilization of carrot seeds by using the environment friendly materials could be effectively utilized as a technology to inhibit the infection of seed-borne pathogens.

Basic study of new concept environment-friendly pile foundations with earthquake resistant foundation and lateral reinforcement on rapid-transit railway bridge (고속철도교 기초 내진 및 수평저항성능 보강형 신개념 친환경말뚝 신공법의 실용화 기초연구)

  • SaGong, Myung;Paik, Kyu-Ho;Lim, Hae-Sik;Cho, Kook-Hwan;Na, Kyung
    • Proceedings of the KSR Conference
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    • 2010.06a
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    • pp.880-894
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    • 2010
  • The Grout injected precast pile is widely used in rapid-transit railway bridge recently. The existing portland cement of well used filling at injected precast method that with low strength and environmental pollution, unstable in which ground water contamination by cement flow out, ground relaxation by water down, decrease of horizontality resistance and durability and load transfer divide etc. In particular, as in rapid-transit railway bridge need to secure safety from different angle with vibration of high speed train, horizontal force when train stop and earthquake. Works of foundation construction consider to requirements of the times to coal yard green growth. Together, new green foundation method for possible economics and securing of reduce the term of works are material to developments. Therefore, we carried out study that it is using and development new concept environment - friendly filling include durability and earthquake resistance, for secure safety and minimize environment pollution. To achieve this, we carried out difference tests that new green fillings of underwater concrete, high liquidity, high viscosity, early stiffness as compared to existing portland cement fillings. As results, new green filling have outstanding application at precast pile method and micropile construction method with vertical bearing capacity, horizontal bearing capacity and many case. From now on we will be looking forward to development of new environment-friendly foundation method from various further studies.

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Preparation and Characterization of Anion Exchange Membrane Based on Crosslinked Poly(2,6-dimethyl-1,4-phenylene oxide) with Spacer-type Conducting Group (Spacer-type 전도기가 도입된 가교형 poly(2,6-dimethyl-1,4-phenylene oxide) 음이온 교환막의 제조 및 특성평가)

  • Lim, Haeryang;Kim, Tae-Hyun
    • Membrane Journal
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    • v.27 no.5
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    • pp.425-433
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    • 2017
  • As the problems related to the environmental pollution such as carbon dioxide emission are emerging, the need for the renewable energy and environmentally friendly energy is getting intense. Fuel cells are eco-friendly energy generation devices that generate electrical energy and produce water as a sole by-product. Compared to the traditional proton exchange membrane fuel cell (PEMFC), anion exchange membrane alkaline fuel cell (AEMAFC) has a main advantage of possibility to use low cost metal catalysts due to its faster kinetics. The AEM, which conducts $OH^-$ ions, should possess high ion conductivity as well as high chemical stability at high pH conditions. We hereby introduce a crosslinked poly(2,6-dimethyl-1,4-phenylene oxide) having a spacer-type conducting group as novel AEM, and report a high ion conductivity ($67.9mScm^{-1}$ at $80^{\circ}C$) and mechanical properties (Young's modulus : 0.53 GPa) as well as chemical stability (6.8% IEC loss at $80^{\circ}C$ for 1,000 h,) for the developed membrane.

Research Trends in Flotation of Waste-plastics and Its Use as Functional Materials (폐플라스틱의 부유선별 및 기능성 소재로의 활용 연구동향)

  • Han, Yosep;Kim, Rina;Hong, Hye-Jin;Park, In-Su;Kim, Dong-Gyun;Kim, Yun Ho;Jeon, Ho-Seok;Chang, Hankwon
    • Resources Recycling
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    • v.29 no.6
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    • pp.15-26
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    • 2020
  • In recent years, there is an increasing interest in environmental friendly treatment of waste-plastics in terms of the generation of microplastics. Accordingly, the recycling of waste-plastics is very important because it provides advantages of volume reduction, mitigation of carbon dioxide emission, and reproduction of value-added products. In particular, in order to recycle the eco-friendly waste-plastics, it is necessary to use a physical separation methods, and among them, flotation separation, which can separate material (i.e., polymer component) in waste-plastics is well known as a very effective separation method in terms of material recycle. Therefore, in this review, the research trend of flotation separation for effective separation of mixture waste-plastics was investigated. In addition, through the reported research results, approaches to use as new functional materials from polymers, which are raw materials for waste-plastics, are summarized.

Earth Construction Interior Applied to Healing Space : Focused on Biophilic Design Concept of Oriental Medical Clinic Interior (치유공간에 적용한 흙건축 인테리어 -한의원인테리어의 바이오필릭(Biophilic)디자인개념을 중심으로-)

  • Jeon, Chan Hee;Hwang, Hey Zoo
    • Journal of the Korean Society of Floral Art and Design
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    • no.42
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    • pp.37-62
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    • 2020
  • The earth is a natural material that has natural healing power,,as a natural ingredient, it brings environmental friendliness, emotional. In this Research, for one of the methods to expand the benefits as a healing space, Construction of the Earth design and earth construction methods have been actively used for effectiveness of the Earth in the construction of the interior with the oriental medical clinic. By utilizing the concept of biophilic design as a healing environment design, symbolizing nature such as color, light, plants, flowers, and natural materials such as earth and wood was directed as oriental medicine interiors. In addition, the space was divided according to the movement of patients and used different Earth construction method to each of the space for the distinction and differentiation according to the characteristics of each space. At this time, the Earth was constructed with materials and finishing materials that meet the highest grade of HB (Healthy Building), an eco-friendly building material certification grade without additives, so that the interior and medical treatment concept can be done at the same time. By using Earth as the basis of elements in the construction, and the design of healing space, patient the concept of Biophillic as a healing environment design. This may serve as a technical, aesthetic, and cultural basis for constructing a healing space by Earth in the future-oriented alternative, it may lead to necessity of eco-friendly and ecological architecture, and it may be an opportunity to expand the application area of earth in architectural design.

Sizing Optimization of CFRP Lower Control Arm Considering Strength and Stiffness Conditions (강도 및 강성 조건을 고려한 탄소섬유강화플라스틱(CFRP) 로어 컨트롤 아암의 치수 최적설계)

  • Lim, Juhee;Doh, Jaehyeok;Yoo, SangHyuk;Kang, Ohsung;Kang, Keonwook;Lee, Jongsoo
    • Korean Journal of Computational Design and Engineering
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    • v.21 no.4
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    • pp.389-396
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    • 2016
  • The necessity for environment-friendly material development has emerged in the recent automotive field due to stricter regulations on fuel economy and environmental concerns. Accordingly, the automotive industry is paying attention to carbon fiber reinforced plastic (CFRP) material with high strength and stiffness properties while the lightweight. In this study, we determine a shape of lower control arm (LCA) for maximizing the strength and stiffness by optimizing the thickness of each layer when the stacking angle is fixed due to the CFRP manufacturing problems. Composite materials are laminated in the order of $0^{\circ}$, $90^{\circ}$, $45^{\circ}$, and $-45^{\circ}$ with a symmetrical structure. For the approximate optimal design, we apply a sequential two-point diagonal quadratic approximate optimization (STDQAO) and use a process integrated design optimization (PIDO) code for this purpose. Based on the physical properties calculated within a predetermined range of laminate thickness, we perform the FEM analysis and verify whether it satisfies the load and stiffness conditions or not. These processes are repeated for successive improved objective function. Optimized CFRP LCA has the equivalent stiffness and strength with light weight structure when compared to conventional aluminum design.