• 제목/요약/키워드: Eco-friendly biomass

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친환경 가소제의 시장과 동향 (A Trend and Market in Eco-friendly Plasticizers: Review and Prospective)

  • 오은영;김백환;서종환
    • Composites Research
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    • 제35권4호
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    • pp.232-241
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    • 2022
  • 가소제는 가공성 및 연성과 같은 기계적 특성에 바람직한 영향을 미치기 위해 중합체에 첨가되는 화학 첨가제이다. 본 논문에서는 플라스틱 시장에서 전통적으로 사용되어온 프탈레이트 기반 가소제를 대체할 수 있는 친환경 가소제의 사용과 시장에 대해 탐구한다. 바이오 가소제는 주로 농산물, 부산물 및 폐기물을 포함하는 바이오 매스 소스에서 파생된다. 바이오 매스 공급원과 관계없이 이상적인 친환경 가소제는 무독성이며, 휘발·추출·이행 현상에 대한 저항성이 높고, 상용성과 혼화성이 좋으며, 경제적이어야 한다. 글로벌 바이오 가소제 시장은 2020년 13억 달러에서 2030년까지 21억 달러에 이를 것으로 전망되며, 2021년에서 2030년까지 5.31% CAGR로 성장할 것으로 예상된다.

Microwave-assisted pretreatment technologies for the conversion of lignocellulosic biomass to sugars and ethanol: a review

  • Puligundla, Pradeep;Oh, Sang-Eun;Mok, Chulkyoon
    • Carbon letters
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    • 제17권1호
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    • pp.1-10
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    • 2016
  • Lignocellulosic biomass conversion to biofuels such as ethanol and other value-added bio-products including activated carbons has attracted much attention. The development of an efficient, cost-effective, and eco-friendly pretreatment process is a major challenge in lignocellulosic biomass to biofuel conversion. Although several modern pretreatment technologies have been introduced, few promising technologies have been reported. Microwave irradiation or microwave-assisted methods (physical and chemical) for pretreatment (disintegration) of biomass have been gaining popularity over the last few years owing to their high heating efficiency, lower energy requirements, and easy operation. Acid and alkali pretreatments assisted by microwave heating meanwhile have been widely used for different types of lignocellulosic biomass conversion. Additional advantages of microwave-based pretreatments include faster treatment time, selective processing, instantaneous control, and acceleration of the reaction rate. The present review provides insights into the current research and advantages of using microwave-assisted pretreatment technologies for the conversion of lignocellulosic biomass to fermentable sugars in the process of cellulosic ethanol production.

바이오매스 기반 종이 플라스틱의 제조 및 응용에 대한 고찰 (A Study on Manufacturing of Paper Plastics Based on Biomass and Their Applications)

  • 윤광식;이동은;조대명
    • 한국포장학회지
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    • 제26권1호
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    • pp.25-31
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    • 2020
  • Recently, applications of biomass-based plastics have increased according to the eco-friendly policy of the reduction of carbon dioxide emissions in domestic and foreign government. In this study, a paper plastic composite was produced by compounding polypropylene and micronized paper powder that was prepared using dry pulverization technology. Subsequently, the specimen of paper plastic was verified with mechanical properties, formability and product safety test to confirm the suitable packaging materials for food packaging. Paper plastics showed slightly lower mechanical properties than currently commercialized PP composites. However, paper plastics are valuable materials as environmentally friendly carbon-reducing material because of high biocarbon content, light weight features and applicability of existing manufacturing machines or system.

폴리프로필렌 수지 복합을 위한 텐셀 재생섬유의 소수화 표면개질 특성 연구 (A Study on the Hydrophobicity Modification and Physical Properties of Tencel Regenerated Fibers for Polypropylene Resin Composites)

  • 윤성현;김미경;이은수
    • 한국염색가공학회지
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    • 제33권4호
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    • pp.258-268
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    • 2021
  • This study conducted on the introduction of recycled cellulose fibers, which are widely used in the textile industry as eco-friendly biomass materials, into polypropylene resins, which are mainly used for interior and exterior materials such as door trims and console parts of automobiles. In general, cellulose fibers can affect mechanical properties and have a lightening effect when used as a reinforcing agent. However, since cellulose fibers have hydrophilic properties and have relatively low compatibility with industrial polymer resins, they are used in combination through fiber hydrophobic surface treatment. Therefore, through this study, the reforming reaction conditions optimized in terms of hydrophobicity and workability for cellulose fibers are studied. Furthermore, polypropylene containing surface-modified cellulose fibers was prepared to compare physical properties by fiber content and study optimized content.

오일팜 바이오매스의 자원화 연구 V - 오일팜 바이오매스 펠릿의 반탄화 연구 - (Study of Oil Palm Biomass Resources (Part 5) - Torrefaction of Pellets Made from Oil Palm Biomass -)

  • 이지영;김철환;성용주;남혜경;박형훈;권솔;박동훈;주수연;임현택;이민석;김세빈
    • 펄프종이기술
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    • 제48권2호
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    • pp.34-45
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    • 2016
  • Global warming and climate change have been caused by combustion of fossil fuels. The greenhouse gases contributed to the rise of temperature between $0.6^{\circ}C$ and $0.9^{\circ}C$ over the past century. Presently, fossil fuels account for about 88% of the commercial energy sources used. In developing countries, fossil fuels are a very attractive energy source because they are available and relatively inexpensive. The environmental problems with fossil fuels have been aggravating stress from already existing factors including acid deposition, urban air pollution, and climate change. In order to control greenhouse gas emissions, particularly CO2, fossil fuels must be replaced by eco-friendly fuels such as biomass. The use of renewable energy sources is becoming increasingly necessary. The biomass resources are the most common form of renewable energy. The conversion of biomass into energy can be achieved in a number of ways. The most common form of converted biomass is pellet fuels as biofuels made from compressed organic matter or biomass. Pellets from lignocellulosic biomass has compared to conventional fuels with a relatively low bulk and energy density and a low degree of homogeneity. Thermal pretreatment technology like torrefaction is applied to improve fuel efficiency of lignocellulosic biomass, i.e., less moisture and oxygen in the product, preferrable grinding properties, storage properties, etc.. During torrefacton, lignocelluosic biomass such as palm kernell shell (PKS) and empty fruit bunch (EFB) was roasted under an oxygen-depleted enviroment at temperature between 200 and $300^{\circ}C$. Low degree of thermal treatment led to the removal of moisture and low molecular volatile matters with low O/C and H/C elemental ratios. The mechanical characteristics of torrefied biomass have also been altered to a brittle and partly hydrophobic materials. Unfortunately, it was much harder to form pellets from torrefied PKS and EFB due to thermal degradation of lignin as a natural binder during torrefaction compared to non-torrefied ones. For easy pelletization of biomass with torrefaction, pellets from PKS and EFB were manufactured before torrefaction, and thereafter they were torrefied at different temperature. Even after torrefaction of pellets from PKS and EFB, their appearance was well preserved with better fuel efficiency than non-torrefied ones. The physical properties of the torrefied pellets largely depended on the torrefaction condition such as reaction time and reaction temperature. Temperature over $250^{\circ}C$ during torrefaction gave a significant impact on the fuel properties of the pellets. In particular, torrefied EFB pellets displayed much faster development of the fuel properties than did torrefied PKS pellets. During torrefaction, extensive carbonization with the increase of fixed carbons, the behavior of thermal degradation of torrefied biomass became significantly different according to the increase of torrefaction temperature. In conclusion, pelletization of PKS and EFB before torrefaction made it much easier to proceed with torrefaction of pellets from PKS and EFB, leading to excellent eco-friendly fuels.

생물자원 폐기물을 활용한 친환경 가죽염색(II): 전처리에 의한 돈피의 양파껍질 색소에 대한 염색성 향상 (Eco-friendly Leather Dyeing Using Biomass Wastes(II) : Improving the Dyeability of Pig Leather to Onion Skin Colorant by Pre-treatment)

  • 여영미;신윤숙
    • 한국염색가공학회지
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    • 제30권4호
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    • pp.294-303
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    • 2018
  • In this study, eco-friendly natural dyeing for pig leather was explored by using onion skin which is food waste. Sodium caseinate was used as a pre-treatment agent to improve dyeability of pig leather and its effect on dye uptake was investigated according to treatment concentration. Dye uptake of the pre-treated pig leather was increased by about two times compared to untreated one at 0.2% pre-treatment concentration. Onion skin colorant imparted YR color on pig leather. After mordanting, the color of pretreated/dyed pig leather was varied from brick-red to khaki shades. However, mordanting did not improved dye uptake of the pre-treated/dyed pig leather significantly. The color-fastnesses of un-mordanted samples to light, dry cleaning, rubbing were grades 3-4, 5, and 4, respectively, which is good enough to meet all Korean Standard for Fastness of leather products. After mordanting, the light fastness of pig leather was improved to 4, 4-5 grade. The efficacy of sodium caseinate as a pre-treatment agent for pig leather was verified by improved dye uptake and good colorfastness. And, the natural dyeing of pig leather using food waste would be a significant sustainable way in terms of eco-friendliness and reuse of biomass to reduce environmental pollution.

해조류 바이오매스로부터 Lactic acid를 제조하는 방법에 관한 연구 (A Study on the Method of Manufacturing Lactic Acid from Seaweed Biomass)

  • 이학래;고의석;심원철;김종서;김재능
    • 한국포장학회지
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    • 제28권1호
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    • pp.1-8
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    • 2022
  • 최근 전 세계적으로 코로나바이러스감염증-19(COVID-19)의 확산됨에 따라 비대면 서비스가 성장하고 이와 동시에 플라스틱 폐기물 문제가 더욱 심화되고 있다. 동시에 탄소중립과 지속가능한 순환경제와 같은 친환경 정책이 전 세계적으로 추진되고 있고 친환경 제품에 대한 높은 수요로 인해 패키징 업계에서도 PLA, PBAT 등을 사용한 친환경 포장재 개발과 새로운 비즈니스 모델 창출을 시도하고 있다. 본 연구에서는 이러한 환경적 이슈에 우리나라 남해와 제주도 연안에서 매년 대량으로 발생하여 여러 형태의 문제를 야기하고 있는 구멍갈파래(Ulva australis)를 새로운 대체 에너지 원료로서 활용하고자 묽은 산 전처리, 효소 당화, 발효 공정을 거쳐 해조류 바이오매스 유래 Lactic acid를 생산하고자 하였다. 일반적으로 해조류는 종, 수확장소, 시기 등에 따라 탄수화물의 함량과 당의 구성이 다양하며, Cellulose, Alginate, Mannan, Xylan 등의 다당류로 구성되어 있고 리그닌 성분을 함유하고 있지 않아 곡물·목질계 자원보다 유용한 특징이 있다. 구멍갈파래를 구성하고 있는 복합 다당체는 한가지 공정만으로 높은 추출 수율을 기대하기 어려우나 본 연구에서 제시된 묽은 산 및 효소 당화의 융합 공정은 구멍갈파래가 함유하고 있는 대부분의 당 추출이 가능하기 때문에 상업화 규모의 생산 공정 구축 시 높은 Lactic acid 생산 수율을 기대할 수 있을 것으로 사료된다.

유동층 반응기를 이용한 바이오매스의 급속열분해 특성 연구 (A Study on the Fast Pyrolysis Characteristics of Biomass in a Fluidized Bed Reactor)

  • 유경선;엄민섭;박은광;김남찬
    • 한국자원리싸이클링학회:학술대회논문집
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    • 한국자원리싸이클링학회 2006년도 고분자리싸이클링 심포지엄
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    • pp.15-32
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    • 2006
  • Biomass had been attracted public attention as eco-friendly resource which not increases the greenhouse gas like carbon dioxide. In this study, it had been collected pyrolytic products such as bio-oil, char and pyrolytic gas from various biomass in a fluidized bed reactor which is one of the fast pyrolysis processes. To understand the characteristics of biomass pyrolysis, the variation of products yield and chemical composition was determined with various operating parameters like temperature, gas velocity($U_{0}/U_{mf}$) and bed height(L/D). In the optimum operating conditions, gas yield and water content was the lowest and concentration of guaiacols and syringols were the highest. The maximum yields of bio-oil was from 55% to 58% at $400^{\circ}C$.

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미이용 산림바이오매스 공급에 있어 수확벌채의 원목 혼입량 추정 (Estimation of the Amount of Round Wood in Unused Forest Biomass Reporting in Forest Clearing)

  • 양지윤;이재정;정한섭;한상훈;이수민
    • 신재생에너지
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    • 제18권4호
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    • pp.70-78
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    • 2022
  • To respond to global warming, there is an increasing interest in eco-friendly alternative energy sources. Therefore, unused forest biomass that has been neglected due to a lack of marketability is attracting attention. With the introduction of the "unused forest biomass certification system" in 2019, ways of determining quantity of unused forest biomass have steadily increased. However, there have been reported cases whereby unused forest biomass weighed more than the amount of harvested trees. It was found that it was possible that forest resources that can be used as round wood were mixed with unused forest biomass. In this context, this study aimed to estimate the amount of mixed round wood in the unused forest biomass supply. The relative expression of growing stock/ha versus the amount of final clearing/ha collected was modeled (y=1.490x-94.341, R2=0.861). As a result, it was found that round wood was mixed into the unused forest biomass, contributing to the disparity observed between the weighted forest biomass and the amount of trees harvested. In conclusion, proper declaration and certification procedures should be carried out for the use of forest resources and promoting unused forest biomass usage.

생물자원 폐기물을 활용한 친환경 가죽염색(III): 매리골드와 편백나무 잎 추출물의 복합염색에 의한 기능성 부여 (Eco-friendly Leather Dyeing Using Biomass Wastes(III): Imparting Functionality by Combination Dyeing with Marigold (Tagetes erecta L.) and Hinoki Cypress(Chamaecyparis obtusa) Leave Extracts)

  • 이건희;신윤숙
    • 한국염색가공학회지
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    • 제31권1호
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    • pp.1-13
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    • 2019
  • In this study, eco-friendly functional leather was developed by recycling wastes such as eel skin, marigold(Tagetas erecta l.), hinoki cypress(Chamaecyparis obtusa). The hot water extracts of marigold and hinoki cypress leaves were freeze-dried at $-80^{\circ}C$ to prepare colorant powder. The dyeing of eel leather with marigold was carried out to investigate the effects of dyeing conditions, mordanting on dye uptake, color, morphological change, and color fastness. Considering shrinkage of eel leather caused by dyeing, the optimum dyeing conditions were $60^{\circ}C$ of dyeing temperature and 60 min of dyeing time at 1:100 of bath ratio, and color of the dyed eel leather was Y to YR Munsell series. In order to prevent the degradation of leather from microbe, we conducted combination dyeing with marigold and hinoki cypress leave colorants. In this case, the combination dyed eel leathers showed excellent antimicrobial activity with above 99% bacterial reduction rate against S. aurieus and K. pneumoniae. It was confirmed that all of the dyed eel leathers were sufficient to meet the Korean Standard for color fastness of leather products. It can be applied practically for the development of eco-friendly functional leather by utilizing some useful active components extracted from plant resources and by recycling food wastes.