• 제목/요약/키워드: non-biodegradable

검색결과 214건 처리시간 0.029초

제지공정 섬유상 원재료 및 공정 첨가제의 환경오염 부하 분석 (The Analysis of Environmental Impact Load by Fibrous Raw Materials and Wet-end Additives in Papermaking Process)

  • 김형진;신동욱
    • 펄프종이기술
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    • 제37권3호
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    • pp.50-58
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    • 2005
  • It is generally known that paper industry is the second largest industry in the use of process water, and also have the highest environmental impact load in the contaminant sources. Paper is produced from the mixtures composed of 1% fibrous raw materials and 99% water. The optimum use of process water effects on the quality properties of paper and the environmental impact load of waste water treatment. In this research, the kinds of fibrous raw material & additives used in the paperboard production line were investigated, and the quantification of environmental loads and the environmental effects of process water on COD potential were evaluated. The NBDCODs were also analyzed from process water by the method of waste water treatment in paper mill and applied for the optimum use of recycling water, and zero effluent process. In the fibrous raw materials, KOCC caused the highest COD potentials, and sack paper & UKP was comparatively low. The NBDCOD of KOCC largely reduced after biological treatment because of easily biodegradable properties, but AOCC contained non-biodegradable materials. In chemical additives, COD was high in turns of rosin>starch>deaeration agent>dye, NBDCOD greatly reduced in starch and deaeration agent. In the case of 2 kinds of paperboard product, the COD potentials was mainly high in starch, AOCC and KOCC.

홍조류 섬유를 보강재로 사용한 바이오복합재료의 특성 (Use and advantage of Red algae fiber as reinforcement of Biocomposite)

  • 이민우;서영범;한성옥
    • 한국펄프종이공학회:학술대회논문집
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    • 한국펄프종이공학회 2007년도 추계학술발표논문집
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    • pp.93-102
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    • 2007
  • Biocomposite was organized with biodegradable polymer and natural fiber that has potential to be used as replacement for glass fiber reinforced polymer composite with the benefits of low cost, low density, acceptable specific strength, biodegradability, etc. Until now, non-wood fibers have been used as reinforcements of biocomposite which are all plant-based fibers. The present study focused on investigating the fabrication and characterization of biocomposite reinforced with red algae fiber. The bleached red algae fiber(BRAF) showed very similar crystallinity to the cellulose. It has high stability against thermal degradation (maximum thermal decomposition temperature of 359.3$^{\circ}C$) and thermal expansion. Biocomposites reinforced with BRAF have been fabricated by a compression molding method and their mechanical and thermal properties have been studied. The storage modulus and the thermomechanical stability of PBS matrix are markedly improved with reinforcing the BRAF. These results support that the red algae fiber can be used as an excellent reinforcement of biocomposites as "green-composite" or "eco-composite".

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생체의료용 기능성 고분자 재료의 개발 (Functional Polymeric Materials for Biomedical Application)

  • 성용길;송대경;성정석
    • 폴리머
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    • 제30권1호
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    • pp.1-9
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    • 2006
  • 생체의료용 기능성 고분자재료의 개발에 관한 연구를 고분자의 기능성, 생체적합성 및 생분해성을 토대로 다루었다. 본 연구실에서 합성한 기능성 생분해 고분자들을 비롯하여 생분해성 고분자 생체재료, 온도 감응성 고분자재료, 양이온성 고분자재료, 비축합성 고분자 생체재료, 조직공학을 위한 생체고분자 DNA 매트릭스 및 RNAi 기법을 위한 고분자 등의 기능성 고분자 생체재료에 관련된 연구들을 정리하고, 가까운 장래에 의료용으로 이용될 수 있는 기능성 생체고분자에 대한 연구들을 제안하였다.

방사선 처리에 의한 폴리비닐 알콜의 생분해도 개선 (Improvement of the Biodegradability of Polyvinyl Alcohol by Radiation Treatment)

  • 정진호;박남용;조훈제;이선미;김정규
    • 한국물환경학회지
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    • 제20권3호
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    • pp.241-244
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    • 2004
  • Radiation treatment with gamma-rays and electron-beams was used to remove polyvinyl alcohol(PVA), one of the main components of dyeing wastewater. PVA was effectively decomposed by radiation treatment, thus the removal was near 100 % at an initial PVA concentration of 44 mg/L. However, total organic carbon(TOC) removal was less than 5 % due to lower transformation of PVA to $CO_2$. This directly indicates the radiation treatment alone is not appropriate for the complete decomposition of PVA. In this sense, the improvement of biodegradability($BOD_5/COD$) of PVA by radiation treatment was studied. Both gamma-ray and electron-beam treatments significantly increased the biodegradability of PVA by transforming non-biodegradable PVA to biodegradable by-products. This suggests radiation treatment, especially electron-beam treatment that showed better improvement of biodegradability, can be used as a pre-treatment of biological degradation process of PVA.

Effect of Grafted Biobased Acrylics on the Mechanical Properties of Polylactic Acid (PLA)/Starch Eco-Friendly Composite

  • Marcela, Godoy;Jonghwan, Suhr
    • Composites Research
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    • 제35권6호
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    • pp.419-424
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    • 2022
  • Using non-biodegradable polymers is a severe environmental problem as they are not recyclable and generate a large amount of waste. Biopolymers, such as starch-based composites, have been considered one of the most promising replacement materials. These eco-friendly materials have the advantage of being low-cost, biodegradable, and obtained from renewable sources. However, as starch tends to be brittle and hydrophilic, it can make these materials unusable when exposed to water and limit its processability for further applications. In this work, a biobased modified starch was grafted using two bioderived materials, lauryl methacrylate (LMA) and tetrahydrofurfuryl methacrylate (THFMA), by radical polymerization. A polylactic acid (PLA) composite based on the modified starch (m-St) was fabricated to enhance its toughness. These samples were characterized by Fourier transform infrared, 1H NMR and 13C NMR analysis, optical and scanning electron microscopy. The starch was successfully grafted, thus improving the compatibility with the PLA matrix. The mechanical properties of these films were also studied. Results from mechanical tests showed a slight enhancement of the mechanical performance of these composites when m-St was added to the PLA matrix. Such behavior is related to the improved dispersion of m-St 1:2 on PLA, confirmed by SEM images showing enhanced compatibility between modified starch and PLA matrix. This indicated excellent properties of the produced composite film for further eco-friendly applications.

코이어블록(Coir-Blocks)을 이용한 절토사면의 경관개선 및 비점오염원 관리에 관한 연구 (A Study on Landscape Improvement of Cut-Slopes and Management of Non-Point Pollution Using Coir-Blocks)

  • 이관준;박율진
    • 한국환경복원기술학회지
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    • 제18권5호
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    • pp.27-36
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    • 2015
  • This study was conducted to grasp the effect of afforestation of cut slope using coir blocks on the improvement of scenery and the management of non point pollution source. Total four experimental tanks such as general soil slope, coir blocks, installation slope, slope refilling the inside of coir blocks slope with pebble, slope refilling the inside of coir blocks with soil and plant were installed, pollution source water was supplied and the possibility of reduction management of non point pollution source was analyzed at four items of COD, SS, T-N, T-P and main results drawn from this study are as follows. In conclusion, biodegradable materials like coir blocks and soil and plant layers are judged to be helpful in reduction management of non point pollution source inflowing to water space from land area. Thus, the reduction of non point pollution source occurring at land area is thought to be fully controlled at the cut slope, the space prior to inflowing to water ecological space like a stream or a swamp area.

순환식 유전체 장벽 플라즈마 반응기를 이용한 수중 페놀 처리 (Degradation of Phenol in Water Using Circulation Dielectric Barrier Plasma Reactors)

  • 김동석;박영식
    • 한국환경보건학회지
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    • 제38권3호
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    • pp.251-260
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    • 2012
  • Objectives: The purpose of this study was evaluating the applicability of the circulation dielectric barrier plasma process (DBD) for efficiently treating non-biodegradable wastewater, such as phenol. Methods: The DBD plasma reactor system in this study consisted of a plasma reactor (discharge, ground electrode and quartz dielectric tube, external tube), high voltage source, air supply and reservoir. Effects of the operating parameters on the degradation of phenol and $UV_{254}$ absorbance such as first voltage (60-180 V), oxygen supply rate (0.5-3 l/min), liquid circulation rate (1.5-7 l/min), pH (3.02-11.06) and initial phenol concentration (12.5-100 mg/l) were investigated. Results: Experimental results showed that optimum first voltage, oxygen supply rate, and liquid circulation rate on phenol degradation were 160 V, 1 l/min, and 4.5 l/min, respectively. The removal efficiency of phenol increased with the increase in the initial pH of the phenol solution. To obtain a removal efficiency of phenol and COD of phenol of over 97% (initial phenol concentration, 50.0 mg/l), 15 min and 180 minutes was needed, respectively. Conclusions: It was considered that the absorbance of $UV_{254}$ for phenol degradation can be used as an indirect indicator of change in non-biodegradable organic compounds. Mineralization of the phenol solution may take a relatively longer time than that required for phenol degradation.

고도산화기술 공정을 이용한 페놀 제거 특성 연구 (The Study on the Phenol Removal Characteristics by using AOP Processes)

  • 김성준;곽규동;원찬희
    • 한국물환경학회지
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    • 제26권2호
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    • pp.303-310
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    • 2010
  • Recently distinguished AOP means technology resolving organic compounds in water to harmless compounds such as $CO_2$ and $H_2O$ by creating OH radical ($OH{\cdot}$) with more powerful oxidation than general oxidants. It has merits which the 2nd pollution is not caused since it uses solar energy, sludge doesn't take place, it can be applied to high-density waste water and it oxidizes non-biodegradable organic compounds more easily. The purpose of the study was to examine about removable characteristics of phenol which was a non-biodegradable organic matter with UV/$O_3$/Catalyst processes which is one out of AOP and to present applicability of photocatalyst and the optimum conditions of treatment. The study regarded initial phenol concentration, initial pH, photocatalyst amount and flow as its conditions. As the results, the test had the highest removable efficiency (92%) when initial phenol concentration was 100 mg/L, initial pH 7, photocatalyst amount 6L and flow 1.5 mg/min. The removable efficiency was increased as much as initial phenol concentration was increased, when initial pH was 7 (neutrality), photocatalyst amount was increased and flow was increased. It was checked that the optimum HRT was 12 hours. Therefore, phenol is enough removable with UV/$O_3$/Catalyst process and its prospect in the future is expected.

생물학적으로 처리한 주정폐액의 효율적인 화학적 처리방법 (Effective Chemical Treatment of Biologically Treated Distillery Wastewater in Industrial Scale)

  • 남기두;정인;허다니엘;박완
    • 생명과학회지
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    • 제9권6호
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    • pp.692-697
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    • 1999
  • 주정폐액과 같은 고 농도의 유기성 폐액의 효율적 처리에는 혐기적, 호기적인 생물학적인 처리와, 생물학적으로 난분해성 물질의 화학적 처리가 요구되었다. 난분해성 COD성분을 제거하기 위하여 Fenton처리 전에 가능한 많은 유기물의 제거가 요구되며, 이때 $FeCl_3$,alum,cationic polymer의 처리가 효과적이었다. 이 처리과정 중은 몰론 Fenton 처리과정 중에 생성되는 슬러지의 제거 효율에 따라 전체 폐수처리효율리 크게 영향을 받게되 슬러지의 효과적인 제거과정이 필요하였다, 이를 위해 기포의 직경이 80-120 um 정도되는 기존의 DAF방식에 비해 새로 도입한 PBF법에 의해 생성되는 직경 20-50um 의 미세포기는 슬러지의 부상을 촉진시켜 화학적 슬러지의 제거 효율이 훨씬 뛰어남을 알 수 있었다. 이에 따라 PBF법에 의한 슬러지의 제거는 기존의 DAF법에 비해 약품 사용량, 용수의 절감, 방류량의 감소 등으로 전체 운전비용을 약 30%정도 줄일 수 있었다.

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광촉매공정 적용시 축산폐수의 처리특성 및 최적화 (Optimization and Characteristics of Removal Condition of Livestock Wastewater Using a Photocatalytic Process)

  • 박재홍
    • 청정기술
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    • 제13권3호
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    • pp.222-227
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    • 2007
  • 축산폐수처리에 광촉매공정을 적용하였을 때 운전변수 중 자외선 조사거리, 반응면적, 부유고형물(SS)농도, 컬럼직경이 처리율에 미치는 영향을 실험실 규모의 광촉매반응기를 사용하여 실험하였다. 최적운전조건은 자외선 조사거리 3 cm (7 cm 이하 권장), 반응면적 $3.6\;m^2$, SS농도 40 mg/L (300 mg/L이하 권장), 컬럼직경 5 mm (10 mm 이하 권장)로서 COD, 색도, coliform 제거율이 반응시간 300 min에서 각각 49%, 53% 100%로 나타났다. 최적운전조건에서 난분해성 COD의 제거율은 57%로 나타나 광촉매반응이 난분해성 유기물제거에 어느 정도 효과가 있는 것으로 나타났다.

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