• 제목/요약/키워드: bio-adsorption

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Nature and Fate of Dioxin in Soil Environment

  • Park, Moon-Hyun;Kim, Hye-Jin;Lee, Min-Gi;Park, Sook-Hyun;Lee, Yoon-Chul;Chung, Doug-Young
    • 한국토양비료학회지
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    • 제44권4호
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    • pp.657-661
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    • 2011
  • The chlorinated dioxins and furans have attracted considerable scientific and public concern because of their environmental persistence and super-toxicity through the foodchain. Recent dioxin scandals in several military bases have also contributed to a higher awareness on the side of food consumers as well as foodwaste combustion. However, there is continuing uncertainty over the relative importance of different sources of dioxins and furans to the soil environment. In difference to those awareness there is a main influence of potential soil contamination on the dioxin contents in groundwater. It is, therefore, important to provide a sound scientific framework and basis by which to evaluate the significance of the presence of dioxin in soils. Consequently, we have to identify the characteristics and nature of dioxin released into the soil environment, especially in agricultural aspect.

Effect of Inherent Anatomy of Plant Fibers on the Morphology of Carbon Synthesized from Them and Their Hydrogen Absorption Capacity

  • Sharon, Madhuri;Sharon, Maheshwar
    • Carbon letters
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    • 제13권3호
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    • pp.161-166
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    • 2012
  • Carbon materials were synthesized by pyrolysis from fibers of Corn-straw (Zea mays), Rice-straw (Oryza sativa), Jute-straw (Corchorus capsularis) Bamboo (Bombax bambusa), Bagass (Saccharum officinarum), Cotton (Bombax malabaricum), and Coconut (Cocos nucifera); these materials were characterized by scanning electron microscope, X-ray diffraction (XRD), and Raman spectra. All carbon materials are micro sized with large pores or channel like morphology. The unique complex spongy, porous and channel like structure of Carbon shows a lot of similarity with the original anatomy of the plant fibers used as precursor. Waxy contents like tyloses and pits present on fiber tracheids that were seen in the inherent anatomy disappear after pyrolysis and only the carbon skeleton remained; XRD analysis shows that carbon shows the development of a (002) plane, with the exception of carbon obtained from bamboo, which shows a very crystalline character. Raman studies of all carbon materials showed the presence of G- and D-bands of almost equal intensities, suggesting the presence of graphitic carbon as well as a disordered graphitic structure. Carbon materials possessing lesser density, larger surface area, more graphitic with less of an $sp^3$ carbon contribution, and having pore sizes around $10{\mu}m$ favor hydrogen adsorption. Carbon materials synthesized from bagass meet these requirements most effectively, followed by cotton fiber, which was more effective than the carbon synthesized from the other plant fibers.

Adsorption Characteristics and Kinetic Models of Ammonium Nitrogen using Biochar from Rice Hull in Sandy Loam Soil

  • Choi, Yong-Su;Kim, Sung-Chul;Shin, Joung-Du
    • 한국토양비료학회지
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    • 제48권5호
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    • pp.413-420
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    • 2015
  • Objective of this study was to investigate adsorption characteristics and kinetic models of $NH_4-N$ to biochar produced from rice hull in respective to mitigation of greenhouse gases. $NH_4-N$ concentration was analyzed by UV Spectrophotometer. For the experiment, the soil texture used in this study was sandy loam soil, and application rates of chemical fertilizer and pig compost were $420-200-370kgha^{-1}$ (N-P-K) and $5,500kgha^{-1}$ as recommended amount after soil test for corn cultivation. Biochar treatments were 0.2-5% to soil weight. Its adsorption characteristic was investigated with application of Langmuir isotherm, and pseudo-first order kinetic model and pseudo-second order kinetic model were used as kinetic models. Adsorption amount and removal rates of $NH_4-N$ were $39.3mg^{-1}$ and 28.0% in 0.2% biochar treatment, respectively. The sorption of $NH_4-N$ to biochar was fitted well by Langmiur model because it was observed that dimensionless constant ($R_L$) was 0.48. The maximum adsorption amount ($q_m$) and binding strength constant (b) were calculated as $4.1mgg^{-1}$ and $0.01Lmg^{-1}$ in Langmuir isotherm, respectively. The pseudo-second order kinetic model was more appropriate than pseudo-first order kinetic model for high correlation coefficient ($r^2$) of pseudo-second order kinetic model. Therefore, biochar produced from rice hull could reduce $N_2O$ by adsorbing $NH_4-N$ to biochar cooperated in sandy loam soil.

소산파의 복굴절을 이용한 광 도파관 센서 (Optical waveguide sensors using optical birefringence of evanescent fields)

  • Son, K.S.;Lee, H.Y.;Kim, W.K.;Lee, S.S.;Park, S.S.;Kwon, S.W.;Lee, E.C.;Park, J.W.;Ju, H.
    • 한국광학회:학술대회논문집
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    • 한국광학회 2008년도 하계학술발표회 논문집
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    • pp.309-310
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    • 2008
  • Polymer optical waveguides are fabricated with high-index materials deposited to strengthen exciations of evanescent field whose birefringence is utilized for optical sensing. Optical sensing properties are examined as a function of time, using different types of analyte solutions to extract noise-free signal induced by evanescent field birefringence. It is observed that sensing signal can be free of initial noise that may obscure real signal recognition, when glycerol is used for sensing characterization, due to slow accumulation process following adsorption of analyte material onto the sensing surface of the waveguide.

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피혁산업 부산물에 의한 용존 중금속 제거 특성 (Characteristics of Heavy Metal Removal from Aqueous Solutions using Leather Industry by-products)

  • 김근한;이남희;백인규;박재형;양재규
    • 대한환경공학회지
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    • 제32권5호
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    • pp.417-426
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    • 2010
  • 본 연구에서는 가죽 생산 공정 중 원피 무게의 50% 이상 고형 폐기물로 발생하는 콜라겐 단백질의 섬유 기재에 미모사(Catechol Tannin) 및 채스트넛(Pyrogallol Tannin)과 같은 식물성 탄닌물질을 다양한 조건에서 고정화시킨 10 가지 다른 종류의 바이오 흡착제를 제조하였다. 제조한 각 바이오 흡착제들의 중금속 제거용 흡착제로서의 성능 평가를 위하여 Cu(II), Cd(II), Zn(II), Pb(II), Cr(III) 이온을 함유한 인공 오염수를 사용하여 다양한 반응 조건에서의 회분식 실험을 실시하였으며, 중금속들의 제거 특성을 규명하였다. 미모사를 탄닌물질로 사용하여 콜라겐에 고정화 반응을 시켰을 때 섬유 번들 내부로의 미모사의 침투력은 나프탈렌계 침투제의 주입량에 비례 하였다; 3% ${\geq}$ 1.5% > 0%. 모든 바이오 흡착제들에서 pH 3.0 이하에서는 중금속 이온들의 제거는 거의 일어나지 않았으나 pH 3.0 이상에서 중금속의 제거율이 급격히 발생하였으며 Zn(II)을 제외한 나머지 중금속이온들은 pH 6.0 이상에서는 거의 완전히 제거되었다. Cr(III)의 경우에는 바이오 흡착제 종류별 제거량이 매우 유사한 경향을 나타내었으나 Cu(II), Zn(II), Pb(II)의 제거에서는 축합형 탄닌(미모사)에 비해 이온결합이 가능한 다량의 카르복실기를 함유한 가수분해형 탄닌(채스트넛)을 사용하여 고정화시킨 바이오 흡착제에서 높은 제거능을 보였다. S10 바이오 흡착제에 대한 Pb(II) 및 Cu(II) 중금속 이온들의 흡착은 이온농도가 1,000배 변화거나 경쟁이온 화학종을 일하전 및 이하전 화학종을 사용하였을 때 영향을 받지 않았다.

왕겨펠렛 생물담체 개발 및 이를 이용한 bio scrubber형 악취제거 시스템 성능평가 (Developmemt of Rice Husk Pellets as Bio-filter Media of Bio Scrubber Odor Removal System)

  • 배지열;한상종;박기호;김광수
    • 한국대기환경학회지
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    • 제34권4호
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    • pp.554-566
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    • 2018
  • The rice husk contains nutrients which can be easily utilized by microorganisms, and also has a water retaining ability, which played a crucial part in enabling it to become a biofilter media. In this study, we evaluated the applicability of rice husk pellet bio-scrubber as a microbiological carrier. The pelletization experiment of rice husk as a biological media was performed using PVA and EVA binder. Also, the feasibility tests of rice husk as a biological media for odor removal were carried out in order to know whether rice-husk contains useful components as a media for microbiological growth or not. Lastly, a combined test for odor gas absorption and biological oxidation was conducted using a lab scale bio-filter set-up packed with rice-husk pellets as wet-scrubber. The major components of the rice husk were carbon, hydrogen, nitrogen, and oxygen, while carbon acted as the main ingredient which comprised up to 23.00%. The C : N : P ratio was calculated as 45 : 1 : 2. Oxygen uptake rate, yield and decay rate of the rice husk eluent was calculated to be $0.0049mgO_2/L/sec$, 0.24 mgSS/mgCOD and 0.004 respectively. The most stable form of rice husk pellets was produced when the weight of the rice husk, EVAc, PVAc, and distilled water was 10 : 2 : 0.2 : 10. The prepared rice husk pellets had an apparent density of 368 g/L and a porosity of 59.00% upon filling. Dry rice husks showed high adsorption capacity for ammonia gas but low adsorption capacity for hydrogen sulfide. The bio-filter odor removal column filled with rice husk pellets showed more than 99.50% removal efficiency for NH3 and H2S gas. Through the analysis of circulation water, the prime removal mechanism is assumed to be the dissolution by water, microbial nitrification, and sulfation. Finally, it was confirmed that the microorganisms could survive well on the rice husk pellets, which provided them a stable supply of nutrients for their activity in this long-term experiment. This adequate supply of nutrients from the rice husk enabled high removal efficiency by the microorganisms.

단백질 흡착성을 갖는 막 크로마토그래피용 재생 셀룰로오스 기반 음이온 교환 다공성 분리막의 제조 (Preparation of Protein Adsorptive Anion Exchange Membrane Based on Porous Regenerated Cellulose Support for Membrane Chromatography Application)

  • 서정현;이홍태;김태경;조영훈;오택근;박호식
    • 멤브레인
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    • 제32권5호
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    • pp.348-356
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    • 2022
  • 바이오산업의 발전으로 의약품, 식품 등의 생산 과정의 분리/정제 공정에 사용되어 왔던 기존의 컬럼 크로마토그래피를 대체하여 더 높은 처리효율을 갖는 막 크로마토그래피가 부상하고 있다. 본 연구에서는 서로 다른 기공 크기의 두 가지 상용 셀룰로오스 아세테이트(Cellulose acetate, CA) 분리막을 탈아세틸화 과정을 통해, 리간드의 개질이 용이한 다공성 재생 셀룰로오스 지지체를(Regenerated cellulose, RC) 제조하였다. 음이온 교환능을 부여하고자 grafting을 수행하였으며, 구체적으로는 UV 중합법을 통해 4차 암모늄을 포함하는 음이온 교환 리간드(MAPTAC)를 부착하여 음이온 교환용 흡착막을 제조하였다. 단백질 흡착 용량은 정적 흡착 용량(Static binding capacity, SBC)시험을 통해 총 단백질 흡착 용량을 측정했고, 동적 흡착 용량(Dynamic binding capacity, DBC)을 측정하여 상용막과 비교 평가하였다. 성능 평가 결과 단백질 흡착량은 넓은 표면적에 의해 리간드 밀도가 높은, 기공 크기가 작은 순서로 높게 측정되었고, 상용 CA분리막을 탈아세틸화하고 리간드를 부착시킨 분리막(RC 0.8 + MAPTAC 43.69 mg/ml, RC 3.0 + MAPTAC 36.33 mg/ml)이 상용 막 크로마토그래피 제품(28.38 mg/ml) 대비 높은 흡착 용량을 보였다.

원형철제빈용 벼 자동흡습장치 개발에 관한 연구(I) -벼의 흡습특성- (Development of Automatic Rewetting System for Rough Rice Stored in Round Steel Bin with Stirring Device -Adsorption characteristics of rough rice-)

  • 김재열;금동혁;김훈;박상현
    • Journal of Biosystems Engineering
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    • 제26권5호
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    • pp.469-474
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    • 2001
  • Milling the rice with low moisture requires more energy, produces more cracked rice, and results in reducing taste of cooked rice. Accordingly, it is necessary to add moisture to the rice with low moisture to obtain optimum moisture level for milling and taste of rice. This study was performed to evaluate the influence of initial moisture content and absorption rate on rice crack, milling energy and whiteness of milled rice and to obtain the information for design of rewetting system mounted on stirring device in grain bin. The tests were conducted for the four levels of initial moisture content in the range of 11.4 to 14.5%(w.b.) and six levels of absorption rate in the range of 0.04 to 1.0%, w.b./hr. In the case of lower moisture content below 12%(w.b.), crack ratios of brown rice were remarkably high regardless of initial moisture contents. Therefore, it was found that rough rice below 12%(w.b.) in initial moisture content could not rewetted by spraying water without crack generation of low level. Absorption rate must be below 0.3%, w.b./hr to maintain crack ratio increase of less than 1% regardless of initial moisture contents. In the case of allowable crack ratio increase of 2% and 5%, it was found that the maximum absorprion rate was respectively 0.6%, w.b./hr and 1.0%, w.b./hr in the initial moisture content of above 13.5%(w.b.). Rewetting the rough rice in moisture content of 11.4 to 14.5%(w.b.) to 14.3 to 16.9%(w.b.) decreased milling energy consumption by 15.9 to 22.3%. The effect of energy saving was higher in the samples of higher initial moisture content. Whiteness of milled rice was decreased by 0.5 to 1.5.

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Seasonal variation of assimilable organic carbon and its impact to the biostability of drinking water

  • Choi, Yonkyu;Park, Hyeon;Lee, Manho;Lee, Gun-Soo;Choi, Young-june
    • Environmental Engineering Research
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    • 제24권3호
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    • pp.501-512
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    • 2019
  • The seasonal effects on the biostability of drinking water were investigated by comparing the seasonal variation of assimilable organic carbon (AOC) in full-scale water treatment process and adsorption of AOC by three filling materials in lab-scale column test. In full-scale, pre-chlorination and ozonation significantly increase $AOC_{P17\;(Pseudomonas\;fluorescens\;P17)}$ and $AOC_{NOX\;(Aquaspirillum\;sp.\;NOX)}$, respectively. AOC formation by oxidation could increase with temperature, but the increased AOC could affect the biostability of the following processes more significantly in winter than in warm seasons due to the low biodegradation in the pipes and the processes at low temperature. $AOC_{P17}$ was mainly removed by coagulation-sedimentation process, especially in cold season. Rapid filtration could effectively remove AOC only during warm seasons by primarily biodegradation, but biological activated carbon filtration could remove AOC in all seasons by biodegradation during warm season and by adsorption and bio-regeneration during cold season. The adsorption by granular activated carbon and anthracite showed inverse relationship with water temperature. The advanced treatment can contribute to enhance the biostability in the distribution system by reducing AOC formation potential and helping to maintain stable residual chlorine after post-chlorination.

페로니켈슬래그와 제강급랭슬래그의 인 흡착특성 (Phosphorus Adsorption Characteristic of Ferronickel and Rapid Cooling Slags)

  • 박종환;서동철;김성헌;박민규;강병화;이상원;이성태;최익원;조주식;허종수
    • 한국환경농학회지
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    • 제33권3호
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    • pp.169-177
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    • 2014
  • 본 연구는 철강산업에서 배출되는 산업폐기물의 일종인 페로니켈슬래그와 제강급랭슬래그의 인공습지나 여과시스템에서 인을 효과적으로 흡착 처리하기 위해 페로니켈슬래그와 제강급랭슬래그를 입경별(유효입경: 0.5 mm, 2.5 mm)로 구분하여 Freundlich 및 Langmuir 등온흡착실험을 통해 인에 대한 흡착특성을 조사하였다. Freundlich 등온흡착식에 의한 페로니켈슬래그(FNS)와 제강급랭슬래그(RCS)의 인 흡착능(K)은 RCS 0.5(0.5105) > RCS 2.5(0.3571) > FNS 2.5(0.0545) ${\fallingdotseq}$ FNS 0.5(0.0400) 순이었으며, 본 실험에 사용된 모든 슬래그의 흡착강도(1/n) 값이 0.19954-0.3657범위로 1보다 작으므로 모두 L형의 등온흡착식으로 판단 할 수 있었다. Langmuir 등온흡착식에 의한 인의 최대흡착능(a)은 FNS 0.5, FNS 2.5, RCS 0.5, RCS 2.5가 각각 320, 187, 3,582 및 2,983 mg/kg이었다. 슬래그의 실제 흡착량과 Freundlich와 Langmuir 등온흡착 일반식을 적용한 결과 실제 인의 흡착량은 전반적으로 Langmuir 등온흡착식이 Freundlich 등온흡착식에 비해서 잘 일치하였다. 이상의 결과를 미루어 볼 때, Freundlich와 Langmuir 등온흡착식을 이용한 슬래그의 인 흡착능력은 제강급랭슬래그(RCS)가 페로니켈슬래그(FNS)보다 높았으며, 고로급랭슬래그는 인공습지나 여과시스템에서 인 흡착을 위한 여재로 적용이 가능할 것으로 판단된다.