• 제목/요약/키워드: Thermal-alkaline pretreatment

검색결과 5건 처리시간 0.022초

열-알칼리성 전처리에 따른 폴리하이드록시부티레이트의 혐기성 소화 개선 효과 조사 (Improving Anaerobic Digestion of Polyhydroxybutyrate by Thermal-Alkaline Pretreatment)

  • ;이준엽
    • 한국환경과학회지
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    • 제31권7호
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    • pp.609-616
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    • 2022
  • In this study, the effect of different reaction times for thermal-alkaline pretreatment on the solubilization and biogasification of polyhydroxybutyrate (PHB) were evaluated. Thermal-alkaline pretreatment tests were performed at 73 ℃ and pH 13 at 0-120 h reaction times. The mesophilic anaerobic batch tests were performed with untreated and pretreated PHB samples. The increase in the pretreatment reaction time results in a 52.8-98.8% increase of the abiotic solubilization efficiency of the PHB samples. The reaction time required to achieve solubilization efficiencies of 50%, 90%, and 95% were 10.5, 52.0, and 89.6 h, respectively. The biogasification of the untreated PHB samples achieved a specific methane production rate of 3.6 mL CH4/g VSS/d and require 101.3 d for complete biogasification. The thermal-alkaline pretreatment significantly improved specific methane production rate (10.2-16.0 time increase), lag time (shortened by 76-81%), and time for complete biogasification (shortened by 21-83%) for the biogasification of the PHB samples when compared to those of the untreated PHB samples. The improvement was higher as the reaction time of the thermal-alkaline pretreatment increased. The findings of this study could be used as a valuable reference for the optimization of the biogasification process in the treatment of PHB wastes.

Box-Behnken 및 반응표면 분석법을 이용한 음식물류 폐수 부상 스컴의 혐기성 소화를 위한 열-알칼리 전처리 최적화 (Optimization of Thermal-alkaline Pre-treatment for Anaerobic Digestion of Flotation Scum in Food Waste Leachate Using Box-Behnken Design and Response Surface Methodology)

  • 이동영;최재민;김정광;한선기;이채영
    • 상하수도학회지
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    • 제29권2호
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    • pp.183-192
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    • 2015
  • Response surface methodology (RSM) based on a Box-Behnken Design (BBD) was applied to optimize the thermal-alkaline pre-treatment operating conditions for anaerobic digestion of flotation scum in food waste leachate. Three independent variables such as thermal temperature, NaOH concentration and reaction time were evaluated. The maximum methane production of 369.2 mL $CH_4/g$ VS was estimated under the optimum conditions at $62.0^{\circ}C$, 10.1% NaOH and 35.4 min reaction time. A confirmation test of the predicted optimum conditions verified the validity of the BBD with RSM. The analysis of variance indicated that methane production was more sensitive to both NaOH concentration and thermal temperature than reaction time. Thermal-alkaline pretreatment enhanced the improvement of 40% in methane production compared to the control experiment due to the effective hydrolysis and/or solubilization of organic matters. The fractions with molecular weight cut-off of scum in food waste leachate were conducted before and after pre-treatment to estimate the behaviors of organic matters. The experiment results found that thermal-alkaline pre-treatment could reduce the organic matters more than 10kD with increase the organic matters less than 1kD.

벤질화에 의한 목재의 열가소화 (Thermoplasticization of Wood by Benzylation)

  • 한규성;김은경
    • Journal of the Korean Wood Science and Technology
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    • 제22권3호
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    • pp.32-38
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    • 1994
  • The methods in wood processing are so limited at present that a scope of its utilization is restricted. This often makes wood itself less valuable as a material comparing with other materials, that is, plastics, metals, and glass. Such differences are due to a lack of plasticity in wood, i.e. it cannot be melted, dissolved, or softened sufficiently for molding. However, once plastic properties are added to wood, it becomes more useful material. This further broadens the method in wood processing to a variety of fields. In this way, wooden material which is limited in use can be modified into a high quality product with additional value. Furthermore, utilization of wastes from wood, for example, would be made viable. In this study, thermoplasticization was carried out by benzylation of wood(sawdust). Various factors those affect the reaction were tested to produce benzylated wood with different degrees of substitution. Reaction temperature and time were the quite important factors. Optimum reaction temperature was 110$^{\circ}C$, and weight percent gains(WPG) of final products increased gradually with the increase of reaction time. The pretreatment (or preswelling) of wood with alkaline solution had a critical effect on benzylation. and the concentration of alkaline solution should be above 30% to obtain high weight percent gain. The thermal flow temperature of the benzylated wood decreased with the increase in weight percent gain, that of 80% weight percent gain is about 200$^{\circ}C$.

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열-알칼리 전처리를 통한 음식물류 폐수 부상 스컴의 가용화 (Disintegration of Flotation Scum in Food Wastewater Using Thermo-Alkaline Pretreatment)

  • 최재민;이채영
    • 한국수소및신에너지학회논문집
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    • 제26권1호
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    • pp.71-78
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    • 2015
  • This study was performed to optimize the integrated thermal-alkali pre-treatment of flotation scum for the enhanced biodegradability. The optimum conditions of the integrated thermal-alkali pre-treatment were obtained using response surface methodology. The disintegration degree of carbohydrate (69.2%) and protein (57.3) were estimated under the optimum conditions. Although the optimum conditions were different, the disintegration degrees were similarly. A fermentative hydrogen batch test was conducted to evaluate the hydrogen production from scum with and/or without. The maximum hydrogen production from scum with pre-treatment was of 0.64 mol H2/mol hexoseadded, which about 1.4 times higher than without pre-treatment.

하수슬러지의 혐기적 소화효율 향상을 위한 전처리 효과 (The Effect of Pre-treatment on the Anaerobic Digestion of waste Activated Sludge)

  • 강창민;김봉근;김인수;김병태
    • 유기물자원화
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    • 제9권1호
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    • pp.90-98
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    • 2001
  • 혐기성소화공정에서 슬러지의 용해가 전체 반응속도를 제한하고 있다. 용해율 향상을 위해 산(pH1.5, 3, 4, 5) 및 알칼리처리(pH9, 10, 13), 열처리(50, 100, 150, $200^{\circ}C$) 및 초음파처리(400W, 20kHz, 15, 20, 25, 30. 35, 40, 50, 60min)가 각 조건에서 실시되어 아래의 결과를 얻었다. 용해효과는 SCOD기준으로 무처리에 비해 산처리는 효과가 매우 낮았고, 알칼리처리는 pH13에서 986%, 열처리는 $200^{\circ}C$에서 959%, 초음파처리는 처리시간 35분에서 온도고정의 경우 802%, 온도 무고정의 경우 1123%의 높은 효과를 나타내어, 초음파처리가 가장 효과적이었다. VS/SS비율은 전처리에 따른 용해율과 정의 상관성을 가져, 용해율 효과의 지표로써 이용 가능했다. 총가스발생량은 열처리 $200^{\circ}C$가 무처리에 비해 1.8배, 열처리 $150^{\circ}C$가 1.4배, pH9의 알칼리처리가 1.2배, 온도 무고정 초음파 90분처리가 1.3배의 가스증산 효과를 나타내어, 열처리의 경우가 가장 효과적이었다. 또한 초음파처리의 경우, 온도고정보다 무고정의 경우가 저온 열처리의 동시효과가 있어 보다 효과적이었다.

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