• 제목/요약/키워드: Organic degradation

검색결과 923건 처리시간 0.022초

가속내구성 조건에 따른 건축용 유기계 단열재의 단열성능 변화 (Changes in Insulation Performance of Organic Insulating Materials for Building Construction by Accelerated Durability Test Conditions)

  • 임순현;이건철
    • 한국건축시공학회지
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    • 제16권6호
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    • pp.595-601
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    • 2016
  • 현재 건축구조물에 사용되는 단열재의 단열성능은 초기성능을 기준으로 설계 시에만 반영하고 있으며, 장기 내구성 저하에 따른 단열성능 감소는 반영되고 있지 않다. 본 연구에서는 가속내구성 시험을 통해 단열재의 내구성 저하에 따른 단열성능 저하를 검토하였다. 연구결과, 발포폴리스티렌 단열재 비드법의 경우 표준환경 조건 및 실험실 가속 시험 조건에서는 경시변화에 따른 성능저하가 나타나지 않았으나, 동결 융해 시험 조건에는 성능이 저하하는 것으로 나타났다. 반면, 압출법의 경우 동결 융해 시험 조건에서는 단열성능 저하가 작았지만, 경시변화 초기에 내부 가스의 방출로 급격한 성능저하를 나타내었다. 또한, 경질 폴리우레탄 폼 단열재의 경우 다른 단열재에 비해 초기 단열성능이 매우 뛰어났으나, 실험실 가속 시험조건 및 동결 융해 시험 조건에서는 성능이 다소 저하하는 것으로 나타났다.

수처리용 유전체 장벽 방전 플라즈마 반응기 개발 (Development of Plasma Reactor of Dielectric Barrier Discharge for Water Treatment)

  • 김동석;박영식
    • 한국환경과학회지
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    • 제21권5호
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    • pp.597-603
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    • 2012
  • Non-thermal plasma processing using a dielectric barrier discharge (DBD) has been investigated as an alternative method for the degradation of non-biodegradable organic compounds in wastewater. The active species such as OH radical, produced by the electrical discharge may play an important role in degrading organic compound in water. The degradation of N, N-Dimethyl-4-nitrosoaniline (RNO) was investigated as an indicator of the generation of OH radical. The DBD plasma reactor of this study consisted of a plasma reactor, recycling pump, power supply and reservoir. The effect of diameter of external reactor (15 ~ 40 mm), width of ground electrode (2.5 ~ 30 cm), shape (pipe, spring) and material (copper, stainless steel and titanium) of ground electrode, water circulation rate (3.1 ~ 54.8 cm/s), air flow rate (0.5 ~ 3.0 L/min) and ratio of packing material (0 ~ 100 %) were evaluated. The experimental results showed that shape and materials of ground were not influenced the RNO degradation. Optimum diameter of external reactor, water circulation rate and air flow rate for RNO degradation were 30 mm, 25.4 cm/s and 4 L/min, respectively. Ground electrode length to get the maximum RNO degradation was 30 cm, which was same as reactor length. Filling up of glass beads decreased the RNO degradation. Among the experimented parameters, air flow rate was most important parameters which are influenced the decomposition of RNO.

담수토양(湛水土壤)중 BPMC 및 Carbofuran의 분해특성(分解特性) (Degradation Patterns of BPMC and Carbofuran in Flooded Soils)

  • 박창규;제연태
    • 한국환경농학회지
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    • 제2권2호
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    • pp.65-72
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    • 1983
  • 담수토양(湛水土壤)에서 carbamate 계살충제(系殺蟲劑) BPMC 및 carbofuran의 분해(分解)에 미치는 몇가지 토양(土壤), 농약(農藥) 및 환경인자(環境因子)들의 영향(影響)을 조사(調査)하여 다음과 같은 결과(結果)를 얻었다. 1) BPMC와 carbofuran은 담수(湛水) 또는 비담수처리(非湛水處理)로 분해(分解)에 큰 영향(影響)이 없었다. 다만 시험토양(試驗土壤)에서 carbofuran에 비(比)해 BPMC는 현저(顯著)하게 분해(分解)가 빨랐다. 2) 시험토양(試驗土壤)에서 BPMC와 carbofuran의 분해(分解)는 pH에 의존(依存)하며 pH가 클수록 분해(分解)가 촉진(促進)되었으며, pH 효과(效果)는 BPMC보다 carbofuran 에서 명백(明白)히 나타났다. 3) BPMC와 carbofuran은 모두 토양(土壤)의 유기물함량(有機物含量)이 높을수록 분해(分解)가 지연되었다. 4) BPMC와 carbofuran은 고온(高溫), 고처리농도(高處理濃度)에서 분해(分解)가 빨랐다. 5) 토양살균(土壤殺菌)은 양(兩) carbamate 살충제의 분해(分解)를 현저하게 감소시켰다. 6) 담수토양(湛水土壤)에서 BPMC 및 carbofuran은 화학적분해(化學的分解)와 토양미생물(土壤微生物)에 의(依)한 생물학적(生物學的) 분해(分解)가 병행(倂行)되는 것으로 해석되었다.

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토양중 [$^{14}C$Carbofuran의 분해 및 비추출성 잔류분의 특성 (Degradation of [$^{14}C$]Carbofuran in Soils and Characterization of its Nonextractable Residues)

  • 박창규;이영득
    • Applied Biological Chemistry
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    • 제38권3호
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    • pp.263-268
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    • 1995
  • 침투성 살충제의 일종인 carbofuran을 대상으로 수분조건을 달리한 논과 밭상태의 토양중 분해경로상 차이점과 비추출성 잔류분의 특성을 비교, 검토하였다. 침수 및 습윤상태로 수분조건을 조절한 토양에 [$3-^{14}C$]Carbofuran을 정상적 포장살포약량인 1.0mg/kg (87.8kBq/50g 토양)수준으로 처리하고 경시적으로 특성별 방사능과 분해산물의 분포를 조사하였다. 토양중 carbofuran의 초기분해경로는 수분조건에 따라 차이를 보여 침수상태에서는 가수분해가 우세하였던 반면 습윤상태에서는 산화가 주된 초기분해반응으로 나타났다. 또한 분해속도에 있어서도 토양중 반감기가 각각 34일 및 50일로 수분조건에 따라 차이를 보였다. 토양중에 처리한 carbofuran 및 분해산물중 상당량이 비추출성으로 전환, 처리 60일후 $24{\sim}39%$에 달하였으며 주로 토양유기물에 분포하였다. 비추출성 방사능의 토양유기물중 분포를 조사한 결과 처리후 시간이 경과함에 따라 carbofuran 및 그 분해산물들은 fulvic acid, humic acid 및 humin분획에 혼입되었으며 겔여과크로마토그래피에 의하여 분자량 $10^4$ 이상의 혼입고분자화합물이 존재함을 밝혔다.

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Survival and Performance of Two Cellulose-Degrading Microbial Systems Inoculated into Wheat Straw-Amended Soil

  • Li, Peipei;Zhang, Dongdong;Wang, Xiaojuan;Wang, Xiaofen;Cui, Zongjun
    • Journal of Microbiology and Biotechnology
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    • 제22권1호
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    • pp.126-132
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    • 2012
  • A cellulose-degrading composite microbial system containing a mixture of microbes was previously shown to demonstrate a high straw-degrading capacity. To estimate its potential utilization as an inoculant to accelerate straw biodegradation after returning straw to the field, two cellulose-degrading composite microbial systems named ADS3 and WSD5 were inoculated into wheat straw-amended soil in the laboratory. The microbial survival of the inoculant was confirmed by a denaturing gradient gel electrophoresis (DGGE) analysis, whereas the enhancement of straw degradation in soil was assessed by measuring the mineralization of the soil organic matter and the soil cellulase activity. The results indicated that most of the DGGE bands from ADS3 were detected after inoculation into straw-amended autoclaved soil, yet only certain bands from ADS3 and WSD5 were detected after inoculation into straw-amended non-autoclaved soil during five weeks of incubation; some bands were detected during the first two weeks after inoculation, and then disappeared in later stages. Organic matter mineralization was significantly higher in the soil inoculants ADS3 and WSD5 than in the uninoculated controls during the first week, yet the enhanced degradation did not persist during the subsequent incubation. Similar to the increase in soil organic matter, the cellulase activity also increased during the first week in the ADS3 and WSD5 treatments, yet decreased during the remainder of the incubation period. Thus, it was concluded that, although the survival and performance of the two inoculants did not persist in the soil, a significant enhancement of degradation was present during the early stage of incubation.

Assessment of organic matter biodegradation and physico-chemical parameters variation during co-composting of lignocellulosic wastes with Trametes trogii inoculation

  • Fersi, Mariem;Mbarki, Khadija;Gargouri, Kamel;Mechichi, Tahar;Hachicha, Ridha
    • Environmental Engineering Research
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    • 제24권4호
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    • pp.670-679
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    • 2019
  • Lignin complexity molecule makes its biodegradation difficult during lignocellulosic wastes composting. So, the improvement of its biodegradation has usually been considered as an objective. This study aimed to determine the impact of Trametes trogii inoculation on organic matter and particularly on lignin and cellulose during green wastes co-composting with olive mill waste water sludge and coffee grounds. Three types of heaps (H1, H2 and H3) were investigated during 180 d. H3 and H2 were inoculated at the beginning of the process (t0) and 120 d later (t120), respectively while H1 was the control. Results showed the absence of pH stabilization in H3 during the first month. Also, in this period we observed a faster degradation of some easily available organic matter in H3 than in the other heaps. After 120 d, a better cellulose decomposition (25.28%) was noticed in H3 than in H1 and H2 (16%). Inoculation during the second fermentation phase induced supplementary lignin degradation in H2 with a percentage of 35% against 23 and 26% for H1 and H3, respectively. For all the runs, a Fourier Transform Infrared analysis showed aliphatic groups' decrease, OH groups' increase and lignin structural modification.

The Characteristics of Organic Degradation and Ammonia Volatilization in the Liquid Composting of Pig Slurry

  • Kim, Chang-Gyu;Oh, Seung-Yong;Yoon, Young-Man
    • 한국토양비료학회지
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    • 제50권5호
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    • pp.325-335
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    • 2017
  • This study was carried out for 30 days in aeration type and agitation type reactor to characterize organic matter decomposition and ammonia volatilization during the liquid composting of pig slurry, and organic matter and nitrogen removal rate through mass balance analysis was analyzed. In the aeration type reactor, the pH increased from 7.0 to 9.13, and TS 34.5%, VS 33.4%, $BOD_5$ 71.2%, $COD_{Cr}$ 62.3% and TOC 83.2% were removed. In addition, 44.6% of TN and 65.0% of ${NH_4}^+-N$ were removed. In the agitation type reactor, the pH increased from 7.0 to 8.10, and the removal rates of TS 0.9%, VS 0.5%, $COD_{Cr}$ 27.5%, $BOD_5$ 28.9% and TOC 41.3% were obtained. And TN and ${NH_4}^+-N$ showed removal rate of 25.3% and 29.2%, respectively. The first order kinetics constant related to $BOD_5$ degradation was $-0.039day^{-1}$ for aerobic liquid composting and $-0.013day^{-1}$ for agitated reactor. Nitrogen loss in aerobic liquid composting was about 2.3 times higher than that of agitated reactor, whereas FAN/TAN in aerobic liquid composting was about 7.9 times higher than that of agitation type reactor. Therefore, despite the low FAN/TAN in the agitation type reactor, the nitrogen loss rate was relatively high.

커피 찌꺼기의 카페인 용출 및 산화분해 특성 (Extraction of Caffeine from Spent Coffee Grounds and Oxidative Degradation of Caffeine)

  • 신민정;김영훈
    • 한국환경과학회지
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    • 제27권12호
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    • pp.1205-1214
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    • 2018
  • During the past few decades, significant increase in the consumption of coffee has led to rapid increase in the production of coffee waste in South Korea. Spent coffee waste is often treated as a general waste and is directly disposed without the necessary treatment. Spent Coffee Grounds (SCGs) can release several organic contaminants, including caffeine. In this study, leaching tests were conducted for SCGs and oxidative degradation of caffeine were also conducted. The tested SCGs contained approximately 4.4 mg caffeine per gram of coffee waste. Results from the leaching tests show that approximately 90% of the caffeine can be extracted at each step during sequential extraction. Advanced oxidation methods for the degradation of caffeine, such as $UV/H_2O_2$, photo-Fenton reaction, and $UV/O_3$, were tested. UV radiation has a limited effect on the degradation of caffeine. In particular, UV-A and UV-B radiations present in sunlight cause marginal degradation, thereby indicating that natural degradation of caffeine is minimal. However, $O_3$ can cause rapid degradation of caffeine, and the values of pseudo-first order rate constants were found to be ranging from $0.817min^{-1}$ to $1.506min^{-1}$ when the ozone generation rate was $37.1g/m^3$. Additionally, the degradation rate of caffeine is dependent on the wavelength of irradiation.

Ruminal Behavior of Protein and Starch Free Organic Matter of Lupinus Albus and Vicia Faba in Dairy Cows

  • Yu, P.;Leury, B.J.;Egan, A.R.
    • Asian-Australasian Journal of Animal Sciences
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    • 제15권7호
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    • pp.974-981
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    • 2002
  • Faba beans (vicia faba) (FB) and lupin seeds (Lupinus Albus) (LS) were dry roasted at three temperatures (110, 130, $150^{\circ}C$) for 15, 30 or 45 min to determine the effects of dry roasting on rumen degradation of crude protein and starch free organic matter ($^{PSF}OM$). Rumen degradation characteristics of $^{PSF}OM$ were determined by the nylon bag incubation technique in dairy cows fed 60% hay and 40% concentrate. Measured characteristics of $^{PSF}OM$ were undegradable fraction (U), degradable fraction (D), soluble fraction (S), lag time (T0), and the rate of degradation (Kd). Based on the measured characteristics, rumen availability ($RA^{PSF}OM$) and bypass $^{PSF}OM$ ($B^{PSF}OM$) were calculated. Dry roasting did not have a greater impact on rumen degradation characteristics of $^{PSF}OM$ (p>0.05). S varied from 32.1 (raw) to 30.0, 27.8, 30.8% (LS) and 15.4 (raw) to 14.4, 20.8, 20.9% (FB); D varied from 65.4 (raw) to 66.3, 66.9, 55.9% (LS) and 54.9 (raw) to 55.0, 51.0, 64.7% (FB); U varied from 2.6 (raw) to 7.3, 7.0, 7.7% (LS) and 29.7 (raw) to 30.6, 28.2, 14.4% (FB); Kd varied from 6.0 (raw) to 7.3, 7.0, 7.7% (LS) and 22.4 (raw) to 24.4, 21.1, 7.9% (FB); $B^{PSF}OM$ varied from 35.5 (raw) to 33.8, 36.6, 38.2% (LS) and 41.3 (raw) to 41.5, 39.7, 47.6% (FB) at 110, 130 and $150^{\circ}C$, respectively. Therefore dry roasting did not significantly affect $RA^{PSF}OM$, which were 353.7, 367.9, 349.6, 336.9 (g/kg DM) (LS) and 12.82, 127.0, 133.7, 117.1 (g/kg DM) (FB) at 110, 130 and $150^{\circ}C$, respectively. These results alone with our previously published reports indicate dry roasting had the differently affected pattern of rumen degradation characteristics of various components in LS and FB. It strongly increased bypass crude protein (BCP) and moderately increased starch (BST) with increasing temperature and time but least affected $^{PSF}OM$. Such desirable degradation patterns in dry roasted LS and FB might be beneficial to the high yielding cows which could use more dry roasted $^{PSF}OM$ as an energy source for microbial protein synthesized in the rumen and absorb more amino acids and glucose in the small intestine.

남강 및 금호강에서 유기탄소 존재형태와 분해속도와의 관계 (The Relationship between the Fractionation Characteristics and Decomposition Rate of Organic Carbon in Nam River and Geumho River)

  • 김호섭;김석규;오승영
    • 한국물환경학회지
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    • 제39권2호
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    • pp.131-141
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    • 2023
  • In this study, the relationship between organic carbon distribution characteristics and decomposition rate classified according to the particle size and biological degradation characteristics in water was investigated for the Nam river and Geumho river. The average concentrations of TOC in the Nam river and Geumho river were 2.7±1.2 mg/L and 5.0±1.2 mg/L, respectively, but the composition ratios for each type of organic carbon were similar. An average value of 80.9% of TOC was present as DOC and 72.8% of DOC consisted of Refractory-DOC (RDOC). In addition, the change in the RDOC composition ratio according to temporal and spatial distribution was the smallest. There was no difference in the decomposition rate of organic carbon except for TOC by the site (p≥0.108, one-way ANOVA), and the decomposition rates of Labile-POC (LPOC) and LDOC were similar at 0.139±0.102 and 0.137±0.149 day-1, respectively (p=0.110, paired t-test). The coefficient of variation (CV) of the decomposition rate of DOC (average 8.1%), which had the smallest composition ratio of organic carbon, was 1.1, showing the largest temporal variation. The TOC, POC, and DOC decomposition rates showed a significant correlation with the ratio of the initial concentration to the concentration after 25 days of decomposition (OC25/OC0) (r2=0.89~0.94, p<0.001), and the decomposition rates of LPOC and LDOC were significantly correlated with the ratio of the initial concentration to the concentration after 5 days of decomposition (LOC5/LOC0) (r2=0.67~0.75). This suggests that it is possible to estimate the decomposition rate through the concentration of each type of organic carbon.