• 제목/요약/키워드: Indoles

검색결과 50건 처리시간 0.029초

발효탄수화물 첨가 비육돈사료가 초지환원용 슬러리의 악취물질 농도에 미치는 영향 (The Effect of the Addition of Carbohydrate Sources on the Concentration of Odorous Compounds for Recycling of Pig Slurry to Grassland)

  • 조성백;황옥화;박규현;최동윤;양승봉;김두환;박성권
    • 한국초지조사료학회지
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    • 제33권4호
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    • pp.257-262
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    • 2013
  • 양돈 사료에 발효탄수화물을 첨가하여 돼지의 슬러리에서 악취물질의 농도를 평가하였다. VFA 분석결과, 분뇨의 SCFA 농도는 대조구, 땅콩껍질, 아몬드피 및 골든화이버구에서 각각 1,893, 1,591, 1,433 및 1,319 ppm으로 대조구에서 가장 높았고(p<0.05), 아몬드피와 골든파이버 구에서 가장 낮았다(p<0.05). VFA의 구성을 살펴보면 SCFA 중에서 아세트산의 비율이 가장 높으며, 다음으로 프로피온산, 부티르산, BCFA 순으로 낮았다. BCFA의 농도는 대조구, 땅콩껍질, 아몬드피 및 골든화이버 구에서 각각 98, 92, 78 및 74 ppm으로 대조구에서 가장 높았고(p<0.05), 골든화이버 구에서 가장 낮았다(p<0.05). VOC 분석결과, 분뇨의 페놀류 농도는 대조구, 땅콩껍질, 아몬드피 및 골든화이버 구에서 각각 97.3, 47.0, 54.3 및 33.3 ppm으로 골든화이버 구에서 가장 낮았으며, 대조구에서 가장 높았다(p<0.05). 그리고 p-크레졸 농도가 페놀류 농도의 93~96%를 차지하였다. 인돌류 농도는 대조구, 땅콩껍질, 아몬드피 및 골든화이버 구에서 각각 1.8, 1.3, 1.2 및 1.0 ppm으로 발효탄수화물 처리구간에 차이가 없었으며(p>0.05), 대조구에서 가장 높았다(p<0.05). ${NH_4}^+$-N의 농도는 대조구, 땅콩껍질, 아몬드피 및 골든화이버 구에서 각각 1,395, 995, 995 및 836 ppm으로 대조구에서 가장 높았으며, 골든화이버 구에서 가장 낮았다(p<0.05). 가축의 장내 또는 슬러리에서 발효과정 동안 미생물이 성장을 위해 필요로 하는 에너지가 제한요소로 작용되면, 미생물은 단백질을 에너지원으로 이용하기 때문에 많은 아미노산이 분해되어 악취물질이 증가 될 수 있다. 따라서 다른 처리구에 비하여 골든화이버 구에서 VOC의 농도가 가장 낮은 것은 골든화이버의 높은 NDF 함량으로(Getachew et al., 2004) 단백질 발효보다 탄수화물 발효가 활발하게 일어나 악취물질의 농도가 낮았다고 판단된다.

Effects of amino acid composition in pig diet on odorous compounds and microbial characteristics of swine excreta

  • Recharla, Neeraja;Kim, Kihyun;Park, Juncheol;Jeong, Jinyoung;Jeong, Yongdae;Lee, Hyunjeong;Hwang, Okhwa;Ryu, Jaehyoung;Baek, Youlchang;Oh, Youngkyun;Park, Sungkwon
    • Journal of Animal Science and Technology
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    • 제59권12호
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    • pp.28.1-28.8
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    • 2017
  • Background: Major amino acids in pig diets are Lys, Met, Thr, and Trp, but little is known about the requirements for the other essential amino acids, especially on odorous compounds and microbial characteristics in feces of growing-finishing pigs. To this end, different levels of amino acid composition added to diets to investigate the effects of amino acid composition on microbial characteristics and odorous compounds concentration. Methods: A total eight (n = 8) barrows (Landrace ${\times}$ Yorkshire ${\times}$ Duroc) with an average bodyweight of $89.38{\pm}3.3kg$ were individually fed diets formulated by Korean Feeding Standards 2007 (old version) or 2012 (updated with ideal protein concept) in metabolism crates with two replication. After 15-day adaptation period, fresh faecal samples were collected directly from pigs every week for 4 weeks and analysed for total volatile fatty acids (VFA), phenols and indoles by using gas chromatography. The nitrogen was determined by Kjeldahl method. Bacterial communities were detected by using a 454 FLX titanium pyrosequencing system. Results: Level of VFA tended to be greater in 2012 than 2007 group. Among VFAs, 2012 group had greater (p < 0.05) level of short chain fatty acids (SCFA) than control.Concentration of odorous compounds in feces was also affected by amino acid composition in pig diet. Levels of ammonium and indoles tended to be higher in 2012 group when compared with 2007 group.Concentration of phenols, p-cresol, biochemical oxygen demand, and total Kjeldahl nitrogen, however, were lower (P < 0.05) in 2012 treatment group compare to 2007. The proportion of Firmicute phylum were decreased, while the Bacteriodetes phylum proportion increased and bacterial genera includingCoprococcus, Bacillus, and Bacteroides increased (p < 0.05) in 2012 compare to 2007 group. Conclusion: Results from our current study indicates that well balanced amino acid composition reduces odor by modulating the gut microbial community. Administration of pig diet formulated with the ideal protein concept may help improve gut fermentation as well as reduce the odor causing compounds in pig manure.

Emissions of Volatile Organic Compounds from a Swine Shed

  • Osaka, Nao;Miyazaki, Akane;Tanaka, Nobuyuki
    • Asian Journal of Atmospheric Environment
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    • 제12권2호
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    • pp.178-191
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    • 2018
  • The concentrations and chemical compositions of volatile organic compounds (VOCs), including volatile fatty acids, phenols, indoles, aldehydes, and ketones, which are the main organic compounds generated by swine, were investigated in July and October 2016 and January 2017. In addition, the emission rates and annual emissions of these components from the swine shed were estimated. The concentrations of VOCs in the swine shed averaged $511.3{\mu}g\;m^{-3}$ in summer, $315.5{\mu}g\;m^{-3}$ in fall and $218.6{\mu}g\;m^{-3}$ in winter. Acetone, acetic acid, propionic acid, and butyric acid were the predominant components of the VOCs, accounting for 80-88% of the total VOCs. The hourly variations of VOC concentrations in the swine shed in fall and winter suggest that the VOC concentrations were related to the ventilation rate of the swine shed, the activity of the swine, and the temperature in the swine shed. Accordingly, the emission rates of VOCs from the swine shed were $1-2{\times}10^3{\mu}g(h\;kg-swine)^{-1}$.

Gut microbiome-produced metabolites in pigs: a review on their biological functions and the influence of probiotics

  • Robie, Vasquez;Ju Kyoung, Oh;Ji Hoon, Song;Dae-Kyung, Kang
    • Journal of Animal Science and Technology
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    • 제64권4호
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    • pp.671-695
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    • 2022
  • The gastrointestinal tract is a complex ecosystem that contains a large number of microorganisms with different metabolic capacities. Modulation of the gut microbiome can improve the growth and promote health in pigs. Crosstalk between the host, diet, and the gut microbiome can influence the health of the host, potentially through the production of several metabolites with various functions. Short-chain and branched-chain fatty acids, secondary bile acids, polyamines, indoles, and phenolic compounds are metabolites produced by the gut microbiome. The gut microbiome can also produce neurotransmitters (such as γ-aminobutyric acid, catecholamines, and serotonin), their precursors, and vitamins. Several studies in pigs have demonstrated the importance of the gut microbiome and its metabolites in improving growth performance and feed efficiency, alleviating stress, and providing protection from pathogens. The use of probiotics is one of the strategies employed to target the gut microbiome of pigs. Promising results have been published on the use of probiotics in optimizing pig production. This review focuses on the role of gut microbiome-derived metabolites in the performance of pigs and the effects of probiotics on altering the levels of these metabolites.

갈대의 INDOLE 화합물(化合物) 연구(硏究) -[제1보](第一報) 갈대 유아(幼芽)의 Indole 화합물(化合物) 검색(檢索)- (Studies on the Indoles in Common Reed. -[Part 1] Indole Compounds Occuring in the Shoot of Common Reed [Phragmites Communis Trin.]-)

  • 김용화;이춘영;김인수
    • Applied Biological Chemistry
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    • 제19권1호
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    • pp.24-30
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    • 1976
  • 갈대(Phragmites communis Trin.)의 지하경(地下莖)을 암소(暗所)에서 3일간 기른 싹의 메타놀 추출물(抽出物)을 TLC로 분리동정(分離同定)하였으며, 아래와 같은 결과를 얻었다. 1. 검정(檢定)된 화합물은 주(主)로 indole amine류(類)였으며, serotonin, tryptamine, tryptophan등은 표준화합물과의 co-chromatography에 의해 동정되었고, 용매계를 달리하여 구한 Rf치 및 발색특성을 문헌과 비교하여 추정한 것으로는 bufotenine, N-methylserotonin, N,N-dimethyltryptamine이었으며, Skatole 및 gramine의 존재(存在)의 가능성도 추측(推測)되었다. 2. 갈대 생육의 일정기간 동안 indole 화합물의 methyl화(化) 및 hydroxyl화(化) 대사계(代謝系)의 활성(活性)이 강하게 나타나고 있다고 생각된다. 3. 본 실험에서 처음 시도된 "overlap"점적(點滴)법을 사용한 TLC방법(方法)은 시료중의 방해물질(妨害物質)의 영향으로 시료와 표준품 간에 동일 화합물(化合物)이 Rf치에 차이(差異)를 나타낼 때 시료중의 동일(同一) 화합물의 검정에 유용한 방법이 될 것이다.

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A Test of Relative Removal Properties of Various Offensive Odors by Zeolite

  • Adelodun, Adedeji A.;Vellingiri, Kowsalya;Jeon, Byong-Hun;Oh, Jong-Min;Kumar, Sandeep;Kim, Ki-Hyun
    • Asian Journal of Atmospheric Environment
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    • 제11권1호
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    • pp.15-28
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    • 2017
  • The adsorptive removal properties of synthetic A4 zeolite were investigated against a total of 16 offensive odors consisting of reduced sulfur compounds (RSCs), nitrogenous compounds (NCs), volatile fatty acids (VFAs), and phenols/indoles (PnI). Removal of these odors was measured using a laboratory-scale impinger-based adsorption setup containing 25 g of the zeolite bed (flow rate of $100mL\;min^{-1}$). The high est and lowest breakthrough (%) values were shown for PnIs and RSCs, respectively, and the maximum and minimum adsorption capacity (${\mu}g\;g^{-1}$) of the zeolite was observed for the RSCs (range of 0.77-3.4) and PnIs (0.06-0.104), respectively. As a result of sorptive removal by zeolite, a reduction in odor strength, measured as odor intensity (OI), was recorded from the minimum of approximately 0.7 OI units (indole [from 2.4 to 1.6]), skatole [2.2 to 1.4], and p-cresol [5.1 to 4.4]) to the maximum of approximately 4 OI units (methanethiol [11.4 to 7.5], n-valeric acid [10.4 to 6.5], i-butyric acid [7.9 to 4.4], and propionic acid [7.2 to 3.7]). Likewise, when removal was examined in terms of odor activity value (OAV), the extent of reduction was significant (i.e., 1000-fold) in the increasing order of amy acetate, i-butyric acid, phenol, propionic acid, and ammonia.

발효탄수화물 첨가 사료가 양돈 슬러리의 휘발성 지방산과 휘발성 유기화합물 농도에 미치는 효과 (Effect of Fermentable Carbohydrate in Diet on the Concentration of Volatile Fatty Acid and Volatile Organic Compound in Pig Slurry)

  • 조성백;양승학;이준엽;곽정훈;최동윤;황옥화
    • 한국축산시설환경학회지
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    • 제19권2호
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    • pp.89-94
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    • 2013
  • This study was performed to investigate the effect of beet plup and IRG (Italian ryegrass) dry powder in fattening pig diet on reducing concentration of odorous compounds in the pig slurry. Fifty fattening boars [(Landrace ${\times}$ Yorkshire) ${\times}$ Duroc] were randomly assigned to one of 3 treatments (control, beet plup 5%, and IRG 5%). Pigs (BW 50~110 kg) were fed diets formulated to meet the Korean Feeding Standard (2012) and their excretion was collected from the slurry pits. Short chain fatty acid (SCFA) and branched chain fatty acid (BCFA) were higher in beet plup (31,786, 3,985 ppm) and IRG (32,755, 4,261 ppm) treatments, which was not different among treatments (p>0.05), compared to control (p<0.05). Concentrations of phenols and indoles were highest in beet plup (183.83, 168.59 ppm) and IRG (9.32, 8.92 ppm) treatments. Altogether, addition level of two contents was not appropriate to decrease concentration of odorous compounds.

양돈 슬러리에 첨가된 악취저감물질 수준별 휘발성 지방산과 휘발성 유기화합물 농도 비교 (The Effect of the Addition Levels of Odor Reducing Contents on the Concentration of Volatile Fatty Acid and Volatile Organic Compound in Pig Slurry)

  • 황옥화;양승학;전중환;김중곤;최동윤;조성백
    • 한국축산시설환경학회지
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    • 제19권2호
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    • pp.101-108
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    • 2013
  • This study was to investigate the effect of addition levels of odor reducing contents on reducing the concentration of odorous compounds. Slurry treatments included three levels mixture of horseradish powder (HP), mushroom waste (MW) and probiotics powder (PP), and non-treatment control (n=4 each group). Levels of odorous compounds were measured from the liquid slurry incubated in room temperature ($20{\sim}25^{\circ}C$) for 2 wk in chamber whose structure is similar to slurry pit. Concentration of phenols and indoles was lower (p<0.05) in level 1, which was mixed HP 0.01%, MW 0.4% and PP 0.004% (98.69, 1.87 ppm) compared to control. Short chain fatty acid (SCFA) and branched chain fatty acid (BCFA) was lowest (p<0.05) level 1 (6,557, 1675 ppm). Taken together, lower level are effective in reducing odorous compounds in pig slurry.

돈사 종류별 슬러리의 악취물질 농도 비교 (The Comparison of Concentration of Volatile Fatty Acids, Ammonia, and Volatile Organic Compounds in Pig Slurry)

  • 조성백;양승학;이준엽;김중곤;전중환;한만희;한덕우;정광화;곽정훈;최동윤;황옥화
    • 한국축산시설환경학회지
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    • 제19권1호
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    • pp.25-32
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    • 2013
  • This study was performed to analyse the concentration of odorous compounds in the piggeries. Piggeries for different types of pigs include piglets, growing pigs, gestating and lactating sows. Slurry from these piggeries was sampled every month for chemical analysis. Short chain fatty acid (SCFA) was 9,862 ppm (piglet), 8,410 ppm (growing pigs), 6,791 ppm (fattening pigs), 3,508 ppm (lactating sows) and 1,687 ppm (gestating sows). Branched chain fatty acid (BCFA) was 1,634 ppm (piglet), 1,206 ppm (growing pigs), 868 ppm (fattening pigs), 493 ppm (lactating sows) and 185 ppm (gestating sows). Concentration of phenols was 209 ppm (piglet), 166 ppm (growing pigs), 127 ppm (fattening pigs), 85 ppm (lactating sows) and 36 ppm (gestating sows). Indoles was 18 ppm (piglet), 14 ppm (growing pigs), 8 ppm (fattening pigs), 6 ppm (lactating sows) and 4 ppm (gestating sows). Altogether, concentration of odorous compounds was decreased as pigs got aged.

양돈 슬러리에 첨가된 발효탄수화물의 종류별 악취물질 농도 비교 (The Effect of the Addition of Carbohydrate on the Concentration of Odorous Compounds in Pig Slurry)

  • 황옥화;양승학;전중환;곽정훈;최동윤;양승봉;김두환;조성백
    • 한국축산시설환경학회지
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    • 제19권1호
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    • pp.1-8
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    • 2013
  • Slurry treatments included peanut shell, palm golden fiber, almond hull, which was added 2% of the amount of slurry, and non-treatment control (n=4 each group). Levels of odorous compounds were measured from the liquid slurry incubated in $20^{\circ}C$ for 2 wk in chamber whose structure is similar to slurry pit. Concentration of phenols and indoles was higher (p<0.05) in control (48.4, 4.0 ppm) compared to almond hull (31.5, 1.4 ppm) or palm golden fiber (29.1, 1.6 ppm) group. Short chain fatty acid (SCFA) level was lowest (p<0.05) in control (2,121 ppm) but highest in peanut shell group (3,640 ppm). Branched chain fatty acid (BCFA) concentration was highest (p<0.05) in peanut shell (296 ppm), but lowest in almond hull (90 ppm). Taken together, concentration of odorous compounds was decreased by addition of almond hull in pig slurry by which crude fiber and non-digestible fiber (NDF) may act as a carbon source.