• 제목/요약/키워드: Ammonia exposure

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양돈장 작업환경 모니터링을 위한 웨어러블 장비개발 (Development of Wearable Device for Monitoring Working Environment in Pig House)

  • 서일환
    • 한국농공학회논문집
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    • 제62권1호
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    • pp.71-81
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    • 2020
  • Enclosed pig house are creating an environment with high concentrations of gas and dust. Poor conditions in pig farms reduce pig weight and increase disease and accidents for livestock workers. In the pig house, the high concentration of harmful gas may cause asphyxiation accidents to workers and chronic respiratory disease by long-term exposure. As pig farm workers have been aging and feminized, the damage to the health of the harsh environment is getting serious, and real-time monitoring is needed to prevent the damage. However, most of the measuring devices related to humidity, harmful gas, and fine dust except temperature sensors are exposed to high concentrations of gas and dust inside pig house and are difficult to withstand for a long time. The purpose of this study is to develop an wearable based device to monitor the hazardous environment exposed to workers working in pig farms. Based on the field monitoring and previous researches, the measurement range and basic specifications of the equipment were selected, and wearable based device was designed in terms of utilization, economic efficiency, size and communication performance. Selected H2S and NH3 sensors showed the average error of 5.3% comparing to standard gas concentrations. The measured data can be used to manage the working environment according to the worker's location and to obtain basic data for work safety warning.

Characterization of odourous compounds in air, leachate, stream and well in and around Taju-Bello Dumpsite, Lagos, Nigeria

  • Azeez, L.;Oyedeji, O.A.;Abdulsalami, I.O.;Adewuyi, S.O.
    • Advances in environmental research
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    • 제2권2호
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    • pp.143-153
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    • 2013
  • This study investigated the concentrations of odourous compounds in air, leachate, stream and well in and around Taju-Bello dumpsite. Meteorological parameters (temperature, relative humidity, wind velocity) and six odour families comprising sulphur ($H_2S$), ammonia ($NH_3$), aromatic (benzene, toluene, ethylbenzene, styrene, p-xylene, m-xylene), aliphatic (hexane), oxygenated (formaldehyde, acetaldehyde) and halogenated (tetrachloroethene, trichloroethene, carbontetrachloride) compounds were measured. Meteorological parameters suggested low dispersal of pollutants at L1 with possible perspiration and suffocation from exposure to high temperature, relative humidity and low wind velocity. The trend of abundance of odourous compounds at studied locations is of the order dumpsite (L1) > leachate (L4) > 100 m away from dumpsite (L2) > 200 m away from dumpsite (L3) > stream (L5) > well (L6). $H_2S$, Oxygenated and aromatic compounds were the major contributors to odour strength in these locations. Correlation, factor and cluster analyses of the data revealed similarities of sources as biogenics and xenobiotics inherent in the wastes as the main sources of these odourous compounds.

임내 낙엽층의 연소 방출가스 분석 및 건강 위험성 평가 (Combustion Emission Gas Analysis & Hazard Assessment to the Litter Layer in Forest)

  • 김동현;이명보
    • 한국화재소방학회:학술대회논문집
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    • 한국화재소방학회 2009년도 춘계학술논문발표회 논문집
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    • pp.358-364
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    • 2009
  • 본 연구에서는 우리나라 주요 침엽수종인 소나무(Pinus densiflora)와 활엽수종인 굴참나무(Quercus variabilis)의 낙엽에 대해 FTIR(Fourier Transform Infrared) 분광계를 이용하여 배출 연소가스 종류 및 농도를 측정하였다. 실험결과 소나무와 굴참나무 낙엽에서 Carbon monoxide, Carbon dioxide, Acetic acid, Butyl acetate, Ethylene, Methane, Methanol, Nitrogen dioxide, Ammonia, Hydrogen Fluoride, Sulfur dioxide, Hydrogen bromide 등 13개 연소가스가 검출되었고 굴참나무 낙엽에서는 Nitrogen monoxide가 추가로 검출되었다. 방출된 연소가스의 전체 농도는 소나무 낙엽이 굴참나무 낙엽에 비해 4.5배 많이 검출되었다. 특히, 시간가중평균가스농도(TWA : Time-weighted average, ppm) 기준을 초과하는 연소가스는 Carbon monoxide, Carbon dioxide, Butyl acetate가 검출되었고 단시간노출기준(STEL : Short Term Exposure Limit, ppm) 기준을 초과하는 연소가스는 Carbon monoxide, Carbon dioxide로 소나무 및 굴참나무 모두에서 나타났다. 이에 산불에서의 낙엽층 지표화 연소시 전체 가스 방출량의 99% 이상을 차지하고 있는 Carbon monoxide, Carbon dioxide의 건강 위험성이 높은 것으로 나타났다. 하지만, 검출된 다른 건강 위험성 가스의 경우에도 연소물질의 양이 증가할수록 연소가스의 농도가 높아져 건강안정성에 해가 있을 것으로 판단되며 또한 검출된 연소가스 중 나무의 주요구성 원소가 아닌 Bromide, Fluoride 화합물에 대해서는 토양으로부터의 오염 또는 분석과정에서의 노이즈로 인한 검출 등에 대한 보다 면밀한 검토가 필요할 것으로 판단된다.

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작업장에서 사용하는 포름아미드(Formamide)의 근로자 건강 유해성과 위험성 평가 (Worker Health Hazard and Risk Assessment of Formamide using in Workplaces in South Korea)

  • 김현영
    • 한국가스학회지
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    • 제20권2호
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    • pp.35-42
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    • 2016
  • 포름아미드(formamide)는 암모니아 냄새의 무색 액체로 흡입 시 자극성이 강하며, 급성독성 $LD_{50}$ 5,577 mg/kg(랫드), 표적장기(간장) 전신독성의 무유해영향농도(NOAEL)는 113 mg/kg/day) 및 생식독성물질(1B)로 작업환경 노출기준은 10 ppm이었다. 포름아마이드 취급사업장에 대한 작업환경 측정결과는 25개 시료 모두가 노출기준보다 매우 낮은 농도를 보였다. 그러나 작업강도, 국소배기장치의 가동 및 보호구(방독마스크)의 착용 여부 등 작업환경에 따라 노출농도가 변할 수 있어 가상 노출 시나리오별 노출량을 산출한 결과 노출량은 $5.16mg/m^3$, $1.72mg/m^3$, $0.43mg/m^3$으로 산출되었다. 이를 전신독성 및 생식독성의 유해성을 고려한 위험성을 평가한 결과 평균값은 0.02-0.58, 누적 90% 값은 0.02-0.66, 95% 값은 0.02-0.69로 모두 1보다 낮은 대체로 안전한 값으로 산출되었다. 단, 작업 상황에 따라 순간적 고농도에 노출될 위험도 있으며, 간독성 및 생식독성 물질이기에 건강장해 예방을 위해 노출되지 않도록 취급 시 주의가 요망된다.

Effect of Applying Molasses and Propionic Acid on Fermentation Quality and Aerobic Stability of Total Mixed Ration Silage Prepared with Whole-plant Corn in Tibet

  • Chen, Lei;Guo, Gang;Yuan, Xianjun;Shimojo, Masataka;Yu, Chengqun;Shao, Tao
    • Asian-Australasian Journal of Animal Sciences
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    • 제27권3호
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    • pp.349-356
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    • 2014
  • The objective of this study was to evaluate the effects of molasses and propionic acid on the fermentation quality and aerobic stability of total mixed ration (TMR) silages prepared with whole-plant corn in Tibet. TMR (354 g/kg DM) was ensiled with four different treatments: no additive (control), molasses (M), propionic acid (P), and molasses+propionic acid (PM), in laboratory silos (250 mL) and fermented for 45 d. Silos were opened and silages were subjected to an aerobic stability test for 12 days, in which chemical and microbiological parameters of TMR silages were measured to determined the aerobic deterioration. After 45 d of ensiling, the four TMR silages were of good quality with low pH value and ammonia/total N (AN), and high lactic acid (LA) content and V-scores. M silage showed the highest (p<0.05) LA content and higher dry matter (DM) recovery than the control and P silages. P silage had lower (p<0.05) LA content than the control silage. During aerobic exposure, lactic acid contents decreased gradually in the control and M silages, while that of P and PM silages increased, and the peak values were observed after 9 d. M silage had similar yeast counts with the control silage (> $10^5$ cfu/g FM), however, it appeared to be more stable as indicated by a delayed pH value increase. P and PM silages showed fewer yeasts (< $10^5$ cfu/g FM) (p<0.05) and were more stable than the control and M silages during aerobic exposure. It was concluded that M application increased LA content and improved aerobic stability of TMR silage prepared with whole-plant corn in Tibet. P application inhibited lactic acid production during ensiling, and apparently preserved available sugars which stimulated large increases in lactic acid during aerobic exposure stage, which resulted in greater aerobic stability of TMR silage.

제 3위 소화액 채취기법을 이용한 반추위 단백질 사료 분해 패턴 측정법의 고찰 (Interpretation of Protein Feed Degradation Pattern in Ruminant Using an Omasal Digesta Sampling Technique)

  • 최창원;백경훈;강수원;이병석;오영균;김경훈
    • Journal of Animal Science and Technology
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    • 제48권4호
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    • pp.541-554
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    • 2006
  • 제 3위 소화액 채취기법은 기존 반추위 영양생리 대사 패턴 측정방법인 in vivo, in vitro 및 in situ 방법의 단점을 극복하고 정확한 반추위 생리대사 패턴의 측정을 할 수 있는 기회를 가진다. 이 제 3위 소화액 채취기법을 이용한 측정방법은 기존의 post-ruminal sampling 기법과 비교해서 다음과 같은 장점들이 존재한다. 1) 단지 반추위캐뉼라가 설치된 동물만이 필요하며, 2) 제 3위 소화액에는 비교적 적은 내인성 질소가 존재하며, 3) 제 3위 소화액은 제 4위에서 시작되는 소화효소에 의한 소화를 피할 수 있는 점 등이다. 제 3위 소화액 내 반추위 미분해 용해성 질소화합물(SNAN)의 측정은 in situ 방법의 전제조건인 반추위에서 rapidly degradable N은 무한정 분해되며 따라서 비용해성 사료 N 만이 반추위를 벗어난다는 것이 오류임을 보여준다. 제 3위 소화액 내 SNAN 중 유리아미노산 및 용해성 단백질과 비교해서 양적으로 가장 많은 peptide는 반추위 단백질대사에서 peptide에서 아미노산으로의 분해과정이 분해율 제한요인이 될 수 있음을 시사한다.

축산생육환경 유해가스 모니터링을 위한 무선가스측정시스템 개발 (Development of Gas Measurement System for the Harmful Gases at Livestock Barn)

  • 김영웅;백승현;박홍배
    • 전자공학회논문지
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    • 제49권9호
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    • pp.314-321
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    • 2012
  • 축산생육환경에서 다양한 경로로부터 발생하는 유해가스는 가축 및 농가작업자에게 직/간접 적으로 영향을 미칠 수 있으며, 점차적인 사육조밀화와 동절기 밀폐환경에 장기간 노출 시 치명적일 수 있다. 본 논문에서는 가축분뇨로부터 발생하는 암모니아, 황화수소, 휘발성유기화합물 가스 등을 모니터링하기 위해 무선가스센서노드와 퍼지 최소-최대 신경회로망을 이용한 가스인식 소프트웨어로 이루어진 가스측정시스템을 제안한다. 제안한 시스템의 성능을 평가하기 위해 가스측정실험환경을 구축하여 제작한 무선가스센서노드로 가스측정실험을 수행하고, 개발한 가스인식 소프트웨어로 대상가스 분류시험을 통해 성능을 입증한다.

Effects of sodium diacetate on the fermentation profile, chemical composition and aerobic stability of alfalfa silage

  • Yuan, XianJun;Wen, AiYou;Desta, Seare T.;Wang, Jian;Shao, Tao
    • Asian-Australasian Journal of Animal Sciences
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    • 제30권6호
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    • pp.804-810
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    • 2017
  • Objective: The objective of this study was to evaluate the effect of sodium diacetate (SDA) on fermentation profile, chemical composition and aerobic stability of alfalfa (Medicago sativa L.) silage. Methods: Fresh alfalfa was ensiled with various concentrations of SDA (0, 3, 5, 7, and 9 g/kg of fresh forage). After 60 days of the ensiling, the samples were collected to examine the fermentative quality, chemical composition and aerobic stability. Results: The application of SDA significantly (p<0.05) decreased silage pH with the lowest value in silage with 7 g/kg of SDA. The proliferations of enterobacteria, yeasts, molds and clostridia were inhibited by SDA, resulted in lower ethanol, propionic and butyric acid concentrations and dry matter loss in SDA treated silages than control. The increasing SDA linearly decreased free amino acid N (p<0.001), ammonia N (p = 0.018) and non-protein N (p<0.001), while linearly increased water soluble carbohydrate (p<0.001) and peptide N (p<0.001). It is speculated that SDA accelerated the shift from homofermentative to heterofermentative lactic acid bacteria during the silage fermentation, indicated by lower lactic acid production in SDA-9 than SDA-7 silages after 60 days of ensiling. Alfalfa silages treated with SDA at 7 g/kg had highest Flieg's point and remained stable more than 9 d during aerobic exposure under humid and hot conditions in southern China. Conclusion: SDA may be used as an additive for alfalfa silages at a level of 7 g/kg.

Effects of calcium propionate on the fermentation quality and aerobic stability of alfalfa silage

  • Dong, Zhihao;Yuan, Xianjun;Wen, Aiyou;Desta, Seare T.;Shao, Tao
    • Asian-Australasian Journal of Animal Sciences
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    • 제30권9호
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    • pp.1278-1284
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    • 2017
  • Objective: To assess the potency of calcium propionate (CAP) used as silage additive, an experiment was carried out to evaluate the effect of CAP on the nitrogen transformation, fermentation quality and aerobic stability of alfalfa silages. Methods: Alfalfa was ensiled with four levels of CAP (5, 10, 15, and 20 g/kg of fresh weight [FW]) in laboratory silos for 30 days. After opening, the silages were analyzed for the chemical and microbiological characteristics, and subjected to an aerobic stability test. Results: The increasing proportion of CAP did not affect pH, lactic acid (LA) concentrations and yeast counts, while linearly decreased counts of enterobacteria (p = 0.029), molds (p<0.001) and clostridia (p<0.001), and concentrations of acetic acid (p<0.001), propionic acid (p<0.001), butyric acid (p<0.001), and ethanol (p = 0.007), and quadratically (p = 0.001) increased lactic acid bacteria counts. With increasing the proportion of CAP, the dry matter (DM) loss (p<0.001), free amino acid N (p<0.001), ammonia N (p = 0.004), and non-protein N (p<0.001) contents were linearly reduced, whereas DM (p = 0.048), water soluble carbohydrate (p<0.001) and peptide N (p<0.001) contents were linearly increased. The highest Flieg's point was found in CAP10 (75.9), represented the best fermentation quality. All silages treated with CAP improved aerobic stability as indicated by increased stable hours compared with control. Conclusion: The addition of CAP can suppress the undesirable microorganisms during ensiling and exposure to air, thereby improving the fermentation quality and aerobic stability as well as retarding the proteolysis of alfalfa silage. It is suggested that CAP used as an additive is recommended at a level of 10 g/kg FW.

Role of Peptides in Rumen Microbial Metabolism - Review -

  • Wallace, R.J.;Atasoglu, C.;Newbold, C.J.
    • Asian-Australasian Journal of Animal Sciences
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    • 제12권1호
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    • pp.139-147
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    • 1999
  • Peptides are formed in the rumen as the result of microbial proteinase activity. The predominant type of activity is cysteine ptoteinase, but others, such as serine proteinases, are also present. Many species of protozoa, bacteria and fungi are involved in ptoteolysis; large animal-to-animal variability is found when proteinase activities in different animals are compared. The peptides formed from proteolysis are broken down to amino acids by peptidases. Different peptides are broken down at different rates, depending on their chemical composition and particularly their N-terminal structure. Indeed, chemical addition to the N-terminus of small peptides, such as by acetylation, causes the peptides to become stable to breakdown by the rumen microbial population; the microorganisms do not appear to adapt to hydrolyse acetylated peptides even after several weeks exposure to dietary acetylated peptides, and the amino acids present in acetylated peptides are absorbed from the small intestine. The amino acids present in some acetylated peptides remain available in nutritional trials with rats, but the nutritive value of the whole amino acid mixture is decreased by acetylation. The genus Prevotella is responsible for most of the catabolic peptidase activity in the rumen, via its dipeptidyl peptidase activities, which release dipeptides rather than free amino acids from the N-terminus of oligopeptides. Studies with dipeptidyl peptidase mutants of Prevotella suggest that it may be possible to slow the rate of peptide hydrolysis by the mixed rumen microbial population by inhibiting dipeptidyl peptidase activity of Prevotella or the rate of peptide uptake by this genus. Peptides and amino acids also stimulate the growth of rumen microorganisms, and are necessary for optimal growth rates of many species growing on tapidly fermented substrates; in rich medium, most bacteria use pre-formed amino acids for more than 90% of their amino acid requirements. Cellulolytic species are exceptional in this respect, but they still incorporate about half of their cell N from pre-formed amino acids in rich medium. However, the extent to which bacteria use ammonia vs. peptides and amino acids for protein synthesis also depends on the concentrations of each, such that preformed amino acids and peptides are probably used to a much lesser extent in vivo than many in vitro experiments might suggest.