• 제목/요약/키워드: dehydrating system

검색결과 7건 처리시간 0.026초

환경유래 젖소유방염 저감을 위한 우분뇨 탈수 시스템의 탈수 및 유방염 원인체 제균 효과 규명 (Dehydrating and bacterial elimination effects of fecal dehydrating system for reducing bovine mastitis derived from environmental contamination)

  • 김동혁;임정주;이진주;김대근;장홍희;이승주;이윤범;장동일;이후장;민원기;김상훈;오권영;김석
    • 대한수의학회지
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    • 제49권3호
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    • pp.257-263
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    • 2009
  • Bovine mastitis is an important disease causing serious economic loss in dairy production and food poison in public health. Escherichia coli and Staphylococcus aureus are the major causative agents of bovine mastitis. These bacteria were found in milk and environmental condition such as feces, water, soil and so on. Bovine mastitis causative micro-organisms can survive in 1-2 weeks in feces and bed complexes. Low level of percentage of water content (PWC) of feces and bed complexes can reduce the spreading of bovine mastitis incidence from environmental contamination. In this study, we developed the fecal dehydrating system and determined the elimination rates of bovine mastitis causative agent from feces and bed complexes. To develop the fecal dehydrating system, the screw pressurized dehydrating system was used and the maximum rate of dehydrating was reached to 52% PWC using 90% PWC (wet base) of fecal and bed complexes. The elimination rates of the dehydrating system for E. coli and S. aureus were reached at 41.19 $\pm$ 7.84% to 62.55 $\pm$ 8.71% in various percentages of PWC of feces and bed complexes (80, 85 and 90%). These results suggested that the application of fecal dehydrating system would reduce the exposure of dairy cattle to bovine mastitis causing agents contaminated feces and bed complexes, and can be used for environmental bovine mastitis control avoiding misuse or abuse of chemical disinfectants and antibiotics in dairy farm.

Preparation of a Crosslinked Poly(acrylic acid) Based New Dehydrating Agent by Using the Taguchi Method

  • Kim, Jun-Kyu;Han, Yang-Kyoo
    • Macromolecular Research
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    • 제16권8호
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    • pp.734-740
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    • 2008
  • A new crosslinked, poly(acrylic acid)-based, dehydrating agent was synthesized through solution polymerization. The Taguchi method, a robust experimental design, was adopted to optimize the synthetic conditions based on the moisture and water absorbing capacities of the dehydrating agent. The method applied for the experiment was a standard L27 ($3^8$) orthogonal array with eight parameters and three levels. By analyzing the variance of the test results, the most effective parameters to control the moisture absorbing capacity (MAC) and its rate were the kind of alkaline base (LiOH, NaOH, or KOH) used as a neutralizing agent of the acrylic acid monomer and the degree of neutralization: The maximum MAC of 40% was achieved at only 2 hat $32^{\circ}C$ and 50% RH when KOH was used as a base and the degree of neutralization was 90%, respectively. However, the water absorbing capacity (WAC) of the resulting dehydrating agent was very low at 158 g/g, indicating that WAC is unaffected by MAC and its rate in this system. The surface morphologies of the agents were examined using scanning electron microscopy (SEM).

엽채류 세척, 살균, 탈수 시스템 개발 (Development of a Washing, Sterilization, Dehydrating System for Leaf Vegetables)

  • 홍성기;박회만;조광환;장동일
    • Journal of Biosystems Engineering
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    • 제32권6호
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    • pp.408-415
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    • 2007
  • Leaf vegetables are composed of about 80% of moisture and 20 to 30% are damaged during the transportation due to decomposition and browning. This study was conducted to develop a washing, sterilization dehydrating system that could remove these polluters, and major findings were summarized as followings. The system was constructed so that leaf vegetables were moved through the washing, sterilization, and dehydration stages contained in a box, the shifting was conducted using PLC-controlled pneumatic pressure. Basic tests for determination of design parameters led to the results that optimum washing times by air bubbles were 5 minutes for lettuce and perilla and 10 minutes for Chinese cabbage, and percentages of bacteria removed using the optimum washing times were 94, 98, and 76%, respectively. Optimum speed and time of a centrifugal dehydrator for removal surface waterdrop on the leaves were 400 rpm and 30 s, respectively, dehydration rates were in a range $70{\sim}82%$ and damage rates were within 15% for the three vegetables tested. Operating efficiencies of the developed system for lettuce, perilla, and Chinese cabbage were 100, 120, and 80 kg/h, respectively, which were 25, 24, and 27 times of operating efficiencies of the conventional manual method.

하수처리공정에서 이산화탄소를 이용한 스트러바이트 제어에 관한 연구 (A study of struvite control using CO2 in sewage treatment process)

  • 한금석;홍성호;최영준
    • 상하수도학회지
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    • 제32권3호
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    • pp.261-268
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    • 2018
  • Sludge transporting pipes in wastewater treatment plant are easy to be clogged with struvite when the digested sludge and dehydrated filtrate are transported through the pipes, which lowers the efficiency of sludge treatment system in a WWTP. pH is one of the most important factors in struvite formation, and carbon dioxide separated from biogas can be used to control pH and struvite formation. By controlling pH, the amount of dehydrating agent can be reduced by about 10%, which saves the budget for facility maintenance. As $CO_2$ is reused and dehydrating chemicals are saved, the approach can contribute to global warming gas reduction.

ER 클러치 및 브레이크 시스템을 이용한 세탁기 운동 제어 (Motion Control of Washing Machine Using ER Clutch & Brake Systems)

  • 김준호;최승복;정재천
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1995년도 추계학술대회 논문집
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    • pp.546-549
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    • 1995
  • This paper presents a control of washing machine using ER clutch and brake actuators. After analyzing field- dependent torque of the actuators on the basis of Bingham model of the ER fluid, two sets of cylindrical ER clutch and brake are manufactured. The governing equation of motion for washing and dehydrating are derived by considering actuators' dynamics. Subsequently, PID controllers are designed to achieve desired rotational motions and tracking control results are provided to demonstrate the effectiveness of the proposed method.

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Expression of Rotavirus Capsid Proteins VP6 and VP7 in Mammalian Cells Using Semliki Forest Virus-Based Expression System

  • Choi, Eun-Ah;Kim, Eun;Oh, Yoon-I;Shin, Kwang-Soon;Kim, Hyun-Soo;Kim, Chul-Joong
    • Journal of Microbiology and Biotechnology
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    • 제12권3호
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    • pp.463-469
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    • 2002
  • Rotaviruses are the world-wide leading causative agents of severe dehydrating gastroenteritis in young children and animals. The outer capsid glycoprotein VP7 and inner capsid glycoprotein VP6 of rotaviruses are highly antigenic and immunogenic. An SFV-based expression system has recently emerged as a useful tool for heterologous protein production in mammalian cells, exhibiting a much more efficient performance compared to other gene expression systems. Accordingly, the current study adopted an SFV-based expression system to express the VP7 of a group A human rotavirus from a Korean isolate, and the VP6 of a group B bovine rotavirus from a Korean isolate, in mammalian cells. The genes of the VP6 and VP7 were inserted into the SFV expression vector pSFV-1. The RNA was transcribed in vitro from pSFV-VP6 and pSFV-VP7 using SP6 polymerase. Each RNA was then electroporated into BHK-21 cells along with pSFV-helper RNA containing the structural protein gene without the packaging signal. The expression of VP6 and VP7 in the cytoplasm was then detected by immunocytochemistry. The recombinant virus was harvested by ultracentrifugation and examined under electron microscopy. After infecting BHK-21 cells with the defective viruses, the expressed proteins were separated by SDS-PAGE and analyzed by a Western blot. The results indicate that an SFV-based expression system fur the VP6 and VP7 of rotaviruses is an efficient tool for developing a diagnostic kit and/or preventive vaccine.

구리 촉매상에서 글리세롤의 산화 카르보닐화 반응에 의한 글리세롤 카보네이트 합성 (Glycerol Carbonate Synthesis by Glycerol Oxidative Carbonylation over Copper Catalysts)

  • 최재형;이상득;우희철
    • 청정기술
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    • 제19권4호
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    • pp.416-422
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    • 2013
  • 본 연구에서는 환경친화적인 측면을 고려하여 제철소 및 석유화학공장에서 많이 발생되는 부생가스인 일산화탄소와 산소를 이용하여 글리세롤로부터 글리세롤 카보네이트를 합성하는 공정에 대하여 연구하였다. 글리세롤의 산화성 카르보닐화 반응활성은 회분식 고압반응기에서 다양한 금속촉매(Cu, Pd, Fe, Sn, Zn, Cr계)에 대한 영향과 산화제, 일산화탄소와 산소의 몰 비율, 촉매량, 용매의 종류, 반응 온도 및 시간, 탈수제 첨가에 대한 반응조건들을 확인하였다. 특히, 염화구리 촉매가 우수한 반응 활성을 나타내었고, 니트로벤젠 용매상에서 글리세롤:일산화탄소:촉매의 몰 비율이 1:3:0.15, 일산화탄소:산소의 몰 비율이 2:1, 전체 반응압력이 30 bar, 반응온도 413 K, 반응시간 4시간 동안 염화구리(I)와 염화구리(II) 촉매에 대한 수율은 각각 최대 44%와 64%를 보였다. 이러한 결과로부터 구리촉매의 산화수에 따라 반응활성이 큰 차이가 보이는 것을 확인하였으며, 산화제로서의 산소의 역할은 글리세롤의 카르보닐화 반응 후 산화반응이 수반되어 부생성물인 물을 생성하는데 중요한 역할을 하고 있는 것을 확인할 수 있었다.