• 제목/요약/키워드: acid-resistance

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후열처리에 의한 알루미늄 산화층의 특성 향상 (Enhanced Properties of Aluminum Oxide Layers with Post Heat Treatment)

  • 전윤남;김상준;박지현;정나겸
    • 한국표면공학회지
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    • 제52권5호
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    • pp.275-281
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    • 2019
  • Anodization is widely used to enhance the properties of aluminum, such as hardness, electric resistance, abrasion resistance, corrosion resistance etc. But these properties can be enhanced with additional process. According to the partial crystallization of oxide layer with post heat treatment, enhanced hardness can be expected with partial crystallization. In this study, post heat treatments were applied to the anodized aluminum alloys of Al6061 to achieve the partial crystallization, and crystallizations were evaluated with the reduced breakdown voltages. Interestingly, remarkable enhanced hardness (21~29%), abrasion resistance (26~62%), and reduced breakdown voltage (24~44%) were observed for the sulfuric acid anodized samples when we annealed the anodized samples with 1hour post heat treatment at $360^{\circ}C$. For the Al5052 alloys, a lot of cracks were observed when we applied the post heat treatment.

넙치에서 분리된 Edwardsiella tarda의 약제내성 전달성 R plasmid (Transferable R plasmid of Edwardsiella tarda isolated from diseased flounders, Paralichithys olivaceus)

  • 김은희
    • 한국어병학회지
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    • 제12권2호
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    • pp.115-121
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    • 1999
  • 양식넙치에서 분리된 Edwardsiella tarda가 갖는 약제내성을 전달하는 R plasmid의 특성을 알아보기 위하여, 16종의 화학요법제에 대한 E. tarda의 감수성 정도를 비교하였으며, 내성형태 및 내성전달을 확인하고 transferable R plasmid를 분리하였다. E. tarda는 ampicillin, amoxicillin, erythromycin, flumequine, doxycycline(DOXY), nalidixic acid, novobiocin, oxolinic acid, oxytetracycline(OTC), thiamphenicol(TP) 그리고 sulfonamide의 11약제에 대하여 다양한 조합으로 복합내성을 보였으며, DOXY, OTC, TP 내성이 Escherichia coli로 전달되었다. 복합내성의 두 균주에서 transconjugant가 형성되었으며 이들로부터 분리된 transferable R plasmid는 서로 상이한 DNA 구조였다. 이는 넙치에서 분리되는 E. tarda에는 적어도 두 종류 이상의 thansferable R plasmid가 분포한다는 것을 의미한다.

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2000년-2009년 광주 광역시 지역의 급성설사환자의 분변에서 분리한 살모넬라 균주에서의 항생제 내성률 조사 (Antibiotic Resistance Among Salmonella spp. Isolated from Feces of Patients with Acute Diarrhea in Gwangju Area, Korea, during 2000-2009)

  • 김태순;김민지;김선희;서진종;기혜영;정재근;김은선;문용운;하동룡;김민경;임숙경;남향미
    • 미생물학회지
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    • 제49권2호
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    • pp.118-125
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    • 2013
  • 지난 2000년부터 2009년까지 10년간 광주광역시 지역의 급성설사환자로부터 분리한 총 596개의 살모넬라균주에 대하여 총 16종의 항생제에 대한 감수성 검사를 실시한 결과, 내성빈도가 가장 높았던 약제는 ampicillin (43%), tetracycline (35.9%), nalidixic acid (31.5%), 그리고 chloramphenicol (26.2%) 순으로 나타났다. 혈청형 간에 항생제 내성률에 차이가 있었는데 S. Enteritidis와 S. Typhimurium이 각각 가장 높은 내성률을 보인 약제는 ampicillin (51.1%)과 tetracycline (77.9%)이었다. 총 89가지 내성패턴이 관찰되었으며, 26% (155/596)의 살모넬라 분리주는 검사한 16가지 약제에 모두 감수성을 보였다. 약 21% (127/596) 및 15% (87/596)의 분리주는 각각 한 개 및 두 개의 약제에 내성을 나타냈다. 그 외의 살모넬라 분리주(227/596, 38%)는 세가지 이상의 약제에 내성을 나타냈다(다제내성균). 다제내성균이 가장 높은 비율로 나타난 혈청형은 S. Paratyphi B (76.5%), S. Typhimurium (58.2%), 그리고 S. Enteritidis (40.2%)의 순이었다. 가장 흔한 다제내성패턴은 ampicillin-chloramphenicol-nalidixic acid-ticarcillin (36/227, 15.8%)이었으며 이러한 패턴을 보였던 다제내성균의 대부분(35/36, 97.2%)이 S. Enteritidis이었다.

Evaluation of Two Species of Soft Wood Decay Resistance for Heat-Treated Wood Using the Catalyst (H2SO4)

  • Won, Kyung-Rok;Hong, Nam-Euy;Jung, Su-Young;Kim, Byung-Ro;Byeon, Hee-Seop
    • Journal of the Korean Wood Science and Technology
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    • 제45권2호
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    • pp.195-201
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    • 2017
  • This study was conducted to evaluate the resistance of heat-treated wood using the catalyst to decay caused by fungi for sapwood and heartwood of two tree species, Korean red pine (Pinus densiflora) and Japanese larch (Larix kaempferi), respectively. Wood samples were immersed for 10 min in sulfuric acid (7.5%) and then heat-treated at $130^{\circ}C$ for 90 min. Fomitopsis palustris, a brown-rot fungus, was used to examine the decay resistance of Korean red pine and Japanese larch wood. Weight and density of wood from the all conditions increased after heat treatment using the catalyst. Weight loss after decay resistance test was also dropped with a heat treatment. The lowest weight loss indicated at heat-treated heartwood of Japanese larch. Heat treatment using the catalyst effectively increased the resistance of wood to decay caused by fungi.

Association between Dietary Acid Load and Insulin Resistance: Tehran Lipid and Glucose Study

  • Moghadam, Sajjad Khalili;Bahadoran, Zahra;Mirmiran, Parvin;Tohidi, Maryam;Azizi, Fereidoun
    • Preventive Nutrition and Food Science
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    • 제21권2호
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    • pp.104-109
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    • 2016
  • In the current study, we investigated the longitudinal association between dietary acid load and the risk of insulin resistance (IR) in the Tehranian adult population. This longitudinal study was conducted on 925 participants, aged 22~80 years old, in the framework of the third (2006~2008) and fourth (2009~2011) phases of the Tehran Lipid and Glucose Study. At baseline, the dietary intake of subjects was assessed using a validated semi-quantitative food frequency questionnaire, and the potential renal acid load (PRAL) and net endogenous acid production (NEAP) scores were calculated at baseline. Fasting serum insulin and glucose were measured at baseline and again after a 3-year of follow-up; IR was defined according to optimal cut-off values. Multiple logistic regression models were used to estimate the risk of IR according to the PRAL and NEAP quartile categories. Mean age and body mass index of the participants were 40.3 years old of $26.4kg/m^2$, respectively. Mean PRAL and NEAP scores were -11.2 and 35.6 mEq/d, respectively. After adjustment for potential confounders, compared to the lowest quartile of PRAL and NEAP, the highest quartile was accompanied with increased risk of IR [odds ratio (OR)=2.81, 95% confidence interval (CI)=1.32~5.97 and OR=2.18, 95% CI=1.03~4.61, respectively]. Our findings suggest that higher acidic dietary acid-base load, defined by higher PRAL and NEAP scores, may be a risk factor for the development of IR and related metabolic disorders.

고온 및 고압조건에서 아세트산과 아세토나이트릴의 성분비에 따른 부식저항성 금속의 부식특성 (Corrosion Characteristics of Corrosion-Resistant Metal with Different Composition Ratios of Acetic Acid and Acetonitrile at High Temperature and Pressure)

  • 황현규;신동호;이승준;김성종
    • Corrosion Science and Technology
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    • 제23권2호
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    • pp.154-165
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    • 2024
  • Acetic acid and acetonitrile produced in the chemical process of petrochemical plants are used at high temperatures and pressures. They are exposed to harsh corrosive environments. The present investigation aimed to evaluate corrosion characteristics of metals with excellent corrosion resistance by performing immersion and electrochemical experiments with different composition ratios of acetic acid and acetonitrile in a high-temperature and high-pressure environment. Results of immersion experiment revealed that as acetic acid concentration increased, surface damage and corrosion also increased. In immersion experiments under all conditions, super austenitic stainless steel (UNS N08367) had the best corrosion resistance among various metals. The maximum damage depth under the most severe immersion conditions was observed to be 4.19 ㎛, which was approximately 25.25 ㎛ smaller than that of highly damaged stainless steel (UNS S31804). As a result of electrochemical experiments, electrochemical characteristics of various metals presented some differences with different composition ratios of acetic acid and acetonitrile. However, super austenitic stainless steel (UNS N08367) had the best corrosion resistance at a high pressure condition with a high concentration of acetic acid.

SiC 질 공업용 도자기 개발에 관한 연구 (Study on the Development of SiC-containing Technical Porecelain Body)

  • 박정현;배원태;권오훈
    • 한국세라믹학회지
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    • 제19권1호
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    • pp.5-12
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    • 1982
  • SiC-containing by-product from the surface abrasion process of porcelain cores is used as a starting material to develop the SiC-containing technical porcelain bodies. To prevent the bloating phenomenon of by-product specimen at firing temperature, it is acid treated. In order to enhance the workability and to lower the firing temperature of bodies, clay is added. Body containing 25% clay and 75% by-product fired at 135$0^{\circ}C$ showes extremely high thermal shock resistance and acid resistance.

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클로람페니콜 내성 플라스미드 pKH7의 Rep 단백질과 CAT 단백질의 염기서열 분석 (Nucleotide Sequences of Rep and CAT Proteins encoded by Chloramphenicol-Resistance Plasmid pKH7)

  • 윤성준;이대운;김우구;신철교;임성환;문경호
    • 약학회지
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    • 제39권6호
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    • pp.676-680
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    • 1995
  • The nucleotide sequence of Xbal-Mbol fragment of pKH7, a chloramphenicol-resistant($Cm^{r}$) plasmid isolated from multidrug-resistant S. aureus SA2, has been determined. Xbal-Mbol fragment of pKH7 was found to contain two ORFs. One ORF encoded Rap and the other encoded CAT protein. The deduced amino acid sequences of Rep and CAT of pKH7 were compared to those of pUB112 and pC221. Comparisons revealed that there was one amino acid difference in CAT between pKH7 and pUB112. CAT of pKH7 exhibited 98.6% amino acid identity to that of pC221. In case of Rep proteins, a slightly lower homology of 96.4% and 86.7% in amino acid sequences was observed between pKH7 and pUB112 and between pKH7 and pC221, respectively.

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충전재 변화에 따른 PET 재활용 폴리머 콘크리트의 황산 부식에 관한 특성 (Characteristics of Sulfuric acid corrosion of Recycled PET Polymer Concrete with Different Filler)

  • 조병완;구자갑;박종화;박승국
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2004년도 추계 학술발표회 제16권2호
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    • pp.719-722
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    • 2004
  • Resins using recycled PET offer the possibility of a lower source cost of materials for making useful polymer concrete products. The purposed of this paper is to form a part of reducing the damage of sulfuric acid, through investigating recycled PET polymer concrete, . immersed at sulfuric acid solution for 84 days. Recycled PET PC is excellent chemical resistance, resulting in the role of unsaturated polyester resin which consists of polymer chain structure accomplishes bond of aggregates and filler strongly. Also, Recycled PET PC, used fly-ash as filler, is stronger resistance of sulfuric acid corrosion than $CaCO_3$, because it is composed of $SiO_2$ and very strong glassy crystal structure. Therefore, Recycled PET PC, used fly-ash as filler, is available under corrosion circumstances like sewer pipe or waste disposal plant.

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Effect of Adding Scoria as Cement Replacement on Durability-Related Properties

  • al-Swaidani, Aref Mohamad;Aliyan, Samira Dib
    • International Journal of Concrete Structures and Materials
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    • 제9권2호
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    • pp.241-254
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    • 2015
  • A lot of reinforced concrete (RC) structures in Syria went out of service after a few years of construction. This was mainly due to reinforcement corrosion or chemical attack on concrete. The use of blended cements is growing rapidly in the construction industry due to economical, ecological and technical benefits. Syria is relatively rich in scoria. In the study, mortar/concrete specimens were produced with seven types of cement: one plain Portland cement (control) and six blended cements with replacement levels ranging from 10 to 35 %. Rapid chloride penetration test was carried in accordance with ASTM C 1202 after two curing times of 28 and 90 days. The effect on the resistance of concrete against damage caused by corrosion of the embedded steel has been investigated using an accelerated corrosion test by impressing a constant anodic potential. The variation of current with time and time to failure of RC specimens were determined at 28 and 90 days curing. In addition, effects of aggressive acidic environments on mortars were investigated through 100 days of exposure to 5 % $H_2SO_4$, 10 % HCl, 5 % $HNO_3$ and 10 % $CH_3COOH$ solutions. Evaluation of sulfate resistance of mortars was also performed by immersing in 5 % $Na_2SO_4$ solution for 52 weeks. Test results reveal that the resistance to chloride penetration of concrete improves substantially with the increase of replacement level, and the concretes containing scoria based-blended cements, especially CEM II/B-P, exhibited corrosion initiation periods several times longer than the control mix. Further, an increase in scoria addition improves the acid resistance of mortar, especially in the early days of exposure, whereas after a long period of continuous exposure all specimens show the same behavior against the acid attack. According to results of sulfate resistance, CEM II/B-P can be used instead of SRPC in sulfate-bearing environments.