High-strength low-alloy (HSLA) steels show excellent toughness when trace amounts of transition elements are added. In steels, prior austenite grain size (PAGS), which is often determined by the number of added elements, is a critical factor in determining the mechanical properties of the material. In this study, we used two etching methods to measure and compare the PAGS of specimens with bainitic HSLA steels having different Nb contents These two methods were nital etching and picric acid etching. Both methods confirmed that the sample with high Nb content exhibited smaller PAGS than its low Nb counterpart because of Nb’s ability to hinder austenite recrystallization at high temperatures. Although both etching approaches are beneficial to PAGS estimation, the picric acid etching method has the advantage of enabling observation of the interface containing Nb precipitate. By contrast, the nital etching method has the advantage of a very short etching time (5 s) in determining the PAGS, with the picric acid etching method being considerably longer (5 h).
본 연구에서는 곡물건조기의 사용 연식에 따른 이산화탄소 배출농도 차이를 비교함으로써 농업 분야의 온실가스 배출 현황을 파악하고자 한다. 사용 연식의 기준을 5년 이하, 6-10년, 10년 초과의 3단계로 구분하였고, 간헐 포집 방법을 선택하였다. 포집 방법은 EPA Method 18에 해당하는 방법론을 따라 수행하였으며, 이는 흡입장치가 음압을 이용하여 간헐적으로 포집하는 원리이다. 포집 장치에 연결되는 보관 용기는 모든 기체에 우수한 차단성이 있어 화학적으로 안정한 테드라백을 사용하였다. 포집 된 가스는 미량분석용인 Gas Chromatograph System을 사용하여 분석하였으 며, 이산화탄소 배출농도 분석결과 평균적으로 5년 이하는 847.4423μ㏖/㏖, 6-10년은 919.2811μ㏖/㏖, 10년 초과는 1137.8560μ㏖/㏖으로 분석되었다. 이산화탄소 배출에 차이가 있는지 검증하기 위해 유의수준 0.05로 일원분산분석을 수행하였다. 분산분석의 결과 연식이 비슷한 그룹 간의 배출농도의 차이가 없다고 나타났지만, 이는 연식의 차이가 크지 않을 때 그룹 간의 비교에 대해서는 더 많은 표본이 필요할 것으로 판단되며, 연식의 차이가 큰 그룹 간의 배출농도에 유의한 차이가 있다고 나타났다.
흑다리긴노린재 약충 및 성충에 의한 벼 이삭 피해를 다양한 조건에서 분석하였다. 흑다리긴노린재 약충 1마리를 1일간 접종하였을 경우 주당 평균 2.7개, 16마리를 16일간 접종하였을 때 주당 평균 132.3개의 반점미가 발생되었다. 접종밀도와 반점미 발생 입수와는 고도의 정의 상 관관계를 나타내었다(Y = 8.8446X, r2 = 0.9622). 출수기에 흑다리긴노린재 성충 1쌍을 접종한 경우 벼 수확 시 발생한 피해로 동할미율은 40.2%, 반점미율은 30.5%였으며, 16쌍을 처리한 경우 동할미율은 81.7%, 반점미율은 74.5% 발생되었다. 벼의 등숙 정도에 따른 피해 양상을 분석한 결과 출수 초기에 가해하였을 경우에는 벼의 등숙율을 감소시키는 경향을 보였으며, 중기 및 후기에 가해하였을 경우 동할미율과 반점미 율이 증가하는 경향을 나타내어 가해시기에 따라 벼 이삭 피해의 차이가 현저하였다.
본 연구에서는 느타리(Pleurotus ostreatus)와 표고(Lentinula edodes) 버섯차 개발을 위하여 귀리(oat)와 현미(brown rice)를 부재료로 사용함으로서 버섯 특유의 향미를 저감시킴과 동시에 곡물류 특유의 고소함과 영양학적 가치 향상을 기대하였다. 이에 버섯시료의 가공방법 중 열풍건조 및 로스팅 처리에 의한 생리활성 및 영양성 분의 변화를 분석한 결과, 느타리와 표고의 열풍건조 및 로스팅 시료 사이의 DPPH 라디컬 소거능과 아질산염소 거능의 차이는 크게 없었으나, 총 폴리페놀 함량과 베타글루칸 함량은 로스팅 처리에 의하여 함량치가 증가하는 것으로 나타났다. 또한 로스팅 처리된 귀리와 현미의 생리활성과 영양성분을 비교한 결과, 귀리의 DPPH 라디컬 소거능 및 베타글루칸 함량은 현미에 비하여 높은 것으로 나타났으며, 귀리는 높은 글루탐산(Glu) 성분 등을 포함하여 모든 아미노산 성분이 현미보다 높게 나타났다. 로스팅 버섯 시료와 부재료의 혼합비율별 추출온도 및 추출 시간 조건에 따른 생리활성 분석결과, DPPH 라디컬 소거 능은 로스팅 표고와 귀리 1:1 혼합물(LE+O)의 100 ̊C, 3분 추출조건에서 33.5%로 가장 높았으며, 아질산염소거 능은 느타리와 현미 3:1 혼합물(PO+B)의 100 ̊C, 10분 추 출조건에서 49.9%로 가장 높은 소거활성을 보였다. 총 폴리페놀 함량은 70℃의 10분 추출시간 조건에서 느타리와 현미 3:1 혼합추출물(PO+B)의 함량치가 16.2 mg GAE/g 로 가장 높았으며, 베타글루칸 함량은 표고와 현미 (LE+B) 3:1 혼합물에서 34.4%로 다른 혼합비율의 함량치에 비하여 높았다. 아미노산 분석결과, 느타리와 현미 혼 합물(PO+B) 중 1:1 혼합비율에서 필수 아미노산 성분함량이 다른 혼합비율에 비하여 높았으며, 표고와 현미 (LE+B) 혼합물 3:1의 비율에서 필수아미노산 성분 함량이 가장 높았다. 아미노산 성분 중 단맛과 감칠맛을 나타내는 성분함량이 월등히 높았던 귀리를 혼합함에 따른 느타리, 표고와 귀리 혼합물에서의 아미노산 성분함량의 상승효과는 나타나지 않았다.
The purpose of this study was to develop synbiotic materials and to apply them to the puffed grain products using electrostatic spraying technology. Lactic acid bacteria were isolated from Kimchi and selected through tests of acid resistance, bile salt resistance and γ-aminobutyric acid (GABA) content. The isolated Lactobacillus brevis CFM21 produced highest GABA production up to a concentration of 926.42 μg/mL when grown in MRS broth containing 0.8% MSG. The possibility of coated grains as a prebiotic material was evaluated Confocal laser scanning micro scopy (CLSM). Rice bran extract containing 2% dextrose, 2% soytone, 0.2% potassium chloride, 0.6% MSG was produced 524.77 μg/mL of GABA. Citrus sinensis oil showed the highest antibacterial activity against Clostridium perfringens Electrostatic spray showed much higher effectiveness than conventional spray in coating the puffed grain product through CLSM. Applying Rice bran culture and Citrus sinensis oil to puffed grain product using electrostatic spray could contribute to promote intestinal health of consumers.
Since the interaction between the second-phase particle and grain boundary was theoretically explained by Zener and Smith in the late 1940s, the interaction of the second-phase particle and grain boundary on the microstructure is commonly referred to as Zener pinning. It is known as one of the main mechanisms that can retard grain growth during heat treatment of metallic and ceramic polycrystalline systems. Computer simulation techniques have been applied to the study of microstructure changes since the 1980s, and accordingly, the second-phase particle–grain boundary interaction has been simulated by various simulation techniques, and further diverse developments have been made for more realistic and accurate simulations. In this study, we explore the existing development patterns and discuss future possible development directions.
NKN [(Na,K)NbO3] is a candidate lead-free piezoelectric material to replace PZT [Pb(Zr,Ti)O3]. A single crystal has excellent piezoelectric-properties and its properties are dependent of the crystal orientation direction. However, it is hard to fabricate a single crystal with stoichiometrically stable composition due to volatilization of sodium during the growth process. To solve this problem, a solid solution composition is designed (Na,K)NbO3-Ba(Cu,Nb)O3 and solid state grain growth is studied for a sizable single crystal. Ceramic powders of (Na,K)NbO3-M(Cu,Nb)O3 (M = Ca, Sr, Ba) are synthesized and grain growth behavior is investigated for different temperatures and times. Average normal grain sizes of individual specimens, which are heat-treated at 1,125 oC for 10 h, are 6.9, 2.8, and 1.6 m for M = Ca, Sr, and Ba, respectively. Depending on M, the distortion of NKN structure can be altered. XRD results show that (NKN-CaCuN: shrunken orthorhombic; NKN-SrCuN: orthorhombic; NKN-BaCuN: cubic). For the sample heat-treated at 1,125 oC for 10 h, the maximum grain sizes of individual specimens are measured as 40, 5, and 4,000 m for M = Ca, Sr, and Ba, respectively. This abnormal grain size is related to the partial melting temperature (NKN-CaCuN: 960 oC; NKN-SrCuN: 971 oC; NKN-BaCuN: 945 oC).
One of the promising candidates for accident-tolerant fuel (ATF), a ceramic microcell fuel, which can be distinguished by an unusual cell-like microstructure (UO2 grain cell surrounded by a doped oxide cell wall), is being developed. This study deals with the microstructural observation of the constituent phases and the wetting behaviors of the cell wall materials in three kinds of ceramic microcell UO2 pellets: Si-Ti-O (STO), Si-Cr-O (SCO), and Al-Si-Ti-O (ASTO). The chemical and physical states of the cell wall materials are estimated by HSC Chemistry and confirmed by experiment to be mixtures of Si-O and Ti-O for the STO; Si-O and Cr-O for SCO; and Si-O, Ti-O, and Al-Si-O for the ASTO. From their morphology at triple junctions, UO2 grains appear to be wet by the Si-O or Al-Si-O rather than other oxides, providing a benefit on the capture-ability of the ceramic microcell cell wall. The wetting behavior can be explained by the relationships between the interface energy and the contact angle.
The purpose of this study was to investigate the proper feeding level and duration of fermented barley grain feed before harvesting to improve the availability of barley for feed. Trial 1 was to investigate the proper feeding amount of fermented barley grain fermented feed, and we prepared 32 heads (603.4 ± 42.7kg) of 22-month-old Hanwoo steer (603.4 ± 42.7kg) for 8 heads in 4 treatment groups. 48 heads (625.8 ± 13.1kg) for Trial 2 were used for 12heads per 4 treatments, and were reared for about 9 months until 30 months of age. Trial 1 is treated a Control group that feed 10㎏ of concentrate, replaces 10% fermented barley grain feed(FBGF) of the control by (TRT 1) and 20% (TRT 2) and 30%(TRT 3). Concentrate and FBGF fed 9, 2.1 kg, 8, 4.2 kg, 7 and 7, 6.3 kg on each treatments respectively and 1.5 kg of rice straw for forage. In Trial 2, 10% of alternative diets were judged to be appropriate, and the control of 9kg of diets and barley grain fermented feeds were used to determine the appropriate feeding period. The treatments were 3 months before shipment (TRT 1), 6 months (TRT 2) and 9 months (TRT32). Each treatment group had 8 and 2.1 kg of concentrate and barley grain fermentation, respectively. As a feed, rice straw was fed to 1.5 kg. The daily gains per treatment were higher in TRT 1 and TRT 3 was similar to the Control. Body weight and daily gain during the test period were higher in TRT 1 fed 10% barley grain fermented feed. TRT 2 was the highest at 6.13, and TRT 3 was 6.0, which was higher than 5.63 of TRT 1 and 5.5 of Control.
Single crystals, which have complexed composition, are fabricated by solid state grain growth. However, it is hard to achieve stable properties in a single crystal due to trapped pores. Aerosol deposition (AD) is suitable for fabrication of single crystals with stable properties because this process can make a high density coating layer. Because of their unique features (nano sized grains, stress inner site), it is hard to fabricate single crystals, and so studies of grain growth behavior of AD film are essential. In this study, a BaTiO3 coating layer with ~ 9 μm thickness is fabricated using an aerosol deposition method on (100) and (110) cut SrTiO3 single crystal substrates, which are adopted as seeds for grain growth. Each specimen is heat-treated at various conditions (900, 1,100, and 1,300℃ for 5 h). BaTiO3 layer shows different growth behavior and X-ray diffraction depending on cutting direction of SrTiO3 seed. Rectangular pillars at SrTiO3 (100) and laminating thin plates at SrTiO3 (110), respectively, are observed.
열대몬순기후인 캄보디아에서 2011년부터 2013년까지 건기와 우기로 구분하여 사료용 옥수수인 국내 품종인 광평옥과 평안옥 그리고 수입 품종인 CP888과 Loeung Mongkul에 대한 생육과 수량특성을 구명한 결과이다. 출사 소요일수는 건기 재배에 있어서 2011과 2012년 및 2013년에는 큰 차이가 나타나지 않았으나, 우기 재배에서는 2012년이 2011년에 비해 6일이 단축되었으며 품종간 약 2-3 일의 차이를 보였다. 종실 수량은 건기 재배에서 2012년(548-788 kg/10a)이 2011 년(386-505 kg/10a)과 2013년(345-687 kg/10a)에 비해 다소 높았다. 우기 재배에서는 2012년(369-582 kg/10a)과 2011년(221-601 kg/10a)간에 차이를 보이지 않았다. 그러나 품종간 유의한 차이를 보였다. 본 연구결과 우기 재배에서 안정적인 옥수수 수량을 확보하려면 강수량이 높은 8월과 9월 및 10월 보다는 우기 전인 6월과 7월에 파종하는 것이 좋으며, 건기 재배에서는 충분한 관개가 있는 조건에서 12월부터 다음 년도인 2월 말까지가 파 종하는 것이 최대 수량을 확보하는데 유리할 것으로 사료된다.
This study was conducted to develop a healthy functional food material using mycelial extract of Phellinus sp. Jangsoo and GMPL48007 were selected as suitable strains because of good mycelial growth and high functionality. The highest total polyphenols and reducing power were observed in the Jangsoo strain and the radical scavenging was shown in GMPL48007. Among grains media, whole-grain wheat had the highest extraction yield from mycelia of selected strains; especially, the GMPL48007 strain showed the highest content of beta-glucan.
As a case study on aspect ratio behavior, Kaolin, zeolite, TiO2, pozzolan and diatomaceous earth minerals are investigated using wet milling with 0.3 pai media. The grinding process using small media of 0.3 pai is suitable for current work processing applications. Primary particles with average particle size distribution D50, ~6 μm are shifted to submicron size, D50 ~0.6 μm, after grinding. Grinding of particles is characterized by various size parameters such as sphericity as geometric shape, equivalent diameter, and average particle size distribution. Herein, we systematically provide an overview of factors affecting the primary particle size reduction. Energy consumption for grinding is determined using classical grinding laws, including Rittinger's and Kick's laws. Submicron size is obtained at maximum frictional shear stress. Alterations in properties of wettability, heat resistance, thermal conductivity, and adhesion increase with increasing particle surface area. In the comparison of the aspect ratio of the submicron powder, the air heat conductivity and the total heat release amount increase 68 % and 2 times, respectively.
2017년 10월부터 2018년 9월까지 광주광역시 시내 슈퍼, 대형마트 및 재래시장에서 구입한 율무, 수수, 기장, 조, 백미, 보리 등 곡류 75건과 볶은 율무, 보리, 옥수수 등 곡류가공품 52건 총 127건을 대상으로 곰팡이독소 함량검사를 실시하였다. 검사한 곰팡이독소는 아플라톡신(B1, B2, G1, G2,), 푸모니신(B1, B2), 오크라톡신 A, 제랄레논이었다 . 127건의 시료 중 38건에서 곰팡이독소가 검출되어 29.9% 의 검출률을 나타내었다. 127건의 시료 중 35건에서 푸모니신(B1+B2)은 4.8~738.5 μg/kg, 제랄레논은 20건에서 8.4~507.6 μg/kg 범위에서 검출되었다. 검사한 곡류와 곡류 가공품 중에서 가장 오염도가 높은 곰팡이독소는 푸모니신과 제랄레논이었고 이들 곰팡이가 중복 검출된 검체는 17 건으로 독소가 검출된 38건 중에서 44.7%를 차지하였다. 곰팡이독소 일일추정섭취량(EDI)과 잠정최대일일섭취허용량(PMTDI)으로부터 위해도를 산출하였다. 위해도는 0.0019~1.9526%로 나타나 이번에 조사한 곡류와 곡류가공 품은 곰팡이독소 측면에서는 안전한 수준으로 판단되었다.
Pb(Zr,Ti)O3 (PZT) is used for the various piezoelectric devices owing to its high piezoelectric properties. However, lead (Pb), which is contained in PZT, causes various environment contaminations. (K,Na)NbO3 (NKN) is the most well-known candidate for a lead-free composition to replace PZT. A single crystal has excellent piezoelectric-properties and its properties can be changed by changing the orientation direction. It is hard to fabricate a NKN single crystal due to the sodium and potassium. Thus, (Na,K)NbO3-Ba(Cu,Nb)O3 (NKN-BCuN) is chosen to fabricate the single crystal with relative ease. NKNBCuN pellets consist of two parts, yellow single crystals and gray poly-crystals that contain copper. The area that has a large amount of copper particles may melt at low temperature but not the other areas. The liquid phase may be responsible for the abnormal grain growth in NKN-BCuN ceramics. The dielectric constant and tan δ are measured to be 684 and 0.036 at 1 kHz in NKN-BCuN, respectively. The coercive field and remnant polarization are 14 kV/cm and 20 μC/cm2.