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Study on the Characteristics of Feather Developing Pattern and Morphology in Early- and Late-Feathering Korean Native Chickens (한국재래닭에 있어 조우성과 만우성 깃털의 발생 양상 및 형태적 특성 고찰)

  • Bang, Min Hee;Cho, Eun Jung;Cho, Chang Yeon;Sohn, Sea Hwan
    • Korean Journal of Poultry Science
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    • v.45 no.3
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    • pp.155-165
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    • 2018
  • Chicken feathers could be classified into early-feathering (EF) and late-feathering (LF) depending on the development and patterns of the wing and tail feathers. Currently, feather-sexing is a widely used chick sexing method in the industry. This study was carried out to suggest the method of classifying of EF and LF chicks to establish auto-sexing Korean native chicken (KNC) strains. The development and morphology of wing feathers and tail feathers in 856 KNCs from hatching to 55-days old were analyzed to classify EF and LF chicks. We also performed PCR analysis using K-specific gene primers to confirm the agreement between the phenotypes and genotypes of EF and LF chickens. In the results, the EF chicks had long primaries and coverts, and there was a significant difference in length between primaries and coverts. The LF chicks had shorter primaries and coverts than the EF chicks, and showed little difference in the length between primaries and coverts. LF chicks could be classified into four groups: LF-Less, LF-Scant, LF-Equal and LF-Reverse according to their wing feather patterns. EF chicks had 1.5 times longer primaries than LF chicks until they were 15-days old, but the lengths were almost the same at 50-days old. The tail feathers of the EF chicks were apparent at 5-days old, but those of the LF chicks were short and indefinite at that time. When EF and LF chicks were classified by the length of primaries being more or less than 9 mm, the classification accuracies for EF and LF chicks were 96.2% and 85.4%, respectively, compared to the PCR results. In conclusion, juvenile EF and LF KNC showed distinct differences in feather development and morphology, and could be easily distinguished at one day-old.

Aggregate of Korea in 2022 (2022년 한국의 골재)

  • Sei Sun Hong;Jin Young Lee
    • Economic and Environmental Geology
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    • v.56 no.6
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    • pp.871-885
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    • 2023
  • In 2022, the total of 129 million m3 of aggregate was produced in Korea, a slightly decrease from the total production of 2021. Of these, about 44 million m3 of sand and about 84 million m3 of gravel were produced. About 41% of total quantity of aggregates were produced by permission and the rest were produced after declaration. It estimated that of the 129 million m3 of aggregates in Korea in 2022, about 54.9% was produced by screening crushed aggregate, by 32.8% by forest aggregate, 2.2% by land aggregate, 6.2% by marine aggregate and 3.1% by washing aggregate, and 0.3% by river aggregate. This indicates that screening crushed and forest aggregate are the main producers of domestic aggregate in 2022. Leading producing metropolitan governments were Gyeonggi-do, Gyeongsangnam-do, Chungcheongnam-do, Incheon, Jeollanam-do, Chungcheongbuk-do, Gangwon-do, Gyeongsangbuk-do in order decreasing volume. In 2022, aggregates were produced in 147 local governments, and the 10 leading producing local governments were, in descending order of volume, Hwaseong, Pocheon, Paju, Ongjin, Youngin, Gwangju, west EEZ, Incheon Seo-gu, Namyangju, Asan. The combined production of the 10 leading local governments accounted for 31% of the national total. And 44 local governments have produced aggregates of more than 1 million m3 each other. In 148 local governments that produced aggregate, a total of 800 active operations produced aggregate with 350 operations by river, land and forest aggregate, 450 operations by selective crushed and washing aggregate.

Silver in Peru: Present Status and Future Challenge (페루의 은: 현황과 미래의 도전)

  • Acosta, Jorge;Santisteban, Alexander;Huanacuni, Dina;Valencia, Michael;Villarreal, Eder;Heo, Chul-Ho;Lee, Bum Han;Nam, Hyeong-Tae
    • Economic and Environmental Geology
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    • v.48 no.2
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    • pp.169-175
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    • 2015
  • Silver production in Peru was 118 Moz in 2013, which was $3^{rd}$ ranked in the world. Silver production mines which were ranked from $1^{st}$ to $5^{th}$ in Peru in 2013 were Antamina(16.7 Moz), Uchuchacua(12 Moz), Pallancata(7.6 Moz), Anim$\acute{o}$n(7 Moz), and Arcata(5.4 Moz). Total reported silver resources in Peru is about 7,012 Moz, and resources from the belts of Miocene epithermal deposits and the belts of Miocene skarn, replacement and vein deposits are 4,812 Moz, which corresponds to 69% of total resources. There are 14 ongoing projects which will be developed to the production stage from 2014 to 2019. Through these projects, silver production in Peru is expected to be 148 Moz in 2017.

Softening Related Changes in Cell Wall Polysaccharides of Persimmon (감의 연화와 관련된 세포벽다당류의 변화)

  • Kim, Soon-Dong;Park, Nam-Sook;Kang, Meung-Su
    • Korean Journal of Food Science and Technology
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    • v.18 no.2
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    • pp.158-162
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    • 1986
  • Various cell wall polysaccharides such as ionically associated pectin (IAP), covalently bounded pectin (CBP),4N potassium hydroxide soluble hemicellulosic fraction (HF,) and 0-3N soluble hemicellulosic fraction (HF,) were fractionated from crude cell wall of the fresh and soft persimmon by chemical method. The changesin cell wall polysaccharides were studied by gel filteration chromatography . The content of crude cell wall remarkably decreased in the soft persimmon. The decreasing rates of IAP, CBP and $HF_2$ were 59, 60 and 74%, respectively, while $HF_1$ and cellulose changed only a little during softening. Sugar compositions of IAP and CBP were 72-84% uronic acid, 5-1% hexose and 11-16% pentose, and also the hemicellulose was composed of uronic acid besides hexose and pentose that was hemicellulosic components. The loss rate of pentose in IAP, of hexose in CBP, of hexose and uronic acid in $HF_2$, of pentose in $HF_1$ increased during softening. Though apparent average molecular freight of all polysaccharides shifted from high molecular freight to low molecular weight polymer, the shifting degree of CBP and $HF_2$ was especially remarkable during softening. It is suggested that the severe softening phenomenon of persimmon involved the degradation and dissolution of wall bound-CBP and $HF_2$ which were associated with each other.

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Estimation of the production potential of domestic wood pellets using unused forest biomass by analyzing the potential volume of forest biomass and the growth of forest trees (산림바이오매스 부존 잠재량 및 임목생장량 분석을 통한 미이용 산림바이오매스 활용 국내산 Wood pellet 생산 가능량 예측 연구)

  • kim, Sang-Seon;Lee, Bong-Hee
    • Journal of the Korean Applied Science and Technology
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    • v.35 no.1
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    • pp.247-253
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    • 2018
  • To replace the imported biomass and to effectively cope with growing RPS(Renewable Portfolio Standard) in power sector, the domestic forest biomass resources for wood pellets were estimated from the preceding research and annual growth rate of forest trees in this study. Assuming that 20% of the by-product from forest trees processing were used as raw material for wood pellet and the wood pellet production capacity was based on the average value derived from the above two methods, unused by-product and residues generated 1.99million tons in 2016, 2.28million tons in 2020 and 3.08million tons in 2030. If 20% of by-products(pebbles, sawdust, etc.) from roundwood processing were used as raw material for wood pellets, the wood pellet could be produced 2.74million tons/year in 2016, 2.95million tons/year in 2020, 3.98million tons/year in 2030. Therefore, total amounts of wood pellet would be increased to 2.74million tons/year in 2016, 3.14million tons/year in 2020, 4.23million tons/year in 2030 when it considered unused by-product and residues from wood processing as raw materials.

Modeling for Pollution Contribution Rate of Land based Load in Masan Bay (마산만 육상기인오염원의 오염기여율 모델링)

  • Jung, Woo-Sung;Hong, Sok-Jin;Lee, Won-Chan;Kim, Hyung-Chul;Kim, Jin-ho;Kim, Dong-Myung
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.22 no.1
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    • pp.59-66
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    • 2016
  • Pollution contribution rate that is effect on water quality from land based load in Masan bay was showed quantifiably for coastal water quality management by using ecological model. It was calculated by difference of water quality concentration at each points t hat is calculated by each scenarios that are presence or absence of each sources (16 points). Results show that, rivers of Northern Masan bay contributed in Masan bay COD is 20 %, T-P is 62 % at northern part and COD is 10 %, T-P is 16 % at middle part. As a result, rivers of Northern Masan bay had effect on water quality of northern Masan bay and middle Masan bay. Also, T-P load affects water quality bigger than COD load, because T-P contribution rate bigger than COD contribution rate of northern rivers. Dukdong WTTP that is land pollution source of southern Masan bay contributed in Masan bay COD is 26 %, T-P is 11% at middle part, COD is 17 %, T-P is 7 % at middle part and COD is 10 %, T-P is 1 % at outer part. It affects water quality bigger at southern and middle of Masan bay than outer bay, because residual flow of bottom flows toward inner of Masan bay nearby Dukdong WTTP.

Seasonal variation in species composition of catch by a coastal beam trawl in Jinhae Bay and Jinju Bay, Korea (진해만과 진주만에서 새우조망으로 어획된 수산자원의 계절변동)

  • Song, Mi-Young;Kim, Joo Il;Kim, Sung Tae;Lee, Jong Hee;Lee, Jae Bong
    • Journal of the Korean Society of Fisheries and Ocean Technology
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    • v.48 no.4
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    • pp.428-444
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    • 2012
  • The species composition and seasonal variation of fisheries resources in Jinhae bay and Jinju bay, were studied using shrimp beam trawl through a year of 2010. During the study period, a total of 117 species were collected in Jinhae bay. Species included were 63 species in Pisces and 24 in Crustacea. And a total of 106 species were collected in Jinju bay. Species included were 57 species in Pisces and 31 in Crustacea. The dominant species were Zoarces gilli, Crangon hakodatei and Oratosquilla oratoria in Jinhae bay, and Crangon hakodatei, Leiognathus nuchalis and Charybdis bimaculata in Jinju bay. The samples were mainly grouped according to the location and season on the SOM. Group 1 with sample sites in Jinju bay, was characterized by high values of Parapenaeopsis tenella, Leiognathus nuchalis and Hexagrammos otakii. Group 2 with sample sites in April, were dominant Crangon hakodatei and Luidia quinaria. The samples in Group 3 were high values of Charybdis bimaculata and Pleuronichthys cornutus. Group 4 with sample sites in Jinhae bay, was characterized by high densities of Zoarces gilli and Pholis fangi. The dominant species, Crangon hakodatei, were catched egg-bearing females until June. Zoarces gilli and Leiognathus nuchalis were presented small size individuals during study period. It represented that study area is an important role in spawning and nursery ground for fisheries resources.

The Effects of the Spat Planting Time and Environmental Factors in the Arkshell, Scapharca broughtonii Schrenck Culture (피조개(Scapharca broughtonii Schrenck) 양식시 살포시기와 환경 특성의 영향)

  • Kim, Jeong-Bae;Lee, Sang-Yong;Jung, Choon-Goo;Jung, Chang-Su;Son, Sang-Gyu
    • Journal of Aquaculture
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    • v.20 no.1
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    • pp.31-40
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    • 2007
  • To find out the effect of the spat planting time and environmental factors in the arkshell, Scapharca broughtonii (Schrenck), we investigated the growth, survival rate of arkshell and habitat characteristics in Gamak Bay, Yeoja Bay and Saryang Island. We planted artificial spats of arkshell in Gamak Bay and Yeoja Bay at November 2004, and also planted domestic and Chinese natural spats in Saryang Island at March 2005. We measured growth, survival rate of arkshell, physiochemical parameters of the water mass (water temperature, salinity, dissolved oxygen, nutrients and chlorophyll a) and characteristics of the sediment (oxygen penetration depth, oxygen microprofiles, ignition loss and chemical oxygen demand) by monthly. The cumulative survival ratio of arkshell in Gamak Bay was the highest at December, whereas the ratio of arkshell in Yeoja Bay was recorded as 0% at October. The monthly growth rates of arkshell length in Gamak Bay and Yeoja Bay were the highest in May and the growth rate of the Korean arkshell in Saryang Island was higher than Chinese ones significantly. The high mortality (> 65%) of the arkshell in Yeoja Bay during summer probably caused by high water temperature, inflow of low salinity water, and low dissolved oxygen concentration in sediment. The concentrations of nutrient and sediment COD were considered to play an important role in the monthly survival ratio of arkshell in Gamak Bay and Sarayng Island. We suggest that the growth and mortality of arkshell might be influenced to the planting time of spat and the habitat characteristics.