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        검색결과 4

        1.
        2000.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        본 연구에서는 유기물 재료로 구득이 쉽고 수량이 풍부하며 재료의 균일성이 좋은 왕겨를 팽연화 하여 양액재배용 배지 재료 사용하기 위해 적합한 조건을 탐색해 보았다. 팽연화 왕겨의 물리성은 CEC 37.0cmol.kg-1, 가비중 0.19g.㎤, -0.1 bar 상태에서 보수력 271.0으로 펄라이트보다 우수하였으나 흡수속도는 펄라이트에 크게 떨어지는 경향이었다. 팽연화 수준이 높아짐에 따라 보수력, 흡수속도 등 수분관련 물성이 좋아지는데 반해 입도가 작아지고 부숙속도가 빨라지는 변화가 있었고 재배중 부숙이 진행됨에 따라 급액 15일 이후부터 pH가 상승되며 15~20일 사이에 NO3 부족이 심화되어 작물에 스테레스를 주는 것으로 판단되었다. ERH a처리에서 당도가 펄라이트에 비해 약 1.0 。Brix정도 높고 수량의 유의성은 없었으므로 틈새간극 8mm, 날높이 3mm에서 생산된 팽연화 왕겨의 물성이 양액재배용 배지 재료로 사용하기에 적정하였다.
        4,000원
        3.
        2013.02 KCI 등재 서비스 종료(열람 제한)
        This study was carried out to know the substitute effect of Yacto (leaf mold compost) on popped rice hulls compost (PRHC) in Yang-jik nursery bed of Panax ginseng. PRHC was mixed with Yacto as 50:50 ratio, and 1 ~ 2% of the mixed oil cake, rice bran and urea were also added to promote decaying the mixed compost. The mixed compost made by PRHC and Yacto was showed that positive effect on the growth of ginseng seedling when it was mixed with 1% of oil cake and rice bran, and 2% of mixed oil cake. But addition to the 2% of urea in the mixture of PRHC and Yacto was not positive effect on the growth of ginseng seedling. Root yield of the mixed compost was similar to that of conventional compost by made 100% of Yacto. Therefore, the mixed compost can substitute for Yacto when PRHC and Yacto were mixed by 50:50 ratio and added 1% of oil cake and rice bran.
        4.
        2009.05 KCI 등재 서비스 종료(열람 제한)
        The goals of this study were conducted to investigate the effects of applying liquid aluminum chloride (AlCl3) to rice hulls on pH and soluble reactive P (SRP). A total of 800 broiler chicks (4 treatments × 4 replicates × 50 birds) were housed into 16 floor pens in a single house for 5 weeks. The treatments were divided into 4 groups: control, 100 g of liquid AlCl3/kg of rice hulls, 200 g of liquid AlCl3/kg of rice hulls, and 300 g of liquid AlCl3/kg of rice hulls. Liquid AlCl3 was sprayed on the rice hulls surface at a rate of 100 g, 200 g, and 300 g liquid AlCl3 per kg rice hull. pH values and SRP contents were significantly decreased (P<0.05) with the increased liquid AlCl3 levels in comparison with control. However, no significant differences in SRP contents were observed among all treatments at 3 and 4 weeks. Applying 100 g, 200 g, and 300 g liquid AlCl3 to rice hulls reduced SRP contents by 18, 25, and 52% for 5 weeks, respectively, compared with the controls. In conclusion, these results suggest that using liquid AlCl3 on rice hulls should be promising for reducing water contamination and resulted in a reduction in SRP contents, which reduced pH.