This study was carried out to investigate the growth characteristics, yield and chemical compositions of whole crop barley (Hordeum vulgare L.) according to mixing ratio of chemical fertilizer (CF) and liquid swine manure (LSM) in the paddy field cultivation. The experimental design was arranged in a randomized block design with five treatments and three replications. The manure fertilizer ratio of five treatments were CF 100% (T1), CF 70% + LSM 30% (T2), CF 50% + LSM 50% (T3), CF 30% + LSM 70% (T4), and LSM 100% (T5) of whole crop barley. At this time, the application of liquid swine manure was based solely on the nitrogen. Plant length was higher at T1 as compared to other treatments (T2, T3, T4 and T5). Fresh yield, dry matter yield and total digestive nutrients (TDN) yield were the highest in T1, whereas the lowest in T5 treatment (p<0.05). Chemical compositions (crude protein, crude fat, neutral detergent fiber, acid detergent fiber and TDN) did not show significant difference among treatments. Ca and Na contents were significantly lower at T1 as compared to other treatments (T2, T3, T4 and T5). However, Mg and P contents were significantly higher at T1 as compared to other treatments(p<0.05). There was no significant difference in total free sugar content among T2, T3, T4 and T5 treatments, but the chemical fertilizer (T1) was significantly lower than the other treatments (p<0.01). Considering the above results, liquid swine manure application showed lower dry matter yield and TDN yield than chemical fertilizer, but higher free sugar content. Therefore, in order to increase the productivity of whole crop barley, it is considered desirable to mix liquid fertilizer with chemical fertilizer, taking into account the decomposition rate and insufficient components (P, K) of the liquid swine manure.
본 실험은 논 토양에서 호밀 재배시 화학비료와 발효 돈분 액 비 혼용 시용이 생육특성 및 영양성분에 미치는 영향을 조사하고 자 실시하였다. 실험설계는 화학비료 100% 처리구(C), 화학비료 70% +돈분액비 30% 처리구(T1), 화학비료 50% +돈분액비 50%처리구(T2), 화학비료 30% +돈분액비 70% 처리구(T3) 그리고 돈분액비 100% 처리구(T4)로 한, 5처리 3반복 난괴법으로 배치 하였다. 이때 돈분 액비 시용은 질소량만을 기준으로 하였다. 초 장은 처리구들 간에 유의적인 차이를 보이지 않았다. 이삭길이, 엽장 및 엽폭은 각각 C, T3 및 T2구에서 각각 높게 나타났다 (p<0.05). 경의 굵기는 T4 > T3 > T2 > T1 > C구 순으로 돈분 액비 시용량이 높을수록 높게 나타났다(p<0.05). 건물수량 및 TDN 수량은 T4구가 가장 높게 나타난 반면 C구가 가장 낮게 나 타났다(p<0.05). 조단백질, NDF, ADF 및 조섬유 함량에서는 처 리구들 간에 유의적인 차이는 나타나지 않았다. 그러나 조지방 및 조회분 함량에 있어서는 각각 T2 및 T3구에서 높게 나타났다 (p<0.05). 총무기물 함량은 돈분액비 시용 비율이 증가할수록 유 의적으로 감소하였다(p<0.05). 그러나 총 유리당 함량은 돈분액 비 시용 비율이 높았던 T3 및 T4구가 높게 나타난 반면 화학비료 처리구(C) 및 돈분액비 시용 비율이 낮은 구(T1)에서는 낮게 나 타났다(p<0.05). 이상의 결과를 종합해 볼 때, 수량성(건물수량, TDN수량)과 사일리지 품질에 영향을 미치는 유리당을 고려한다 면 화학비료와 돈분액비 혼용하거나 돈분액비를 시용하는 것도 효과적이라고 사료된다.
털부처꽃(Lythrum salicaria L.)은 전국에 분포하는 다년생 초본식물로 척박하고 습한 지역을 포함한 다양한 환경에서 잘 자라는 것으로 알려져 있다. 따라서 하천변, 척박지에서 정원 용, 화훼용 및 관상용 식물로 이용이 가능하다. 본 연구는 털 부처꽃의 적정 육묘 조건(토양종류, 플러그 트레이 셀 크기,파종립수, 액비농도 및 차광)을 조사하였다. 대조구(원예상토) 에서 재배된 유묘의 생육이 가장 우수하였다. 반면 피트모스 와 펄라이트의 혼합용토는 육묘기간이 지속되면서 생육수치 가 감소하는 경향을 나타냈다. 셀 크기는 용적이 가장 큰 162 셀에서 재배된 유묘의 생육이 우수하였으나, 200셀과 288셀에 서 자란 묘도 건강했다. 한편 유묘의 결주발생을 고려하면 셀 당 2립을 파종하는 것이 적합하였다. 액비 처리는 유묘의 생 육을 촉진하였다. 특히 Hyponex 1000배는 초장, 줄기직경, 엽수, 마디수, 근장, 지상부 생체중 및 지하부 생체중을 증가 시켰다. 또한 유묘의 생육은 55% 차광 하에서 우수하였다. 따 라서 털부처꽃의 가장 효과적인 생육조건은 원예상토가 충진 된 288셀 플러그 트레이에 셀 당 2립을 파종하고 Hyponex 1000배를 시비하면서 55% 차광 하에서 재배하는 것이었다.
This study was conducted to examine the effect of nutrients balanced fertilizers applications, swine liquid manure(SLM) with synthetic chemical fertilizer on growth and yield of Chinese chive(Allium tuberosum Rottler) and soil properties in green house cultivation during 2015 growing season. There are 4 treatment plots; swine liquid manure(SLM), nutrients balanced fertilizers(mixture of chemical fertilizer with swine liquid manure(SLM+CF), nutrient balanced and pH adjustment (SLM+CF+pH) and the conventional chemical fertilizer(control). The phosphorous acid is added to adjust pH in animal liquid manure. The yield of Chinese chive in plot of swine liquid manure(SLM) was decreased by 4% compared with plot of conventional chemical fertilizer(control). There was no significant differences of growth and yield of Chinese chive between SLM+CF and control. The yield of SLM+CF+pH plot was highest yield as 8,235 kg 10a-1 among 4 treatments and was increased than that of swine liquid manure plot(7,489 kg 10a-1). EC and available P2O5 were decreased by SLM+CF+pH treatment. Combined application of SCM and CF fertilizer can be a useful tool, particularly for the fertigation culture of Chinese chive in greenhouse. In conclusion, the present study demonstrates that the combined application of liquid swine manure and chemical nutrients was responsible for improving yield of Chinese chive and soil properties.
본 실험은 논 토양에서 사일리지용 수수 × 수수 교잡종 재배시 화학비료와 발효 돈분 액비 혼용 시용이 생육특성 및 영양성분에 미치는 영향을 조사하고자 실시하였다. 실 험설계는 화학비료 100% 처리구 (C), 화학비료 70% + 돈분 액비 30% 처리구 (T1), 화학비료 50% + 돈분액비 50% 처 리구 (T2), 화학비료 30% + 돈분액비 70% 처리구 (T3) 그리 고 돈분액비 100% 처리구 (T4)로 한, 5처리 3반복 난괴법 으로 배치하였다. 이때 돈분 액비 시용은 질소량만을 기준 으로 하였다 (150 kg/ha). 초장, 엽장, 엽폭 그리고 경의 굵 기는 T4구가 유의적으로 작게 나타났다 (p<0.05). 경의 경 도는 돈분액비 시용 비율 낮고 화학비료 시용 비율이 높을 수록 유의적으로 증가하였다 (p<0.05). 생초수량은 T2구가 높았던 반면 T3구가 낮게 나타났다 (p<0.05). 그러나 건물 수량 및 TDN 수량은 처리구들 간에 유의적인 차이를 보이 지 않았다. 조단백질 함량은 T1구가 다른 구에 비하여 높 게 나타났다 (p<0.05). 조지방 함량은 T1, T2, T3 그리고 T4 처리구들 간에는 유의적인 차이가 없었지만, C구와는 유의적인 차이를 보였다 (p<0.05). NDF와 조섬유 함량은 각각 T3구와 C구에서 높게 나타났다 (p<0.05). 그러나 ADF 함량은 처리구들 사이에 유의적인 차이를 보이지 않았다. 총무기물 함량은 T1 > T2 > T4 > T3 > C 구 순으로 높게 나 타났다 (p<0.05). 유리당 함량은 T1과 C구가 다른 처리구에 비하여 유의적으로 높게 나타났다 (p<0.05). 이상의 결과를 종합해 볼 때, 돈분액비 시용은 화학비료에 비하여 수량성, 영양성분에 크게 떨어지지 않기 때문에 사일지용 수수 × 수수 교잡종 재배시 돈분액비와 화학비료를 혼용 시용 하 거나 돈분액비 만 시용하여도 큰 무리가 없는 것으로 판단된다.
This study was conducted to investigate the influence of the mixed application of chemical fertilizer (CF) and liquid swine manure (LSM) on the agronomic characteristics, dry matter yield, amino acids, minerals, and free sugars in cultivating Sorghum × Sudangrass hybrid (SSH) on paddy soil. The field experiment was designed in a randomized block design with three replications and consisted of CF 100% (C), CF 70% + LSM 30% (T1), CF 50% + LSM 50% (T2), CF 30% + LSM 70% (T3), and LSM 100% treatment (T4). The application of LSM was based solely on the nitrogen. Plant length, leaf length, leaf width and number of leaf were significantly higher in T4 (p<0.05), but stem diameter did not show significant differences among treatments. Stem hardness increased significantly (p<0.05) as the LSM application rate decreased, but sugar degree decreased significantly (p<0.05) as the LSM application rate decreased. Fresh yield, dry matter yield and TDN yield were the highest in T4, whereas the lowest in T2 (p<0.05). Crude protein, crude fat and crude ash were the highest in C, T4 and T2, respectively (p<0.05). However, NDF and ADF did not show significant difference among treatments. Crude fiber decreased significantly (p<0.05) as the LSM application rate increased. The total mineral content was decreased significantly (p<0.05) as the LSM application rate increased. Total amino acid content was higher in the order of T1> C> T3> T4> T2 (p<0.05). Free sugar content increased significantly (p<0.05) as the LSM application rate increased. The analysis of all the above results suggests that the application of liquid swine manure is very effective, considering the yield performance and the content of sugar degree and free sugar. In addition, liquid swine manure may be possible to grow Sorghum × Sudangrass hybrid without chemical fertilizer.
본 연구는 축산분뇨 처리장(바이오가스 플랜트) 액비의 고도처리에 적합한 공정을 도출하기 위한 기초 연구이다. 액비를 고도처리하기 위하여 나노여과 및 역삼투(reverse osmosis) 공정을 각각 사용하였고, 전처리공정으로서 담체를 첨가하지 않은 MBR과 담체를 첨가한 MBR을 각각 적용하여 비교하였다. 액비의 질소는 주로 암모니아성 질소의 형태로 존재하였다. MBR의 운전에서 담체(biomedia) 유무에 따른 COD, T-N 및 T-P의 제거효율에서 큰 차이는 없었으나, 담체를 첨가한MBR의 TMP는 담체를 첨가하지 않은 MBR에 비해 매우 서서히 증가하였다. 전처리 공정으로 담체를 첨가한 MBR 공정을사용한 경우, NF에 의한 COD, T-N 및 T-P의 제거효율은 각각 99.8, 86.5% 및 99.8%이었으며, RO에 의한 제거효율은 각각99.9, 86.8% 및 99.9%이었다. MBR과 NF/RO 공정을 이용하여 처리한 액비의 최종 수질은 분뇨처리장 방류수 수질기준과비교하였을 때, COD와 T-P는 방류수 수질기준을 만족하였으나, T-N은 수질기준에 부적합하였다. 따라서 T-N에 대한 방류수 기준을 만족시키기 위해서는 MBR 조업 cycle의 조정 또는 나노여과/역삼투에 의한 2차 재처리 등의 개선이 필요한 것으로 판단된다.
The bio reactors with high efficiency using ejector are widely used in gas-liquid system, This is also due to the high efficiency in gas dispersion resulting in high mass transfer rate and low power requirements. Thus, the new liquid fertilizer manufacturing equipment composed with aeration tank, cycling tank and circulation pump using an ejector was developed. The aim of this study is to investigate the effect of an ejector on the liquid fertilizer manufacturing equipment and to design the optimal ejector for actual application using CFD analysis and experimental method. The results show that the suction air mass flow rate is increased, as the diameter of driving ejector nozzle is smaller and the position of nozzle is toward the exit of an ejector.
This study was performed out to investigate the influence of the mixed application of chemical fertilizer (CF) and liquid swine manure (LSM) on the growth characteristics, dry matter yield, amino acids, minerals, and free sugars in cultivating silage corn on paddy soils. The field experiment was designed in a randomized block design of 3 repetitions with CF 100% treatment (C), CF 70% + LSM 30% treatment (T1), CF 50% + LSM 50% treatment (T2), CF 30% + LSM 70% treatment (T3), and LSM 100% treatment (T4). At this time, the application of LSM was based solely on the nitrogen. Ear length, ear circle, stem diameter, and stem hardness of the silage corn did not show significant differences between treatments. Fresh yield, dry matter yield and TDN yield were highest in T3, whereas the lowest in C treatment (p<0.05). Crude protein, crude fat, and crude ash content were significantly higher in T1, C, and T4 treatment, respectively (p<0.05). However, NDF, ADF and crude fiber content did not show significant difference between treatments. The total mineral content decreased significantly (p<0.05) as the LSM application rate increased. Total composition amino acid content was higher in the order of T1 > T2 > C > T4 > T3 treatment (p<0.05). Free sugar content was higher in the order of T1 > T3 > T4 > T2 > C treatment (p<0.05). Based on the above results, suggests that the mixed application of chemical fertilizer 30 50% and LSM 50~70% (T2 and T3) is the most effective, considering the yield performance and the content of sugar degree and free sugar affecting silage.
본 연구는 유기액비 재료가 유기액비 제조시 화학적 특성 변화에 미치는 영향을 구명코자 충청북도농업기술원 플라스틱하우스에서 수행하였다. 계분, 대두박, 쌀겨 등 3처리를 하였다. 본 시험에서 얻어진 결과를 다음과 같이 요약할 수 있다. 액비 원료의 총 질소 함량은 대두박이 55 mg·kg−1으로 가장많았으며, 인산과 칼륨 함량은 계분에서 가장 많았다. 계분의pH는 중성에 가까웠으며, 대두박과 쌀겨는 강산성을 띠었다. 계분 액비의 EC는 발효기간이 증가할수록 증가하였고, 대두박과 쌀겨 액비는 발효기간 중 증가하다가 감소, 증가하는 경향이었다. 계분 액비의 황화수소 발생량은 발효 후 2주차에는3,200 mg·L−1이었으나, 발효 12주차에는 1,600 mg·L−1으로 감소하였고, 대두박과 쌀겨 액비는 발효 과정중 황화수소 가스가 발생하지 않았거나 거의 발생하지 않았다. 질소와 칼슘 함량은 계분 액비와 대두박 액비에서 가장 많았다. 인산, 마그네슘의 함량은 쌀겨 액비에서 각각 5.6 g·kg−1, 1.5 g·kg−1으로 가장 높았다. 칼륨은 처리에 따라 4.3-4.4g·kg-1으로 차이가 없었다.
본 연구는 간척지에서 여름철 대표 사료작물인 옥수수와 수수수수 교잡종의 생산성 및 화학비료와 가축분뇨의 시용시 생산성을 비교하기 위하여 2008년은 화옹간척지에서 2009년은 석문간척지에서 시험을 실시하였다. 간척지에서 사료작물의 생산성은 옥수수가 수수수수 교잡종보다 높았으며 사료가치도 옥수수가 수수수수 교잡종보다 높았다. 화학비료와 가축분뇨의 시용시 생산성은 옥수수의 경우 화학비료에서 높은 수량을 보였으며 수수수수 교잡종의 경우 화옹간척지에서 시험한
본 연구는 제주도의 서부지역 돼지사육농가에서 생산되고 있는 돈분액비의 비료가치 및 전기전도도나 건물함량과 성분간 상관관계를 구하여 간편한 비료가치 구명방법을 찾고자 수행되었다. 돈분액비의 시료는 118개 농가에서 수집되었고 건물수준을 기준으로 4개의 형태로 분류하였다. 전기전도도 (EC), 건물함량(DM), 암모니아성질소과 여러 가지 무기물을 분석하였고 이들 성분간에 상관성이 조사되었다. 118개 양돈농가 중 92개 농가는 액비의 건물함량이 3% 미만이
본 실험은 석회, 돈분액비 및 화학비료의 시용에 따른 옥수수의 생육특성, 건물수량 및 토양의 질산염 함량에 미치는 영향을 연구하기 위하여 토양 전처리, 기비, 추비를 각각 달리처리한(C구: 화학비료 + 화학비료, T1; 석회 + 화학비료 + 화학비료, T2; 돈분액비 + 돈분액비, T3; 석회 + 돈분액비 + 돈분액비, T4; 돈분액비 + 화학비료) 5처리 3반복으로 실시하였으며, 그 결과는 다음과 같다. 생육특성(초장, 착수고, 암이삭 비율, 건물율)
This experiment was carried out to determine optimal concentration of organic liquids for the improvement of antioxidant in pepper. As human beings enter the age of 100, they are naturally recognized as a standard of high quality agricultural products for safety and improvement of functional materials. Tomatoes are among the most consumed vegetables in the world and there is a growing interest in varieties with high functional content. However, there is a limit to the improvement of functional materials of certain varieties, so it is necessary to study the improvement of materials by cultivation physiology and environmental conditions. The test material was sown on March 15th in Wanju province and on June 15th in rain shelter house using pepper “suppermanidda” varieties. To investigate the optimum concentration of organic liquids for the improvement of antioxidant, 15 kinds of treatments were carried out including control, tomato liquid fertilizer etc. The liquid fertilizer of organic material was treated with 6 times of irrigation, and the analysis of nutrients and antioxidant was done by harvesting pepper on the September 10th. The contents of beta-carotene was increased in the T3, T4, T12 treatments, vitamin C was in the P14 treatments, flavonoid, polyphenol were in the P12 treatment compared to the control. In T12 treatment, flavonoid increased by 115.9%, polyphenol by 121.7%, beta-carotene by 117.2% and vitamin C by 136.1% compared to the control. There was no significant difference in the growth characteristics and characteristics of pepper fruit of pepper according to liquid fertilizer treatment. Therefore, it has been confirmed that the organic antioxidant is affected by the liquid fertilizer treatments of organic materials and it is necessary to study the environmental conditions such as temperature, moisture and photosynthesis.
This study investigated the use of a hydroxyl-radicals-generated microbubble/catalyst (MB/Cat) system for removing organic pollutants, nitrogen, and phosphorous from liquid fertilizer produced by livestock wastewater treatment. Use of the MB/Cat system aims to improve the quality of liquid fertilizer by removing pollutants originally found in the wastewater. In addition, a reduction effect has been reported for antibiotics classified as representative non-biodegradable matter. Samples of liquid fertilizer produced by an aerobic biological reactor for swine wastewater treatment were first analyzed for initial concentrations of pollutants and antibiotics. When the MB/Cat system was applied to the liquid fertilizer, TCOD, TOC, BOD5, and NH3-N, and PO4-P removal efficiencies were found to be approximately 52%, 51%, 30%, 21%, and 66%, respectively. Additionally, Amoxicillin hydrate was removed by 10%, and Chlortetracycline HCl and Florfenicol were not present at detectable levels These findings confirm that the MB/Cat system can be used with livestock wastewater treatment to improve liquid fertilizer quality and to process wastewater that is safe for agricultural re-use.
The purpose of this study was to evaluate the mixed treatment of compost tea and amino acid liquid fertilizer as a substitute of oil cake for the organic cultivation of maize in Goesan, Chungbuk province. As a result, nitrogen, phosphoric acid, potassium, calcium and magnesium contents of each organic fertilizer were in the order of oil cake > amino acid fertilizer > compost tea. Each of these organic fertilizers had little influence on the change of soil chemical. Individual treatment of amino acid fertilizer and oil cake for weight of an ear as well as all individual treatments for the fresh weight of 100 kernels showed significant increase, compared to the untreated control. For the corn yield of merchantable quality, each treatment of compost tea, amino acid liquid fertilizer and oil cake increased higher 3.9, 5.4 and 5.9% than untreated control, respectively. On the other hand, as a result of mixed treatment of amino acid fertilizer and compost tea, the change of soil chemical property was insignificant. The mixed treatment, Nonetheless, showed significant increase for stem height to 1st ear, grain setting length in an ear, weight of an ear, and fresh weight of 100 kernels, compared to the oil cake as a control. After all, the corn yield of merchantable quality produced by the mixed treatment was 3.9% higher than the control. Therefore, our study would be considered that the mixed treatment of amino acid and compost tea is one of organic materials that can replace oil-cake in maize.