• 제목/요약/키워드: Open-Air Compost

검색결과 3건 처리시간 0.016초

무인항공기를 이용한 야적퇴비 적재량 산정 정확도 평가 (Accuracy Evaluation of Open-air Compost Volume Calculation Using Unmanned Aerial Vehicle)

  • 김흥민;박수호;윤홍주;장선웅
    • 한국전자통신학회논문지
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    • 제16권3호
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    • pp.541-550
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    • 2021
  • 야적퇴비는 농경지의 작물 양분 공급원으로 가치를 가지는 반면, 강우 시 환경에 악영향을 미치는 오염원으로 작용하게 되며, 이에 대한 관리가 요구된다. 본 연구에서는 광범위 영상 취득 및 자동 경로 비행이 가능한 고정익 무인항공기를 이용한 야적퇴비 적재량 산출 정확도 분석 및 활용 가능성을 파악하고자 하였다. 야적퇴비 3개소에 대한 적재량 산출 정확도를 평가하고자 지상 LiDAR 측량 및 회전익 무인항공기를 이용한 정밀 측량을 수행하였으며, 고정익 무인항공기를 통해 취득된 적재량과 비교하였다. 지상 LiDAR를 기준으로 야적퇴비 적재량 산출 비교 결과 회전익 기체의 오차율은 ±5 %, 고정익 기체의 오차율은 -15 ~ -4 %로 추정하였다. 고정익 기체에서 산출된 1개의 야적퇴비 적재량이 약 -15%로 과소추정 하였으나 야적퇴비 적재량의 편차는 2.9 m3로 큰 차이는 없었다. 또한 고정익 무인항공기를 이용한 주기적인 모니터링 결과 대상 지역에 위치한 야적퇴비 적재량의 시계열 변동 파악할 수 있었다. 이러한 결과는 고정익 무인항공기를 이용한 넓은 범위의 대한 효율적인 야적퇴비 모니터링 및 농경지의 비점오염원 관리가 가능함을 제시하였다.

양송이의 균사생장(菌絲生長) 및 자실체(子寶體) 수량(收量)에 미치는 복토재료(覆土材料)의 이화학적(理化學的) 성질(性質)에 관(關)한 연구(硏究) (Studies on the Physico-Chemical Characteristics of Different Casing Materials Affecting Mycelial Growth and Yield of Cultivated Mushroom, Agaricus bisporus (Lange) Sing.)

  • 김동수
    • 한국균학회지
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    • 제3권1호
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    • pp.1-19
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    • 1975
  • Since the importance of casing in fruit body formation of Agaricus bisporus has been emphasized, physico-chemical characteristics of casing materials were discussed by many workers and a mixture of peat and mineral soil as proper casing material has been adopted in many of mushroom growing countries. Because of limited resources of peat in Korea, it is necessary to find practical performance and substitutional materials for casing. The effect of casing on mycelial growth and mushroom yield of A. bisporus varied with materials, its combination and practices etc. The experiments to be discussed in this paper are concerned with pH and Ca of casing material which influence A bisporus, and changes of physico-chemical characteristics with mixing ratio of casing materials and its effect on A. bisporus. The optimum range of moisture content of each material, management of watering and application of physico-chemical characteristics casing materials was also investigated and re-use of weathered spent compost for casing material was described. 1. The effect of calcium on mycelial growth of A. bisporus at various pH in Halbschalentest showed different results with calcium sources. Best results were obtained around neutrality and fresh weight of fruit bodies grown in the range of pH 7 to 8 was highest among the tested levels. 2. Available moisture, pore space, organic matter, cation exchangeable capacity and exchangeable cation was increased by an increase of mixing ratio of peat in casing materials, while an adverse effect was obtained by addition of sand. 3. Mycelial growth on clay loam was more rapid at a lower bulk density of 0.75g/cc and at 20% moisture content on a dry weight basis at the same bulk density. 4. Mixing ratio of casing materials, 60 to 80 per cent by volume of peat mixed with 20 to 40 per cent of clay loam produced the highest yield of fresh fruit bodies and sand the lowest. However, per cent of open cap was highest in peat and lowest in sand. 5. Days required for fruit body initiation was shortened in mixtures of peat and clay loam by one to three days compared with other materials and the formation of flushes was clear. 6. The effect of some physico-chemical characteristics of casing materials on the fresh weight of fruit bodies were estimated by a multiple regression equation; Y=-923.86+$8.18X_1+8.04X_2+7.90X_3+0.12X_4+2.03X_5-0.82X_6-0.54X_7$ where $X_1,X_2,X_3,X_4,X_5,X_6,X_7$ are sand, silt, clay, available moistuer, porosity, organic matter and exchangeable cation respectively. The productivity of certain casing material could be predicted from this equation. 7. Fresh weight of fruit bodies was positively correlated with porosity exchangeable cation, organic matter, available moisture, silt and clay of materials; while sand was negatively correlated. On the contrary, sand was the unique factor reducing per cent of open cap. 8. Distribution of three phases of high productive casing material was concentrated in the range of 10 to 30 per cent solids, 15 to 30 per cent liquids, and 50 to 60 per cent in air volume. 9. Fresh weight of fruit bodies from peat was not affected with heavy watering but in clay loam and sandy loam severe crop losses occurred. Fresh weight of individual fruit was increased and open caps were decreased with heavy watering but light watering resulted in adverse effects: its effect was especially great in peat. 10. Optimum range of moisture content by weight on a dry basis was different with each casing material. To maintain optimum moisture content concerned with yield of fruit bodies and open cap, sandy loam and peat mixtures required daily watering of 0.6, 0.6 to 1. 2 and 1.2 to 2.4 liters per $3.3m^2$ of bed area, respectively. 11. Maximum yield of fruit body was recorded in the range of pF 2. 0 to 2. 5 of casing materials if organic matter content was below 4.2 per cent and in pF 1. 3 to 1.8 if above 7.1%. 12. pF curve of a certain casing material could be draws from moisture content at various pF values by multiple regression equations provided texture, organic matter and calcium of the casing material are given. Optimum moisture range of the casing materials also could be estimated by the equation. 13. It was possible to improve the phyico-chemical characteristics of clay loam and sandy loam by addition of weathered spent compost although the effect was less than in the case of peat. Fresh weight of fruit bodies wsa increased by addition of weathered spent compost but its effect was not as remarkable as peat. Accordingly, further studies will be required.

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겨울철 비닐하우스내의 볏짚퇴비더미의 온도변화와 부숙효과 (Effect of Heat Insulation on Decomposition of Ricestraw Pile in the P.E.Film House during Winter Season)

  • 이윤환;김용연
    • 한국토양비료학회지
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    • 제18권1호
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    • pp.27-31
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    • 1985
  • 겨울철 동안 속성퇴비(速成堆肥) 제조(製造)를 위한 P. E. Film House(비닐하우스)를 이용(利用)한 볏짚 부숙(腐熟) 시험(試驗) 결과(結果)는 다음과 같다. 1. 12월(月) 8일(日)부터 3월(月) 8일(日)까지 동계기간(冬季期間)동안의 온도변화(溫度變化)를 보면 비닐하우스 내부(內部)의 최고온도(最高溫度)는 $20^{\circ}C$ 정도(程度)로 $0^{\circ}C$ 내외(內外)인 야외(野外)의 최고온도(最高溫度)에 비(比)해 상당히 높게 유지(維持)되었고 일조(日照)가 양호(良好)할수록 그 차(差)는 더욱 컷다. 또한 비닐하우스 내부(內部)의 최저온도(最低溫度)는 대부분(大部分) 빙점(氷點) 이하(以下)였으나 야외(野外)보다는 $1{\sim}5^{\circ}C$ 정도(程度) 높았으며 일몰후(日沒後)에는 주간(晝間)의 잠열(潛熱)이 그리 많이 축적(蓄積)되지 못했다. 2. 비닐하우스 내(內)에서 볏짚 퇴적물(堆積物)의 전면(全面)비닐피복(被覆)과 상면(上面)비닐피복(被覆) 측면(側面)이엉피복(被覆) 두 처리(處理) 모두 내부(內部)의 최고(最高) 부숙온도(腐熟溫度)가 $70^{\circ}C$를 상회(上回)하나, 전면(全面)비닐피복처리(被覆處理)가 더 높았고 지속기간(持續期間)도 길었으며, 뒤집기를 한 후(後)의 온도(溫度) 재상승(再上昇) 속도(速度)가 빨랐고 최고온도(最高溫度)도 높아 미생물(微生物)의 번식활동(繁殖活動)이 빨리 왕성(旺盛)하게 되어 부숙(腐熟)이 촉진(促進)되는 것 같다. 3. 야외(野外)에서의 두 처리간(處理間) 차이(差異)가 현저(顯著)하여 상면(上面)비닐피복(被覆) 측면(側面)이엉피복(被覆) 처리(處理)는 뒤집기로 인한 열방산(熱放散)으로 퇴적물(堆積物)의 내부온도(內部溫度)가 빙점(氷點)에 머물면서 재상승(再上昇)까지의 기간(期間)이 매우 길어 1월(月)의 경우에는 40일(日)이 소요(所要)된 반면, 전면(全面)비닐피복(被覆)은 뒤집기를 한 직후부터 온도(溫度)가 재상승(再上昇)되었다. 4. 비닐하우스 내(內)에서 부숙처리(腐熟處理)는 3회(回) 뒤집기가 가능(可能)하여 완숙(完熟)에 가까운 부숙(腐熟)을 보였고 특히 전면(全面)비닐피복처리(被覆處理)는 부숙도(腐熟度)가 33%로 거의 완숙퇴비상태(完熟堆肥狀態)를 보였다. 한편 야외(野外)에서는 2회(回)의 뒤집기가 있었지만 부숙촉진효과(腐熟促進效果)는 미미(微微)하였고, 상면(上面)비닐피복(被覆) 측면(側面)이엉피복처리(被覆處理)는 부숙(腐熟)이 지연(遲延)되었다.

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