Mushroom Production Technology with Crop Residues

농산부산물(農産副産物)을 이용(利用)한 식용(食用)버섯 재배(栽培)

  • 차동열 (농촌진흥청 농업기술연구소) ;
  • 박정식 (농촌진흥청 농업기술연구소)
  • Published : 1984.10.30

Abstract

The results of series studies on the ratio of supplements, out-door composting and out-door fermentation induced by using the rice straw as a main substrates at the cultivation of Agaricus bisporus, and the cultivation of Pleurotus ostreatus using the rice straw bundles on its compost are as follows; When rice straw for cultivation of A. bisporus was used as the main substrates in synthetic compost as a carbon source, yields were remarkably high. Fermentation was more rapid than that of barley straw or wheat straw and the total nitrogen content was high in rice straw compost. Use of barley straw compost for cultivation of A. bisporus was shown of low yield compared with rice straw, but when a 50% barley straw and 50% rice straw mixture was used, the yield was almost the same as that using only rice straw. The total organic nitrogen on the compost were shown the positive relation to the yield of A. bisporus, but the ammonium nitrogen negative relation to the mycelial growth and yield of A. bisporus. When rice straw was used as the main substrate for compost media, urea was the most suitable source of nitrogen. Poor results were obtained with calcium cyanamide and ammonium sulfate. When urea was applied three separate times, nitrogen loss during composting was decreased and the total nitrogen content of compost was increased. The supplementation of organic nutrient activated compost fermentation and increased yield of A. bisporus. The best sources of organic nutrients selected were as follows: perilla meal, sesame meal, wheat bran and poultry manure, etc. Soybean meal, tobacco powder and glutamic acid fermentation byproducts which were industrial wastes, could be substituted for perilla meal, sesame meal and wheat bran as organic nutrient sources for compost media. During out door composing of rice straw for cultivation of A. bisporus, using of tuner, composter and tunnel system increased up to 13% of its yield, and also cut down 34% of production Cost. The cultivation of P. ostreatus and utilizing of rice straw and wheat straw was established and its yield was high on the rice straw pots. When the substrates 'Rice straw' was heated by steam at $60^{\circ}C$ for 6 hr. mycelial growth of P. ostreatus was moderately rapid and its yield was high.

양송이 재배(栽培)에 있에서 볏짚을 주재료(主材料)로 사용(使用)할때의 퇴비재료(堆肥材料)의 배합(配合), 야외퇴적(野外堆積) 및 후발효(後醱酵)에 관(關)한 시험(試驗)과 볏짚을 이용(利用)한 느타리버섯 재배(栽培)에 관(關)한 연구(硏究)를 수행(遂行)한 바 그 결과(結果)를 요약(要約)하변 다음과 같다. 가) 합성퇴비배지(合成堆肥培地)의 탄소원(炭素源)으로서 볏짚은 보리짚과 밀짚보다 발효(醱酵)가 신속(迅速)하고 퇴비(堆肥)의 전질소함량(全窒素含量)이 높으며, 배지(培地)의 질(質)이 양호(良好)하여 양송이 자실체수량(子實體收量)이 현저(顯著)히 높았다. 나) 보리짚퇴비(堆肥)는 볏짚퇴비(堆肥)보다 생산성(生産性)이 낮으나 보리짚과 볏짚을 50:50으로 혼합(混合)하면 볏짚과 대등(對等)한 수량(收量)을 얻을 수 있었다. 다) 퇴비배지(堆肥培地)의 전유기태질소(全有機態窒素)와 자실체수량간(子實體收量間)에는 정(正)의 상관(相關)이 있으나 암모니아태질소(態窒素)와는 균사생장(菌絲生長) 및 자실체수량(子實體收量)에 부(負)의 상관(相關)이 있었다. 라) 볏짚을 주재료(主材料)로 사용(使用)할때 무기태질소원(無機態窒素源)으로서 요소(尿素)가 가장 좋았고 유안(硫安)과 석회질소(石灰窒素)는 부적당(不適當)하였다. 요소(尿素)는 3회(回) 분시(分施)할때 손실(損失)이 감소(減少)되었고, 퇴비(堆肥)의 질소함량(窒素含量)이 증가(增加)하였다. 마) 유기태영양원중(有機態營養源中) 들깨묵, 참깨묵, 밀기울, 계분등(鷄糞等)의 첨가(添加)는 퇴비(堆肥)의 발효(醱酵)를 양호(良好)하게 하고 자실체수량(子實體收量)을 증가(增加)시켰다. 바) 양송이 볏짚퇴비(堆肥)를 제조(製造)할때 터널기계화(機械化)하므로 수량(收量)이 13 % 증수(增收)되었고,생산비(生産費)가 34 % 절감(節減)되었다. 사) 볏짚과 밀짚을 이용(利用)하여 느타리버섯 재배(栽培)가 가능(可能)하고 자실체수량(子實體收量)을 뱃짚구(區)에서 높았다. 아) 느타리버섯 볏짚배지(培地)를 $60^{\circ}C$로 6시간(時間) 열처리(熱處理)하므로서 균사생장(菌絲生長)이 양호(良好)하였고 자실체수량(子實體收量)이 높았다.

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