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BIOTECHNOLOGY OF EDIBLE MUSHROOMS CULTIVATION ON VINE AND WINERY WASTES

机译:食用菌栽培于葡萄和酿酒废料的生物技术

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Every year, in Romania huge amounts of wine and vine wastes cause serious environmental damages in vineyards as well as nearby winery factories, for instance, by their burning on the soil surface or their incorporation into soil matrix. The optimal and efficient way to solve these problems is to recycle these biomass wastes as main ingredients in nutritive composts preparation that could be used for edible mushrooms cultivation. In this respect, the main aim of this work was to establish the best biotechnology of winery and vine wastes recycling by using them as appropriate growth substrata for edible and medicinal mushrooms. According to this purpose, two mushroom species of Basidiomycetes, namely Lentinula edodes as well as Pleurotus ostreatus were used as pure mushroom cultures in experiments. The experiments of inoculum preparation were set up under the following conditions: constant temperature, 23°C; agitation speed, 90-120?rev?min -1 ; pH level, 5.0–6.0. All mycelia mushroom cultures were incubated for 120–168 h. In the next stage of experiments, the culture composts for mushroom growing were prepared from the lignocellulose wastes as vine cuttings and marc of grapes in order to be used as substrata in mycelia development and fruit body formation. The tested culture variants were monitored continuously to keep constant the temperature during the incubation as well as air humidity, air pressure and a balanced ration of molecular oxygen and carbon dioxide. In every mushroom culture cycle all the physical and chemical parameters that could influence the mycelia growing as well as fruit body formation of L. edodes and P. ostreatus were compared to the same fungal cultures that were grown on poplar logs used as control samples.
机译:每年,在罗马尼亚,大量的葡萄酒和葡萄藤废料都会在葡萄园以及附近的酿酒厂中造成严重的环境破坏,例如,它们在土壤表面燃烧或掺入土壤基质中。解决这些问题的最佳而有效的方法是将这些生物质废物作为可用于食用菌栽培的营养堆肥制剂中的主要成分进行回收。在这方面,这项工作的主要目的是通过将酿酒厂和藤蔓废料用作食用菌和药用蘑菇的适当生长基质,来建立酿酒厂和藤蔓废物回收利用的最佳生物技术。根据这一目的,在实验中使用了香菇菌的两种蘑菇种,即香菇和平菇。在以下条件下进行接种物的制备实验:恒温23℃;温度23℃。搅拌速度,90-120?rev?min -1; pH值,5.0-6.0。将所有菌丝体蘑菇培养物孵育120–168小时。在下一阶段的实验中,从木质纤维素废料(如葡萄的枝条和葡萄渣)中制备蘑菇生长用的堆肥,以便用作菌丝体发育和子实体形成的基质。连续监测测试的培养物变体,以保持孵育过程中温度恒定,空气湿度,气压以及分子氧和二氧化碳的平衡比例。在每个蘑菇培养周期中,所有可能影响香菇和平菇的菌丝体生长以及子实体形成的物理和化学参数都与在作为对照样品的杨木上生长的相同真菌培养物进行了比较。

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