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首页> 外文期刊>African Journal of Biotechnology >Pleurotus pulmonarius cultivation on amended palm press fibre waste
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Pleurotus pulmonarius cultivation on amended palm press fibre waste

机译:经修正的棕榈压榨纤维废料栽培平菇

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In the last few decades, rapid global demand for edible oils has resulted in a significant increase in the land area of oil crop cultivation. In the process of extraction of palm oil from oil palm fruit, biomass materials such as palm pressed fibre (PPF) are generated as waste products. This research was undertaken to evaluate the use of palm pressed fibres as the substrates for the cultivation of Pleurotus pulmonarius which currently use sawdust. Seven different substrates (A to G) were prepared from saw dust, palm press fibre (PPF), palm press fibre ash (PPFA), distilled water and Hoagland solution either alone or in combinations. These substrates were combined to investigate a probable effect of substrate combination on yield of P. pulmonarius. The highest yields were observed from substrates D (comprising 50% PPF, 50% PPFA and water with a mean fresh weight of 95.0 g) and substrate F (comprising of 50% PPF, 50% PPFA and Hoagland solution with a mean fresh weight of 89.20 g). The performance of substrate combination of PPF, PPFA and water however compare favourably with that of PPF, PPFA and Hoagland solution combination under all growth and yield parameters investigated. Therefore, this study has revealed that with optimum use of the biomass generated from the palm waste, prevention of environmental pollution problems and conversion of low quality waste biomasses into a valuable high protein food can be achieved.
机译:在过去的几十年中,全球对食用油的快速需求导致油料作物种植的土地面积显着增加。在从油棕果中提取棕榈油的过程中,产生了诸如棕榈压榨纤维(PPF)之类的生物质材料作为废品。进行该研究以评价使用手掌压制的纤维作为培养目前使用木屑的侧耳侧耳的基质。分别由锯屑,棕榈压榨纤维(PPF),棕榈压榨纤维灰(PPFA),蒸馏水和Hoagland溶液制备了七种不同的基材(A至G)。组合这些底物以研究底物组合对肺炎假单胞菌产量的可能影响。从底物D(包含50%PPF,50%PPFA和水,平均新鲜鲜重为95.0 g)和底物F(包含50%PPF,50%PPFA和Hoagland溶液,平均鲜重为30%)中观察到最高产量。 89.20克)。在研究的所有生长和产量参数下,PPF,PPFA和水的底物组合的性能均优于PPF,PPFA和Hoagland溶液组合的底物。因此,这项研究表明,通过最佳利用棕榈废料产生的生物质,可以防止环境污染问题并将劣质废生物质转化为有价值的高蛋白食品。

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