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Quality assessment of mushroom casing soil using visible and near infrared spectroscopy

机译:可见和近红外光谱技术对蘑菇肠衣土壤质量的评估

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摘要

Casing soil is a crucial component in the production of mushrooms [Agaricus bisporus) and in the United Kingdom and Ireland it is prepared by neutralising raw peat with lime. The initial peat quality determines many of the physical and chemical properties of the subsequent casing product and this, in turn, significantly impacts on the yield and quality of mushrooms produced. Information on the physical and chemical properties of the casing supplied, in particular those associated with water retention and absorption, is critical to an optimal management strategy. The casing suppliers need a rapid method to evaluate key properties, but the available analytical techniques are slow and laborious, often taking 7-15 days to complete. Raw peat and casing samples were scanned for visible and near infrared (vis-NIR) spectra and the results assessed using principal component analysis. The samples (177) were also analysed for pH, electrical conductivity, moisture content, ash, water absorption, water retention and bulk density. Using partial least squares regression analysis of the spectra and the measured values of the target parameters, calibration equations were generated and cross-validated within the sample set. The equations were then validated using an independent sample set (44) collected from casing suppliers and growers. Early indications show good potential for the prediction of commercially important properties, such as dry matter, ash content, water absorption, water retention and pH. With a turnaround time of minutes, from initial scanning to the presentation of results, vis-NIR spectroscopy affords both the casing suppliers and, ultimately, the growers the opportunity to progress and improve upon current industry standards.
机译:套管土壤是蘑菇(双孢蘑菇)生产中的重要组成部分,在英国和爱尔兰,套管土壤是通过用石灰中和生泥炭来制备的。最初的泥炭质量决定了随后的肠衣产品的许多物理和化学特性,这反过来又极大地影响了所生产蘑菇的产量和质量。有关所提供套管的物理和化学特性的信息,特别是与保水和吸收有关的信息,对于优化管理策略至关重要。套管供应商需要一种快速的方法来评估关键性能,但是可用的分析技术缓慢且费力,通常需要7到15天才能完成。扫描原始泥炭和肠衣样品的可见和近红外(vis-NIR)光谱,并使用主成分分析评估结果。还分析了样品(177)的pH,电导率,水分含量,灰分,吸水率,保水率和堆积密度。使用光谱的偏最小二乘回归分析和目标参数的测量值,可以生成校准方程,并在样品集中进行交叉验证。然后使用从套管供应商和种植者处收集的独立样本集(44)验证方程。早期迹象表明,在预测重要商业性质(例如干物质,灰分含量,吸水率,保水性和pH值)方面具有良好的潜力。从最初的扫描到结果显示,整个过程只需几分钟的时间,vis-NIR光谱学可为套管供应商以及最终的种植者提供发展和改进当前行业标准的机会。

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