通过紫外和荧光光谱数据的数学处理快速评价污泥堆肥的现场成熟度和稳定性

Roland Redon , Madi Guirema Abaker , Michel Raynaud , Pascale Prudent , Stéphane Mounier , Christian Martino , Didier Gori , Carine Demelas , Frédéric Théraulaz
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引用次数: 0

摘要

污泥与绿色废弃物共堆肥是有机废弃物资源化利用的主要途径。由于堆肥的土壤结构和丰富的养分,其成熟过程可以产生腐殖质和稳定的有机质,很好地用于土壤改良剂。这就是为什么在有机物质稳定性和堆肥成熟度方面的产品质量知识是必要的。不幸的是,对于堆肥工厂的管理人员来说,通常需要复杂和耗时的实验室测量来确定生物或化学参数,以及更可靠的现场方法,缺乏快速简便的解决方案。堆肥演变监测需要实际测定与有机质稳定性相关的C/N比、有机质稳定指数(ISMO)和与堆肥成熟度相关的发芽试验等几个生物和理化参数。这项工作的目的是使用偏最小二乘回归(PLS1)来估计这三个参数,该回归基于堆肥过程中各个步骤的紫外和荧光光谱数据以及堆肥水提取物的pH值,最终得到一个数学线性模型。结果表明,C/N、ISMO和发芽试验结果的平均相对预测误差分别为14.76%、16.35%和15.38%。这些令人满意的结果证实了这种方法的潜力,用于快速和简单的现场评估有机质稳定性和堆肥成熟度,用于最终产品使用前的鉴定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rapid on-site maturity and stability assessment of sewage sludge compost by mathematical treatment of UV and fluorescence spectroscopic data
Co-composting of sewage sludge with green waste is the main way of valorisation of organic wastes. The compost maturation process leads to production of humified and stabilized organic matter well-used for soil amendment due to its soil structuring qualities and nutrient richness. That is why the knowledge of product quality in terms of organic matter stability and maturity of compost is imperative. Unfortunately, there is a lack of quick and easy solutions available for composting plant managers who usually need complex and time consuming laboratory measurements for determination of biological or chemical parameters, and more robust on-site methods. Compost evolution monitoring needs actual determination of several biological and physico-chemical parameters as the C/N ratio, the ISMO (Organic Matter Stability Index), related to organic matter stability, and the germination test related to compost maturity. The aim of this work is the estimation of these three parameters using a Partial Least Squares regression (PLS1) based on UV and fluorescence spectroscopic data and pH from compost water extracts at various steps of composting process, ending to a mathematical linear model. Results show average relative prediction errors of 14.76 %, 16.35 % and 15.38 % for C/N ratio, ISMO and germination test results, respectively. These satisfactory results confirm potentiality of this approach for a rapid and simple on-site estimation of the organic matter stabilization and compost maturation, for qualification of the end-product before its use.
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