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The potential of near infrared reflectance spectroscopy (NIRS) for the estimation of agroindustrial compost quality

机译:近红外反射光谱法(NIRS)评估农用工业堆肥质量的潜力

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摘要

Composting is an environmentally friendly alternative for the recycling of organic wastes and its use is increasing in recent years. An exhaustive monitoring of the composting process and of the final compost characteristics is necessary to certify that the values of compost characteristics are within the limits established by the legislation in order to obtain a safe and marketable product. The analysis of these parameters on each composting batch in the commercial composting plant is time-consuming and expensive. So, their estimation in the composting facilities based on the use of near infrared reflectance spectroscopy (NIRS) could be an interesting approach in order to monitor compost quality. In this study, more than 300 samples from 20 different composting procedures were used to calibrate and validate the NIRS estimation of compost properties (pH, electrical conductivity (EC), total organic matter (TOM), total organic carbon (TOC), total nitrogen (TN) and C/N ratio, macronutrient contents (N, P, K) and potentially pollutant element concentrations (Fe, Cu, Mn and Zn)). The composts used were elaborated using different organic wastes from agroindustrial activities (GS: grape stalk; EGM: exhausted grape marc; CM: grape marc; V: vinasse; CJW: citrus juice waste; Alpeorujo: olive-oil waste; AS: almond skin; EP: exhausted peat; TSW: tomato soup waste; SMS: spent mushroom substrate) co-composted with manures (CM: cattle manure; PM: poultry manure) or urban wastes (SS: sewage sludge) The estimation results showed that the NIRS technique needs to be fitted to each element and property, using specific spectrum transformations, in order to achieve an acceptable accuracy in the prediction. However, excellent prediction results were obtained for TOM and TOC, successful calibrations for pH, EC, Fe and Mn, and moderately successful estimations for TN, C/N ratio, P, K, Cu and Zn.
机译:堆肥是回收有机废物的一种环保选择,近年来,其使用量正在增加。必须对堆肥过程和最终堆肥特性进行详尽的监控,以确保堆肥特性的值在法律规定的范围内,以便获得安全和可销售的产品。对商业堆肥厂中每个堆肥批次的这些参数进行分析既费时又昂贵。因此,基于近红外反射光谱(NIRS)在堆肥设施中对它们进行估算可能是监视堆肥质量的有趣方法。在这项研究中,使用了来自20种不同堆肥程序的300多个样品来校准和验证NIRS对堆肥特性(pH,电导率(EC),总有机物(TOM),总有机碳(TOC),总氮)的估计(TN)和C / N比,大量营养素含量(N,P,K)和潜在的污染物元素浓度(Fe,Cu,Mn和Zn)。所使用的堆肥使用了来自农业工业的各种有机废物(GS:葡萄秸秆; EGM:精疲力竭的葡萄渣; CM:葡萄渣; V:酒糟; CJW:柑橘汁废物; Alpeorujo:橄榄油废物; AS:杏仁皮)制成; EP:疲惫的泥炭; TSW:番茄汤废料; SMS:用过的蘑菇底料)与粪便(CM:牛粪; PM:禽粪)或城市废物(SS:污水污泥)共同混合估算结果表明,NIRS为了达到可接受的预测精度,需要使用特定的频谱转换将技术应用于每个元素和属性。但是,TOM和TOC的预测结果非常好,pH,EC,Fe和Mn的校准成功,TN,C / N比,P,K,Cu和Zn的估算也中等成功。

著录项

  • 来源
    《Science of the total environment》 |2010年第6期|1414-1421|共8页
  • 作者单位

    Department of Agrochemistry and Environment, Miguel Hernandez University, EPS-Orihuela, Ctra. Beniel km. 3.2, 03312-Orihuela (Alicante), Spain;

    Department of Agrochemistry and Environment, Miguel Hernandez University, EPS-Orihuela, Ctra. Beniel km. 3.2, 03312-Orihuela (Alicante), Spain;

    Department of Agrochemistry and Environment, Miguel Hernandez University, EPS-Orihuela, Ctra. Beniel km. 3.2, 03312-Orihuela (Alicante), Spain;

    Department of Agrochemistry and Environment, Miguel Hernandez University, EPS-Orihuela, Ctra. Beniel km. 3.2, 03312-Orihuela (Alicante), Spain;

    Department of Agrochemistry and Environment, Miguel Hernandez University, EPS-Orihuela, Ctra. Beniel km. 3.2, 03312-Orihuela (Alicante), Spain;

    Department of Agrochemistry and Biochemistry, University of Alicante, PO box 99, E-03080 Alicante, Spain;

    Department of Agrochemistry and Environment, Miguel Hernandez University, EPS-Orihuela, Ctra. Beniel km. 3.2, 03312-Orihuela (Alicante), Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    agroindustrial wastes; composting; near infrared spectroscopy (MRS); physico-chemical parameters; macronutrients and potentially pollutant elements;

    机译:农用工业废料;堆肥近红外光谱(MRS);理化参数大量营养素和潜在的污染物元素;
  • 入库时间 2022-08-17 13:56:01

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