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一种基于视频处理和机器视觉的自动分析器,用于顺序测定废水中的总悬浮固体和可沉降固体。

A video processing and machine vision-based automatic analyzer to determine sequentially total suspended and settleable solids in wastewater.

机构信息

Universidade Federal da Paraíba, CCEN, Departamento de Química, Caixa Postal 5093, CEP 58051-970, João Pessoa, PB, Brazil.

Programa de Pós-Graduação em Química Pura e Aplicada, Universidade Federal do Oeste da Bahia, Zip Code 47810-059, Barreiras, BA, Brazil.

出版信息

Anal Chim Acta. 2022 May 8;1206:339411. doi: 10.1016/j.aca.2021.339411. Epub 2022 Feb 1.

Abstract

The monitoring of total suspended (TSS) and settleable (SetS) solids in wastewater is essential to maintain the quality parameters for aquatic biota because they can transport pollutants and block light penetration. Determining them by their respective reference methods, however, is laborious, expensive, and time consuming. To overcome this, we developed a new analytical instrument called Solids in Wastewater's Machine Vision-based Automatic Analyzer (SWAMVA), which is equiped with an automatic sampler and a software for real-time digital movie capture to quantify sequentially the TSS and SetS contents in wastewater samples. The machine vision algorithm (MVA) coupled with the Red color plane (derived from color histograms in the Red-Green-Blue (RGB) system) showed the best prediction results with R of 0.988 and 0.964, and relative error of prediction (REP) of 6.133 and 9.115% for TSS and SetS, respectively. The constructed models were validated by Analysis of Variance (ANOVA), and the accuracy and precision of the predictions by the t- and F-tests, respectively, at a 0.05 significance level. The elliptical joint confidence region (EJCR) test confirmed the accuracy, while the coefficient of variation (CV) of 6.529 and 10.908% confirmed the good precisions, respectively. Compared with the reference method (Standard Methods For the Examination of Water and Wastewater), the proposed method reduced the analysis volume from 1.5 L to just 15 mL and the analysis time from 12 h to 24 s per sample. Therefore, SWAMVA can be considered an important alternative to the determination of TSS and SetS in wastewater as an automatic, fast, and low-cost analytical tool, following the principles of Green Chemistry and exploiting Industry 4.0 features such as intelligent processing, miniaturization, and machine vision.

摘要

监测废水中的总悬浮固体(TSS)和可沉降固体(SetS)对于维持水生生物的质量参数至关重要,因为它们可以运输污染物并阻挡光的穿透。然而,通过各自的参考方法来确定它们是费力、昂贵且耗时的。为了克服这一问题,我们开发了一种名为基于机器视觉的废水固体制剂自动分析仪(SWAMVA)的新型分析仪器,该仪器配备了自动采样器和实时数字电影捕获软件,可顺序定量废水中的 TSS 和 SetS 含量。机器视觉算法(MVA)结合红色平面(源自 RGB 系统中的颜色直方图)显示了最佳的预测结果,TSS 和 SetS 的 R 分别为 0.988 和 0.964,预测相对误差(REP)分别为 6.133%和 9.115%。所构建的模型通过方差分析(ANOVA)进行了验证,通过 t-检验和 F-检验分别验证了预测的准确性和精密度,置信度水平为 0.05。椭圆联合置信区间(EJCR)检验证实了准确性,而变异系数(CV)分别为 6.529%和 10.908%,则证实了良好的精密度。与参考方法(标准方法用于水和废水的检测)相比,该方法将分析体积从 1.5 L 减少到仅 15 mL,分析时间从每个样品 12 小时减少到 24 秒。因此,SWAMVA 可以被认为是一种重要的替代方法,用于确定废水的 TSS 和 SetS,作为一种自动、快速且低成本的分析工具,遵循绿色化学原则,并利用工业 4.0 的智能处理、小型化和机器视觉等特点。

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