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Turbidity analysis using visible and near-infrared light images 被引量:2
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作者 ZHU Yuanyang ZHAO Wenzhu +1 位作者 LIU Sheng GAO Hongwen 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2021年第1期27-35,共9页
The conventional photoelectric detection system requires complex circuitry and spectroscopic systems as well as specialized personnel for its operation.To replace such a system,a method of measuring turbidity using a ... The conventional photoelectric detection system requires complex circuitry and spectroscopic systems as well as specialized personnel for its operation.To replace such a system,a method of measuring turbidity using a camera is proposed by combining the imaging characteristics of a digital camera and the high-speed information processing capability of a computer.Two turbidity measurement devices based on visible and near-infrared(NIR)light cameras and a light source driving circuit with constant light intensity were designed.The RGB data in the turbidity images were acquired using a self-developed image processing software and converted to the CIE Lab color space.Based on the relationship between the luminance,chromatic aberration,and turbidity,the turbidity detection models for luminance and chromatic aberration of visible and NIR light devices exhibiting values from 0-1000 NTU,less than 100 NTU,and more than 100 NTU were established.By comparing and analyzing the proposed models,the two measurement models with the best all-around performance were selected and fused to generate new measurement models.The experimental results prove that the correlation between the three models and the commercial turbidity meter measurements exhibite a significance value higher than 0.999.The error of the fusion model is within 1.05%,with a mean square error of 1.14.The visible light device has less error at low turbidity measurements and is less influenced by the color of the image.The NIR light device is more stable and accurate at full range and high turbidity measurements and is therefore more suitable for such measurements. 展开更多
关键词 image processing water quality turbidity measurement near-infrared image color space conversion
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温度对活性污泥-生物膜复合工艺中红斑顠体虫爆发性繁殖影响 被引量:1
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作者 董滨 王瑜 +4 位作者 沈丹妮 詹咏 亓燕 杨瑒 何群彪 《环境工程学报》 CAS CSCD 北大核心 2013年第12期4631-4637,共7页
活性污泥-生物膜复合工艺在春夏之交常发生红斑顠体虫的爆发性繁殖,使系统性能恶化。用烧杯实验模拟活性污泥-生物膜复合工艺,保持填料投配率为30%,分别在不同温度下(20,25,30℃)运行实验装置,待运行稳定后,接种红斑顠体虫,创造条件以... 活性污泥-生物膜复合工艺在春夏之交常发生红斑顠体虫的爆发性繁殖,使系统性能恶化。用烧杯实验模拟活性污泥-生物膜复合工艺,保持填料投配率为30%,分别在不同温度下(20,25,30℃)运行实验装置,待运行稳定后,接种红斑顠体虫,创造条件以观察红斑顠体虫是否发生爆发性繁殖。实验结果发现,红斑顠体虫在25℃和30℃都不同程度产生了爆发性繁殖,最大种群密度分别达到383个/mL和200个/mL,同时,红斑顠体虫的爆发性繁殖不会对进出水的COD和氨氮去除产生影响;在温度25℃和30℃时,红斑顠体虫爆发性繁殖都导致了总氮的释放,红斑顠体虫种群密度分别大于等于66个/mL和50个/mL可分别作为红斑顠体虫在25℃和30℃发生爆发性繁殖的标志;实验也证明了红斑顠体虫的爆发性繁殖不会产生大量啃食生物膜的现象;用SPSS做多元线性回归分析,得出红斑顠体虫的最大种群密度与总氮的释放显著相关。 展开更多
关键词 红斑顠体虫 温度 活性污泥-生物膜复合工艺 种群密度 营养物释放
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