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一种用于土壤非金属养分测试的光纤探头式分光光度计
引用本文:He DX,Hu JX,Lu SK,He HY. 一种用于土壤非金属养分测试的光纤探头式分光光度计[J]. 光谱学与光谱分析, 2012, 32(1): 214-218
作者姓名:He DX  Hu JX  Lu SK  He HY
作者单位:中国农业大学水利与土木工程学院;北京普析通用仪器有限责任公司
基金项目:国家科技支撑计划项目(2008BADA4B01)资助
摘    要:针对测土配方施肥技术中要求快速、便捷、高效地进行土壤养分测试的需求,文章基于浸入式光纤探头、平场凹面全息光栅、二极管线阵检测器开发了一种光纤探头式分光光度计用于土壤养分中非金属元素的快速、准确测试。基于国家计量检定规程JJG 178—2007对紫外、可见、近红外分光光度计的性能检测方法测试的该仪器的波长最大允许误差与波长重复性、基线平直度、透射比最大允许误差与透射比重复性均达到了国标第Ⅲ级别标准,其最小光谱带宽、噪声与漂移、杂散光基本达到了国标第Ⅳ级别标准。基于该仪器测试的土壤硝态氮、铵态氮、有效磷、有效硫、有效硼、和有机质含量与基于商用的国产单光束和进口双光束分光光度计测试的结果呈极显著的线性相关关系,其回归方程的斜率接近于1,且对比数据之间无显著性差异。因此,该光纤探头式分光光度计可用于土壤非金属养分的快速、准确测试。

关 键 词:二极管线阵检测器  非金属元素  性能测试  土壤养分测试

An optical-fiber-sensor-based spectrophotometer for soil non-metallic nutrient determination
He Dong-xian,Hu Juan-xiu,Lu Shao-kun,He Hou-yong. An optical-fiber-sensor-based spectrophotometer for soil non-metallic nutrient determination[J]. Spectroscopy and Spectral Analysis, 2012, 32(1): 214-218
Authors:He Dong-xian  Hu Juan-xiu  Lu Shao-kun  He Hou-yong
Affiliation:College of Water Conservancy and Civil Engineering, China Agricultural University, Beijing 100083, China. he_dongxian@hotmail.com
Abstract:In order to achieve rapid, convenient and efficient soil nutrient determination in soil testing and fertilizer recommendation, a portable optical-fiber-sensor-based spectrophotometer including immersed fiber sensor, flat field holographic concave grating, and diode array detector was developed for soil non-metallic nutrient determination. According to national standard of ultraviolet and visible spectrophotometer with JJG 178-2007, the wavelength accuracy and repeatability, baseline stability, transmittance accuracy and repeatability measured by the prototype instrument were satisfied with the national standard of III level; minimum spectral bandwidth, noise and excursion, and stray light were satisfied with the national standard of IV level. Significant linear relationships with slope of closing to 1 were found between the soil available nutrient contents including soil nitrate nitrogen, ammonia nitrogen, available phosphorus, available sulfur, available boron, and organic matter measured by the prototype instrument compared with that measured by two commercial single-beam-based and dual-beam-based spectrophotometers. No significant differences were revealed from the above comparison data. Therefore, the optical-fiber-sensor-based spectrophotometer can be used for rapid soil non-metallic nutrient determination with a high accuracy.
Keywords:Diode array detector  Non-metallic elem ents  Performance test  Soil nutrient determination
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