基于红外光谱技术的秸秆还田环境下土壤氨挥发特征分析(英文)  被引量:4

Volatilization characteristics analysis of ammonia from soil by straw returning to the field based on the infrared spectroscopy technology

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作  者:何莹[1,2,3] 张玉钧[1,3] 尤坤[1,3] 高彦伟[1,3] 赵南京[1,3] 刘文清[1,3] 

机构地区:[1]中国科学院环境光学与技术重点实验室,安徽光学精密机械研究所,安徽合肥230031 [2]中国科学技术大学,安徽合肥230026 [3]安徽省环境光学监测技术重点实验室,安徽合肥230031

出  处:《红外与毫米波学报》2017年第4期397-402,共6页Journal of Infrared and Millimeter Waves

基  金:Supported by the National Key Scientific Instrument and Equipment Development Projects(2012YQ22011902);the Special Foundation for Young Scientists of Hefei Institutes of Physical Science,Chinese Academy of Sciences(YZJJ201502)

摘  要:研究氨近红外光谱特性并建立浓度反演算法模型,重点优化相关性分析和温度修正功能.利用开放式激光吸收光谱技术建立氨区域监测系统,于2015年在安徽涡阳秸秆还田示范区开展监测实验,研究玉米和小麦种植情况下的土壤氨挥发特征.研究结果表明,氨浓度具有日变化趋势:白天浓度上升在正午达到最高值,逐步降低到夜间至最小值.夏、秋季典型小时浓度变化范围为0.6×10^(-3)~1.34×10^(-3)mmol/mol和1.14×10^(-3)~1.82×10^(-3)mmol/mol,秋季玉米和夏季小麦秸秆还田的最大氨日均浓度为4.6×10^(-4)mmol/mol和1.7×10^(-3)mmol/mol,还田一个多月后氨浓度明显上升,并存在一定季节性差异.近红外光谱技术为明晰土壤氨排放规律提供了技术支持.The infrared absorption spectral characteristics of ammonia were studied. Moreover, the quantitative in- version algorithm model was established, especially the correlation analysis and temperature correction function were optimized. The ammonia volatilization experiment was carded out in the demonstration area in Guoyang, An- hui in 2015 by the ammonia regional monitoring system based on Open-path Tunable Diode Laser Absorption Spec- troscopy (OP-TDLAS). Then, ammonia dynamic volatilization Character of corn and wheat straw returning to the field was studied. The monitoring results show that the ammonia concentration has a certain diurnal variation trend: it increased during the daytime and got to the maximum value at midday, then reduced gradually at night to the nu'nimum. The typical hourly concentration varied from 0. 6 ×10^3 to 1.34 ×10^3 mmol/mol in summer, and it varied from 1.14 ×10^3 to 1.82×10^3 mmol/mol in autumn. In autumn, the maximum daily average of ammonia vol- atilization from corn straw returning was 4.6 ×10^4 mmol/mol, and it was 1.7 ×10^3 mmol/mol from wheat straw returning in summer. The results indicate that the emission concentration rises significantly after more than one month of straw returning which has some certain seasonal difference in farmland scale. This infrared spectroscopy technology provides technical support for clarifying the ammonia emission rules in soil environment.

关 键 词:近红外激光吸收光谱 氨挥发 秸秆还田 开放式监测 浓度反演算法 

分 类 号:O433.1[机械工程—光学工程]

 

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