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Evaluation of a Cost-Effective Ammonia Monitoring System for Continuous Real-Time Concentration Measurements in a Fattening Pig Barn

机译:用于育肥猪舍连续实时浓度测量的经济有效的氨监测系统的评估

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摘要

Ammonia (NH3) emission is one of the major environmental issues in livestock farming. Gas measurements are required to study the emission process, to establish emission factors, and to assess the efficiency of emission reduction techniques. However, the current methods for acquiring reference measurements of NH3 are either high in cost or labor intensive. In this study, a cost-effective ammonia monitoring system (AMS) was constructed from a commercially-available gas analyzing module based on tunable diode laser absorption (TDLA) spectroscopy. To cope with the negative measurement biases caused by differing inlet pressures, a set of correction equations was formulated. Field validation of the AMS on NH3 measurement was conducted in a fattening pig barn, where the system was compared to a Fourier-transform infrared (FTIR) spectroscopy analyzer. Under two test conditions in a fattening pig barn, the absolute error of the AMS measurements with respect to the average obtained values between the AMS and the FTIR was respectively 0.66 and 0.08 ppmv, corresponding to 5.9% and 0.5% relative error. Potential sources of the measurement uncertainties in both the AMS and FTIR were discussed. The test results demonstrated that the AMS was capable of performing high-quality measurement with sub-ppm accuracy, making it a promising cost-effective tool for establishing NH3 emission factors and studying NH3 emission processes in pig houses.
机译:氨气排放是畜牧业的主要环境问题之一。需要进行气体测量以研究排放过程,确定排放因子并评估减排技术的效率。然而,当前用于获取NH 3的参考测量值的方法要么成本高,要么劳动强度大。在这项研究中,基于可调谐二极管激光吸收(TDLA)光谱仪,由市售的气体分析模块构建了一种经济高效的氨监测系统(AMS)。为了应对不同的入口压力引起的负测量偏差,制定了一套校正方程式。在肥育的猪舍中对AMS进行的NH3测量进行了现场验证,该系统与傅里叶变换红外(FTIR)光谱分析仪进行了比较。在育肥猪舍的两个测试条件下,相对于AMS和FTIR之间的平均获得值,AMS测量的绝对误差分别为0.66和0.08 ppmv,分别对应于5.9%和0.5%的相对误差。讨论了AMS和FTIR中测量不确定度的潜在来源。测试结果表明,AMS能够以低于ppm的精度执行高质量的测量,使其成为建立NH3排放因子和研究猪舍中NH3排放过程的有前途的经济有效工具。

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