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Particulate matter composition and emission rates from the disk incorporation of class B biosolids into soil

机译:圆盘将B类生物固体掺入土壤的颗粒物成分和排放速率

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Biosolids contain metal, synthetic organic compound, endotoxin, and pathogen concentrations that are greater than concentrations in the agricultural soils to which they are applied. Once applied, biosolids are incorporated into soils by disking and the aerosols produced during this process may pose an airborne toxicological and infectious health hazard to biosolids workers and nearby residents. Field studies at a Central Arizona biosolids land application site were conducted to characterize the physical, chemical, and biological content of the aerosols produced during biosolids disking and the content of bulk biosolids and soils from which the aerosols emanate. Arrayed samplers were used to estimate the vertical source aerosol concentration profile to enable plume height and associated source emission rate calculations. Source aerosol concentrations and calculated emission rates reveal that disking is a substantial source of biosolids-derived aerosols. The biosolids emission rate during disking ranged from 9.91 to 27.25 mg s~(-1) and was greater than previously measured emission rates produced during the spreading of dewatered biosolids or the spraying of liquid biosolids. Adding biosolids to dry soils increased the moisture content and reduced the total PM_(10) emissions produced during disking by at least three times. The combination of bulk biosolids and aerosol measurements along with PM_(10) concentrations provides a framework for estimating aerosol concentrations and emission rates by reconstruction. This framework serves to eliminate the difficulty and inherent limitations associated with monitoring low aerosol concentrations of toxic compounds and pathogens, and can promote an increased understanding of the associated biosolids aerosol health risks to workers and nearby residents.
机译:生物固体中所含的金属,合成有机化合物,内毒素和病原体的浓度大于所施用的农业土壤中的浓度。施用后,将生物固体通过圆盘打入土壤,在此过程中产生的气溶胶可能会对生物固体工人和附近居民造成空气传播的毒理学和传染性健康危害。在亚利桑那州中部一个生物固体土地应用现场进行了野外研究,以表征生物固体盘期间产生的气溶胶的物理,化学和生物含量,以及散发这些气溶胶的大量生物固体和土壤的含量。使用阵列采样器估算垂直源气溶胶浓度曲线,以实现羽流高度和相关源排放率计算。源气溶胶浓度和计算出的排放速率表明,盘化是生物固体衍生气溶胶的重要来源。盘期间的生物固体排放速率在9.91到27.25 mg s〜(-1)之间,并且比先前测得的在脱水的生物固体散布或喷洒液体生物固体期间产生的排放速率要大。向干燥土壤中添加生物固体增加了水分含量,并减少了播种过程中产生的总PM_(10)排放至少三倍。大量生物固体和气溶胶测量值与PM_(10)浓度的组合提供了一个通过重建估算气溶胶浓度和排放速率的框架。该框架可消除与监测低浓度的有毒化合物和病原体的气溶胶相关的困难和固有的局限性,并可以增进人们对工人和附近居民相关的生物固体气溶胶健康风险的认识。

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