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Airborne endotoxin associated with particles of different sizes and affected by water content in handled straw

机译:空气传播的内毒素与不同大小的颗粒相关,并受到处理过的秸秆中水分的影响

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High exposures to endotoxin are observed in environments where organic materials are handled and lower exposures are found in e.g. indoor air. Inhaled endotoxin contributes significantly to the induction of airway inflammation and dysfunction. The size of an inhaled particle influences the deposition in the airways and the following health symptoms. The objective is to characterise the distribution of endotoxin on airborne particles of different sizes in straw storage halls with high exposure and in other environments with lower exposure levels to endotoxin. Furthermore we have studied the influence of water content of handled straw on the size distribution of endotoxin containing particles. Total, inhalable, thoracic and respirable endotoxin and particles have each been quantified in aerosols from boiler rooms and straw storage halls at 24 power plants, including 21 biofuel plants. Inhalable, thoracic and respirable endotoxin have been quantified in aerosols from offices and outdoor air. The endotoxin concentration was higher in airborne thoracic dust than in airborne 'total dust'. The median respirable fraction in the straw storage halls, boiler rooms at biofuel plants, boiler rooms at conventional plants, offices and outdoors was respectively 42%, 9%, 19%, 24% and 34%. Thoracic endotoxin per number of thoracic particles was higher than respirable endotoxin per number of respirable particles at the biofuel plants. In straw storage halls the fraction of endotoxin of respirable size was highest on the days with lowest water content in the received straw. Furthermore the exposures to all endotoxin fractions were highest on days with the lowest water content in the received straw. In conclusion the highest exposures and concentrations of endotoxin occur or tend to occur from thoracic dust. A high variation in endotoxin concentrations and in fractions of respirable or thoracic size is found in the different working areas. This is important in the risk assessment and makes attempts to influence the endotoxin exposure a possibility. Water content in straw affected the concentration, exposure level and size distribution of airborne endotoxin.
机译:在处理有机材料的环境中观察到内毒素的高暴露量,例如在室内空气。吸入内毒素对气道炎症和功能障碍的诱导有很大贡献。吸入颗粒的大小会影响呼吸道中的沉积物和以下健康症状。目的是表征内毒素在高暴露度的秸秆储藏室中以及在其他内毒素暴露水平较低的环境中在不同大小的空气传播颗粒上的分布情况。此外,我们研究了处理过的秸秆的含水量对内毒素颗粒大小分布的影响。在包括21家生物燃料工厂在内的24家发电厂的锅炉房和秸秆储藏室的气溶胶中,分别定量了总的,可吸入的,胸腔和可吸入的内毒素和颗粒。办公室和室外空气中的可吸入,胸腔和可吸入内毒素已被量化。空气传播的胸粉尘中的内毒素浓度高于空气传播的“总粉尘”。秸秆储藏室,生物燃料工厂的锅炉室,常规工厂,办公室和室外的锅炉室的可呼吸中位数分别为42%,9%,19%,24%和34%。在生物燃料工厂中,每胸部颗粒数的胸腔内毒素高于每可吸入颗粒数的可呼吸内毒素。在秸秆储藏室中,可吸入大小的内毒素分数在收到的秸秆中水分含量最低的日子最高。此外,在接受的秸秆中,所有内毒素部分的暴露量最高,而含水量最低。总而言之,最高或最高浓度的内毒素来自胸腔灰尘。在不同的工作区域内,内毒素浓度以及可呼吸或胸腔大小的比例差异很大。这在风险评估中很重要,并使尝试影响内毒素暴露成为可能。秸秆中的水分影响空气中内毒素的浓度,暴露水平和大小分布。

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