← Explorer/Network

Bioaerosol emission rate and plume characteristics during land application of liquid class B biosolids

Tanner BD, Brooks JP, Haas CN +2 more2005Environmental Science & TechnologyJournal Article
10.1021/es0404466PubMed
Bacterial Endotoxins

Abstract

This study investigated bioaerosol emission rates and plume characteristics of bioaerosols generated during land application of liquid Class B biosolids. In addition, it compared the rate of aerosolization of coliphages and total coliform bacteria during land application of liquid Class B biosolids to the rate of aerosolization during land application of groundwater inoculated with similar concentrations of Escherichia coli and coliphage MS2. Air samples were taken immediately downwind of a spray applicator as it applied liquid (approximately 8% solids) biosolids to farmland near Tucson, Arizona. Air samples were also collected immediately downwind of groundwater seeded with MS2 and E. coli applied to land in an identical manner. Air samples, collected with liquid impingers, were taken in horizontal and vertical alignment with respect to the passing spray applicator. Vertical and horizontal sample arrays made it possible to calculate the flux of microorganisms through a virtual plane of air samplers, located 2 m downwind of the passing spray applicator. Neither coliphages nor coliform bacteria were detected in air downwind of spray application of liquid Class B biosolids. Based on limits of detection for the methodology, the rate of aerosolization during land application of liquid biosolids was calculated to be less than 33 plaque forming units (PFU) of coliphage and 10 colony forming units (CFU) of coliform bacteria per meter traveled by the spray applicator. The rate of aerosolization during land application of seeded groundwater was found to be, on average, 2.02 x 10(3) CFU E. coli and 3.86 x 10(3) PFU MS2 aerosolized per meter traveled by the spray applicator. This is greater aerosolization than was observed during land application of biosolids. Because concentrations of coliphages and coliforms were similar in the liquid biosolids and the seeded water, itwas concluded that some property of biosolids reduces aerosolization of microorganisms relative to groundwater. Additional experiments utilizing a novel air sampling protocol showed that the duration of bioaerosol exposure immediately (2 m) downwind of biosolids spray application is brief and the plume of bioaerosols generated is discrete. Additional air samples showed that aerosolization of coliphages and coliform bacteria after liquid biosolids have been applied to land does not occur at detectable levels.

Cited By (2)

  • Bioaerosols from Land‐Applied Biosolids: Issues and NeedsWater Environment Research · 2007
  • Emission rates and characterization of aerosols produced during the spreading of dewatered class B biosolidsEnvironmental Science & Technology · 2007

Related Papers

  • Effects of Omega-3 Polyunsaturated Fatty Acids on the Formation of Adipokines, Cytokines, and Oxylipins in Retroperitoneal Adipose Tissue of MiceInternational Journal of Molecular Sciences · 2024 · 1 shared tag
  • Exposures in the Indoor Environment and Prevalence of Allergic Conditions in the United States of AmericaInternational Journal of Environmental Research and Public Health · 2021 · 1 shared tag
  • Investigating the effect of a low carbohydrate, high saturated fat diet on concentration levels of markers associated with a leaky gut and the association with glucose homeostasisResearch Square · 2023 · 1 shared tag
  • Antibacterial activities of anthraquinones: structure–activity relationships and action mechanismsRSC Medicinal Chemistry · 2023 · 1 shared tag
  • Role of microbial volatile compounds (mVOCs) in toxicity from molds-infested buildings: a case reportArchives of Clinical Toxicology · 2026 · 1 shared tag
  • The Silent Threat: Understanding Microbial Toxins and Their Global Impacts
Global Journal of Multidisciplinary Sciences and Arts · 2024 · 1 shared tag