References

  1. S.W. Lee, J. Lee, S.M. Cha, Assessment of factors affecting the removal efficiency of suspended solids and particulate matters for pretreatment units in a stormwater management facility, Water, 12 (2020) 1529–1536.
  2. D.J. Sample, T.J. Grizzard, J. Sansalone, A.P. Davids, R.M. Roseen, J. Walker, Assessing performance of manufactured treatment devices for the removal phosphorus from urban stormwater, J. Environ. Manage., 113 (2020) 279–291.
  3. C.B. Jiang, J. Li, H. Li, Y.J. Li, Z.X. Zhang, Low-impact development facilities for stormwater runoff treatment: Field monitoring and assessment in Xi’an area, China, J. Hydrol., 585 (2020) 124803, doi: 10.1016/j.jhydrol.2020.124803.
  4. Technical Guidance Manual for Evaluating Emerging Stormwater Treatment Technologies (TAPE), Washington State Department of Ecology, Olympia, WA, 2011. Available at: http://www.ecy.wa.gov/pubs/1110061.pdf
  5. Protocol for Stormwater Best Management Practice Demonstrations (TARP), Final Protocol 8/01, Updated 7/03, 2001. Available at: http://www.mass.gov/dep/water/laws/ swprotoc.pdf
  6. C. Dierkes, T. Lucke, B. Helmreich, General technical approvals for decentralised Sustainable Urban Drainage Systems (SUDS)—the current situation in Germany, Sustainability, 7 (2015) 3031–3051.
  7. The Non-Point Pollution Reduction Facility Performance Test Manual (ME) (11-1480000-001430-01), Ministry of the Environment, Korea, 2016.
  8. P. Piro, M. Carbone, G. Garofalo, J. Sansalone, Size distribution of wet weather and dry weather particulate matter entrained in combined flows from an urbanizing sewershed, Water Air Soil Pollut., 206 (2010) 83–94.
  9. W.R. Selbig, M.N. Fienen, J.A. Horwatich, R.T. Bannerman, The effect of particle size distribution on the design of urban stormwater control measures, Water, 8 (2016) 17, doi: 10.3390/ w8010017.
  10. B.G. Krishnappan, J. Marsalek, W.E. Watt, B.C. Anderson, Seasonal size distributions of suspended solids in a stormwater management pond, Water Sci. Technol., 39 (1999) 127–134.
  11. G. Garofalo, M. Carbone, P. Piro, Sampling, testing and modeling particle size distribution in urban catch basins, Water Sci. Technol., 70 (2014) 1873–1879.
  12. S.E. Clark, C.Y.S. Siu, R. Pitt, C.D. Roenning, D.P. Treese, Peristaltic pump autosamplers for solids measurement in stormwater runoff, Water Environ. Res., 81 (2009) 192–200.
  13. Y.X. Li, S.-L. Lau, M. Kayhanian, M.K. Stenstrom, Particle size distribution in highway runoff, J. Environ. Eng., 131 (2005) 1267–1276.
  14. J.A. McKeague, Organic matter in particle-size and specific gravity fractions of some Ah horizons, Can. J. Soil Sci., 51 (1971) 499–505.
  15. L.C. Chan, Y.X. Li, M.K. Stenstrom, Protocol evaluation of the total suspended solids and suspended sediment concentration methods: solid recovery efficiency and application for stormwater analysis, Water Environ. Res., 80 (2008) 793–805.
  16. M. Fukue, K. Uehara, Y. Sato, C. Mulligan, Re-suspension technique for improving organic rich sediment-water quality in a shallow sea area, Mar. Georesour. Geotechnol., 30 (2012) 222–233.
  17. O. Heiri, A.F. Lotter, G. Lemcke, Loss on ignition as a method for estimating organic and carbonate contents in sediments: reproducibility and comparability of results, J. Paleolimnol., 25 (2001) 101–110.
  18. M.J.J. Hoogsteen, E.A. Lantinga, E.J. Bakker, P.A. Tittonell, An evaluation of the loss-on-ignition method for determining the soil organic matter content of calcareous soils, Commun. Soil Sci. Plant Anal., 49 (2018) 1541–1552.
  19. J.M. Martinez, J.A. Galantini, M.E. Duval, F.M. López, J.O. Iglesias, Estimating soil organic carbon in Mollisols and its particle-size fractions by loss-on-ignition in the semiarid and semihumid Argentinean Pampas, Geoderma Regional, 12 (2018) 49–55.