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Zeolite Combined with Alum and Polyaluminum Chloride Mixed with Agricultural Slurries Reduces Carbon Losses in Runoff from Grassed Soil Boxes
- Source :
- Journal of Environmental Quality. 45:1941-1948
- Publication Year :
- 2016
- Publisher :
- Wiley, 2016.
-
Abstract
- peer-reviewed Carbon (C) losses from agricultural soils to surface waters can migrate through water treatment plants and result in the formation of disinfection by-products, which are potentially harmful to human health. This study aimed to quantify total organic carbon (TOC) and total inorganic C losses in runoff after application of dairy slurry, pig slurry, or milk house wash water (MWW) to land and to mitigate these losses through coamendment of the slurries with zeolite (2.36 3.35 mm clinoptilolite) and liquid polyaluminum chloride (PAC) (10% Al2O3) for dairy and pig slurries or liquid aluminum sulfate (alum) (8% Al2O3) for MWW. Four treatments under repeated 30-min simulated rainfall events (9.6 mm h-1) were examined in a laboratory study using grassed soil runoff boxes (0.225 m wide, 1 m long; 10% slope): control soil, unamended slurries, PAC-amended dairy and pig slurries (13.3 and 11.7 kg t-1, respectively), alum-amended MWW (3.2 kg t-1), combined zeolite and PAC-amended dairy (160 and 13.3 kg t-1 zeolite and PAC, respectively) and pig slurries (158 and 11.7 kg t-1 zeolite and PAC, respectively), and combined zeolite and alumamended MWW (72 and 3.2 kg t-1 zeolite and alum, respectively). The unamended and amended slurries were applied at net rates of 31, 34, and 50 t ha-1 for pig and dairy slurries and MWW, respectively. Significant reductions of TOC in runoff compared with unamended slurries were measured for PACamended dairy and pig slurries (52 and 56%, respectively) but not for alum-amended MWW. Dual zeolite and alum-amended MWW significantly reduced TOC in runoff compared with alum amendment only. We conclude that use of PAC-amended dairy and pig slurries and dual zeolite and alum-amended MWW, although effective, may not be economically viable to reduce TOC losses from organic slurries given the relatively low amounts of TOC measured in runoff from unamended slurries compared with the amounts applied. ACCEPTED peer-reviewed
- Subjects :
- Aluminum Hydroxide
010501 environmental sciences
01 natural sciences
Soil
chemistry.chemical_compound
lakes
Water Pollutants
zeolite
grassed soil boxes
Zeolite
Waste Management and Disposal
polyaluminum chloride
Water Science and Technology
2 oxisols
Waste management
Chemistry
Phosphorus
04 agricultural and veterinary sciences
Pulp and paper industry
Pollution
climate-change
Zeolites
Alum Compounds
Water treatment
management
Environmental Engineering
dissolved organic-carbon
drinking-water
Amendment
Aluminium sulfate
Management, Monitoring, Policy and Law
Poaceae
Water Movements
Animals
by-products
agricultural slurry
0105 earth and related environmental sciences
Clinoptilolite
Alum
cropping systems
pig slurry
Carbon
matter
Manure
alum
Soil water
040103 agronomy & agriculture
Slurry
0401 agriculture, forestry, and fisheries
carbon losses
Subjects
Details
- ISSN :
- 15372537 and 00472425
- Volume :
- 45
- Database :
- OpenAIRE
- Journal :
- Journal of Environmental Quality
- Accession number :
- edsair.doi.dedup.....729aada1e4456d8f65d9008c3e224d53
- Full Text :
- https://doi.org/10.2134/jeq2016.05.0175