Publication Cover
Journal of Environmental Science and Health, Part A
Toxic/Hazardous Substances and Environmental Engineering
Volume 50, 2015 - Issue 1
269
Views
5
CrossRef citations to date
0
Altmetric
Original Articles

A bench-scale assessment for phosphorus release control of sediment by an oxygen-releasing compound (ORC)

, , &
Pages 49-59 | Received 16 May 2014, Published online: 01 Dec 2014

References

  • Jarvie, H.P.; Sharpley, A.N.; Withers, P.J.; Withers, P. J.; Scott, J. T.; Haggard, B. E.; Neal, C. Phosphorus mitigation to control river eutrophication: Murky waters, inconvenient truths, and ‘postnormal’ science. J. Environ. Qual. 2013, 42(2), 295–304.
  • Søndergaard, M.; Bjerring, R.; Jeppesen, E. Persistent internal phosphorus loading during summer in shallow eutrophic lakes. Hydrobiologia 2013, 710(1), 95–107.
  • Pedro,T.; Kimberley, S.; Fernando, P. Dynamics of phosphorus in sediments of a naturally acidic lake. Int. J. Sediment. Res. 2013, 28(1), 90–102.
  • Montalvo, S.J.; Guerrero, L.E.; Milán, Z.; Borja, R. Nitrogen and phosphorus removal using a novel integrated system of natural zeolite and lime. J. Environ. Sci. Health A 2011, 46(12), 1385–1391.
  • Supriyo K.D.; Joyanto, R.; Alakendra, N.; Roychoudhury, J.; Val, K.; Rajesh, K.R. Phosphorus dynamics in shallow eutrophic lakes: an example from Zeekoevlei, South Africa. Hydrobiologia 2009, 619, 55–66.
  • Jilbert, T.; Slomp, C.P. Iron and manganese shuttles control the formation of authigenic phosphorus minerals in the euxinic basins of the Baltic Sea. Geochim. Cosmochim. Acta 2013, 107, 155–169.
  • Huang, Q.H.; Wang, Z.J.; Wang, D.H.; Wang, C.X.; Ma, M.; Jin, X.C. Origins and mobility of phosphorus forms in the sediments of Lakes Taihu and Chaohu, China. J Environ. Sci. Health A 2005, 40(1): 91–102.
  • Wang, S.; Jiao, L.X.; Yang, S.; Jin, X.; Yi, W. Effects of organic matter and submerged macrophytes on variations of alkaline phosphatase activity and phosphorus fractions in lake sediment. J. Environ. Manage. 2012, 113, 355–360.
  • Jiang, X.; Jin, X.; Yao, Y.; Wu, F. Effects of oxygen on the release and distribution of phosphorus in the sediments under the light condition. Environ. Pollut. 2006, 141(3), 482–487.
  • Chang, Y.J.; Chang, Y.T.; Chen, H.J. A method for controlling hydrogen sulfide in water by adding solid phase oxygen. Bioresour. Technol. 2007, 98(2), 478–483.
  • Northup, A.; Cassidy, D. Calcium peroxide (CaO2) for use in modified Fenton chemistry. J. Hazard. Mater. 2008, 152(3), 1164–1170.
  • Lin, C.W.; Wu, C.H.; Tang, C.T.; Chang, S.H. Novel oxygen-releasing immobilized cell beads for bioremediation of BTEX-contaminated water. Bioresour. Technol. 2012, 124, 45–51.
  • Qian, Y.; Zhou, X.; Zhang, Y.; Zhang, W.; Cheng, J. Performance and properties of nanoscale calcium peroxide for toluene removal. Chemosphere 2013, 91(5), 717–723.
  • Dobson, Jr., J.W.; Hayden, S.L.; Tresco, K.O. Earth Metal Peroxide Fluidized Compositions. U.S. Patent Application 13/759,996, February 5, 2013.
  • Gomes, J.; Grunau, A.; Lawrence, A.K.; Eberl, L.; Gademann, K. Bioinspired, releasable quorum sensing modulators. Chem. Commun. 2013, 49(2), 155–157.
  • Lobo, T.; Alonso, M.; Latorre, A.; del Río, R.M. Taurine levels and localisation in the stratified squamous epithelia. Histochem. Cell. Biol. 2001, 115(4), 341–347.
  • Liu, N.; Li, H.; Shi, Y.; Zhu, B.; Gao, S. Biodegradation of high concentration of nitrobenzene by Pseudomonas corrugata embedded in peat-phosphate esterified polyvinyl alcohol. World J. Microb. Biot. 2013, 29(10), 1859–1867.
  • Bryaskova, R.; Georgieva, N.; Andreeva, T.; Tzoneva, R. Cell adhesive behavior of PVA-based hybrid materials with silver nanoparticles. Surf. Coat. Tech. 2013, 235, 186–191.
  • Zhang, S.J.; Feng, H.M.; Wang, J.P.; Yu, H.Q. Structure evolution and optimization in the fabrication of PVA-based activated carbon fibers. J. Coll. Interf. Sci. 2008, 321(1), 96–102.
  • Nykänen, A.; Kontio, H.; Klutas, O.; Penttinen, O. P.; Kostia, S., Mikola, J.; Romantschuk, M. Increasing lake water and sediment oxygen levels using slow release peroxide. Sci. Total. Environ. 2012, 429, 317–324.
  • Murphy, J.; Riley, J.P. A modified single solution method for the determination of phosphate in natural waters. Anal. Chim. Acta 1962, 27, 31–36.
  • Prepas, E.E.; Rigler, F.H. Improvements in quantifying the phosphorus concentration in lake water. Can. J. Fish. Aquat Sci. 1982, 39(6), 822–829.
  • Singh, J.; Singh, D.K. Dehydrogenase and phosphomonoesterase activities in groundnut (Arachis hypogaea L.) field after diazinon, imidacloprid and lindane treatments. Chemosphere 2005, 60(1), 32–42.
  • Tabatabai, M.A. Soil enzymes. In Methods of Soil Analysis: Part 2-Microbiological and Biochemical Properties; Bottomley, P.S.; Angle, J.S.; Weaver, R.W., Eds.; Soil Science Society of America: Washington DC, 1994; 775–833.
  • Ruttenberg, K.C. Development of a sequential extraction method for different forms of phosphorus in marine sediments. Limnol. Oceanogr. 1992, 37(7), 1460–1482.
  • Bar-Chaput, S.; Carrot, C. Rheology as a tool for the analysis of the dispersion of carbon filler in polymers. Rheol. Acta 2006, 45(4), 339–347.
  • Fenchel, T.; Finlay, B. Oxygen and the spatial structure of microbial communities. Biological Reviews 2008, 83(4), 553–569.
  • Abhilash, K.R.; Raveendran, T.V.; LimnaMol, V.P.; Deepak, M.P. Sediment oxygen demand in Cochin backwaters, a tropical estuarine system in the south-west coast of India. Mar. Environ. Res. 2012, 79, 160–166.
  • Das, S.K.; Routh, J.; Roychoudhury, A.N.; Klump, J.V.; Ranjan, R.K. Phosphorus dynamics in shallow eutrophic lakes: an example from Zeekoevlei, South Africa. Hydrobiologia 2009, 619(1), 55–66.
  • Liu, Y.; Lin, Y.M.; Tay, J.H. The elemental compositions of P-accumulating microbial granules developed in sequencing batch reactors. Proc. Biochem. 2005, 40(10), 3258–3262.
  • Hupfer, M.; Lewandowski, J. Oxygen Controls the Phosphorus Release from Lake Sediments - a Long-Lasting Paradigm in Limnology. International Review of Hydrobiology 2008, 93(4–5), 415–432.
  • Trojanowska, A.; Izydorczyk, K. Phosphorus fractions transformation in sediments before and after cyanobacterial bloom: implications for reduction of eutrophication symptoms in dam reservoir. Water. Air. Soil. Poll. 2010, 211(1–4), 287–298.
  • Ruban, V.; Brigault, S.; Demare, D.; Philippe, A.M. An investigation of the origin and mobility of phosphorus in freshwater sediments from Bort-Les-Orgues Reservoir, France. J. Environ. Monitor. 1999, 1(4), 403–407.
  • Zhou, Y.; Song, C.; Cao, X.; Li, J.; Chen, G.; Xia, Z.; Jiang, P. Phosphorus fractions and alkaline phosphatase activity in sediments of a large eutrophic Chinese lake (Lake Taihu). Hydrobiologia 2008, 599(1), 119–125.
  • Sondergaard, M.; Jensen, J.P.; Jeppesen, E. Role of sediment and internal loading of phosphorus in shallow lakes. Hydrobiologia 2003, 506(1–3), 135–145.
  • Chen, J.; Lu, S.; Zhao, Y.; Wang, W.; Huang, M. Effects of overlying water aeration on phosphorus fractions and alkaline phosphatase activity in surface sediment. J. Environ. Sci.-China. 2011, 23(2), 206–211.
  • Caravelli, A.H.; De, Gregorio, C.; Zaritzky, N.E. Effect of operating conditions on the chemical phosphorus removal using ferric chloride by evaluating orthophosphate precipitation and sedimentation of formed precipitates in batch and continuous systems. Chem. Eng. J. 2012, 209, 469–477.
  • Yu, Y.; Zhang, H.; Zhou, Q. Using soil available P and activities of soil dehydrogenase and phosphatase as indicators for biodegradation of organophosphorus pesticide methamidophos and glyphosate. Soil Sediment Contam. 2011, 20(6), 688–701.
  • Zhang, T.; Wang, X.; Jin, X. Variations of alkaline phosphatase activity and P fractions in sediments of a shallow Chinese eutrophic lake (Lake Taihu). Environ. Pollut. 2007, 150(2), 288–294.
  • Nannipieri, P.; Giagnoni, L.; Landi, L.; Renella, G. Role of phosphatase enzymes in soil. In Phosphorus in action; Else, Bünemann.; Astrid, Oberson.; Emmanuel, Frossard. Springer: Berlin Heidelberg, 2011; 215–243.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.