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Short-Term Bioassay Responses to Sludge Products and Leachate

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Abstract

Recycling of sewage sludge is needed in a sustainable society. Quality aspects of sludge include hygiene (pathogens), nutrients (N and P), and toxicants (metals and organics). Metals are of particular concern because they are not degradable, but their hazards are related to their bioavailability and chemical speciation. In this article, the effect on sludge quality of two treatment methods, incineration and pelletization, has been determined for digested sludge from two treatment plants. The combined effect of nutrients and toxicants in sludge and sludge product was determined for spring wheat, Triticum aestivum, and the toxicity of the leachate water was determined for water fleas, Daphnia magna, and seeds of lettuce, Lactuca sativa. Toxicity Identification Evaluation was used to determine whether metals were possible toxicants. The results indicated that incineration decreased toxicity, whereas leachability of metals and the fertilizing effect was unaffected. Pelletization seemed to increase toxicity and leachability of metals and also decreased the fertilizing effect of the sludge. Thus, the results suggest that pelletization of digested sewage sludge increased the toxicity of the sludge and thus decreased the quality of the sludge, whereas incineration apparently reduced toxicity for the two sludges tested.

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References

  • Antoniadis V, Alloway BJ (2001) Availability of Cd, Ni and Zn to Ryegrass in sewage sludge-treated soils at different temperatures. Water, Air Soil Pollution 132:201–214

    Article  CAS  Google Scholar 

  • Beltrami M, Rossi D, Baudo R (1999) Phytotoxicity assessment of Lake Orta sediments. Aquatic Ecosystem Health Management 2:391–401

    Article  CAS  Google Scholar 

  • Biesinger KE, Christensen GM (1972) Effects of various metals on survival, growth, reproduction and metabolism of Daphnia magna. J Fish Res Board Can 29:1691–1700

    CAS  Google Scholar 

  • Carter JA, Mroz RE, Tay KL, Doe KG (1998) An evaluation of the use of soil and sediment bioassays in the assessment of three contaminated sites in Atlantic Canada. Water Qual Res J Canada 33:295–317

    CAS  Google Scholar 

  • Dowden BF, Bennett HJ (1965) Toxicity of selected chemicals to certain animals. J Water Pollut Control Fed 37:1308–1316

    CAS  Google Scholar 

  • Eriksson J (2001) Concentration of 61 trace elements in sewage sludge farm manure, mineral fertiliser, precipitation and in soil and crop. Report 5159, Swedish Environmental Protection Agency, Stockholm

  • Fjällborg B, Dave G (2003) Toxicity of copper in sewage sludge. Environ Int 28:761–769

    Article  CAS  Google Scholar 

  • Fjällborg B, Dave G (2004) Toxicity of Sb and Cu in sewage sludge to terrestrial plants (lettuce, oat, radish), and of sludge elutriate to aquatic organisms (Daphnia and Lemna). Water Air Soil Pollution 155:3–20

    Article  Google Scholar 

  • Fjällborg B, Ahlberg G, Nilsson E, Dave G (2005) Identification of toxicity in sewage sludge leachate. Environ Int 31:25–31

    Article  CAS  Google Scholar 

  • ISO (1995) Soil quality—Determination of the effects of pollutants on soil flora—Part 2: Effects of chemicals on the emergence and growth of higher plants. ISO 11:269–262

    Google Scholar 

  • ISO (1996) Water quality—Determination of the inhibition of mobility of Daphnia magna Straus (Cladocera, Crustacea)—Acute toxicity test. ISO 6341

  • Khangarot BS, Ray PK, Chandra H (1987) Daphnia magna as a model to assess heavy metal toxicity: Comparative assessment with mouse system. Acta Hydrochim Hydrobiol 15:427–432

    CAS  Google Scholar 

  • Lasier PJ, Winger PV, Bogenrieder KJ (2000) Toxicity of manganese to Ceriodaphnia dubia and Hyalella azteca. Arch Environ Contam Toxicol 38:298–304

    Article  CAS  Google Scholar 

  • McBride MB (1994) Environmental chemistry of soils. Oxford University Press, New York

    Google Scholar 

  • McBride MB (2003) Toxic metals in sewage sludge-amended soils: has promotion of beneficial use discounted the risks? Adv Environ Res 8:5–19

    Article  CAS  Google Scholar 

  • Mount DI, Norberg TJ (1984) A seven-day life-cycle cladoceran toxicity test. Environ Toxicol Chem 3:425–434

    CAS  Google Scholar 

  • Mount DR, Gulley DD, Hocket JR, Garrison TD, Evans JM (1997) Statistical models to predict the toxicity of major ions to Ceriodaphnia dubia, Daphnia magna and Pimephales promelas (fathead minnows). Environ Toxicol Chem 16:2009–2019

    Article  CAS  Google Scholar 

  • Naturvårdsverket (2004) Metaller och organiska ämnen i avloppsslam. http://www.naturvardsverket.se/dokument/fororen/metaller/tungmet/slam.html

  • Obrador A, Rico MI, Alvarez JM, Novillo J (2001) Influence of thermal treatment on sequential extraction and leaching behaviour of trace metals in a contaminated sewage sludge. Bioresource Technol 76:259–264

    Article  CAS  Google Scholar 

  • Peltier WH, Weber CI (1985) Methods for measuring the acute toxicity of effluent to freshwater and marine organisms, 3rd ed. US Environmental Protection Agency, Cincinatti. EPA/60014-85/013

  • Renoux AY, Tyagi RD, Samson R (2001) Assessment of toxicity reduction after metal removal in bioleached sewage sludge. Water Res 35:1415–1424

    Article  CAS  Google Scholar 

  • Richards BK, Steenhuis TS, Peverly JH, Liebowitz BN (1997) Effect of processing mode on trace elements in dewatered sludge products. J Environ Qual 26:782–788

    Article  CAS  Google Scholar 

  • Singh KP, Mohan D, Sinha S, Dalwani R, (2004) Impact assessment of treated/untreated wastewater toxicants discharged by sewage treatment plants on health, agricultural and environmental quality in the wastewater disposal area. Chemosphere 55:227–255

    Article  CAS  Google Scholar 

  • Stronkhorst J, Ciarelli S, Schipper CA, Postma JF, Dubbeldam M, Vangheluwe M, Brils JM, Hooftman R (2004) Inter-laboratory comparison of five marine bioassays for evaluating the toxicity of dredged material. Aquatic Ecosystem Health Management 7:147–159

    Article  CAS  Google Scholar 

  • Svensson A (2002) Miljögifter i avloppsslam—en studie omfattande 19 reningsverk i Västra Götaland. Rapport 2002:39, Länsstyrelsen Västra Götaland

    Google Scholar 

  • Tay KL (1989) The role and application of environmental bioassay techniques in support of the impact assessment and decision-making under the Ocean Dumping Control Act in Canada. Hydrobiologia 188–189: 595–600

  • US EPA (1991) Methods for aquatic toxicity identifications evaluations. Phase 1, Toxicity characterization procedures. United States Environmental Protection Agency, EPA/600/6-91/003, 2nd ed

  • US EPA (1993a) Methods for aquatic toxicity identifications evaluations. Phase 2, Toxicity identification procedures for samples exhibiting acute and chronic toxicity. United States Environmental Protection Agency, EPA/600/R-92/080

  • US EPA (1993b) Methods for aquatic toxicity identifications evaluations. Phase 1, Toxicity confirmation procedures for samples exhibiting acute and chronic toxicity. United States Environmental Protection Agency, EPA/600/R-92/081

  • US EPA (1996) Ecological effects test guidelines, OPPTS 850.4200, Seed germination/root elongation toxicity tests. United States Environmental Protection Agency

  • Wakabayashi M, Konno R, Nishiido T (1988) Relative lethal sensitivity of two Daphnia species to chemicals. Tokyo-to Kankyo Kagaku Kenkyusho Nenpo, pp 126–128

  • Wik A, Dave G (2005) Environmental labelling of car tires—toxicity to Daphnia magna can be used as a screening method. Chemosphere 58:645–651

    Article  CAS  Google Scholar 

  • Zorpas AA, Vlyssides AG, Zorpas GA, Karlis PK, Arapoglou D (2000) Impact of thermal treatment on metal in sewage sludge from the Psittalias wastewater treatment plant, Athens, Greece. J Hazardous Materials B82:291–298

    Google Scholar 

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Correspondence to B. Fjällborg.

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Fjällborg, B., Gustafsson, N. Short-Term Bioassay Responses to Sludge Products and Leachate. Arch Environ Contam Toxicol 51, 367–376 (2006). https://doi.org/10.1007/s00244-005-0037-4

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