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Leaching of phosphorus from incinerated sewage sludge ash by means of acid extraction followed by adsorption on orange waste gel 被引量:25

Leaching of phosphorus from incinerated sewage sludge ash by means of acid extraction followed by adsorption on orange waste gel
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摘要 Ashes from sewage sludge incineration have a high phosphorus content, approximately 8% (W/W), which indicates a potential resource of the limiting nutrient. Incineration of sewage sludge with subsequent recovery of phosphorus is a relatively new sludge treatment technique. In this article, the leaching of phosphorus by using sulfuric acid as well as hydrochloric acid by means of several batch experiments was presented. At the same time a selective recovery of phosphorus by adsorption was also discussed. The effects of acid concentration, temperature and time on extraction were studied. The phosphorus leaching increased with the increase in acid concentration and temperature. Kinetic studies showed that the complete leaching of phosphorus took place in less than 4 h. Selective adsorption of phosphorus by using orange waste gel provided a hint for recovery of this natural resource, which eventually could meet the ever-increasing requirement for phosphorus. The overall results indicated that the incinerated sewage sludge ash can be treated with acid to efficiently recover phosphorus and thus can be considered a potentially renewable source of phosphorus. Ashes from sewage sludge incineration have a high phosphorus content, approximately 8% (W/W), which indicates a potential resource of the limiting nutrient. Incineration of sewage sludge with subsequent recovery of phosphorus is a relatively new sludge treatment technique. In this article, the leaching of phosphorus by using sulfuric acid as well as hydrochloric acid by means of several batch experiments was presented. At the same time a selective recovery of phosphorus by adsorption was also discussed. The effects of acid concentration, temperature and time on extraction were studied. The phosphorus leaching increased with the increase in acid concentration and temperature. Kinetic studies showed that the complete leaching of phosphorus took place in less than 4 h. Selective adsorption of phosphorus by using orange waste gel provided a hint for recovery of this natural resource, which eventually could meet the ever-increasing requirement for phosphorus. The overall results indicated that the incinerated sewage sludge ash can be treated with acid to efficiently recover phosphorus and thus can be considered a potentially renewable source of phosphorus.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2009年第12期1753-1760,共8页 环境科学学报(英文版)
基金 supported by a Grant-in-Aid for Scientific Research of Waste Treatment from the Ministry of Environment of Japan (No. K2072)
关键词 sewage sludge ash PHOSPHORUS METALS acid extraction recovery sewage sludge ash phosphorus metals acid extraction recovery
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  • 1Acar Y B, Alshawabkeh A N, 1993. Principles of electrokinetic remediation. Environmental Science and Technology, 27: 2638-2648.
  • 2Alshawabkeh A N, Bricka R M, 2000. Basics and applications of electrokinetic remediation. In: Remediation Engineering of Contaminated Soils. NY, USA: Marcel Dekker, Inc.
  • 3Babel S, del Mundo Dacera D, 2006. Heavy metal removal from contaminated sludge for land application: a review. Waste Management, 26: 988-1004.
  • 4Biswas B K, Inoue K, Ghimire K N, Harada H, Ohto K, Kawakita H, 2008. Removal and recovery of phosphorus from water by means of adsorption onto orange waste gel loaded with zirconium. Bioresource Technology, 99: 8685-8690.
  • 5Cheeseman C R, Sollars C J, McEntee S, 2003. Properties, microstructure and leaching of sintered sewage sludge ash. Resources Conservation and Recycling, 40: 13-25.
  • 6Dutta S, 2002. Environmental Treatment Technologies for Hazardous and Medical Wastes: Remedial Scope and Efficacy. New Delhi, India: Tata McGraw-HiU Publishing Co.
  • 7Ekholm P, Krogerus K, 1998. Bioavailability of phosphorus in purified municipal wastewaters. Water Research, 32: 343- 351.
  • 8Franz M, 2008. Phosphate fertilizer from sewage sludge ash (SSA). Waste Management, 28: 1809-1818.
  • 9Fuentes A, Llorens M, Saez J, Soler A, Aguilar M I, Ortuno J F et al., 2004. Simple and sequential extractions of heavy metals from different sewage sludges. Chemosphere, 54: 1039-1047.
  • 10Fytianos K, Charantoni E, Voudrias E, 1998. Leaching of heavy metals from municipal sewage sludge. Environment International, 24: 467-475.

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