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Published in: Journal of Material Cycles and Waste Management 3/2015

01-07-2015 | ORIGINAL ARTICLE

Potassium alum crystal derived from aluminum salt in water treatment sludge by nanofiltration

Authors: Fung Hwa Chi, Wen Po Cheng, Dun Ren Tian, Ruey Fang Yu, Chi Hua Fu

Published in: Journal of Material Cycles and Waste Management | Issue 3/2015

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Abstract

The major method used for the recovery of aluminum from water purification sludge is through acidification or alkalization, however, the cost of the acid and alkali limits the amount available for use, and thus results in the low concentration of dissolved aluminum salt; moreover, the metal ions and organic matter dissolved simultaneously in the process will also increase the difficulty in reuse. Therefore, this study used sulfuric acid to dissolve aluminum in the sludge from the water treatment plant, followed by the low price nanofiltration membranes to increase the concentration of aluminum ions, and then adding potassium sulfate to produce the potassium alum crystal, which has less impurity. The influences of the molar ratio of potassium to aluminum and the temperature on the recovery of crystals are investigated. The result showed that there was good crystal recovery when the molar ratio of potassium to aluminum is above 1.6, but the recovery rate decreased as the temperature increased.

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Literature
1.
go back to reference Wang MC, Hull JQ, Jao M, Dempsey BA, Cornwell DA (1992) Engineering behavior of water treatment sludge. J Eng Mech 118(6):848–864CrossRef Wang MC, Hull JQ, Jao M, Dempsey BA, Cornwell DA (1992) Engineering behavior of water treatment sludge. J Eng Mech 118(6):848–864CrossRef
2.
go back to reference Chu W (1999) Lend metal removal by recycled alum sludge. Water Res 33(13):3019–3025CrossRef Chu W (1999) Lend metal removal by recycled alum sludge. Water Res 33(13):3019–3025CrossRef
3.
go back to reference Ishikawa S, Ueda N, Okumura Y, Iida Y, Baba K (2007) Recovery of coagulant from water supply plant sludge and its effect on clarification. J Mater Cycles Waste Manag 9:167–172CrossRef Ishikawa S, Ueda N, Okumura Y, Iida Y, Baba K (2007) Recovery of coagulant from water supply plant sludge and its effect on clarification. J Mater Cycles Waste Manag 9:167–172CrossRef
4.
go back to reference Zhao YQ, Babatunde AO (2007) Constructive approaches toward water treatment works sludge management: an international review of beneficial reuses. Crit Rev Environ Sci Technol 37:129–164CrossRef Zhao YQ, Babatunde AO (2007) Constructive approaches toward water treatment works sludge management: an international review of beneficial reuses. Crit Rev Environ Sci Technol 37:129–164CrossRef
5.
go back to reference Evuti AM, Lawal M (2011) Recovery of coagulants from water works sludge: a review. Adv Appl Sci Res 2:410–417 Evuti AM, Lawal M (2011) Recovery of coagulants from water works sludge: a review. Adv Appl Sci Res 2:410–417
6.
go back to reference Panswad T, Chamnan P (1992) Aluminum recovery from industrial aluminum sludge. Water Supply 10(4):159–167 Panswad T, Chamnan P (1992) Aluminum recovery from industrial aluminum sludge. Water Supply 10(4):159–167
7.
go back to reference Cheng WP, Fua CH, Chen PH, Yu RF (2012) Dynamics of aluminum leaching from water purification sludge. J Hazard Mater 217–218:149–155CrossRef Cheng WP, Fua CH, Chen PH, Yu RF (2012) Dynamics of aluminum leaching from water purification sludge. J Hazard Mater 217–218:149–155CrossRef
8.
go back to reference Bishop MM, Rolan AT, Bailey TL, Cornwell DA (1987) Testing of alum recovery for solids reduction and reuse. J Am Water Works Assoc 79(6):76–83 Bishop MM, Rolan AT, Bailey TL, Cornwell DA (1987) Testing of alum recovery for solids reduction and reuse. J Am Water Works Assoc 79(6):76–83
9.
go back to reference Cornwell DA, Susan JA (1979) Characteristics of acid-treated alum sludge. J AWWA 71(10):604–608 Cornwell DA, Susan JA (1979) Characteristics of acid-treated alum sludge. J AWWA 71(10):604–608
10.
go back to reference Li CW, Lin JL, Kang SF, Liang CL (2005) Acidification and alkalization of textile chemical sludge: volume/solid reduction, dewaterability, and Al(III) recovery. Sep Purif Technol 42:31–37CrossRef Li CW, Lin JL, Kang SF, Liang CL (2005) Acidification and alkalization of textile chemical sludge: volume/solid reduction, dewaterability, and Al(III) recovery. Sep Purif Technol 42:31–37CrossRef
11.
go back to reference Horth H, Gendebien A, Agg R, Cartwright N (1994) Treatment and disposal of waterworks sludge in selected European countries, In: Foundation for water research technical reports. No.FR 0428 Horth H, Gendebien A, Agg R, Cartwright N (1994) Treatment and disposal of waterworks sludge in selected European countries, In: Foundation for water research technical reports. No.FR 0428
12.
go back to reference Blais JF, Tyagi RD, Auclair JC, Huang CP (1992) Comparison of acid and microbial leaching for metal removal from municipal sludge. Water Sci Technol 26(1–2):197–206 Blais JF, Tyagi RD, Auclair JC, Huang CP (1992) Comparison of acid and microbial leaching for metal removal from municipal sludge. Water Sci Technol 26(1–2):197–206
13.
go back to reference Xu GR, Tan XC, Wang YC, Wang N (2009) Recycle of alum recovered from water treatment sludge in chemically enhanced primary treatment. J Hazard Mater 161(2–3):663–669CrossRef Xu GR, Tan XC, Wang YC, Wang N (2009) Recycle of alum recovered from water treatment sludge in chemically enhanced primary treatment. J Hazard Mater 161(2–3):663–669CrossRef
14.
go back to reference Hostomsk´a V, Hostomsk´ J (2007) Recovery of ammonium alum from waste solutions with a varying ratio of NH4 to Al in groundwater remediation after underground uranium leaching. J Hazard Mater 147:342–349CrossRef Hostomsk´a V, Hostomsk´ J (2007) Recovery of ammonium alum from waste solutions with a varying ratio of NH4 to Al in groundwater remediation after underground uranium leaching. J Hazard Mater 147:342–349CrossRef
15.
go back to reference Tanninen J, Mänttäri M, Nyström M (2006) Nanofiltration of concentrate acidic copper sulphate solutions. Desalination 198:92–96CrossRef Tanninen J, Mänttäri M, Nyström M (2006) Nanofiltration of concentrate acidic copper sulphate solutions. Desalination 198:92–96CrossRef
16.
go back to reference Akbari A, Desclaux S, Remigy JC, Aptel P (2002) Treatment of textile dye effluents using a new photografted nanofiltration membrane. Desalination 149:101–107CrossRef Akbari A, Desclaux S, Remigy JC, Aptel P (2002) Treatment of textile dye effluents using a new photografted nanofiltration membrane. Desalination 149:101–107CrossRef
17.
go back to reference Yeom CK, Lee SH, Lee JM (2000) Effect of the ionic characteristics of anionic solutes in reverse osmosis. J Membr Sci 169:237–247CrossRef Yeom CK, Lee SH, Lee JM (2000) Effect of the ionic characteristics of anionic solutes in reverse osmosis. J Membr Sci 169:237–247CrossRef
18.
go back to reference Lin SH, Lo MC (1998) Synthesis of aluminum ammonium sulfate from waste aluminum processing solution by crystallization. J Hazard Mater 63(2–3):211–222CrossRef Lin SH, Lo MC (1998) Synthesis of aluminum ammonium sulfate from waste aluminum processing solution by crystallization. J Hazard Mater 63(2–3):211–222CrossRef
19.
go back to reference Dirksen JA, Ring TA (1991) Fundamentals of crystallization: kinetic effects on particle size distributions and morphology. Chem Eng Sci 46:2389–2427CrossRef Dirksen JA, Ring TA (1991) Fundamentals of crystallization: kinetic effects on particle size distributions and morphology. Chem Eng Sci 46:2389–2427CrossRef
20.
go back to reference Mullin JW, Zacek S (1981) The precipitation of potassium aluminum sulphate from aqueous solution. J Cryst Growth 53:515–518CrossRef Mullin JW, Zacek S (1981) The precipitation of potassium aluminum sulphate from aqueous solution. J Cryst Growth 53:515–518CrossRef
21.
go back to reference Randolph AD, Larson MA (1998) Theory of particulate processes, 2nd edn. Academic Press, San Diego Randolph AD, Larson MA (1998) Theory of particulate processes, 2nd edn. Academic Press, San Diego
22.
go back to reference Arend H, Hulligcr J (1989) Crystal growth in science and technology. Plenum Press, New York, pp 57–64 Arend H, Hulligcr J (1989) Crystal growth in science and technology. Plenum Press, New York, pp 57–64
Metadata
Title
Potassium alum crystal derived from aluminum salt in water treatment sludge by nanofiltration
Authors
Fung Hwa Chi
Wen Po Cheng
Dun Ren Tian
Ruey Fang Yu
Chi Hua Fu
Publication date
01-07-2015
Publisher
Springer Japan
Published in
Journal of Material Cycles and Waste Management / Issue 3/2015
Print ISSN: 1438-4957
Electronic ISSN: 1611-8227
DOI
https://doi.org/10.1007/s10163-014-0269-3

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