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From agricultural use of sewage sludge to nutrient extraction: A soil science outlook

Kirchmann, Holger and Börjesson, Gunnar and Kätterer, Thomas and Cohen, Yariv (2017). From agricultural use of sewage sludge to nutrient extraction: A soil science outlook. Ambio. 46:2, 143-154
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Official URL: http://dx.doi.org/10.1007/s13280-016-0816-3

Abstract

The composition of municipal wastewater and sewage sludge reflects the use and proliferation of elements and contaminants within society. In Sweden, official statistics show that concentrations of toxic metals in municipal sewage sludge have steadily decreased, by up to 90 %, since the 1970s, due to environmental programmes and statutory limits on metals in sludge and soil. Results from long-term field experiments show that reduced metal pollution during repeated sewage sludge application has reversed negative trends in soil biology. Despite this Swedish success story, organic waste recycling from Swedish towns and cities to arable land is still limited to only about 20 % of the total amount produced. Resistance among industries and consumers to products grown on land treated with sewage sludge may not always be scientifically grounded; however, there are rational obstacles to application of sewage sludge to land based on its inherent properties rather than its content of pollutants. We argue that application of urban organic wastes to soil is an efficient form of recycling for small municipalities, but that organic waste treatment from large cities requires other solutions. The large volumes of sewage sludge collected in towns and cities are not equitably distributed back to arable land because of the following: (i) The high water and low nutrient content in sewage sludge make long-distance transportation too expensive; and (ii) the low plant availability of nutrients in sewage sludge results in small yield increases even after many years of repeated sludge addition. Therefore, nutrient extraction from urban wastes instead of direct organic waste recycling is a possible way forward. The trend for increased combustion of urban wastes will make ash a key waste type in future. Combustion not only concentrates the nutrients in the ash but also leads to metal enrichment; hence, direct application of the ash to land is most often not possible. However, inorganic fertiliser (e.g. mono-ammonium phosphate fertiliser, MAP) can be produced from metalcontaminated sewage sludge ash in a process whereby the metals are removed. We argue that the view on organic waste recycling needs to be diversified in order to improve the urban-rural nutrient cycle, since only recycling urban organic wastes directly is not a viable option to close the urban-rural nutrient cycle. Recovery and recycling of nutrients from organic wastes are a possible solution. When organic waste recycling is complemented by nutrient extraction, some nutrient loops within society can be closed, enabling more sustainable agricultural production in future.

Authors/Creators:Kirchmann, Holger and Börjesson, Gunnar and Kätterer, Thomas and Cohen, Yariv
Title:From agricultural use of sewage sludge to nutrient extraction: A soil science outlook
Series/Journal:Ambio (0044-7447)
Year of publishing :2017
Volume:46
Number:2
Page range:143-154
Number of Pages:12
Publisher:Springer Verlag
ISSN:0044-7447
Language:English
Publication Type:Journal article
Refereed:Yes
Article category:Scientific peer reviewed
Version:Published version
Full Text Status:Public
Agris subject categories.:P Natural resources > P30 Soil science and management
Subjects:(A) Swedish standard research categories 2011 > 4 Agricultural Sciences > 401 Agricultural, Forestry and Fisheries > Soil Science
(A) Swedish standard research categories 2011 > 4 Agricultural Sciences > 401 Agricultural, Forestry and Fisheries > Agricultural Science
Agrovoc terms:sewage sludge, agriculture, nutrients
Keywords:Ash, Long, term field experiments, Metals, Mono, ammonium phosphate, Soil biology, Urban-rural nutrient recycling
URN:NBN:urn:nbn:se:slu:epsilon-e-4564
Permanent URL:
http://urn.kb.se/resolve?urn=urn:nbn:se:slu:epsilon-e-4564
Additional ID:
Type of IDID
DOIUNSPECIFIED
Web of Science (WoS)000395124300002
ID Code:14832
Faculty:NJ - Fakulteten för naturresurser och jordbruksvetenskap
Department:(NL, NJ) > Dept. of Soil and Environment
(S) > Dept. of Soil and Environment
Deposited By: SLUpub Connector
Deposited On:14 Dec 2017 13:41
Metadata Last Modified:14 Dec 2017 13:41

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