Use of garden organic compost in vegetable productionunder contrasting soil P status

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dc.contributor Chan, K Y
dc.contributor Dorahy, C
dc.contributor Wells, T
dc.contributor Fahey, D
dc.contributor Donovan, N
dc.contributor Saleh, F
dc.contributor Barchia, I
dc.date.accessioned 2012-03-08T00:41:40Z
dc.date.available 2012-03-08T00:41:40Z
dc.date.issued 2008
dc.identifier.uri http://livestocklibrary.com.au/handle/1234/31693
dc.description.abstract Little research has been carried out on the agronomic value of compost produced from garden organics for vegetable production. A field experiment was established in Camden, near Sydney, Australia, to (i) evaluate the effect of the compost on vegetable production and soil quality relative to conventional practice, (ii) compare vegetable production under high and low soil P status, and (iii) monitor the changes in soil P concentration under two compost treatments relative to conventional farmers' practice. After three successive crops (broccoli, eggplant and cabbage), results indicate that compost (120 dry t/ha) and half-compost (60 dry t/ha supplemented by inorganic fertilisers) treatments can produce similar yield to the conventional practice of using a mixture of poultry manure and inorganic fertiliser. Furthermore, similar yields were achieved for three different crops grown under high and low P soil conditions, clearly demonstrating that the high extractable soil P concentrations currently found in the vegetable farms of Sydney are not necessary for maintaining productivity. The compost treatments also significantly increased soil organic carbon and soil quality including soil structural stability, exchangeable cations, and soil biological properties. Importantly, the compost treatment was effective in reducing the rate of accumulation of extractable soil P compared with the conventional vegetable farming practice. Our results highlight the potential for using compost produced from source separated garden organics in reversing the trend of soil degradation observed under current vegetable production, without sacrificing yield.
dc.publisher CSIRO
dc.source.uri http://www.publish.csiro.au/?act=view_file&file_id=AR07255.pdf
dc.subject carbon sequestration
dc.subject recycled organics
dc.subject poultry manure
dc.subject microbial biomass
dc.subject soil biological activities
dc.subject phosphorus availability
dc.title Use of garden organic compost in vegetable productionunder contrasting soil P status
dc.type Research
dc.description.version Journal article
dc.identifier.volume 59
dc.identifier.page 374-382
dc.identifier.issue 4


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