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Key parameters and practices controlling pesticide degradation efficiency of biobed substrates

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Autore
Karanasios, E.; Karpouzas, D. G.; Tsiropoulos, N. G.
Data
2012
DOI
10.1080/03601234.2012.665753
Soggetto
Biobeds
biomixture composition
temperature
pesticide dose
repeated
application
pesticides degradation
MICROBIAL BIOMASS
ATRAZINE DEGRADATION
ORGANIC AMENDMENTS
SOIL
CHLORPYRIFOS
BIOMIXTURES
MANAGEMENT
HERBICIDES
IPRODIONE
RESIDUES
Environmental Sciences
Public, Environmental & Occupational Health
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Abstract
We studied the contribution of each of the components of a compost-based biomixture (BX), commonly used in Europe, on pesticide degradation. The impact of other key parameters including pesticide dose, temperature and repeated applications on the degradation of eight pesticides, applied as a mixture, in a BX and a peat-based biomixture (OBX) was compared and contrasted to their degradation in soil. Incubation studies showed that straw was essential in maintaining a high pesticide degradation capacity of the biomixture, whereas compost, when mixed with soil, retarded pesticide degradation. The highest rates of degradation were shown in the biomixture composed of soil/compost/straw suggesting that all three components are essential for maximum biobed performance. Increasing doses prolonged the persistence of most pesticides with biomixtures showing a higher tolerance to high pesticide dose levels compared to soil. Increasing the incubation temperature from 15 degrees C to 25 degrees C resulted in lower t(1/2) values, with biomixtures performing better than soil at the lower temperature. Repeated applications led to a decrease in the degradation rates of most pesticides in all the substrates, with the exception of iprodione and metalaxyl. Overall, our results stress the ability of biomixtures to perform better than soil under unfavorable conditions and extreme pesticide dose levels.
URI
http://hdl.handle.net/11615/29026
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