Matches in SemOpenAlex for { <https://semopenalex.org/work/W1989566081> ?p ?o ?g. }
- W1989566081 endingPage "1503" @default.
- W1989566081 startingPage "1497" @default.
- W1989566081 abstract "Vegetation plays an important role in influencing the air/surface exchange of semivolatile organic compounds (SOCs). In order to predict the capability of different plant species to capture chemicals from the air, plant–air partition coefficients and kinetic accumulation parameters must be defined. In this study, potted plants of three different species were transferred to the vicinity of a source point for DDT, namely a contaminated area around a former production plant in Italy. Leaves were constantly sampled in order to follow the uptake from air over time. Later, the potted plants were transported to a location characterized by background diffuse air concentrations for the release phase. Coupling the experimental results with a two-compartment accumulation model it was possible to derive the kinetics parameters and the plant–air partition coefficient KPA for p,p′-DDT. The log KPA (on a mass/volume basis) ranged between 1.7 and 2.2 for the different species. The uncertainties related to the different phenomena involved in a field uptake/release experiment are discussed." @default.
- W1989566081 created "2016-06-24" @default.
- W1989566081 creator A5007596095 @default.
- W1989566081 creator A5008910607 @default.
- W1989566081 creator A5024561889 @default.
- W1989566081 creator A5036542477 @default.
- W1989566081 creator A5037774906 @default.
- W1989566081 creator A5043295654 @default.
- W1989566081 date "2008-08-01" @default.
- W1989566081 modified "2023-09-27" @default.
- W1989566081 title "Field derived accumulation and release kinetics of DDTs in plants" @default.
- W1989566081 cites W1963735790 @default.
- W1989566081 cites W1963809333 @default.
- W1989566081 cites W1967145927 @default.
- W1989566081 cites W1968911170 @default.
- W1989566081 cites W1969073300 @default.
- W1989566081 cites W1975319764 @default.
- W1989566081 cites W1977957456 @default.
- W1989566081 cites W1980938304 @default.
- W1989566081 cites W1983180106 @default.
- W1989566081 cites W1987035604 @default.
- W1989566081 cites W1987556865 @default.
- W1989566081 cites W1989923849 @default.
- W1989566081 cites W1994175781 @default.
- W1989566081 cites W2001330735 @default.
- W1989566081 cites W2007625899 @default.
- W1989566081 cites W2010037596 @default.
- W1989566081 cites W2012320835 @default.
- W1989566081 cites W2012991419 @default.
- W1989566081 cites W2022216207 @default.
- W1989566081 cites W2023064310 @default.
- W1989566081 cites W2023072674 @default.
- W1989566081 cites W2023305419 @default.
- W1989566081 cites W2035875535 @default.
- W1989566081 cites W2038117385 @default.
- W1989566081 cites W2040689605 @default.
- W1989566081 cites W2042726430 @default.
- W1989566081 cites W2047654461 @default.
- W1989566081 cites W2049295498 @default.
- W1989566081 cites W2054133531 @default.
- W1989566081 cites W2054388763 @default.
- W1989566081 cites W2056067010 @default.
- W1989566081 cites W2056280503 @default.
- W1989566081 cites W2063348267 @default.
- W1989566081 cites W2066328012 @default.
- W1989566081 cites W2066608865 @default.
- W1989566081 cites W2066616724 @default.
- W1989566081 cites W2069221067 @default.
- W1989566081 cites W2073606242 @default.
- W1989566081 cites W2076888357 @default.
- W1989566081 cites W2079066600 @default.
- W1989566081 cites W2079869989 @default.
- W1989566081 cites W2088021438 @default.
- W1989566081 cites W2091012044 @default.
- W1989566081 cites W2093669826 @default.
- W1989566081 cites W2094582999 @default.
- W1989566081 cites W2095457797 @default.
- W1989566081 cites W2096159715 @default.
- W1989566081 cites W2129012295 @default.
- W1989566081 cites W2145727610 @default.
- W1989566081 doi "https://doi.org/10.1016/j.chemosphere.2008.04.072" @default.
- W1989566081 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/18541288" @default.
- W1989566081 hasPublicationYear "2008" @default.
- W1989566081 type Work @default.
- W1989566081 sameAs 1989566081 @default.
- W1989566081 citedByCount "9" @default.
- W1989566081 countsByYear W19895660812013 @default.
- W1989566081 countsByYear W19895660812014 @default.
- W1989566081 countsByYear W19895660812019 @default.
- W1989566081 countsByYear W19895660812022 @default.
- W1989566081 countsByYear W19895660812023 @default.
- W1989566081 crossrefType "journal-article" @default.
- W1989566081 hasAuthorship W1989566081A5007596095 @default.
- W1989566081 hasAuthorship W1989566081A5008910607 @default.
- W1989566081 hasAuthorship W1989566081A5024561889 @default.
- W1989566081 hasAuthorship W1989566081A5036542477 @default.
- W1989566081 hasAuthorship W1989566081A5037774906 @default.
- W1989566081 hasAuthorship W1989566081A5043295654 @default.
- W1989566081 hasConcept C107872376 @default.
- W1989566081 hasConcept C112570922 @default.
- W1989566081 hasConcept C121332964 @default.
- W1989566081 hasConcept C142724271 @default.
- W1989566081 hasConcept C148898269 @default.
- W1989566081 hasConcept C178790620 @default.
- W1989566081 hasConcept C185592680 @default.
- W1989566081 hasConcept C18903297 @default.
- W1989566081 hasConcept C192552737 @default.
- W1989566081 hasConcept C20556612 @default.
- W1989566081 hasConcept C2776133958 @default.
- W1989566081 hasConcept C2985179745 @default.
- W1989566081 hasConcept C39432304 @default.
- W1989566081 hasConcept C43617362 @default.
- W1989566081 hasConcept C559116025 @default.
- W1989566081 hasConcept C59822182 @default.
- W1989566081 hasConcept C62520636 @default.
- W1989566081 hasConcept C71924100 @default.
- W1989566081 hasConcept C86803240 @default.
- W1989566081 hasConcept C87717796 @default.