2017
DOI: 10.1002/ps.4724
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Fluensulfone sorption and mobility as affected by soil type

Abstract: Data indicated that soil organic matter and clay contents will affect sorption, mobility, and dissipation of fluensulfone. © 2017 Society of Chemical Industry.

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Cited by 8 publications
(4 citation statements)
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References 33 publications
(40 reference statements)
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“…Organic matter is another factor affecting the mobility of the compound in the soil; peat moss mixed into the sandy soil also reduces the vertical movement of compounds [84]. The reduction in distance moved in the soil is mainly due to adsorption to organic matter and clay [65,85]. [86,87].…”
Section: Field Application Efficacy and Environmental Conditionsmentioning
confidence: 99%
“…Organic matter is another factor affecting the mobility of the compound in the soil; peat moss mixed into the sandy soil also reduces the vertical movement of compounds [84]. The reduction in distance moved in the soil is mainly due to adsorption to organic matter and clay [65,85]. [86,87].…”
Section: Field Application Efficacy and Environmental Conditionsmentioning
confidence: 99%
“…Variety of researches have been done on the adsorption of different pesticides in soils. [14][15][16][17][18] Despite such studies, reports regarding Rimsulfuron in Pakistani soils selected for current research are nonexistent. Current research has tackled the adsorption of Rimsulfuron with selected soils as physical adsorbents in addition to the environmental detoxification of those soils by means of biosorbent prepared in a cost effective and environmental friendly assay.…”
Section: Resultsmentioning
confidence: 99%
“…Fluensulfone is a new type of sulfone nematicide that has little impact on the environment and nontarget organisms. ,,, It has a brand-new mechanism of action, which can be used by foliar spraying and drip irrigation methods. However, different application methods and soil types will cause fluensulfone to control nematodes differently. , Its adsorption, migration, and dissipation in the soil are affected by the content of organic matter and clay . Compared with organophosphorus and carbamate nematicides, fluorosulfone does not cause paralysis of nematodes by inhibiting acetylcholinesterase .…”
Section: Chemical Nematicidal Active Compoundsmentioning
confidence: 99%
“…122,123 Its adsorption, migration, and dissipation in the soil are affected by the content of organic matter and clay. 124 Compared with organophosphorus and carbamate nematicides, fluorosulfone does not cause paralysis of nematodes by inhibiting acetylcholinesterase. 28 It can gradually cause metabolic damage to the nematode and eventually cause the nematode to fail to obtain lipid storage and die, but its target is not yet clear.…”
Section: ■ Data Sourcesmentioning
confidence: 99%