immobilization of cadmium in a cd-spiked soil by different kinds of amendments

نویسندگان

mahboub saffari department of soil science, college of agriculture, shiraz university, shiraz, iran institute of science and high technology and environmental sciences, graduate university of advanced technology, kerman, iran

najafali karimian department of soil science, college of agriculture, shiraz university, shiraz, iran

abdolmajid ronaghi department of soil science, college of agriculture, shiraz university, shiraz, iran

jafar yasrebi department of soil science, college of agriculture, shiraz university, shiraz, iran

چکیده

chemical stabilization of heavy metals is one of the soil remediation methods based on the application amendments to reduce mobility of heavy metals. a laboratory study was conducted to investigate the influence of different kinds of amendments on cadmium (cd) stabilization in a cd-spiked soil. the amendments were municipal solid waste compost (mswc), coal fly ash (cfa), rice husk biochars prepared at 300°c (b300) and 600°c (b600), zero valent iron (fe 0 ) and zero valent manganese (mn0). the cd-spiked soils were separately incubated with selected amendments at the rates of 2 and 5% (w/w) for 90 days at 25 °c. soil samples were extracted by edta for periods of 5 to 975min. in addition, sequential extraction was used as a suitable method for identification of chemical forms of cd and their plant availability. the addition of amendments to soil had significant effects on desorption and chemical forms of cd. changes in cd fractions and their conversion into less soluble forms were clear in all treated soils. the addition of amendments resulted in a significant reduction in mobility factor of cd compared to the control treatment. among all amendments tested, fe 0 was the most effective treatment in decreasing dynamic of cd. biphasic pattern of cd desorption kinetic was fitted well by the model of two first-order reactions. in general, from the practical point of view, fe 0 , mswc and mn 0 treatments are effective in cd immobilization, while application of  fe 0 at 5% (w/w) was the best treatment for stabilization of cd.

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عنوان ژورنال:
journal of chemical health risks

جلد ۵، شماره ۳، صفحات ۰-۰

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