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- W2753356339 abstract "Metal smelter activities have contaminated approximately 700 km2 of the Campine region in Belgium and The Netherlands. This work aimed to assess the effectiveness of biochar added to this soil using compost, peat or lime as a reference. Amendments were mixed with the contaminated soil at a 2 or 4% ratio (w:w) and equilibrated for up to 44 weeks. Treatment with biochar released significantly lower concentrations of Cd in the soil solution than compost or peat. In comparison to the blanks, soil solution concentrations of Cd were reduced 67% on average for the 4% biochar treatment and increased 30% and 231% for the 4% compost and 4% peat treatments, respectively. The lime treatment was equally effective as the biochar in reducing Cd concentrations. Similar trends were observed when conducting consecutive CaCl2 extractions. However, pH-stat leaching tests showed biochar and the other organic amendments to be more effective than lime in retaining Cd from the solution. The combined effect of pH and metal complexation capacity of added biochar resulted in an effective reduction in soluble Cd concentrations that lasted longer than when lime, compost or peat are used." @default.
- W2753356339 created "2017-09-15" @default.
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- W2753356339 date "2018-01-01" @default.
- W2753356339 modified "2023-10-17" @default.
- W2753356339 title "Chemical stabilization of Cd-contaminated soil using biochar" @default.
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- W2753356339 cites W1974119730 @default.
- W2753356339 cites W1974624319 @default.
- W2753356339 cites W1978665073 @default.
- W2753356339 cites W1979238119 @default.
- W2753356339 cites W1984511062 @default.
- W2753356339 cites W1987494126 @default.
- W2753356339 cites W1989756075 @default.
- W2753356339 cites W1993597497 @default.
- W2753356339 cites W1994719960 @default.
- W2753356339 cites W1997158119 @default.
- W2753356339 cites W1998676710 @default.
- W2753356339 cites W1999716158 @default.
- W2753356339 cites W2003493341 @default.
- W2753356339 cites W2005281438 @default.
- W2753356339 cites W2005433216 @default.
- W2753356339 cites W2007031380 @default.
- W2753356339 cites W2012774812 @default.
- W2753356339 cites W2013132106 @default.
- W2753356339 cites W2017571464 @default.
- W2753356339 cites W2018978314 @default.
- W2753356339 cites W2026003940 @default.
- W2753356339 cites W2028379852 @default.
- W2753356339 cites W2029302582 @default.
- W2753356339 cites W2030057515 @default.
- W2753356339 cites W2031493035 @default.
- W2753356339 cites W2031720269 @default.
- W2753356339 cites W2033274439 @default.
- W2753356339 cites W2033911495 @default.
- W2753356339 cites W2034934232 @default.
- W2753356339 cites W2035588686 @default.
- W2753356339 cites W2039912724 @default.
- W2753356339 cites W2040009045 @default.
- W2753356339 cites W2040152771 @default.
- W2753356339 cites W2040864537 @default.
- W2753356339 cites W2043777466 @default.
- W2753356339 cites W2045924286 @default.
- W2753356339 cites W2048285069 @default.
- W2753356339 cites W2049692474 @default.
- W2753356339 cites W2052570445 @default.
- W2753356339 cites W2053215791 @default.
- W2753356339 cites W2060214148 @default.
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- W2753356339 cites W2082636273 @default.
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- W2753356339 cites W628126365 @default.
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- W2753356339 doi "https://doi.org/10.1016/j.apgeochem.2017.09.001" @default.
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