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Effects of time and rate of application of phosphate rock on the availability of cadmium in soil

机译:磷矿施用时间和施用速率对土壤中镉有效性的影响

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Among the important factors affecting the availability of added Cd from Cd-contaminated phosphate rock (PR) to soil are Cd solubility and content, and the application rate of PR. More Cd is presumably released from PR particles in soil as PR solubility increases with time. This greenhouse study examined effects of time and rate of application of PR containing 40mg(Cd)·kg<'-1> on soil Cd availability measured by DTPA, CaCl<'2> extraction and Cd uptake by lettuce (Lactuca sativa L.). Repeat PR applications at low rates over 2.5-year period did not increase Cd extractability in the soil by CaCl<'2> or DTPA, compared with one-time application at high rates. Within this study period, soil Cd extractability by CaCl<'2> and DTPA was affected primarily by the amount of PR (or Cd) applied and soil pH regardless if the PR was one-time or repeatedly applied. The repeat applications of PR Cd did not increase Cd uptake by lettuce compared with the one-time application. With the amount of DTPA- Cd in the PR-amended soil (25.7%) being the same as the Cd associated with PR particles<0.15mm (25.8%), the availability of the PR Cd within the study period was dominated by these small PR particles. The effect of the PR on soil Cd availability and Cd uptake by lettuce was cumulative. Further research is needed to determine how much longer than 2.5 years of equilibration the PR with the soil is needed for the Cd in the larger PR particles to become available to plants. The information enables the long-term impact of the application of the PR to be better assessed.
机译:影响受Cd污染的磷矿(PR)添加到土壤中的Cd的有效性的重要因素包括Cd的溶解度和含量以及PR的施用率。随着PR溶解度随时间增加,可能从PR颗粒中释放出更多的Cd。该温室研究检查了时间和施用40 mg(Cd)·kg'-1的PR的速率和速率对通过DTPA,CaCl 2提取和莴苣吸收Cd的土壤Cd利用率的影响。 。在2.5年的时间里,低剂量重复施用PR并没有增加CaCl 2或DTPA在土壤中对Cd的可萃取性,而一次性高剂量施用。在此研究期内,无论是一次性施用还是反复施用,CaCl 2和DTPA对土壤Cd的提取能力主要受PR(或Cd)施用量和土壤pH值的影响。与一次性施用相比,重复施用PR Cd不会增加莴苣对Cd的吸收。由于PR改良土壤中的DTPA-Cd含量(25.7%)与与<0.15mm的PR颗粒相关的Cd相同(25.8%),因​​此在研究期内PR Cd的可用性主要是由这些小的PR颗粒。 PR对土壤中Cd利用率和莴苣对Cd吸收的影响是累积性的。需要进一步的研究来确定,将较大的PR颗粒中的Cd提供给植物所需要的PR与土壤的平衡时间要长于2.5年。这些信息可以更好地评估PR应用的长期影响。

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