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利用改良措施减少佛罗里达州沙质土壤中磷及其他养分的淋失损失。

Use of amendments to reduce leaching loss of phosphorus and other nutrients from a sandy soil in Florida.

作者信息

Yang Jinyan, He Zhenli, Yang Yuangen, Stoffella Peter, Yang Xiaoe, Banks Douglas, Mishra Suren

机构信息

Indian River Research and Education Center, IFAS, University of Florida, 2199 South Rock Road, Fort Pierce, FL34945, USA.

出版信息

Environ Sci Pollut Res Int. 2007 Jun;14(4):266-9. doi: 10.1065/espr2007.01.378.

Abstract

GOAL, SCOPE AND BACKGROUND: Transport of P from agricultural land contributes to the eutrophication of surface waters. Soil amendment is considered one of the best management practices (BMPs) to reduce P loss from sandy soils. Laboratory column leaching experiments were conducted to evaluate the effectiveness of different soil amendments in reducing P leaching from a typical sandy soil in Florida.

METHODS

The tested amendments were CaCl2, CaCO3, Al(OH)3, cellulose, and mill mud, and applied at the rate of 15 g/kg for a single amendment and each 7.5 g/kg if two amendments were combined. Leaching was conducted every four days for 32 days, 250 mL of deionized water being leached for each column per leaching event. Leachates were collected from each leaching event and analyzed for reactive P, PO4-P, and macro and micro-elements.

RESULTS AND DISCUSSION

Except for the soils amended with CaCl2, or CaCl2+CaCO3, reactive P and PO4-P leaching losses mainly occurred in the first three leaching events. Phosphorus leaching from the soils amended with CaCl2 or CaCl2+CaCO3 was less but more persistent than that of other amendments. Reactive P leaching loss was reduced by 36.0% and 40.4% for the amendments of CaCl2, and CaCl2+CaCO3, respectively, as compared with chemical fertilizer alone, and the corresponding values for PO4-P were 70.8% and 71.9%. The concentrations of K, Mg, Cu, and Fe in leachate were also decreased by CaCl2 or CaCl2+CaCO3 amendment. Among the seven amendments, CaCl2, CaCO3, or their combination were most effective in reducing P leaching from the sandy soil, followed by cellulose and Al(OH)3, the effects of mill mud and mill mud + Al(OH)3 were marginal.

CONCLUSIONS

These results indicate that the use of CaCl2, CaCO3, or their combination can significantly reduce P leaching from sandy soil, and should be considered in the development of BMPs for the sandy soil regions. Recommendations and Outlook. Most agricultural soils in south Florida are very sandy with minimal holding capacities for moisture and nutrients. Repeated application of fertilizer is necessary to sustain desired yield of crops on these soils. However, eutrophication of fresh water systems in this area has been increasingly concerned by the public. Losses of P from agricultural fields by means of leaching and surface runoff are suspected as one of the important non-point contamination sources. The benefits and effectiveness of soil amendment in reducing P losses from cropping production systems while sustaining desired crop yield need to be demonstrated. Calcium chloride, CaCO3, or their combination significantly reduce P leaching from sandy soil, and should be considered in the development of BMPs for the sandy soil regions.

摘要

目标、范围和背景:农田磷素的迁移会导致地表水富营养化。土壤改良被认为是减少砂质土壤磷素流失的最佳管理措施之一。开展了实验室柱淋溶实验,以评估不同土壤改良剂对减少佛罗里达州典型砂质土壤磷素淋溶的效果。

方法

测试的改良剂有氯化钙、碳酸钙、氢氧化铝、纤维素和造纸污泥,单一改良剂的施用量为15克/千克,若两种改良剂组合则每种施用量为7.5克/千克。每四天进行一次淋溶,共32天,每次淋溶每个柱体淋入250毫升去离子水。每次淋溶后收集淋出液,分析其中的活性磷、磷酸根磷以及大量和微量元素。

结果与讨论

除了用氯化钙或氯化钙+碳酸钙改良的土壤外,活性磷和磷酸根磷的淋溶损失主要发生在前三次淋溶过程中。用氯化钙或氯化钙+碳酸钙改良的土壤磷素淋溶量较少但持续时间比其他改良剂长。与单独施用化肥相比,氯化钙和氯化钙+碳酸钙改良剂分别使活性磷淋溶损失降低了36.0%和40.4%,磷酸根磷的相应降低值分别为70.8%和71.9%。氯化钙或氯化钙+碳酸钙改良剂还降低了淋出液中钾、镁、铜和铁的浓度。在七种改良剂中,氯化钙、碳酸钙或它们的组合在减少砂质土壤磷素淋溶方面最有效,其次是纤维素和氢氧化铝,造纸污泥和造纸污泥+氢氧化铝的效果不明显。

结论

这些结果表明,使用氯化钙、碳酸钙或它们的组合能显著减少砂质土壤的磷素淋溶,在制定砂质土壤地区的最佳管理措施时应予以考虑。建议与展望。佛罗里达州南部的大多数农业土壤砂性很强,保水保肥能力极低。为维持这些土壤上作物的预期产量,需要反复施肥。然而,该地区淡水系统的富营养化日益受到公众关注。农田磷素通过淋溶和地表径流流失被怀疑是重要的面源污染来源之一。需要证明土壤改良在减少种植生产系统磷素流失同时维持作物预期产量方面的益处和有效性。氯化钙、碳酸钙或它们的组合能显著减少砂质土壤的磷素淋溶,在制定砂质土壤地区的最佳管理措施时应予以考虑。

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