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生物固体钼对玉米的生物有效性。

Bioavailability of biosolids molybdenum to corn.

作者信息

O'Connor G A, Granato T C, Dowdy R H

机构信息

Soil and Water Science Dep, Univ of Florida, Gainesville 32611-0510, USA.

出版信息

J Environ Qual. 2001 Jan-Feb;30(1):140-6. doi: 10.2134/jeq2001.301140x.

Abstract

This study was part of a larger effort to generate field data appropriate to the assessment of biosolids molybdenum (Mo) risk to ruminants. Corn (Zea mays L.) is an important component of cattle diet, and is a logical crop for biosolids amendment owing to its high N requirement. Paired soil and corn stover samples archived from two unique field experiments were analyzed to quantify the relationship (uptake coefficient, UC) between stover Mo and soil Mo load. Both studies used biosolids with total Mo concentrations typical of modern materials. Data from long-term (continuous corn) plots in Fulton County, IL confirm expected low Mo accumulation by corn stover, even at very high biosolids loads and soil Mo loads estimated to be near 18 kg Mo ha(-1). Uptake slopes were actually negative, but USEPA protocol would assign UC values of 0.001. Data from plots in Minnesota also suggested essentially no correlations between stover Mo and soil Mo loads for continuous corn. However, greater Mo accumulation in corn grown following soybean [Glycine max (L.) Merr.] suggests the possibility of enhanced Mo bioavailability to corn in corn-soybean rotations. Nevertheless, molybdenosis risk to cattle consuming corn stover produced on biosolids-amended land is small as stover Mo concentrations were always low and stover Cu to Mo ratios exceeded 2:1, which avoids molybdenosis problems.

摘要

本研究是一项更大规模工作的一部分,该工作旨在获取适用于评估生物固体钼(Mo)对反刍动物风险的田间数据。玉米(Zea mays L.)是牛日粮的重要组成部分,由于其对氮的需求量高,是生物固体改良的合理作物。对从两个独特田间试验存档的成对土壤和玉米秸秆样本进行分析,以量化秸秆钼与土壤钼负荷之间的关系(吸收系数,UC)。两项研究均使用了总钼浓度为现代材料典型浓度的生物固体。伊利诺伊州富尔顿县长期(连续种植玉米)地块的数据证实,即使在非常高的生物固体负荷和估计接近18 kg Mo ha⁻¹的土壤钼负荷下,玉米秸秆中钼的积累预期也很低。吸收斜率实际上为负,但美国环境保护局的协议会将UC值指定为0.001。明尼苏达州地块的数据也表明,连续种植玉米时,秸秆钼与土壤钼负荷之间基本没有相关性。然而,在大豆[Glycine max (L.) Merr.]后种植的玉米中钼积累更多,这表明在玉米 - 大豆轮作中玉米对钼的生物有效性可能会提高。尽管如此,食用生物固体改良土地上生产的玉米秸秆的牛患钼中毒的风险很小,因为秸秆钼浓度一直很低,且秸秆铜钼比超过2:1,可避免钼中毒问题。

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