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首页> 外文期刊>Journal of Environment and Ecology >Soil and Crop Micronutrient Concentrations as Modified by Wastewater Sludge
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Soil and Crop Micronutrient Concentrations as Modified by Wastewater Sludge

机译:废水污泥修正的土壤和作物微量营养素浓度

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Soil extracts are used to provide a measure of plant nutrient bioavailability, but their predictive capacity is variable. In a greenhouse experiment, soil was amended with sewage sludge from textile manufacturing wastewater. We investigated the correspondence between maize ( Zea mays L.) shoot uptake and concentrations in soil extractions for plant essential micronutrients concentrated in the sludge: B, Cu, Mn, and Zn. Hot water extract was used for B, whereas diethylene triamine pentaacetic acid (DTPA) extract was used for Cu, Mn, and Zn. Separate pots with NH 4 NO 3 amendment, but no sludge, allowed comparison of soil micronutrient extraction and plant uptake under conditions of elevated mineral N fertility similar to those with sludge amendment, but in the absence of sludge. Addition of sludge did not change soil extractable concentrations nor shoot concentrations of B and Zn. B was abundant in the sludge but likely remained strongly bound as organic complexes, whereas the quantity of Zn was not high enough to register difference. Shoot Mn was increased by both sludge amendment and an NH 4 NO 3 effect, likely from pH decrease associated with nitrification of the ammonium in the sludge and in the fertilizer. DTPA-extractable Mn increased in sludge-amended plots. DTPA-extractable Cu increased strongly following sludge amendment, but, in contrast to Mn, shoot Cu concentration was not changed. Thus, selectivity of roots to avoid Cu is not revealed by DTPA. The correspondence between extraction-based estimation of availability and the actual plant uptake varies among micronutrients due to effects of soil conditions and selectivity of roots.
机译:土壤提取物用于提供植物养分生物利用度的量度,但是其预测能力是可变的。在温室试验中,用纺织制造废水中的污水污泥对土壤进行了修正。我们调查了玉米(玉米(Zea mays L.))枝条的吸收与土壤中提取物的浓度之间的对应关系,以提取土壤中必需的微量养分,这些营养素主要集中在B,Cu,Mn和Zn中。 B使用热水提取物,而Cu,Mn和Zn使用二亚乙基三胺五乙酸(DTPA)提取物。单独的装有NH 4 NO 3改良剂但没有污泥的盆可以比较在氮肥水平较高的条件下土壤微营养素的提取和植物吸收的情况,类似于具有污泥改良剂的情况,但是没有污泥。污泥的添加不会改变土壤的可提取浓度,也不会改变硼和锌的浓度。污泥中的B含量很高,但很可能仍以有机络合物的形式保持牢固结合,而Zn的含量不足以引起差异。污泥改良剂和NH 4 NO 3效应均增加了枝条Mn,这可能是由于与污泥和肥料中的铵硝化有关的pH降低。污泥改良区的DTPA可萃取锰增加。污泥处理后,DTPA可萃取的Cu含量大大增加,但是与Mn相比,枝条Cu浓度没有变化。因此,DTPA并未揭示避免Cu的根的选择性。由于土壤条件和根系选择性的影响,微量营养素之间基于提取的可利用性估算与实际植物吸收之间的对应关系有所不同。

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