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首页> 外文期刊>Communications in Soil Science and Plant Analysis >Using organic matter with chemical amendments to improve calcareous sodic soil.
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Using organic matter with chemical amendments to improve calcareous sodic soil.

机译:使用有机物和化学改良剂来改善钙质钠钙土。

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摘要

Kangping soil in northeast China is a sodic soil characterized by a high pH and excessive sodium. The high pH and excessive sodium in sodic soils generally cause loss of soil structure, reduce hydraulic conductivity (HC), increase soil hardness, and make the soil unproductive land. After we mixed organic matter (rice straw) and chemical amendments (H2SO4, CaSO4, and FeSO4), a column experiment was conducted to evaluate the physical and chemical properties of the soil influenced by the changes in HC, penetrability of soil' surface, pH, electrical conductivity, CO32-, HCO3-, Ca2+, Na+, sodium adsorption rate (SAR), available phosphorus (P) and iron (Fe), and leached P. Organic matter decreased the concentrations of CO32-, HCO3-, and Na+ in soil solution and increased the total volume of the leachate. Organic matter also reduced the amount of available Fe and increased the available P. However, organic matter did not affect the penetrability of the soil surface as much as soil hardness, HC, and SAR within the short period of this experiment. Among the chemical amendments, H2SO4 and FeSO4 were more effective than CaSO4 to restore HC, electrical conductivity, Na+, and SAR. The chemical amendments, compared with organic matter, significantly leached P from the soil in this study, but the leaching was independent of the concentration of available P in the soil. The CaSO4 had the strongest effect in increasing leached P from the soil without changing the concentration of available P in the soil. Organic matter with added CaSO4 leached P from the soil more than all other treatments..
机译:中国东北的康平土壤是苏打土壤,其pH值高且钠含量高。钠盐土壤中的高pH值和过量的钠盐通常会导致土壤结构丧失,降低水力传导率(HC),增加土壤硬度,并使土壤变为非生产性土地。在将有机物(稻草)和化学改良剂(H2SO4,CaSO4和FeSO4)混合后,进行了柱实验,以评估受HC,土壤表面渗透性,pH值变化影响的土壤理化性质。 ,电导率,CO32-,HCO3-,Ca2 +,Na +,钠吸附率(SAR),有效磷(P)和铁(Fe)以及浸出的P。有机物降低了CO32-,HCO3-和Na +的浓度在土壤溶液中,增加了渗滤液的总体积。有机物还减少了有效铁的含量,增加了有效磷。但是,在该实验的短时间内,有机物并没有像土壤硬度,HC和SAR一样影响土壤表面的渗透性。在化学修饰物中,H2SO4和FeSO4比CaSO4更有效地还原HC,电导率,Na +和SAR。在这项研究中,与有机物相比,化学改良剂显着地从土壤中淋溶了磷,但淋溶与土壤中有效磷的浓度无关。 CaSO4在不改变土壤中有效磷浓度的情况下,对增加土壤中溶出的磷具有最强的作用。添加CaSO4的有机物比其他所有处理方法更能从土壤中淋溶出磷。

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