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碱性废弃物及添加锌肥对污染土壤镉生物有效性的影响及机制
摘要点击 2210  全文点击 1895  投稿时间:2010-05-12  修订日期:2010-06-18
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中文关键词  碱性废弃物  锌肥  污染土壤    生物有效性
英文关键词  alkaline wastes  zinc fertilizer  contaminated soil  cadmium  bioavailability
作者单位
刘昭兵 湖南省土壤肥料研究所长沙410125湖南省农业环境研究中心长沙410125 
纪雄辉 湖南省土壤肥料研究所长沙410125湖南省农业环境研究中心长沙410125 
田发祥 湖南省土壤肥料研究所长沙410125中南大学研究生院隆平分院长沙410125 
彭华 湖南省土壤肥料研究所长沙410125湖南省农业环境研究中心长沙410125 
吴家梅 湖南省土壤肥料研究所长沙410125中南大学研究生院隆平分院长沙410125 
石丽红 湖南省土壤肥料研究所长沙410125湖南省农业环境研究中心长沙410125 
中文摘要
      采用盆栽方法,以石灰作对比研究了2种碱性废弃物(纸厂滤泥和赤泥)及添加锌肥对酸性镉污染稻田土壤的修复效应及其相关机制,同时利用大田试验进行了验证.结果表明,盆栽条件下施用石灰、纸厂滤泥和赤泥(2 g·kg-1)后土壤 pH显著提高,在淹水平衡7 d和水稻移栽后30 d时土壤交换性钙含量显著高于不施的对照,增幅分别为33.1%~76.0%和31.0%~78.3%,同时土壤有效态镉含量显著降低,淹水平衡7 d时降幅为38.4%~45.0%,水稻移栽后30 d和60 d时降幅分别为37.4%~52.9%和33.2%~38.7%,水稻根系和糙米镉含量显著降低,降幅分别为24.0%~48.5%和26.3%~44.7%.等量碱性物质对提高土壤 pH和降低水稻镉累积的效果为石灰>赤泥>纸厂滤泥.纸厂滤泥和赤泥添加锌肥(0.2 g·kg-1)对降低水稻镉累积的效果均比两者单施更明显.大田试验结果趋势基本相同,施入不同量的纸厂滤泥、赤泥及与锌肥配施后两季作物镉累积量显著减少,当季水稻糙米和第二季油菜籽粒镉含量分别较对照降低了27.1%~65.1%和16.4%~41.6%,糙米镉含量基本达到国家粮食卫生标准(GB 2715-2005).因此,对于中轻度酸性镉污染稻田土壤,利用纸厂滤泥、赤泥及与锌肥配合施用是一种可行的修复方法,通过构建与土壤镉污染程度等特征相适应的碱性废弃物用量与锌肥配施比例,可确保稻米质量安全.
英文摘要
      The effects of paper mill sludge, red mud and zinc fertilizer addition on remediation of acid cadmium contaminated paddy soil were studied in a pot experiment, and their beneficial effects were verified in a field experiment, by using lime as comparison. The pot experiment results showed that a single application (2 g·kg-1) of lime, paper mill sludge or red mud increased soil pH significantly. Compared with no applying alkaline substances, the soil exchangeable Ca content was increased by 33.1%-76.0% at 7 days after applying alkaline substances and 31.0%-78.3% at 30 days after rice transplanting, respectively. The soil available Cd content was significantly decreased by 38.4%-45.0% at 7 days after the three alkaline substances applications, and was decreased by 37.4%-52.9% and 33.2%-38.7% at 30 days and 60 days after rice transplanting, respectively. The Cd content in rice root and brown rice was decreased by 24.0%-48.5% and 26.3%-44.7%, respectively. With equal applications of lime, paper mill sludge and red mud, the effects on increase of soil pH and decrease in Cd accumulation by rice was lime > red mud > paper mill sludge. Compared with a single application (2 g·kg-1) of paper mill sludge or red mud, Cd accumulation decreased significantly following the application of zinc fertilizer (0.2 g·kg-1). The field experimental results were similar to the pot experiment that Cd accumulation apparently declined in the first and second crops (late rice and autumn rape) following the application of paper mill sludge, red mud and addition of zinc fertilizer. The Cd content in brown rice and rape seeds was decreased by 27.1%-65.1% and 16.4%-41.6%, respectively, compared with no alkaline substances application. The Cd content in brown rice reached the National Hygienic Standard for Grains (GB 2715-2005). Therefore, combined application of paper mill sludge or red mud with zinc fertilizer was a feasible method to remediate acid cadmium contaminated paddy soil. Rice quality was guaranteed by determination of rational amount of alkaline wastes and a proportion of zinc fertilizer which was in accord with soil Cd contamination level and chemical properties, etc.

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