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RELATIONSHIP BETWEEN CU AND ZN EXTRACTABLE FOLIAR CONTENTS AND BCR SEQUENTIAL EXTRACTION IN SOIL TREATED WITH ORGANIC AMENDMENTS

机译:处理过的有机物处理土壤中铜和锌的可萃取叶面含量与BCR顺序提取之间的关系

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The application of organic wastes to soils, such as municipal solid waste compost (MSWC) or treated urban sewage sludge (USS) is a current practice for maintaining soil organic matter, reclaiming degraded soils and supplying plant nutrients. Since USS and MSWC may contain organic contaminants, heavy metals or pathogens, this practice represents a potential problem to the environment. In the case of heavy metals both bioavailability and toxicity seems to be critically dependent on the chemical form of the element. In this work, a pot experiment was carried out with different levels of MSWC and USS, as well as an inorganic solution of Cu and Zn. The aim was to obtain information about their bioavailability, mobility and toxicity and correlation among the different soil extracted fractions (F1 - Exchangeable metal associated with carbonated phases, F2 - Reducible metal or associated with Fe and Mn oxides, F3 - Oxidizable etal bound to organic matter) with the Cu and Zn foliar (Cu_F and Zn_F) and pseudo totals contents (Cu_(Ptotal) and Zn_(Ptotal)), using the BCR sequential and aqua regia extraction procedure. Both of these methods were adequate to predict the Cu and Zn available to the plant, as high values on the Cu_F-Cu_(Σ123) Cu_F-Cu_(Ptotal), Zn_F-Zn_(Σ123) and Zn_F-Zn_(Ptotal) correlations were verified. Copper bounded mainly to F3, while Zn bounded to F1, F2 and F3 fractions and the regression analysis revelled that Cu and Zn ryegrass absorption were made mainly on Fl and F3 for Cu and Fl for Zn.
机译:将有机废物施加到土壤上,例如市政固体垃圾堆肥(MSWC)或经过处理的城市污水污泥(USS),是目前维护土壤有机质,回收退化土壤和提供植物养分的一种实践。由于USS和MSWC可能包含有机污染物,重金属或病原体,因此这种做法对环境构成潜在问题。对于重金属,生物利用度和毒性似乎都主要取决于元素的化学形式。在这项工作中,使用不同水平的MSWC和USS以及铜和锌的无机溶液进行了盆栽实验。目的是获得有关其生物利用度,迁移率和毒性以及在不同土壤提取组分之间的相关性的信息(F1-与碳酸相缔合的可交换金属,F2-与铁和锰的氧化物缔合的可还原金属,F3-与有机物结合的可氧化等价物)物质),并采用BCR顺序法和王水提取程序,将铜和锌的叶面(Cu_F和Zn_F)以及假的总含量(Cu_(Ptotal)和Zn_(Ptotal))合并使用。由于Cu_F-Cu_(∑123)Cu_F-Cu_(Ptotal),Zn_F-Zn_(Σ123)和Zn_F-Zn_(Ptotal)的相关性较高,因此这两种方法都足以预测植物可用的Cu和Zn。已验证。铜主要与F3结合,而锌与F1,F2和F3组分结合,回归分析表明,Cu和Zn黑麦草的吸收主要在Fl和F3上进行,Cu在Fl上进行。

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