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首页> 外文期刊>Applied and environmental soil science >Manganese Fractionation in Soils after Application of Municipal Solid Wastes Compost in Two Consecutive Years
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Manganese Fractionation in Soils after Application of Municipal Solid Wastes Compost in Two Consecutive Years

机译:连续两年施用城市固体废物堆肥后土壤中的锰分馏

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In order to study the effect of Tehran municipal solid wastes compost on manganese accumulation in soil and to determine its concentration in any readily available plant forms (exchangeable and carbonates-bonded), Mn-oxides bonded fraction, organic matter bonded fraction, and residual fraction in a calcareous soil, a factorial experiment based on completely randomized block design (RCBD) was conducted in research field of Shahed university at different levels of municipal solid wastes compost (0,15, 30, and 60 ton/ha) as first factor and application times (one- or two-year compost application) as second factor in three replications. Results showed that, by increasing compost level, total Mn concentration, DTPA-extractable concentration, and amounts existing in all five fractions were increased, so lowest and highest amounts of Mn were observed in control and 60 ton/ha compost application. Based on results from Mn fractionation using Tessier consecutive extraction method, Mn fractions in all samples were in the following order: residual > Fe-Mn oxides > carbonates-bonded > organic matter-bonded » exchangeable fractions in which residual fraction (RE) at first and second year was dominant rather than other fractions by 34.28-43.04 and 34.28-49.48 percent, respectively. Mn concentration in Fe-Mn oxides-bonded fraction at both years was considerable. Mn amounts in Fe-Mn oxides-bonded, application times were decreased.
机译:为了研究德黑兰城市固体废物堆肥对土壤中锰积累的影响,并确定其在任何易于获得的植物形式(可交换和碳酸盐键合),Mn-氧化物键合级分,有机物键合级分和残留物中的浓度。在石灰性土壤中,基于完全随机区组设计(RCBD)进行的析因实验是在Shahed大学的研究领域中进行的,其中不同水平的城市固体废弃物堆肥(0、15、30和60吨/公顷)是第一因素,两次重复中的第二个因素是施用时间(一年或两年的堆肥施用)。结果表明,通过增加堆肥水平,总锰浓度,可提取的DTPA浓度以及所有五个馏分中存在的锰均增加,因此在对照和60吨/公顷堆肥中锰含量最低和最高。根据使用Tessier连续萃取法进行Mn分离的结果,所有样品中的Mn馏分的顺序如下:残留> Fe-Mn氧化物>碳酸盐键合>有机质键合»可交换馏分,其中残留率(RE)首先第二年则占主导地位,而不是其他分数,分别为34.28-43.04和34.28-49.48%。在这两个年份中,Fe-Mn氧化物键合部分中的Mn浓度都很高。 Fe-Mn氧化物键合中的Mn含量减少,施用时间减少。

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