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首页> 外文期刊>Journal of Science and Technology of Agriculture and Natural Resources >Soil Aggregate Stability in the Presence of Earthworms (Lumbricus terrestris L.) and Different Organic Materials in a Calcareous Soil
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Soil Aggregate Stability in the Presence of Earthworms (Lumbricus terrestris L.) and Different Organic Materials in a Calcareous Soil

机译:石灰性土壤中in(Lumbricus terrestris L.)和不同有机物质存在下的土壤团聚体稳定性

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Although the crucial function of earthworms in improvement of soil physical properties is well -know, but very little is known of the interactive influence of earthworms and organic materials on soil properties such as soil aggregate stability, particularly in arid and semi-arid soils. The low organic matter content and the significant role of earthworms in improving physical properties of arid and semi-arid soils necessitate studying the interactive effects of organic materials and earthworms. Thus, the main objective of this study was to identify the interactive effects of anecic earthworm (Lumbricus terrestris L.) and various organic residues (including alfalfa, compost, mixture of alfalfa and compost and cow dung) on soil aggregate stability expressed as the Mean Weight Diameter (MWD), Geometric Mean Diameter (GMD) and Aggregation Ratio (AR), and furthermore soil Ca and Mg contents. The experiment consisted of a 2×5 factorial treatment organized in a completely randomized design with four replications under controlled greenhouse conditions, lasted for 150 days. Results showed that earthworm inoculation and organic materials addition alone increased significantly all the indices of soil aggregation and aggregate stability, and Ca and Mg contents. However, the combined use of earthworms and organic residues resulted in more stable aggregates. Results indicated that earthworm inoculation in the presence of organic materials resulted in 39, 58, 2, 67, 43 and 74% increases, respectively in MWD, AR, GMD, Ca, Mg and macroaggregates whereas microaggregates were reduced by 13.5% in earthworm-worked soils. We observed a significant relationship (R2=0.945) between soil Ca content and MWD, demonstrating that earthworms apparently excrete calcite that helps bonding clay particles and soil organic matter via cationic (Ca+2) bridging. In summary, results of this study show that the simultaneous applications of anecic earthworms and organic materials may considerably help in improving the structure of arid and semi-arid soils with low carbon level. Keywords: Earthworm inoculation, Organic materials, Aggregate stability, Calcareous soils Full-Text Type of Study: Research | Subject: Ggeneral Received: 2011/04/5 Related Websites Scientific Publications Commission - Health Ministry Scientific Publications Commission - Science Ministry Yektaweb Company Site Keywords ?????, Academic Journal, Scientific Article, ???? ????? ??, ???? ????? ??, ???? ????? ??, ???? ????? ??, ???? ????? ??, ???? ????? ??, ???? ?? Vote ? 2015 All Rights Reserved | JWSS - Isfahan University of Technology
机译:尽管众所周知in在改善土壤物理性质中的关键作用,但对于and和有机物对土壤性质(如土壤团聚体稳定性)的相互作用的影响知之甚少,特别是在干旱和半干旱土壤中。低有机质含量和and在改善干旱和半干旱土壤物理性质方面的重要作用,有必要研究有机物质与earth的相互作用。因此,本研究的主要目的是确定风an(Lumbricus terrestris L.)与各种有机残留物(包括苜蓿,堆肥,苜蓿和堆肥的混合物以及牛粪)的相互作用,以均值表示重量直径(MWD),几何平均直径(GMD)和聚集比(AR),以及土壤钙和镁含量。该实验由2×5阶乘处理组成,该处理以完全随机的设计进行组织,在受控温室条件下进行了四次重复,持续了150天。结果表明,单独接种worm和添加有机物显着提高了土壤团聚和团聚体稳定性以及Ca和Mg含量的所有指标。但是,worm和有机残留物的组合使用可产生更稳定的聚集体。结果表明,在有机物存在下接种worm,MWD,AR,GMD,Ca,Mg和大骨料分别增加39%,58%,2%,67%,43%和74%,而-骨中的微骨料减少了13.5%。处理过的土壤。我们观察到土壤Ca含量与MWD之间存在显着关系(R2 = 0.945),这表明earth显然排泄了方解石,从而通过阳离子(Ca + 2)桥接帮助黏土颗粒与土壤有机物结合。总而言之,这项研究的结果表明,同时应用organic和有机材料可能会大大改善低碳水平的干旱和半干旱土壤的结构。关键词:worm接种;有机物;骨料稳定性;石灰质土壤主题:一般收稿日期:2011/04/5相关网站科学出版物委员会-卫生部科学出版物委员会-科学部Yektaweb公司网站关键字??????,Academic Journal,Scientific Article,???? ?????? ??,???? ?????? ??,???? ?????? ??,???? ?????? ??,???? ?????? ??,???? ?????? ??,???? ??投票吗? 2015版权所有| JWSS-伊斯法罕工业大学

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