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Effects of Conservation Tillage on Total and Aggregated Soil Organic Carbon in the Andes

机译:保护性耕作对安第斯山脉土壤总有机碳和总有机碳的影响

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Many Andisols of the Andes have been disturbed by traditional potato-based rotation agriculture disrupting soil structure, water retention capacity and organic matter content. This study was undertaken to investigate the contribution of conservation farming technology or reduced tillage in potato-based rotations in the Colombian Andes in order to rehabilitate total and aggregated soil organic C in disturbed organic matter-rich Andisols. Soils were sampled from farms with 7-year of reduced tillage and farms with conventional farming practices. Ultrasound energy was applied to samples to disrupt aggregation and total soil C was determined in order to investigate the amount of carbon held inside the aggregates of different soil size classes. Results indicated that reduced tillage in potato-based crop rotations increased the soil C concentration and average C content in the whole profile (≈117 cm depth) by 50 and 33% (1636 t C ha?1 vs. 1224 t C ha?1), respectively, as compared to conventional farming practices. Carbon content increased 177% in the subsoil (A2 horizon, 78 -117 cm depth, from 215 to 596 t?ha?1), although most of the soil C was in the A1 horizon (between 0 -78 cm average thickness, 1097 t?ha?1). These increases show that reduced tillage enhances C stores in Andisols which are already high in organic matter. In addition, C in aggregates represented more than 80% of the total organic matter and it was positively affected by conservation practices. The C increase was preferential in the smaller macroaggregates (
机译:传统的以马铃薯为基础的轮作农业扰乱了土壤结构,保水能力和有机质含量,使安第斯山脉的许多Andisols受到干扰。这项研究旨在调查保护性耕作技术或减少耕作对哥伦比亚安第斯山脉以马铃薯为基础的耕作的贡献,以修复受干扰的富含有机物的山iso中的总有机碳和总有机碳。从7年减耕的农场和采用常规耕作方法的农场取样土壤。将超声波能量施加到样品上以破坏聚集,并确定总土壤C,以调查不同土壤大小级别的聚集体内所含的碳量。结果表明,以马铃薯为基础的作物轮作减少了耕作,使整个剖面(≈117cm深)中的土壤碳浓度和平均碳含量分别增加了50%和33%(1636 t C ha?1对1224 t C ha?)。 1),与传统的耕作方式相比。尽管大部分土壤C处于A1层(平均厚度在0 -78 cm之间,但土壤中的碳含量增加了177%)(A2层,深度为-78 cm -117 cm,从215 t到596 thaha-1)。 1097公顷(1)。这些增加表明减少的耕作增加了有机物质含量已经很高的Andisols中的C储量。此外,聚集物中的碳占有机物总量的80%以上,并且受到保护措施的积极影响。在较小的大骨料中,碳增加优先(

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