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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Treatment by acidification followed by solid-liquid separation affects slurry and slurry fractions composition and their potential of N mineralization
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Treatment by acidification followed by solid-liquid separation affects slurry and slurry fractions composition and their potential of N mineralization

机译:酸化处理后进行固液分离会影响浆液和浆液馏分的组成及其氮矿化的潜力

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摘要

The aim of the present work was to assess the effect of treatments by acidification, solid-liquid separation or acidification followed by solid-liquid separation on the physical and chemical composition of pig slurry (S) and pig slurry fractions (non acidified and acidified solid (SF and ASF) and liquid (LF and ALF) fractions), as well as on the potential of N mineralization of these pig slurry derived materials. Acidification strongly decrease the inorganic carbon content of S, SF and LF and it also affects the distribution of P, Ca and Mg between the solid and liquid fraction leading to an ALF more equilibrated than LF in terms of nutrients. Acidification increases the potential of organic N mineralization in SF and decreases the potential of N immobilization in S and LF. It can be concluded that the proposed treatment generates valuable slurry fractions with distinct characteristics and potential of N mineralization that may be incorporated to soil at different periods after sowing to comply with plant nutrient requirements.
机译:本工作的目的是评估通过酸化,固液分离或酸化然后固液分离进行处理对生猪粪浆和生猪粪浆馏分(未酸化和酸化的固体)的物理和化学组成的影响(SF和ASF)和液体(LF和ALF)馏分,以及这些猪浆衍生材料的N矿化潜力。酸化作用强烈降低了S,SF和LF的无机碳含量,并且还影响了P,Ca和Mg在固体和液体部分之间的分布,从而导致营养成分方面的ALF比LF更平衡。酸化增加了SF中有机氮矿化的潜力,并降低了S和LF中固氮的潜力。可以得出结论,建议的处理方法会产生有价值的浆液馏分,这些浆液馏分具有独特的特性和氮矿化的潜力,可以在播种后的不同时期掺入土壤中以符合植物养分要求。

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