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Phosphatase activities in soil after repeated untreated and alum-treated poultry litter applications

机译:反复未经处理和经明矾处理的家禽垫料施用后土壤中的磷酸酶活性

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Repeated additions of untreated and aluminum sulfate (alum)-treated poultry litter to soil affect ecology and consequent nutrient dynamics. The objective of this study was to determine how repeated annual poultry litter additions affected phosphatase activities in concert with changes in soil phosphorus (P). Field plots were amended annually since 1995 with either 2.24 or 8.96 Mg ha-p# alum-treated (AL-1 or AL-4, respectively) or untreated poultry litter (PL-1 or PL-4, respectively) or equivalent rates by N content of ammonium nitrate (AN-1 or AN-4, respectively). Soil pH, total C (CTot), microbial biomass C, double-stranded deoxyribonucleic acid (dsDNA), Mehlich-III P (M3P), water-soluble P (WSP), and acid and alkaline phosphatase activities were measured before and 10 days, 1 month, and 6 months after fertilizer applications in 2003 and 2004. M3P and acid phosphatase activities were higher in AL-4 soil than in all other treatments. Higher WSP in the untreated compared to the alum-treated litter resulted in higher WSP in the soil amended with untreated litter. At the same time, alkaline phosphatase activities were significantly higher in PL-4 compared to AL-4. In contrast, alkaline phosphatase activities were significantly lower in AN-4, the treatment with the lowest pH. Additionally, alkaline phosphatase activities expressed per unit CTot or dsDNA remained significantly greater in PL-4 and significantly lower in AN-4, than all other treatments. Thus, some factor beyond an increase in soil C or microbial biomass contributed to elevated alkaline phosphatase activities in PL-4, despite increased WSP in the treatment receiving the high rate of untreated litter.
机译:反复向土壤中添加未经处理和经硫酸铝(铝)处理的家禽垫料会影响生态,进而影响养分动态。这项研究的目的是确定每年重复添加家禽垫料如何与土壤磷(P)的变化一起影响磷酸酶的活性。自1995年以来,每年对田地进行修改,采用经过处理的2.24或8.96 Mg ha-p#明矾(分别为AL-1或AL-4)或未经处理的家禽垫料(分别为PL-1或PL-4)或同等比率N含量的硝酸铵(分别为AN-1或AN-4)。在测量土壤pH值,总C(CTot),微生物生物量C,双链脱氧核糖核酸(dsDNA),Mehlich-III P(M3P),水溶性P(WSP)以及酸和碱性磷酸酶活性之前和10天进行了测量分别在2003年和2004年施肥后1个月和6个月。AL-4土壤中的M3P和酸性磷酸酶活性高于所有其他处理方法。与经过明矾处理的垃圾相比,未经处理的垃圾具有更高的WSP,从而导致土壤中的未经处理的垃圾具有更高的WSP。同时,与AL-4相比,PL-4中的碱性磷酸酶活性明显更高。相反,在最低pH的处理液AN-4中碱性磷酸酶的活性明显降低。另外,与所有其他处理方法相比,在PL-4中每单位CTot或dsDNA所表达的碱性磷酸酶活性仍显着较高,而在AN-4中则显着较低。因此,尽管土壤中碳或微生物生物量增加的某些因素导致了PL-4中碱性磷酸酶活性的提高,尽管在处理过程中WSP的增加导致未处理垃圾的发生率很高。

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