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首页> 外文期刊>Biology and Fertility of Soils >Nitrogen mineralization, N2O production and soil microbiological properties as affected by long-term applications of sewage sludge composts
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Nitrogen mineralization, N2O production and soil microbiological properties as affected by long-term applications of sewage sludge composts

机译:污泥堆肥长期应用对氮矿化,N2 O产生和土壤微生物学特性的影响

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摘要

A field study was conducted to investigate the long-term effect of surface application of sewage sludge composts vs chemical N fertilizer on total N, total C, soluble organic C, pH, EC, microbial biomass C and N, protease activity, deaminase activity, urease activity, gross and net rates of N mineralization and nitrification, CO2 evolution, and N2O production. Soil samples were taken from five depths (0–15, 15–20, 20–30, 30–40, and 40–50 cm) of a long-term experiment at the University of Tokyo, Japan. Three fields have been receiving sewage sludge composted with rice husk (RH), sawdust (SD), or mixed chemical fertilizer NPK (CF), applied at the rate of 240 kg N ha−1 each in split applications in summer and autumn since 1978. Significantly higher amounts of total N and C and soluble organic C were found in the compost than in the CF treatments up to the 40-cm soil depth, indicating improved soil quality in the former. In the CF treatment, soil pH values were significantly lower and electrical conductivity values were significantly higher than those of compost-treated soils of up to 50 cm depth. Soil microbial biomass C and N, CO2 evolution, protease, deaminase, and urease activities were significantly higher in the compost than in the CF treatments due to greater availability of organic substrates that stimulated microbial activity. Gross N mineralization rates determined by 15N dilution technique were eight and five times higher in the SD and RH treatments than in the CF treatment, respectively, probably due to high levels of microbial and enzyme activities. Net N mineralization rates were also significantly higher in the compost treatments and were negative in the CF treatment indicating immobilization. Net nitrification rates were higher in compost treatments and negative in the CF treatment. Nitrous oxide productions from compost treatments were higher than the CF treatment due to the greater availability of mineral N as a result of higher mineralization and nitrification rates and soluble organic C in the former. Most of the measured parameters were highest in the surface soil (0–15 cm) and were significantly higher in the SD treatment than in the RH treatment.
机译:进行了一项野外研究,调查了污泥堆肥与化学氮肥表面施肥对总氮,总碳,可溶性有机碳,pH,EC,微生物生物量碳和氮,蛋白酶活性,脱氨酶活性,尿素酶活性,氮矿化和硝化的总速率和净速率,CO2释放以及N2O的产生。在日本东京大学的一项长期实验中,从五个深度(0–15、15–20、20–30、30–40和40–50厘米)获取了土壤样品。三个田间已经接受了用稻壳,锯末(SD)或混合化学肥料NPK(CF)堆肥的污水污泥,夏季分别施用,施肥量为240 kg N ha-1 自1978年以来一直处于秋季和秋季。堆肥中发现的总N,C和可溶性有机C的含量明显高于40厘米土壤深度的CF处理,表明前者的土壤质量得到改善。在CF处理中,土壤的pH值显着降低,而电导率值显着高于堆肥处理的深度达50 cm的土壤。堆肥中土壤微生物生物量碳和氮,二氧化碳的释放,蛋白酶,脱氨酶和脲酶的活性显着高于CF处理,这是由于有机底物可提高微生物活性,从而提高了肥料的利用率。通过15 N稀释技术测定的总N矿化率在SD和RH处理中分别比CF处理高8倍和5倍,这可能是由于微生物和酶活性较高所致。堆肥处理中的净氮矿化率也显着较高,而CF处理则为负,表明固定化。堆肥处理的净硝化率较高,而CF处理则为负值。堆肥处理产生的一氧化二氮产量比CF处理高,这是由于前者较高的矿化率和硝化率以及可溶性有机碳,使得矿物质N的利用率更高。大多数测得的参数在表层土壤中最高(0-15厘米),SD处理明显高于RH处理。

著录项

  • 来源
    《Biology and Fertility of Soils》 |2004年第2期|101-109|共9页
  • 作者单位

    National Institute of Water and Atmospheric Research;

    Department of Renewable Resources Center for Enhanced Forest Management University of Alberta;

    Department of Renewable Resources Center for Enhanced Forest Management University of Alberta;

    Faculty of Horticulture Chiba University;

    National Institute of Water and Atmospheric Research;

    Graduate School of Agricultural and Life Sciences The University of Tokyo;

    Chiba Prefecture Agricultural Research Center;

    Graduate School of Agricultural and Life Sciences The University of Tokyo;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CO2; Gross N mineralization; Microbial biomass; Nitrification; N2O;

    机译:CO2;总氮矿化;微生物量;硝化作用;N2O;

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