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首页> 外文期刊>Applied and environmental soil science >Soil Application of Tannery Land Plaster: Effects on Nitrogen Mineralization and Soil Biochemical Properties
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Soil Application of Tannery Land Plaster: Effects on Nitrogen Mineralization and Soil Biochemical Properties

机译:制革厂土地灰泥在土壤中的应用:对氮矿化和土壤生化特性的影响

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Tannery land plaster (TLP) is a byproduct of lime hydrolysis of leather shavings. Its use in agriculture (organic C ≈ 17%, N ≈ 6% dm) could represent an alternative to landfill or incineration, but the high Cr(III) content (≈5% dm) makes it necessary to evaluate the effect on soil biochemical properties. TLP was therefore added at the rates of 220 and 440 kg of N ha−1to 2 agricultural soils and incubated for 56 days under controlled conditions. Extractable NH4 +-N and NO3 −-N, CO2-C evolution, microbial biomass-N, protease activity, and extractable Cr were monitored. The organic N was readily mineralized (>50% in the first week) and a significant increase in microbial activity was measured, regardless of soil type and addition rate. Extractable Cr(III) quickly decreased during the incubation. The absence of a negative impact on soil biochemical properties seems to support the use of TLP in agriculture, although further investigations in long-term field experiments are suggested.
机译:制革厂土地灰泥(TLP)是皮革屑的石灰水解副产物。它在农业中的使用(有机C≈17%,N≈6%dm)可以替代垃圾填埋场或焚化,但是Cr(III)含量高(≈5%dm)使得有必要评估其对土壤生化的影响属性。因此,以220和440 kg N ha-1的比例向2种农业土壤中添加TLP,并在受控条件下孵育56天。监测了可萃取的NH4 +,N和NO3-,N,CO2-C的释放,微生物生物量N,蛋白酶活性和可萃取的Cr。有机氮易于矿化(第一周> 50%),无论土壤类型和添加速率如何,微生物活性均得到显着提高。孵育过程中可萃取的Cr(III)迅速降低。尽管建议在长期的田间试验中进行进一步的研究,但对土壤生化特性的负面影响似乎不支持TLP在农业中的使用。

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