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首页> 外文期刊>Journal of Plant Nutrition >Soil solarization: effects on soil microbiological parameters.
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Soil solarization: effects on soil microbiological parameters.

机译:土壤晒化:对土壤微生物参数的影响。

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摘要

Soil solarization, obtained by covering soil with plastic films, is a useful practice able to reduce soil pathogen populations. Light plastic films (LPFs) are nowadays widely used especially in open and greenhouse vegetable crop cultivations in Southern Italy, as they are able to raise soil temperature more than 20 degrees C above air temperature. The solarization treatment with LPFs is characterized by a low cost and low environmental impact. The wide use of these technique causes a concern about the side effect of solarization on soil microbial populations, which are affected the same as plant pathogens by soil heating. As scientific literature pays scant attention to the effect of soil heating on soil microbial parameters, this paper studied the effects of solarization on soil microbial biomass, soil respiration, and soil enzymatic activity in the presence of organic amendments and the soil fumigant dazomet. Solarization appears to be an effective practice able to control nematodes, even though it may cause serious stress on the soil microbial biomass. In addition, it was demonstrated that the organic amendments exert a protective role keeping soil microbial biomass and enzymatic activities protected from the detrimental effect of heating..
机译:通过用塑料薄膜覆盖土壤获得的土壤晒化是一种能够减少土壤病原体种群的有用实践。如今,光塑料薄膜(LPF)特别用于意大利南部的开放和温室蔬菜作物种植,因为它们能够在高于空气温度超过20℃的土壤温度。使用LPFS的阳光化处理的特点是成本低,环境影响低。这些技术的广泛使用导致阳光化对土壤微生物种群的副作用,这与土壤加热的植物病原体相同。随着科学文献的注意力对土壤微生物参数的土壤加热作用的影响,研究了日光化对土壤微生物生物量,土壤呼吸和土壤酶活性在有机修改的情况下的影响和土壤熏蒸剂达到测量。太阳化似乎是能够控制线虫的有效实践,即使它可能导致土壤微生物的严重压力。此外,证明了有机修正案施加了一种保护土壤微生物生物量和酶活性保护免受加热的不利影响的保护作用。

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