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Compost induces the accumulation of biopesticidal organic acids during soil biosolarization

机译:堆肥在土壤生物渗碳过程中诱导生物农药有机酸的积累

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Current agricultural soil pathogen control methods that rely on fumigation with toxic synthetic chemicals are not sustainable. Combining soil organic matter amendment with soil hydrothermal treatment via solarization is a biological pest control alternative to chemical fumigation. The application and bioconversion of readily-available organic amendment resources, such as green wastes (GW), have not been considered. The impact of compost inoculum on the bioconversion of GW to pesticidal volatile fatty acids (VFAs) in soil during solarization was investigated. Laboratory experiments showed a significant positive effect of compost inoculum at a rate = 1% on aerobic and anaerobic decomposition of GW, but only when soils were heated. Field trials showed that GW induced conditions in soil that supported fermentation and resulted in accumulation of VFAs. When soil was inoculated with compost, VFA accumulation was enhanced at increasing soil depth. The results indicate that green waste bioconversion can be used to improve pest control conditions in soil during solarization. The findings have environmental implications on green waste management and use of toxic synthetic chemical fumigants.
机译:目前农业土壤病原体控制方法依赖于熏蒸的毒性合成化学品不可持续。通过阳光化将土壤有机质修正与土壤水温处理结合,是化学熏蒸的生物害虫防治替代品。尚未考虑易于使用的有机修正资源的应用和生物转化,例如绿色废物(GW)。研究了堆肥对太阳化土壤中GW对杀虫挥发性脂肪酸(VFA)的生物转化的影响。实验室实验表明,堆肥接种物的显着阳性阳性作用,率为 = 1%的有氧和厌氧分解的GW,但只有在加热土壤时才。现场试验表明,GW诱导的土壤中负载发酵并导致VFA的积累。当用堆肥接种土壤时,在增加土壤深度时增强了VFA积累。结果表明,绿色废物生物转化可用于改善阳光化过程中土壤中的害虫控制条件。该研究结果对绿色废物管理和毒性合成化学品熏蒸剂的使用环境影响。

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