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Greenhouse Soil Biosolarization with Tomato Plant Debris as a Unique Fertilizer for Tomato Crops

机译:番茄植株残渣作为番茄作物的独特肥料来温室土壤生物增盐

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摘要

Intensive greenhouse horticulture can cause various environmental problems. Among these, the management, storage, and processing of crop residues can provoke aquifer contamination, pest proliferation, bad odors, or the abuse of phytosanitary treatments. Biosolarization adds value to any fresh plant residue and is an efficient technique for the control of soil-borne diseases. This study aims to examine an alternative means of managing greenhouse crop residues through biosolarization and to investigate the influence of organic matter on yield and quality of tomato (Solanum lycopersicum, L.) fruit. With this purpose, the following nutritional systems were evaluated: inorganic fertilization with and without brassica pellets (Fert, Fert +, and Fert ++), fresh tomato plant debris with and without brassica pellets (Rest, Rest +, and Rest ++), and no fertilizer application (Control). The addition of organic matter was equal across all the treatments except for the control with regard to yield and quality of the tomato fruit. In light of these results, the application of tomato plant debris to the soil through biosolarization is postulated as an alternative for the management of crop residues, solving an environmental problem and having a favorable impact on the production and quality of tomatoes as a commercial crop.
机译:密集的温室园艺会引起各种环境问题。其中,作物残留物的管理,储存和加工会引起含水层污染,有害生物扩散,难闻的气味或滥用植物检疫处理。生物增盐作用可以增加任何新鲜植物残留的价值,并且是控制土壤传播疾病的有效技术。这项研究旨在研究通过生物增盐处理温室作物残留的另一种方法,并研究有机物对番茄(Solanum lycopersicum,L.)水果的产量和品质的影响。为此,对以下营养体系进行了评估:有和没有芸苔颗粒(Fert,Fert +和Fert ++)的无机肥,有和没有芸苔颗粒(Rest,Rest +和Rest ++)的新鲜番茄植株残渣。 ,并且不施肥(对照)。除控制番茄果实的产量和质量外,所有处理中有机物的添加量均相等。根据这些结果,假定通过生物增盐作用将番茄植物残渣施用到土壤上作为管理农作物残留的替代方法,解决了环境问题,并对作为商品作物的番茄的产量和质量产生了有利影响。

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