暹罗杂草(Chromolaena odorata)和牛粪堆肥对番茄理化特性、产量和矿物质营养的影响

P. Akintokun, A. K. Akintokunn, M. R. Osho, B. Oyebade
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引用次数: 0

摘要

通过温室试验,评价了暹罗杂草(chromolaena odorata)和牛粪堆肥对番茄(lycopersicon esculentum l)理化特性、产量和矿质营养的影响。番茄的营养价值使其成为每户家庭日常消费的作物之一。本研究以暹罗草(Chromolaena odorata)和牛粪为原料制备堆肥。以牛粪和暹罗杂草为原料,按100g: 100g(样品A)、200g切碎的暹罗杂草(样品B)和200g牛粪(样品C)的比例配制3个堆肥样品。将3个样品放入穿孔曝气的塑料桶中堆肥,每个样品重复3次。在第1、10、30和60天定期翻转桶内的内容物,监测其理化性质。采用标准程序对堆肥进行了理化和矿物元素分析。堆肥样品的pH值在5.8 ~ 6.9之间。氮、磷、钾含量随堆肥天数的增加而增加,重金属含量随堆肥天数的增加而减少。两个品种株高在5.31 ~ 119.8之间,果实数在11 ~ 21之间,产量参数在0.76 ~ 1.91之间。治疗。A给予比其他处理更高的矿物元素。矿质元素对果实的贡献顺序为A>C>B>D处理
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SIAM WEED (Chromolaena odorata) AND COWDUNG COMPOST EFFECTS ON PHYSICOCHEMICAL PROPERTIES, YIELD and MINERAL NUTRITION OF TOMATOES(Lycopersicon esculentum L)
Greenhouse trials were conducted to evaluate the effects of  siam weed (chromolaena odorata) and cowdung compost on  physicochemical properties, yield and mineral nutrition of tomatoes(lycopersicon esculentum l). The nutritional value of tomato makes it one of the crop that is a daily household consumption by every family.Compost was prepared in this study from Siam weed (Chromolaena odorata) and cowdung. Three compost samples were prepared from Cowdung and siam weed at ratio 100g: 100g (sample A),  200g chopped siam weed (sample B) and 200g cowdung (sample C). These three samples were composted in plastic drums perforated for aeration and each sample was replicated three times. The content in the drums were regularly turned and monitored at 1, 10, 30 and 60 days for physicochemical properties. The physicochemical and mineral element analyses of the compost were carried out using standard procedures.The pH of the composted samples ranged between 5.8 to 6.9. Nitrogen, phosphorus and potassium contents increased with days of composting while those of heavy metals decreased. The result of plant height for the two varieties ranges  between 5.31-119.8, number of  fruits is between 11-21 and the yield (kg) parameter ranges between 0.76-1.91. Treatment. A gave higher mineral element over other treatment applied. The order of mineral elements contributed to the fruits were as follows treatments A>C>B>D    
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