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Effect of different shrimp pond bottom soil treatments on the change of physical characteristics and pathogenic bacteria in pond bottom soil

机译:不同虾塘底土壤处理对塘底土壤物理特性和致病菌变化的影响

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Various treatments of shrimp pond bottom soil containing organic sludge were examined for the changes in pH, organic matter and removal efficiency of pathogenic bacteria (Vibrio and Pseudomonas). The experimental period was divided into 3 phases. In the first phase, shrimp pond bottom soil and pond organic sludge were placed in the experimental tanks and subjected to 15 days of five treatments and a control. The treatments included: (1) drying in sunlight and tilling, (2) drying in sunlight and tilling with lime, (3) drying in sunlight and addition of lime, (4) drying in sunlight and addition of probiotics and (5) drying in sunlight and tilling with probiotics. The control consisted only of drying in sunlight. In the first phase, pH of all treated soil and the control decreased significantly (P <0.05) over the experimental period. Organic matter of the treated and control groups increased significantly (P <0.05) from 1.76pl0.05% on day 0 to 4.33pl0.06% on day 15. Total heterotrophic bacteria (THB) declined significantly (P <0.05) only in soil dried in sunlight, tilled with probiotics added (treatment 5). Vibrio species were completely eliminated within 6 days in all treatments. Pseudomonas counts decreased significantly (P <0.05) over time in all groups. In the second phase, water from a 3-month-old shrimp pond and pond organic sludge from the post-harvested shrimp pond were added above the treated pond bottom soils and left for 10 days in order to simulate the second crop after termination of the first phase. To begin the third phase, water was drained and the pond bottom soils subjected again to the same treatments for a further 15 days. Soil pH declined significantly (P <0.05) in all groups except treatment 2 over the experimental period. A significant increase (P <0.05) in organic matter was observed at the end of the experiment in the third phase, with values of 4.17pl0.13% to 4.64pl0.04%. THB declined significantly (P <0.05) in all groups over time. No Vibrio were found in any of the experimental tanks. In treatment 5, Pseudomonas was absent after day 9 of beginning the experiment in the third phase. In conclusion, drying in sunlight and tilling with probiotics were the best method for removal of Vibrio and Pseudomonas from shrimp pond bottom soil containing organic sludge.
机译:检查了含有有机污泥的虾塘底土的各种处理方法的pH值,有机物的变化以及病原细菌(弧菌和假单胞菌)的去除效率。实验期分为三个阶段。在第一阶段,将虾池底部的土壤和池中的有机污泥置于实验池中,进行15天的五次处理和对照。处理包括:(1)在阳光下干燥和耕作,(2)在阳光下干燥和用石灰耕作,(3)在阳光下干燥并加入石灰,(4)在阳光下干燥并加入益生菌,(5)干燥在阳光下和益生菌耕种。对照仅包括在阳光下干燥。在第一阶段,所有处理过的土壤和对照的pH在实验期内均显着下降(P <0.05)。处理组和对照组的有机质从第0天的1.76pl0.05%显着增加(P <0.05)到第15天的4.33pl0.06%。总异养细菌(THB)仅在土壤中显着下降(P <0.05)在阳光下干燥,加入益生菌进行耕种(处理5)。在所有处理中,弧菌均在6天内被完全消除。所有组中,假单胞菌计数随时间显着下降(P <0.05)。在第二阶段中,将3个月大的虾池的水和收获后虾池的池有机污泥添加到处理过的池底土壤上方,放置10天,以模拟终止捕捞后的第二种作物。第一阶段。为了开始第三阶段,将水排干,并将池底土壤再次进行相同的处理,持续15天。在实验期间,除处理2外,所有组的土壤pH均显着下降(P <0.05)。在第三阶段的实验结束时,观察到有机物的显着增加(P <0.05),其值在4.17pl0.13%至4.64pl0.04%之间。随着时间的推移,所有组的THB均显着下降(P <0.05)。在任何实验储罐中均未发现弧菌。在治疗5中,在第三阶段开始实验的第9天后不存在假单胞菌。总之,在阳光下干燥和用益生菌耕种是从含有有机污泥的虾塘底土壤中去除弧菌和假单胞菌的最佳方法。

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