Device for measuring effect of bioturbation on distribution of pollutants in sediments
A bioturbation and pollutant technology, applied in the direction of measuring devices, test water, analysis materials, etc., can solve the problems of difficult measurement of the spatial distribution of heavy metal concentration, disturbed sediments, measurement system errors, etc., to achieve a wide range of applications, simplify the The effect of simple experimental process and structure
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Embodiment 1
[0035] The present invention selects and customizes experimental elevators for equipment: aluminum oxide material, top plate specification 75mm*75mm, lifting range 50-300mm.
[0036] Capillary glass tube: hard neutral glass, inner diameter 1.0mm, wall thickness 0.1mm, tube length 120mm, 500 pieces / tube, weight 110g.
[0037] A device for measuring the distribution of pollutants in sediments caused by bioturbulence. After the simulation, the device can also carry out accurate and pollution-free layered sampling of sediments, including vent cover 1, shell 2 (126mm*126mm*250mm ), base 3, lining 4 (120mm*120mm*240mm), vent cap 1 fastened on the casing 2, the lining 4 is tightly put into the casing 2, and the casing 2 is connected to the base 3 through internal and external threads and an O-ring. Vent cover 1 is a hollow structure, with a vent hole 9 (Φ8mm, used for experimental oxygen ventilation, which is connected to an aeration device through a plastic tube) on the top, and 4 v...
Embodiment 2
[0040]Before the experiment, the 5-20cm sediment from the surface of the river was passed through a 60-mesh sieve to remove impurities such as gravel, animal and plant residues, and plastic waste, and then the sediment was frozen to kill the possible presence of of small animals. As disturbing organisms, the worms (commonly known as fish insects) were purchased from the flower, bird, fish and insect market. They were cultivated in a trace mineral salt (MMS) solution for one week, and the water was changed every morning and evening, so that the worms adapted to the indoor simulation experiment. Rinse the worms in secondary deionized water, use tweezers to pick out worms with a similar length of 2 ± 0.3 cm, put 2, 5, 8, 10, and 15 worms into clean petri dishes, and place them in the Use absorbent paper to absorb excess water on the surface of the worm before taking the electronic analytical balance to avoid measurement errors. The linear relationship between the number of worms...
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