Sludge-based micro-pore framework capturing mesh wall and method for repairing heavy-metal pollution of underground water
A technology for trapping nets and groundwater, applied in the field of environmental engineering, which can solve the problems of poor selectivity of adsorption materials, limited active centers, and easy shedding of loads, etc., and achieve the effects of high strength stability, improved adsorption efficiency, and good reliability
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Embodiment 1
[0033] Such as figure 1 with figure 2 As shown, a sludge-based microporous frame capture net wall is composed of multiple three-dimensional capture modules to form a capture net wall. The three-dimensional capture module is composed of a core area and a membrane wall. The core area is Sludge-based microporous frame hard balls 2 carrying nano-Fe(0), the membrane wall is sludge-coal tar pitch carbonized membrane 1, and sludge-based micro-porous frame hard balls carrying nano-Fe(0) are filled in sludge —The cylindrical three-dimensional capture module is formed in the coal tar pitch carbonization membrane.
[0034] The sludge-based microporous framework hard ball carrying nano-Fe(0) of the present invention is made through the following steps:
[0035] (1) Take the dewatered sludge and heat it at 105°C for 26 hours, then heat it at 85°C for 10 hours, then dry it, crush it, and pass it through a 45mm sieve to make dewatered sludge dry powder;
[0036] (2) Get sodium lauryl sul...
Embodiment 2
[0050] Such as figure 1 with figure 2 As shown, a sludge-based microporous frame capture net wall is composed of multiple three-dimensional capture modules to form a capture net wall. The three-dimensional capture module is composed of a core area and a membrane wall. The core area is Sludge-based microporous frame hard balls 2 carrying nano-Fe(0), the membrane wall is sludge-coal tar pitch carbonized membrane 1, and sludge-based micro-porous frame hard balls carrying nano-Fe(0) are filled in sludge —The cylindrical three-dimensional capture module is formed in the coal tar pitch carbonization membrane.
[0051] The sludge-based microporous framework hard ball carrying nano-Fe(0) of the present invention is made through the following steps:
[0052] (1) Take the dewatered sludge and heat it at 110°C for 30 hours, then heat it at 90°C for 12 hours, then dry it, crush it, and pass it through a 45mm sieve to make dewatered sludge dry powder;
[0053] (2) Get sodium lauryl sul...
Embodiment 3
[0067] Such as figure 1 with figure 2 As shown, a sludge-based microporous frame capture net wall is composed of multiple three-dimensional capture modules to form a capture net wall. The three-dimensional capture module is composed of a core area and a membrane wall. The core area is Sludge-based microporous frame hard balls 2 carrying nano-Fe(0), the membrane wall is sludge-coal tar pitch carbonized membrane 1, and sludge-based micro-porous frame hard balls carrying nano-Fe(0) are filled in sludge —The cylindrical three-dimensional capture module is formed in the coal tar pitch carbonization membrane.
[0068] The sludge-based microporous framework hard ball carrying nano-Fe(0) of the present invention is made through the following steps:
[0069] (1) Take the dewatered sludge and heat it at 108°C for 28 hours, then heat it at 87°C for 11 hours, then dry it, crush it and pass it through a 45mm sieve to make dewatered sludge dry powder;
[0070] (2) Get sodium lauryl sulf...
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