A modular improved iron-carbon micro-electrolytic filler and its preparation method, application and assembly method
An iron-carbon micro-electrolysis and modular technology, which is applied in chemical instruments and methods, natural water treatment, chemical/physical/physicochemical processes, etc., can solve the problems of increasing difficulty in filler replacement, uneven iron-carbon distribution, and poor treatment effect. Reduce the problem of reducing and other problems, and achieve the effect of solving the problem of easy agglomeration of fillers, easy availability of production raw materials, and excellent processing efficiency
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Embodiment 1
[0055] like figure 1 As shown, a modular improved iron-carbon micro-electrolytic filler, its composition and mass percentage are:
[0056] (a) cast iron iron powder selection: cast iron iron powder removes impurities and passes through a 50-60 mesh screen and weighs, accounting for 55% of the mass ratio of the electrolytic filler;
[0057] (b) selection of ordinary coke powder: ordinary coke powder is weighed after removing impurities and passing through a 60-70 mesh screen, accounting for 35% of the mass ratio of the electrolytic filler;
[0058] (c) Copper powder: the copper powder is weighed after removing impurities and passing through a 50-60 mesh screen, accounting for 8% of the mass ratio of the electrolytic filler;
[0059] (d) Binder: The binder is composed of 70-80 mesh fine yellow sand and Portland cement, the mass ratio of fine yellow sand to Portland cement is 1:3, and the mass ratio of the binder to the electrolytic filler 2%;
[0060] A method for preparing a...
Embodiment 2
[0082] A modular improved iron-carbon micro-electrolytic filler, its composition and mass percentage are:
[0083] (a) pig iron powder: pig iron powder removes impurities and weighs after passing through a 50-60 mesh screen, accounting for 60% of the mass ratio of the electrolytic filler;
[0084] (b) Ordinary coke powder: ordinary coke powder is weighed after removing impurities and passing through a 60-70 mesh screen, accounting for 30% of the mass ratio of the electrolytic filler;
[0085] (c) Copper powder: the copper powder is weighed after removing impurities and passing through a 50-60 mesh screen, accounting for 5% of the mass ratio of the electrolytic filler;
[0086] (d) Binder: The binder is composed of 70-80 mesh fine yellow sand and Portland cement, the mass ratio of the two is 1:3, and the mass ratio of the binder to the electrolytic filler is 5%;
[0087] A method for preparing a modular improved iron-carbon micro-electrolytic filler sheet unit,
[0088] (1) R...
Embodiment 3
[0109] A modular improved iron-carbon micro-electrolytic filler, its composition and mass percentage are:
[0110] (a) selection of pig iron and iron powder: pig iron and iron powder are weighed after removing impurities and passing through a 50-60 mesh screen, accounting for 58% of the mass ratio of the electrolytic filler;
[0111] (b) Ordinary coke powder selection: ordinary coke powder is weighed after removing impurities and passing through a 60-70 mesh screen, accounting for 32% of the mass ratio of the electrolytic filler;
[0112] (c) Copper powder: the copper powder is weighed after removing impurities and passing through a 50-60 mesh screen, accounting for 5% of the mass ratio of the electrolytic filler;
[0113] (d) Binder: The binder is composed of 70-80 mesh fine yellow sand and Portland cement, the mass ratio of the two is 1:2, and the mass ratio of the binder to the electrolytic filler is 5%.
[0114] A method for preparing a modular improved iron-carbon micro-...
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