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By results of this experiment it is possible to draw a conclusion that sharing of a moss and microorganisms considerably increases efficiency of biosorption and improves absorption of heavy metals from solutions of these metals. So, if the moss occludes 0,655 mg-ekv (cadmium)/g, when sharing a moss and microorganisms - 0,777 and ml. Thus, efficiency of sorption increases by 16%. At similar comparison of results of sorption on copper ions efficiency increases by 26%.

Crops are carried out from the 5th, 6th and 7th cultivations transferring 0, 1 ml of suspension to a surface of a nutritious agar in Petri's cups. Then suspension is distributed evenly the pallet on a nutritious agar. Seeding from each cultivation is carried out a sterile pipette. After crops of a cup place in the thermostat (30C) for days.

The studied strain of microorganisms of Pseudomonas aeruginosa B7 possesses sorption properties in relation to heavy metals. So, in relation to cadmium as a result of researches (the item the sorption capacity of microorganisms – 0,114 suspensions, on copper – 0,29 suspensions.

According to results of this experiment it is possible to say that the moss perniciously influences microorganisms so, as a result of researches (the item 1 concentration of microorganisms decreased with 6,8*107 to 5,07*107 C/ml. These properties of a moss can find further application in medicine, when using a moss as enterosorbent.

Based on results of experiment it is possible to say that the studied strain of microorganisms of Pseudomonas aeruginosa B7 possesses sorption properties in relation to heavy metals. So, in relation to cadmium as a result of researches (the item the sorption capacity of microorganisms – 0,114 suspensions, on copper – 0,29 suspensions.

As a sorbent carrier of microorganisms the moss from a class mosses (Musci) of a subclass sfagnovy, families sfagnovy, was used by Sphagnum cuspidatum. This type of a moss was chosen because it possesses a considerable area of distribution in our republic.

On 50 ml at first add 1 ml of microbic suspension to a measured flask, then bring volume to a tag the studied metal solution. After that pour in contents of a measured flask in bottles on 100 ml with the screwed covers.