Heavy metal chelating agent with dendritic Dendrimer molecular structure as well as preparation method and application of heavy metal chelating agent
A heavy metal chelating agent, molecular structure technology, applied in chemical instruments and methods, flocculation/sedimentation water/sewage treatment, water/sludge/sewage treatment, etc. Unfavorable, low chelation efficiency and other problems, to achieve the effect of difficult separation, high chelation efficiency, and efficient chelation
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[0054] The preparation method of heavy metal chelating agent of the present invention may further comprise the steps:
[0055] S1: Preparation of Dendrimer Multi-branch Molecular Structure Core
[0056] Using cyanuric chloride and ethylenediamine as raw materials, polyamine PA with a dendritic Dendrimer multi-branched structure was synthesized as the core of the molecular structure by repeating the addition reaction in sequence.
[0057] Synthetic route ①: Grafting melamine with ethylenediamine as the basis of the initial molecular structure
[0058] Synthesis of 0.5 generation / Generation Dendrimer multi-branched polyamine PA:
[0059] Place the reaction vessel equipped with a stirrer, condenser, thermometer and constant pressure dropping funnel in an ice-water bath, add a certain amount of solvent and a set amount of melamine into the reaction vessel, stir until dissolved, and then add a certain amount of The amount of catalytic acid-binding agent is mixed evenly, and the p...
Embodiment 1
[0105] Referring to the above preparation method, according to the synthetic route ①: ethylenediamine was used as the initial molecular structure to graft melamine for generation-by-generation addition reaction, and the 1.0th generation polyamine PA with dendritic Dendrimer multi-branched structure was synthesized as the molecule structural core. The reaction route is: the molar ratio of initial ethylenediamine and melamine is 1:4; the molar ratio of 0.5 generation polyamine PA and ethylenediamine is 1:8.
[0106] The whole generation 1.0 Generation polyamine PA is used as the core of the molecular structure, and reacted with strong lye and carbon disulfide to prepare a multi-branched dithiocarbamate-type heavy metal chelating agent. According to the molar ratio of PAG-1.0, carbon disulfide and sodium hydroxide of 1:24:24, the heavy metal chelating agent is prepared by carrying out the synthesis reaction.
Embodiment 2
[0108] Referring to the above preparation method, according to the synthetic route ①: ethylenediamine was used as the initial molecular structure to graft melamine for generation-by-generation addition reaction, and the 1.0th generation polyamine PA with dendritic Dendrimer multi-branched structure was synthesized as the molecule structural core. The reaction route is that the molar ratio of the initial reaction between ethylenediamine and melamine is 1:4; the molar ratio of the reaction between 0.5 generation polyamine PA and ethylenediamine is 1:8.
[0109] The whole generation 1.0 Generation polyamine PA is used as the core of the molecular structure, and reacted with strong lye and carbon disulfide to prepare a multi-branched dithiocarbamate-type heavy metal chelating agent. According to the molar ratio of PAG-1.0, carbon disulfide, and sodium hydroxide of 1:12:12, the heavy metal chelating agent is prepared by carrying out the synthesis reaction.
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