Polyferric sulfate, as a new water treatment agent, plays an important role in sewage treatment. Compared with polyferric sulfate, it has quicker sedimentation rate, better condensation effect and compactness. The removal rate of suspended solids reached an astounding 97%. It is mostly used in the paper industry, in purifying drinking water and sewage treatment equipment, as a medium in textile printing and dyeing, and as a regulator of soil PH values. Today we will see how it reacts in water.
Polyferric sulfate reaction has three stages. The initial hydrolysis stage is hydrolysis and fermentation of macromolecular substances such as carbohydrates, proteins and fats into small molecular substances such as monosaccharides, amino acids, fatty acids, glycerine and carbon dioxide under the action of hydrolysis and fermentation bacteria. Solid substances are hydrolyzed into soluble substances.The intermediate stage is oxidation stage. Under the action of acetic acid bacteria producing hydrogen, the products of the initial stage are converted into hydrogen, carbon dioxide and acetic acid. The third phase is the methane production phase, which converts embarrassing coordination as well as hydrogen and carbon dioxide into methane through the action of two groups of methane-producing bacteria with different physiologies.Polyferric sulfate is anaerobic digestion. The advantage of anaerobic digestion is that organic matter is digested to produce energy and residues can be used as fertilizers.
After the above process, the impurities in the water will be brought to the end by the polyferric sulfate tape, thus achieving the purpose of purifying the water quality.
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