Water quality detection reagent
A water quality detection and reagent technology, applied in the detection field, can solve the problems of high cost and insensitive detection reagents, and achieve the effect of low cost
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Embodiment 1
[0056] Described water quality detection reagent, wherein, it is made up of following components by weight ratio:
[0057] 30 copies of EDTA;
[0058] 20 parts of octyl methoxycinnamate;
[0059] 10 parts of sodium carbonate;
[0060] 8 parts of glycerol;
[0061] 8 parts of methanol;
[0062] 4 parts of butyl acetate;
[0063] 4 parts of potassium dihydrogen phosphate;
[0064] 3 parts of sodium tetraborate;
[0065] 3 parts of sodium dodecylbenzene sulfate;
[0066] 20 parts of water.
Embodiment 2
[0068] Described water quality detection reagent, wherein, it is made up of following components by weight ratio:
[0069] 35 copies of EDTA;
[0070] 15 parts of octyl methoxycinnamate;
[0071] 10 parts of sodium carbonate;
[0072] 10 parts of glycerol;
[0073] 5 parts of methanol;
[0074] 2.5 parts of butyl acetate;
[0075] 2.5 parts of potassium dihydrogen phosphate;
[0076] 2 parts of sodium tetraborate;
[0077] 5 parts of sodium dodecylbenzene sulfate;
[0078] 15 parts of water.
[0079] The invention provides a water quality detection reagent, which can effectively detect the concentration of residual chlorine and zinc ions in water, and the detection sensitivity is obviously higher than that of existing products. At the same time, the water quality detection reagent of the present invention is low in cost, and can quickly decompose and settle after detection. It will not cause secondary pollution to the water body, so it can be used on a large scale.
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