Quick detecting tube for micro-hydrogen sulfide gas
A technology of hydrogen sulfide and detection tubes, which is applied in the direction of analyzing materials through chemical reactions and observing the influence of chemical indicators on materials, etc., which can solve the problems of long sampling time of hydrogen sulfide, prolonging the analysis time and increasing the analysis capacity. Errors and other problems, to achieve the effect of short sampling time, improved sensitivity, and increased concentration
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Embodiment 1
[0023] Measure 75mL of water glass with a modulus of 3.18, add 300mL of deionized water, and stir for 10min. Titrate with sulfuric acid to form a gel with pH = 8. The gel is first washed with a large amount of tap water and then washed with deionized water until pH = 7. There is no SO in the filtrate 4 2- exist. Filter with suction, and dry in a constant temperature oven at 120°C for 2 hours to obtain silica gel. Weigh 2gPb(Ac) 2 ·3H 2 Dissolve O in 20 mL of deionized water, add 10 mL of glycerin, mix well, add 5 g of silica gel into the mixture, stir to make it fully mixed, place in the dark at room temperature for 16 h, filter with suction, and dry in a constant temperature oven at 60 °C for 1 h. Put the carrier adsorbed with the indicator into 6 glass tubes with a diameter of 4 mm, and label them, and pass H with volume fractions of 0.000%, 0.001%, 0.002%, 0.004%, 0.006% and 0.008% respectively. 2 S gas sample. The sample volume is 50mL, and the aeration time is 1min....
Embodiment 2
[0025] Compared with Example 1, the indicator and drying conditions were changed. Weigh 2gPb(Ac) 2 ·3H 2 O and 1gBaCl 2 2H 2 Dissolve O in 20mL deionized water respectively, mix lead acetate solution and barium chloride solution, add 10mL glycerin, mix evenly, add 5g silica gel into the mixture, stir to make it fully mixed, place in dark place at room temperature for 16h, and filter with suction . Put the carrier adsorbed with the indicator into 6 glass tubes with a diameter of 4 mm, and label them, and pass H with volume fractions of 0.000%, 0.001%, 0.002%, 0.004%, 0.006% and 0.008% respectively. 2 S gas sample. The sample volume is 50mL, and the aeration time is 1min. The experimental results show that when the gas sample with a volume fraction of 0.004% and higher is injected, the detection tube has a significant color change, and the detection limit is 0.004%, which is about 60mg / m 3 .
Embodiment 3
[0027] Weigh 30gBaCl 2 2H 2 Dissolve O in 100mL deionized water, add sulfuric acid until no precipitate is formed, stir for 30min, wash with deionized water until there is no SO in the filtrate 4 2- exist. Filtrate with suction and dry in a constant temperature oven at 120°C for 2 hours to obtain BaSO 4 . Weigh 2gPb(Ac) 2 ·3H 2 O was dissolved in 20mL of deionized water, and 10mL of glycerin was added, mixed well, and 5g of BaSO 4 Add it into the mixture, stir to make it fully mixed, place it in the dark at room temperature for 16 hours, filter it with suction, and dry it in a constant temperature oven at 60°C for 1 hour. Put the carrier adsorbed with the indicator into 6 glass tubes with a diameter of 4 mm, and label them, and pass H with volume fractions of 0.000%, 0.001%, 0.002%, 0.004%, 0.006% and 0.008% respectively. 2 S gas sample. The sample volume is 50mL, and the aeration time is 1min. The experimental results show that when the gas sample with a volume frac...
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