ASTM D7677-2011 1250 Standard Test Method for the Continuous Measurement of Dissolved Ozone in Low Conductivity Water《低导电率水中的溶解臭氧连续测量的标准试验方法》.pdf
《ASTM D7677-2011 1250 Standard Test Method for the Continuous Measurement of Dissolved Ozone in Low Conductivity Water《低导电率水中的溶解臭氧连续测量的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM D7677-2011 1250 Standard Test Method for the Continuous Measurement of Dissolved Ozone in Low Conductivity Water《低导电率水中的溶解臭氧连续测量的标准试验方法》.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D7677 11Standard Test Method for theContinuous Measurement of Dissolved Ozone in LowConductivity Water1This standard is issued under the fixed designation D7677; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year
2、 of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method covers the on-line and in-line determi-nation of dissolved ozone (DO3) in low conductivity water
3、inthe range from 0.001 mg/L to 5.0 mg/L DO3and conductivity90, before pumps, the tops of horizontalpipes, vertical pipes that have liquid flowing downward,immediately after increases in pipe diameter, after a depres-surization or any turbulence creating point.11. Calibration11.1 Calibration of ZeroW
4、ith the sensor removed fromthe line and still reading DO3values, place it in a location inthe air known to be free of ozone gas. Dry the sensormembrane to remove all sample water which may containDO3.Allow the sensor to equilibrate with the air temperature to6 2C. If there is a large temperature dif
5、ference between the airand the process, e.g. 5C; this may take over an hour.Perform a zero calibration according to the manufacturersinstructions. Equivalence of zero is considered to be #0.005mg/L (ppm) in most commercial instruments. Some polaro-graphic sensors have an intrinsic zero and do not re
6、quire a zerocalibration. Follow the sensor manufacturers recommenda-tions.11.2 Two methods are used for span calibration of polaro-graphic ozone sensors: in-line calibration using a colorimetricreference and air calibration.D7677 11311.2.1 Colorimetric Calibration of SpanEither of thereagent systems
7、 noted in Section 8.3 can be used as thereference for span calibration. The IOA has approved theindigo method3. With the sensor inline and reading stable DO3values, collect a sample of water representative of the water thesensor is measuring. This can be from a port near an insertedsensor or on the
8、outlet of the sensor flow housing drain. Ineither case, the sample must flow gently, without spray orturbulence that could de-gas the sample. Sample the waterusing three aliquots or ampoules, simultaneously noting thereading on the on-line instrument. Measure all three grabsamples. Discard an outlie
9、r if it differs by $.015 mg/L (0.02mg/L for displays not reading to the third decimal place) fromthe mean of the other two. If no two of the three agree, redo allthree. Calculate the average and input the value as the on-lineinstrument span calibration according to manufacturers in-structions11.2.2
10、Air Calibration of SpanSpan(suitable for instru-ments so equipped) Since oxygen and ozone are similar in theirpermeation rates through the sensor membrane, the rate ofpermeation of a known oxygen quantity can be equated to anozone calibration value. Single point air calibration can be ameans to cali
11、brate span in a DO3instrument with this capabil-ity. Remove the sensor from the line and place it in a locationknown to be free of ozone gas. Be sure the outer surface of thesensor membrane is dry and free of sample water, which maycontain DO3. Allow the sensor to equilibrate with the airtemperature
12、 within 6 2 C. If there is a large temperaturedifference between the air and the sensor, e.g. 5C, this maytake over an hour. Enter the air calibration mode in the analyzerelectronics which temporarily changes the polarization poten-tial applied to the cathode and changes the response to oxygen(O2) p
13、artial pressure. Determination of the O2partial pressureof air is determined from the barometric pressure and tempera-ture of the air. Allow at least 10 minutes for the sensor tostabilize and then perform the calibration function according tothe manufacturers instructions. Return to the ozone measur
14、e-ment mode of the instrument and allow the extended period oftime required for the sensor to repolarize and stabilize on ozonemeasurement per manufacturers recommendations.11.3 Calibration VerificationSpan and zero verificationare normally required.11.3.1 Colorimetric Verification of SpanWith the s
15、ensorinline and reading DO3values under stable conditions, collecta sample of water representative of the water the sensor ismeasuring, this can be from a spigot near an inserted sensor oron the outlet of the flow housing drain. The DO3value forverifying the span should be $ 70% of the target proces
16、scontrol limit DO3value. System DO3values for verificationmay be higher than the target control limit. Sample andmeasure the ozone concentration of the water the same as forcalibration in Section 11.1. Compare the average of the threevalues to the reading of the instrument. If they differ by#0.015mg
17、/L (#0.02 mg/L if either the spectrophotometer or ozoneinstrument displays do not read to the third decimal place) thena span calibration is required.11.3.2 Air Verification of Span(for instruments soequipped) With the sensor removed from the line and stillreading DO3values, place it in a location k
18、nown to be free ofozone gas. Dry the sensor membrane to remove sample waterwhich may contain DO3. Allow the sensor to equilibrate withthe air temperature within 6 2C. If there is a large tempera-ture difference between the air and the process, e.g. 5C, thismay take over an hour. To check the air cal
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