CN1023258C - 高分子膜电极冲洗液 - Google Patents

高分子膜电极冲洗液 Download PDF

Info

Publication number
CN1023258C
CN1023258C CN 91109966 CN91109966A CN1023258C CN 1023258 C CN1023258 C CN 1023258C CN 91109966 CN91109966 CN 91109966 CN 91109966 A CN91109966 A CN 91109966A CN 1023258 C CN1023258 C CN 1023258C
Authority
CN
China
Prior art keywords
sodium
electrode
cleaning liquid
mmol
potassium
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN 91109966
Other languages
English (en)
Other versions
CN1062599A (zh
Inventor
秘明堂
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
LAIWU HOSPITAL XINWEN MINE ADM
Original Assignee
LAIWU HOSPITAL XINWEN MINE ADM
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by LAIWU HOSPITAL XINWEN MINE ADM filed Critical LAIWU HOSPITAL XINWEN MINE ADM
Priority to CN 91109966 priority Critical patent/CN1023258C/zh
Publication of CN1062599A publication Critical patent/CN1062599A/zh
Application granted granted Critical
Publication of CN1023258C publication Critical patent/CN1023258C/zh
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Landscapes

  • Investigating Or Analysing Biological Materials (AREA)

Abstract

本发明涉及一种医学化验器具的清洗液,它适用于钾钠分析仪测量全血、血浆、血清和尿等生成体成分中的物质的高分子膜电极的冲洗液。它是在1升蒸馏水中,加入氯化钠126mmol,磷酸二氢钾5mmol和叠氮钠14mmol,在常温下均匀混合,使其溶解于蒸馏水中。钾钠分析仪高分子膜电极的清洗,不但能洗净附着在电极上的蛋白质,而且能减小对电极膜的腐蚀,大大延长电极膜使用寿命,而且也延长了冲洗液保存时间,此外,配制简单,成本低廉。

Description

本发明涉及一种医学化验器具的清洗液,它适用于钾钠分析仪测量全血、血浆、血清和尿等生成体成分中的物质的高分子膜电极的冲洗液。
目前,常见的钾钠分析仪具有三个电极,分别是参比电极、钾电极和钠电极(后两种为离子选择电极),他们的电极表面的高分子膜分别是赛路酚膜、缬氨霉素膜和钠敏感玻璃膜,根据离子选择电极对溶液中的离子活度比对浓度更为敏感的特性,溶液中的被测离子,迁移到离子选择电极的膜上,便在测量电极和参比电极间产生了一个电位差,对于理想的离子选择电极,可以发现电极电位和离子活度的对数成正比例的规律,便可以准确测出溶液中离子活度。实际上,由于血液和尿等生成物体成分含有各种蛋白质,附着到电极膜上,在进行反复测量的过程中,仪器的灵敏度就会降低,以致不能进行测量。因此,每次测试后都必须清洗高分子膜电极,而且要求清洗液既能把电极清洗干净,而且还不损害电极的高分子膜,保持电极的活性,延长电极膜的使用寿命。现有国外配制的冲洗液虽然能洗净电极,对电极膜的损害也不明显,但是电极膜的使用寿命还是较短,尤其参比电极膜只能用三个月左右。
本发明的目的是提供一种高分子膜电极冲洗液,它是将含有水的氧化物、磷酸二氢钾加入叠氮钠防腐剂,以防止电极膜上细菌生长,从而延长电极膜的使用寿命。
本发明的目的是这样实现的:它是在1升蒸馏水中,加入氯化钠126mmol、磷酸二氢钾5mmol和叠氮钠14mmol,在常温下均匀混合,使其溶解于蒸馏水中,其冲洗液钾钠离子的浓度K为5mmol/l,Na为140mmol/l。
由于采用上述配方的冲洗液,对钾钠分析仪高分子膜电极的清洗,不但能洗净附着在电极上的蛋白质,而且能减小对电极膜的腐蚀,大大延长电极膜的使用寿命,参比电极膜使用寿命可达七个月,钾、钠电极膜使用寿命更长。
在这种冲洗液中,叠氮钠能防止电极膜上细菌生长,从而使用这种冲洗液清洗高分子膜电极,使电极膜的寿命比现有国外的洗净液延长一倍,而且还延 长了冲洗液本身的保存时间至少八个月,若放在冰箱内保存还能延长,此外,配制方法简单,成本低廉。
由于正常人体血清中含K+为3.6~5.5mmol/L,Na+为138~146mmol/L,为了使测定池中残存的极少量的冲洗液,对被测物质中K+、Na+的浓度产生影响,故配制好的冲洗液含K+必须在(5.0±0.5)mmol/L范围内,含Na+必须在(140±2)mmol/L范围内。
我们进行了重复试验与回收试验:取三份血清用本发明的冲洗液,各测定21次,平均OCV:K+为0.4%,Na+为0.39%,三份混合血清每天测定一次,连续测定21天,平均RCV:K+为1.84%,Na+为1.08%,符合世界卫生组织WHO规定的允许变异范围。混合血清含Na+为136mmol/l,分别加入Na+:20、40、60mmol/l,回收值为19、41、58mmol/l,平均回收率为98%,混合血清含K+为3.6mmol/l,分别加K+:2、4、6mmol/l,回收值为2.1、3.9、6.2mmol/l,平均回收率为101.9%。
再次还进本发明冲洗液Na+和K+的质量控制测试:90年12月至91年3月测出K+的vis值分别为:44、37、0、15,平均vis=24;Na+的vis值分别为:44、53、25、35,平均vis=39,均达到优秀水平。

Claims (1)

  1. 一种高分子膜电极冲洗液,由蒸馏水和溶解在其中的氯化钠,磷酸二氢钠以及其他成分构成,其特征在于所述其他成分为叠氮化钠,其浓度分别:
    氯化钠      126mmol/l
    磷酸二氢钾  5mmol/l
    叠氯化钠    14mmol/l。
CN 91109966 1991-10-30 1991-10-30 高分子膜电极冲洗液 Expired - Fee Related CN1023258C (zh)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 91109966 CN1023258C (zh) 1991-10-30 1991-10-30 高分子膜电极冲洗液

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 91109966 CN1023258C (zh) 1991-10-30 1991-10-30 高分子膜电极冲洗液

Publications (2)

Publication Number Publication Date
CN1062599A CN1062599A (zh) 1992-07-08
CN1023258C true CN1023258C (zh) 1993-12-22

Family

ID=4910079

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 91109966 Expired - Fee Related CN1023258C (zh) 1991-10-30 1991-10-30 高分子膜电极冲洗液

Country Status (1)

Country Link
CN (1) CN1023258C (zh)

Also Published As

Publication number Publication date
CN1062599A (zh) 1992-07-08

Similar Documents

Publication Publication Date Title
AU592278B2 (en) Electronic water chemistry analysis device with linear bargraph readouts
US5607567A (en) Protamine-responsive polymeric membrane electrode
CA2156226A1 (en) Biological Fluid Analyzing Device and Method
CN103842816B (zh) 测定氧化还原指示剂的色调变化的方法
US5064615A (en) Method and reagent for determining the ionic strength of specific gravity of aqueous liquids
Zinterhofer et al. Nephelometric determination of pancreatic enzymes II. Lipase
Munro Chapter III Measurement and Control of pH Values
CN1023258C (zh) 高分子膜电极冲洗液
Sutor et al. Ionised calcium in pathological human bile.
Ceska A new approach for quantitative and semi-quantitative determinations of enzymatic activities with simple laboratory equipment. Detection of α-amylase
Durst et al. Recommendations for the electrometric determination of the pH of atmospheric wet deposition (acid rain)(Technical Report)
JPS63126497A (ja) 塩素イオン定量用試薬
Wigfield et al. Assay of delta-aminolaevulinate dehydratase in 10 microL of blood.
CA1257649A (en) Measurement of microbial activity using lyophilized bioelectrochemical cell components
EP0178501B1 (en) Method for detection of peritoneal inflammation or infection
Haesen et al. An automated method for the determination of serum γ-glutamyltranspeptidase
CN205538799U (zh) 一种新型余氯水质检测仪
Frizel et al. Measurement of plasma ionised calcium and magnesium by ion exchange strip
Stoeppler et al. Rapid and reliable determination of elevated blood lead levels
JPH08247986A (ja) pH測定素子の較正方法
DE60204828D1 (de) Methode und Instrument zur Untersuchung der Pufferkapazität von Saliva
Kohler et al. On materials for testing glucose in the urine
Lagerlöf Determination of ionized calcium in parotid saliva
GB2063911A (en) Measurement of increase of bacteria
Harper et al. Enzymatic cleaning of cellulose acetate membrane reverse osmosis systems

Legal Events

Date Code Title Description
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C06 Publication
PB01 Publication
C14 Grant of patent or utility model
GR01 Patent grant
C19 Lapse of patent right due to non-payment of the annual fee
CF01 Termination of patent right due to non-payment of annual fee