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圆片型滤膜

用于搅拌式过滤器的滤膜

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概述

规格

订货信息

继续
Ultracel® PL-1滤膜,1,000 MWCO清除排序和过滤条件 Show Filter
产品目录编号过滤器直径 (⌀)包装大小
PLAC0251025 mm 10 显示价格及库存情况
PLAC0431044.5 mm 10 显示价格及库存情况
PLAC0471047 mm 10 显示价格及库存情况
PLAC0621063.5 mm 10 显示价格及库存情况
PLAC0761076 mm 10 显示价格及库存情况
PLAC0900590 mm 5 显示价格及库存情况
PLAC15005150 mm 5 显示价格及库存情况

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Ultracel® PL-3滤膜,3,000 MWCO清除排序和过滤条件 Show Filter
产品目录编号过滤器直径 (⌀)包装大小
PLBC0251025 mm 10 显示价格及库存情况
PLBC0431044.5 mm 10 显示价格及库存情况
PLBC0471047 mm 10 显示价格及库存情况
PLBC0621063.5 mm 10 显示价格及库存情况
PLBC0761076 mm 10 显示价格及库存情况
PLBC0900590 mm 5 显示价格及库存情况
PLBC15005150 mm 5 显示价格及库存情况

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Ultracel® PL-5滤膜,5,000 MWCO清除排序和过滤条件 Show Filter
产品目录编号过滤器直径 (⌀)包装大小
PLCC0251025 mm 10 显示价格及库存情况
PLCC0431044.5 mm 10 显示价格及库存情况
PLCC0471047 mm 10 显示价格及库存情况
PLCC0621063.5 mm 10 显示价格及库存情况
PLCC0761076 mm 10 显示价格及库存情况
PLCC0900590 mm 5 显示价格及库存情况
PLCC15005150 mm 5 显示价格及库存情况

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Ultracel® PL-10滤膜,10,000 MWCO清除排序和过滤条件 Show Filter
产品目录编号过滤器直径 (⌀)包装大小
PLGC0251025 mm 10 显示价格及库存情况
PLGC0431044.5 mm 10 显示价格及库存情况
PLGC0471047 mm 10 显示价格及库存情况
PLGC0621063.5 mm 10 显示价格及库存情况
PLGC0761076 mm 10 显示价格及库存情况
PLGC0900590 mm 5 显示价格及库存情况
PLGC15005150 mm 5 显示价格及库存情况

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Ultracel® PL-30滤膜,30,000 MWCO清除排序和过滤条件 Show Filter
产品目录编号过滤器直径 (⌀)包装大小
PLTK0251025 mm 10 显示价格及库存情况
PLTK0431044.5 mm 10 显示价格及库存情况
PLTK0471047 mm 10 显示价格及库存情况
PLTK0621063.5 mm 10 显示价格及库存情况
PLTK0761076 mm 10 显示价格及库存情况
PLTK0900590 mm 5 显示价格及库存情况
PLTK15005150 mm 5 显示价格及库存情况

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Ultracel® PL-100滤膜,100,000 MWCO清除排序和过滤条件 Show Filter
产品目录编号过滤器直径 (⌀)包装大小
PLHK0251025 mm 10 显示价格及库存情况
PLHK0431044.5 mm 10 显示价格及库存情况
PLHK0471047 mm 10 显示价格及库存情况
PLHK0621063.5 mm 10 显示价格及库存情况
PLHK0761076 mm 10 显示价格及库存情况
PLHK0900590 mm 5 显示价格及库存情况
PLHK15005150 mm 5 显示价格及库存情况

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Biomax® 滤膜,5,000 MWCO清除排序和过滤条件 Show Filter
产品目录编号过滤器直径 (⌀)包装大小
PBCC0431044.5 mm 10 显示价格及库存情况
PBCC0621063.5 mm 10 显示价格及库存情况
PBCC0761076 mm 10 显示价格及库存情况

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Biomax® 滤膜,10,000 MWCO清除排序和过滤条件 Show Filter
产品目录编号过滤器直径 (⌀)包装大小
PBGC0251025 mm 10 显示价格及库存情况
PBGC0431044.5 mm 10 显示价格及库存情况
PBGC0761076 mm 10 显示价格及库存情况

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Biomax® 滤膜,30,000 MWCO清除排序和过滤条件 Show Filter
产品目录编号过滤器直径 (⌀)包装大小
PBTK0251025 mm 10 显示价格及库存情况
PBTK0431044.5 mm 10 显示价格及库存情况
PBTK0621063.5 mm 10 显示价格及库存情况
PBTK0761076 mm 10 显示价格及库存情况

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Biomax® 滤膜,50,000 MWCO清除排序和过滤条件 Show Filter
产品目录编号过滤器直径 (⌀)包装大小
PBQK0251025 mm 10 显示价格及库存情况
PBQK0431044.5 mm 10 显示价格及库存情况
PBQK0621063.5 mm 10 显示价格及库存情况
PBQK0761076 mm 10 显示价格及库存情况

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Biomax® 滤膜,100,000 MWCO清除排序和过滤条件 Show Filter
产品目录编号过滤器直径 (⌀)包装大小
PBHK0251025 mm 10 显示价格及库存情况
PBHK0431044.5 mm 10 显示价格及库存情况
PBHK0471047 mm 10 显示价格及库存情况
PBHK0761076 mm 10 显示价格及库存情况

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Biomax® 滤膜,300,000 MWCO清除排序和过滤条件 Show Filter
产品目录编号过滤器直径 (⌀)包装大小
PBMK0251025 mm 10 显示价格及库存情况
PBMK0431044.5 mm 10 显示价格及库存情况
PBMK0471047 mm 10 显示价格及库存情况
PBMK0621063.5 mm 10 显示价格及库存情况
PBMK0761076 mm 10 显示价格及库存情况
PBMK0900590 mm 5 显示价格及库存情况
PBMK15005150 mm 5 显示价格及库存情况

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Biomax® 滤膜,500,000 MWCO清除排序和过滤条件 Show Filter
产品目录编号过滤器直径 (⌀)包装大小
PBVK0251025 mm 10 显示价格及库存情况
PBVK0431044.5 mm 10 显示价格及库存情况
PBVK0471047 mm 10 显示价格及库存情况
PBVK0621063.5 mm 10 显示价格及库存情况
PBVK0761076 mm 10 显示价格及库存情况

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0.1um亲水性Durapore®清除排序和过滤条件 Show Filter
产品目录编号过滤器直径 (⌀)包装大小
VVLP0622563.5 mm PVDF, Hydrophilic, 0.1 µm, 63.5 mm, white, plain, 25 显示价格及库存情况
VVLP0762576 mm PVDF, Hydrophilic, 0.1 µm, 76 mm, white, plain, 25 显示价格及库存情况

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0.22um亲水性Durapore®清除排序和过滤条件 Show Filter
产品目录编号过滤器直径 (⌀)包装大小
GVWP0622563.5 mm PVDF, Hydrophilic, 0.22 µm, 63.5 mm, white, plain, 25 显示价格及库存情况
GVWP0762576 mm PVDF, Hydrophilic, 0.22 µm, 76mm, white, plain, 25 显示价格及库存情况

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0.45um亲水性Durapore®清除排序和过滤条件 Show Filter
产品目录编号过滤器直径 (⌀)包装大小
HVLP0622563.5 mm PVDF, Hydrophilic, 0.45 µm, 63.5 mm, white, plain, 25 显示价格及库存情况
HVLP0762576 mm PVDF, Hydrophilic, 0.45 µm, 76mm, white, plain, 25 显示价格及库存情况

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搅拌式过滤器辅件清除排序和过滤条件 Show Filter
产品目录编号
6003 显示价格及库存情况
6028 显示价格及库存情况
6015 显示价格及库存情况

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Documentation

参考

参考概述应用
MicroRNA expression detected by oligonucleotide microarrays: System establishment and expression profiling in human tissues
Omer Barad, Eti Meiri, Amir Avniel, Ranit Aharonov, Adi Barzilai, Isaac Bentwich, Uri Einav, Shlomit Gilad, Patrick Hurban, Yael Karov, Edward K. Lobenhofer, Eilon Sharon, Yoel M. Shiboleth, Marat Shtutman, Zvi Bentwich and Paz Einat
Genome Research 14:2486-2494, 2004  2004

Highly selective membranes in protein ultrafiltration
Feins M, Sirkar KK,Biotechnol Bioeng. 2004 Jun 20;86(6):603-11
Biotechnol Bioeng. 2004 Jun 20;86(6):603-11  2004

Protein Purification
Electrokinetic characterisation of ultrafiltration membranes by streaming potential, electroviscous effect, and salt retention
Huisman IH (REPRINT) ; Pradanos P; Hernandez A
Journal of membrane science 2000, V178, N1-2, p55-64 2000  2000

Effect of Solution pH on Protein Transport Through Ultrafiltration Membranes
Douglas B. Burns and Andrew L. Zydney
Biotechnol Bioeng 64: 27-37, 1999.  1999

Integrated process for the removal of emulsified oils from effluents in the steel industry
Benito JM; Rios G; Gutierrez B; Pazos C; Coca J (REPRINT)
Separation Science and Technology 1999, V34, N15, P3031-3043 SN- 0149-6395  1999

Industrial QC
Acrylamide production in an ultrafiltration-membrane bioreactor using cells of Brevibacterium imperialis CBS 489-74
Cantarella M (reprint) ; Spera A; Cantarella L; Alfani F ; Journal of membrane science, v147, N2, p279-290 1998
Journal of membrane science, v147, N2, p279-290 1998  1998

Enzyme Assays
In vitro and in vivo grafting of xeno pig fetal liver fragments using ultrafiltration membrane
Kanai N.; Morita N.; Munkhbat B.; Gansuvd B.; Hagihara M.; Nagamachi Y.;Tsuji K.
Cell Transplantation SO- 7/4 (417-420) 1998  1998

Cell Culture
Metabolic screening using on-line ultrafiltration mass spectrometry
Van Breemen R.B.; Nikolic D.; Bolton J.L.
Drug Metabolism and Disposition , 26/2 (85-90) 1998  1998

Performance Characteristics of Waste Oil Emulsion Treatment by Ultrafiltration
Lin, S. H.; Lan, W. J. Yuan Ze University, Taoyuan, Taiwan
J Environ Sci Health-Toxic Hazard Subst Environ Eng 1998,SO- vA33, n3, p385(20)  1998

General approach for the development of high-performance liquid chromatography methods for biosurfactant analysis and purification
Lin, S.-C. Chen, Y.-C. Lin, Y.-M.
J. Chromatogr., A ; Journal of Chromatography, A v. 825 pg 149-159 6 Nov 1998  1998

问与答

问题回答
When doing diafiltration, how many initial volumes would it take to remove the salt?It takes three initial volumes to remove 95% of the salt and five initial volumes to remove 99.9% of the salt.
What molecular weight cut-off should I select for proteins of different sizes?As a rule, when using Ultracel membranes it is best to select a membrane 2-3 times smaller than the solute to be retained by the membrane. In the case of the Biomax membranes 4-5 times smaller than the NMWL is suggested. For more information on choosing the appropriate membrane cutt off: http://www.millipore.com/publications.nsf/docs/RF036
What is the best way to store disc membranes?Solutions of 10% ethanol in water or 0.1% azide in water will preserve the membrane. For long-term storage, refrigeration is recommended.
What is the pH range for YM membrane?The pH range is 3-13.
My recovery is low. Why?1. What concentration are you using?
a. If it is protein and <10ug/ml, the protein may be binding to the plastic (not the membrane). We suggest passivation (See passivation protocol).
b. If it is DNA and >100ug/ml, most likely the DNA is precipitating out. There is no solution except use less DNA.

2. Are you using a detergent?
a. If yes, and it is greater than the critical micelle concentration, it will not pass through the membrane pores. Suggest diluting out the sample (See detergent study).
What is the temperature limit for the Ultracel YM membrane?The temperature limit for the Ultracel YM membrane is 121 degrees C.
What is the temperature limit for the Biomax membrane?The temperature limit for the Biomax membrane is 50 degrees C.
What is the average thickness of the Ultracel YM membrane?The average thichness of the Ultracel YM membrane is 8 mil.
What is the difference between Biomax and Ultracel membrane?Biomax is a polyethersulfone membrane designed with maximum flow characteristics. The protein retention is typically 80-85% of a globular solute with that molecular weight limit. Ultracel is a regenerated cellulose membrane designed with maximum recovery characteristics. The protein retention is typically 90-95% of a globular solute with that molecular weight limit.
What are the different membranes types and advantages?MEMBRANE TYPE & MW Cut-off

NameMaterialAdvantage
YMRegenerated Cellulose AcetateHigh Recovery
PLRegenerated Cellulose AcetateHigh Recovery
PM BioMaxPolyethersulfoneHigh Flux
PM PolyethersulfoneHigh Flux
PCRegenerated Cellulose AcetateHigh Recovery
YCCellulose AcetateLowest MWCO