The HANNA® turbidity calibration solutions are produced according to the AMCO AEPA-1 standards, at 0, 10, 20 and 500 FTU.
They are preferred to the formazine based standards, as they are non-toxic, stable, reusable and long-lasting.
เครื่องวัดปริมาณคลอรีนอิสระ รุ่น HI701
2 × ฿3,103.00
BL983317-1 EC Mini Controller upto 10.00 mS/cm, 230V
1 × ฿13,910.00
HI920005 i-Button® tags (tag identification system) (5 pcs)
1 × ฿7,490.00
เครื่องวัดปริมาณฟอสฟอรัส ช่วงต่ำมาก รุ่น HI736
1 × ฿3,103.00
เครื่องวัดปริมาณฟอสเฟต ช่วงสูง รุ่น HI717
1 × ฿3,103.00
เครื่องวัดอุณหภูมิอาหาร
1 × ฿7,900.00
เซ็นเซอร์วัดออกซิเจนในน้ำสำหรับ HI9829 มัลติพารามิเตอร์
1 × ฿12,305.00
HI70032C - 1382 mg/l (ppm) TDS@25°C Cert. - 25x20ml
1 × ฿2,033.00
HI1005 - pH Electrode, Flow-thru Monitoring for PCA
1 × ฿9,095.00
HI700 Checker HC ® - Ammonia, LR
1 × ฿3,103.00
น้ำยามาตรฐานสอบเทียบ ค่ามาตรฐานความเค็ม
1 × ฿1,444.50
HI93703-0 AMCO-AEPA-1 Calibration Solution at 0 FTU, 30 ml
1 × ฿1,498.00 Subtotal: ฿71,190.50
฿2,033.00
The HANNA® turbidity calibration solutions are produced according to the AMCO AEPA-1 standards, at 0, 10, 20 and 500 FTU.
They are preferred to the formazine based standards, as they are non-toxic, stable, reusable and long-lasting.
They are preferred to the formazine based standards, as they are non-toxic, stable, reusable and long-lasting.
Order Information:
AMCO-EPA solution @ 0 FTU (30 mL)
Out of stock
The HANNA® turbidity calibration solutions are produced according to the AMCO AEPA-1 standards, at 0, 10, 20 and 500 FTU.
They are preferred to the formazine based standards, as they are non-toxic, stable, reusable and long-lasting.
| Weight | 0.000 kg |
|---|
Water Analysis Parameters: Turbidity, Chlorine, pH, Bromine, Iron, Iodine and Cyanuric acid.
All Product
Range 0:00 to 2:50 ppm | USEPA Method 330.5 / DPD | Resolution 0.01ppm
Turbidity Meters
i-Button® tags (tag identification system) to be used with Fast Tracker™ compatible meters.
For use with HI 83 series photometers, and turbidimeters.
Photometers
Range 0:00 to 3:00 ppm NH3-N | Nessler Method | 0.01ppm resolution