WTW OxiTop® systems are easy-to-use meters for BOD for self-monitoring. OxiTop®-IDS measuring systems can execute anaerobic and aerobic examinations across the entire spectrum of biodegradability and evaluate them on the computer.
Complete packages, for 6 or 12 samples are available and ready for immediate use.
Features:
Suitable for routine BOD5 and other special applications – compliant to multiple international methodologies and standardsIncubators, accessories and consumables also available.
Measurement
Measurement Period
Measurement Range
Pressure Mode
For assistance when selecting equipment for respirometric measurements from WTWÂ please check the links below:
Biochemical oxygen demand (BOD) is an important measurement parameter for anyone discharging effluent or running a waste water treatment plant. It is a difficult test to run and there are very few resources online which help new users get to grips with the technique.
Camlab offer a range of different analysis options for BOD to suit all types of user. The options are outlined below; from traditional bottle and multi-meter based set ups to bespoke all in one systems. Camlab can offer both demonstrations and advice to new and existing users, which will allow them to get the best results from this difficult analysis.
Ideal for single BOD sample analysis along with the ability to measure other parameter analysis (pH, ISE etc.). Camlab supplies several options from market leaders.
Hach Multi-Meters and DO Probes
The IntelliCAL LBOD101 Luminescent Dissolved Oxygen Probe can be used with:
WTW Multi-Meters and DO Probes
Several combinations are available:
Lovibond Multi-Meters and DO Probes
SD 400 Optical Dissolved Oxygen meter series:
All multi-meter options require accessories, Bod bottles and reagents.
Ideal for single and multiple sample analysis.
Lovibond BD 600 Series
The BD 600 is a respirometric system for the determination of Biochemical Oxygen Demand (BOD). The BD600 is equipped with an automatic start feature, measurement does not start until the temperature in the samples is the same as that in the thermostatically controlled cabinet. The system comes with all you need for analysis of 1-6 samples.
WTW Oxitop System
The unique feature of this system is that the heads contain the sensor and a measuring unit for independent setting and recording allowing a more flexible system. Options include:
Various system options available – contact us for details.
For an overview of the set up please watch the following Video.
Both bespoke systems have an extensive selection of accessories which includes their own brown glass flasks, overflow measuring flasks, stirring unit and reagents such as nitrification inhibitor and potassium hydroxide solution 45%. A thermostatic cabinet is an additional consideration.
SI Analytics produces a number of meters, titrators, and other instrumentation to enable user-friendly accurate testing systems for on-site analysis.
Multi analysis instrumentation such as the WTW® pHotoFlex® TURB handheld photometer can provide an array of photometric data such as COD and ammonia for waterways and ponds in addition to the ability to measure pH and turbidity in a single meter. | ![]() |
A key measurement within the process itself is the FOS/TAC (alkalinity ratio). The acid vs alkaline ratio in the system helps to assess the risk of acidification in the biogas reactor. FOS/TAC can be assessed through titration. The SI Analytics TitroLine® 5000 auto-titrator, contains a built-in FOS/TAC method simplifying the titration for daily analysis of the fermentation performance. Monitoring this ratio is important in preventing underperformance due to an imbalance of feedstock load (too much or too little) which can result in the need to restart the whole process – a costly procedure. Another method for optimizing performance is monitoring the bio-methane potential (BMP) of the various feedstock samples by simulating conditions to that of the fermenter (i.e. pH, temperature, pressure) over a period of 21 to 28 day. One system to do this is the OxiTop® Control respiratory system. This system mimics the fermentation process providing data to enable process control and optimization for the varying feedstocks. |
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