This work describes the design of a phosphate analyser that utilises a microfluidic lab-on-a-chip. The analyser contains all the required chemical storage, pumping and electronic components to carry out a complete phosphate assay. The system is self-calibrating and self-cleaning, thus capable of long-term operation. This was proven by a bench top calibration of the analyser using standard solutions and also by comparing the analyser's performance to a commercially available phosphate monitor installed at a waste water treatment plant. The output of the microfluidic lab-on-a-chip analyser was shown to have sensitivity and linear range equivalent to the commercially available monitor and also the ability to operate over an extended period of ...
The development of a miniaturised microfluidic instrument for monitoring phosphorus in natural water...
A fully integrated lab-on-a-disc sensor for multi-sample phosphate detection based on the molybdenum...
Environmental legislation such as the EU Water Framework Directive is providing a significant impetu...
This work describes the design of a phosphate analyser that utilises a microfluidic lab-on-a-chip. T...
This work presents the ongoing development of a microfluidic chip for a low cost field deployable ph...
A portable sensor for the analysis of phosphate in aqueous samples has been developed. The sensor i...
An autonomous microfluidic sensor for phosphate in environmental waters has been developed and asses...
Nutrients such as Phosphate, Ammonia, Nitrite and Nitrate are central in many environmental processe...
An autonomous microfluidic analyser for phosphate in wastewater and environmental waters has been de...
We report a high performance autonomous analytical system based on the vanadomolybdate method for th...
Here, we present a new in situ microfluidic phosphate sensor that features an improved “phosphate bl...
Here, we present a new in situ microfluidic phosphate sensor that features an improved “phosphate bl...
Phosphorous is one of the principle elements contributing to eutrophication[1] in coastal, marine an...
A portable sensor for the analysis of phosphate in aqueous samples has been developed. The sensor in...
The development of a miniaturised microfluidic instrument for monitoring phosphorus in natural water...
A fully integrated lab-on-a-disc sensor for multi-sample phosphate detection based on the molybdenum...
Environmental legislation such as the EU Water Framework Directive is providing a significant impetu...
This work describes the design of a phosphate analyser that utilises a microfluidic lab-on-a-chip. T...
This work presents the ongoing development of a microfluidic chip for a low cost field deployable ph...
A portable sensor for the analysis of phosphate in aqueous samples has been developed. The sensor i...
An autonomous microfluidic sensor for phosphate in environmental waters has been developed and asses...
Nutrients such as Phosphate, Ammonia, Nitrite and Nitrate are central in many environmental processe...
An autonomous microfluidic analyser for phosphate in wastewater and environmental waters has been de...
We report a high performance autonomous analytical system based on the vanadomolybdate method for th...
Here, we present a new in situ microfluidic phosphate sensor that features an improved “phosphate bl...
Here, we present a new in situ microfluidic phosphate sensor that features an improved “phosphate bl...
Phosphorous is one of the principle elements contributing to eutrophication[1] in coastal, marine an...
A portable sensor for the analysis of phosphate in aqueous samples has been developed. The sensor in...
The development of a miniaturised microfluidic instrument for monitoring phosphorus in natural water...
A fully integrated lab-on-a-disc sensor for multi-sample phosphate detection based on the molybdenum...
Environmental legislation such as the EU Water Framework Directive is providing a significant impetu...