A portable sensor for the analysis of phosphate in aqueous samples has been developed. The sensor incorporates microfluidic technology, colorimetric detection, and wireless communications into a compact and rugged portable device. The detection method used is the molybdenum yellow method, in which a phosphate-containing sample is mixed with a reagent containing ammonium metavanadate and ammonium molybdate in an acidic medium. A yellow-coloured compound is generated and the absorption of this compound is measured using a light emitting diode (LED) light source and a photodiode detector. The absorption is directly proportional to the phosphate concentration in the original sample. In this paper we describe the application of this phosphate se...
A microfluidic analyser platform for a number of key water quality parameters has been developed. 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...
A portable sensor for the analysis of phosphate in aqueous samples has been developed. The sensor in...
A portable sensor for the analysis of phosphate in aqueous samples has been developed. The sensor in...
An autonomous microfluidic sensor for phosphate in environmental waters has been developed and asses...
An autonomous microfluidic analyser for phosphate in wastewater and environmental waters has been de...
A fully integrated lab-on-a-disc sensor for multi-sample phosphate detection based on the molybdenum...
Nutrients such as Phosphate, Ammonia, Nitrite and Nitrate are central in many environmental processe...
An autonomous microfluidic sensor for phosphate in environmental waters has been developed and valid...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2020Cat...
This work presents the ongoing development of a microfluidic chip for a low cost field deployable ph...
A sensing platform for the in situ, real-time analysis of phosphate in natural waters has been reali...
MasterThe compact, sensitive and continuous absorbance detection system for determination of total d...
We report a high performance autonomous analytical system based on the vanadomolybdate method for th...
A microfluidic analyser platform for a number of key water quality parameters has been developed. 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...
A portable sensor for the analysis of phosphate in aqueous samples has been developed. The sensor in...
A portable sensor for the analysis of phosphate in aqueous samples has been developed. The sensor in...
An autonomous microfluidic sensor for phosphate in environmental waters has been developed and asses...
An autonomous microfluidic analyser for phosphate in wastewater and environmental waters has been de...
A fully integrated lab-on-a-disc sensor for multi-sample phosphate detection based on the molybdenum...
Nutrients such as Phosphate, Ammonia, Nitrite and Nitrate are central in many environmental processe...
An autonomous microfluidic sensor for phosphate in environmental waters has been developed and valid...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2020Cat...
This work presents the ongoing development of a microfluidic chip for a low cost field deployable ph...
A sensing platform for the in situ, real-time analysis of phosphate in natural waters has been reali...
MasterThe compact, sensitive and continuous absorbance detection system for determination of total d...
We report a high performance autonomous analytical system based on the vanadomolybdate method for th...
A microfluidic analyser platform for a number of key water quality parameters has been developed. 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...