CLEAR WATER RESEARCH & INFRA PRIVATE LIMITED – Technological Expertise

About

Clear Water relies on advance technologies to provide unrivalled flexibility and bringing added value to our clients.

Our all-encompassing range of solutions and technologies is dedicated to increasing the value of water and wastewater resources.

We ensure our clients the best possible solutions to supply high quality water, treat or reuse wastewater, produce or recover energy, extract raw materials and capitalize on by products.

ADVANCE SBR:

Clear Water Advance SBR is an optimized process design with proven performance which can provide lower than 10 mg/l average BOD and TSS. It offers a choice of continuous or batch influent flow.

  • · Advance SBR operation offers smaller basin volume, single basin operation, and uniform basin loading.
  • · Enhanced BNR solutions meeting the most stringent effluent TN and/or TP requirements
  • · Flexible control options and designs for a wide range of flow applications - 75 m3/d to over 500,000 m3/d
  • · Modified Sludge development process allows higher MLSS in the reactor & Improved sludge quality
  • ADVANCE OXIDATON:

    Pseudomonas aeruginosa is the main issue in most pharma water contamination. It is chlorine resistant and hence survives normal water disinfectant process Contaminates pipe lines, tanks, RO systems, UF systems Facultative anaerobe, adapted to proliferate in conditions of partial or total oxygen depletion.

    PWD Technology: Product Water Disinfection from Clear Water ensures total eradication of pseudomonas and other contaminants using state of Art ozone Technology

    HIGH PURITY:

    The Next Generation in innovative Purified Water Treatment systems for the Pharmaceutical and Food & Beverage Industries. Delivering critical high performance in a sustainable manner, the High Purity Water System comes with a host of new innovative and cutting-edge technologies. This differentiated modular system offers the broadest flexibility providing features and options to complement each model.