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Stacked Rapid Sand Filtration

The

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Overview

A stacked rapid sand filtration unit filter is preferable to a conventional rapid sand filtration unit as it requires less water to back wash since the filters are stacked, and use the same water for all filter layers to back washa novel self-backwashing filter invented by the AguaClara team. Its unique stacked geometry allows it to use the same flow rate for the filtration and backwash cycles, without the expensive pumps or elevated tanks required to backwash conventional rapid sand filters. In addition, a stacked filtration system requires a much smaller footprint to achieve the same level of filtrationthan a conventional filter to treat a given flow rate.

A vertically stacked filtration system meets many of the AguaClara Project constraints. Both normal filtration and back wash backwash operations are gravity driven and require no electricity. In additon, it is an open system. The required construction materials (PVC pipes, sand, concrete, brick, and rebar) are relatively cheap and available in Honduras. Most importantly, stacked rapid sand filtration is proven to consistently lower the effluent to below 1 the US EPA standard of 0.3 NTU.

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Future

Current Research

Field Scale Design
We plan to build a stack rapid sand filter as an addition to an existing plant that uses AguaClara technology.

Stacked Rapid Sand Filtration

Low Flow SRSF

Low Flow Stacked Rapid Sand Filters are an adaptation of rapid sand filters optimized for flows less than 3 L/s that don't require any flow control or backwash.

Floc Filtration

Further Reading

Proof of Concept Paper
General Filtration
Current Challenges
Past Challenges

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Current Members

Mihir Gupta
Kris LaPan
Rachel Proske
Nadia Shebaro

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Documents

 

Challenges

Tasks

Teach-In

Presentation

Final Report

Fall Summer '11 12

 

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Spring Fall '11

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Spring 2012 Full Scale
Spring 2012 Pilot Scale
Spring 2012 Bench Scale


Fall 2010
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General Filtration
Challenges

Theory and Design

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Past Research
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Michael Adelman
William Maher
Min Pang
Alli Hill

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Spring 2010