Difference between revisions of "Main Page"
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*[[Dispersion and Diffusion]] | *[[Dispersion and Diffusion]] | ||
*[[Metals and Metalloids - Mobility in Groundwater | Mobility of Metals and Metalloids]] | *[[Metals and Metalloids - Mobility in Groundwater | Mobility of Metals and Metalloids]] | ||
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*[[pH Buffering in Aquifers]] | *[[pH Buffering in Aquifers]] | ||
*[[Sorption of Organic Contaminants]] | *[[Sorption of Organic Contaminants]] | ||
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*[[Chlorinated Solvents]] | *[[Chlorinated Solvents]] | ||
*[[Metal and Metalloid Contaminants|Metals and Metalloids]] | *[[Metal and Metalloid Contaminants|Metals and Metalloids]] | ||
+ | **[[Metal(loid)s - Small Arms Ranges]] | ||
*[[N-nitrosodimethylamine (NDMA)]] | *[[N-nitrosodimethylamine (NDMA)]] | ||
*[[Perchlorate|Perchlorate]] | *[[Perchlorate|Perchlorate]] |
Revision as of 10:43, 16 October 2019
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The goal of the ENVIRO.wiki is to make scientific and engineering research results more accessible to the target audience, facilitating the permitting, design and implementation of environmental projects. Articles are written and edited by invited experts (see Contributors) to summarize current knowledge for environmental professionals on an array of topics, with cross-linked references to reports and technical literature. | See Table of Contents |
Featured article / Natural Attenuation in Source Zone and Groundwater Plume - Bemidji Crude Oil SpillHigh-pressure membrane filtration such as nanofiltration (NF) or reverse osmosis (RO) is a filtration process that separates dissolved inorganic and organic solutes from liquid solvents, typically water. As opposed to porous and more permeable low-pressure membranes (i.e., microfiltration and ultrafiltration), NF and RO membranes are widely considered semi-permeable and therefore require higher operating pressures to force water against an osmotic gradient to produce a purified permeate stream. NF and RO systems are separation processes that yield two streams: the treated permeate and the concentrated retentate. Typical parameters used to describe operational performance of high-pressure membrane systems include solvent recovery and solute rejection. Recovery is defined as the percentage of feed water that becomes permeate. Solute rejection is defined as the percent of concentrated feed water retained by the membrane. Significant advancements in membrane material development have led to development of NF and RO membranes with varying pressure requirements and solute rejection characteristics.
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