Showing posts with label reverse osmosis. Show all posts
Showing posts with label reverse osmosis. Show all posts
Tuesday, September 13, 2011
Climate Change Could Increase 'Saltwater Intrusion'
Guest Blog By Andy Reid, Sun Sentinel, September 12, 2011
Summer rains can't wash away a growing underground threat to South Florida's water supply.
Saltwater seeping in from the ocean keeps spreading farther west, threatening to foul underground freshwater supplies that provide most of South Florida's drinking water.
"Saltwater intrusion" in South Florida has worsened through the decades as providing water and flood control for a growing population siphons away freshwater and allows more saltwater to seep into aquifers and well fields.
Ninety percent of South Florida gets its drinking water from underground supplies, most from the Biscayne aquifer. Pumping too much water from underground supplies can allow saltwater to push in from the coast.
Droughts can make saltwater intrusion worse as pumping to provide drinking water continues while rains don't come to replenish underground freshwater supplies.
Now South Florida officials are projecting that sea-level rise due to climate change could increase the reach of saltwater that can make water from community wells undrinkable.
That has city and county utilities along the southeast Florida coast exploring expensive alternatives, with costs passed along to ratepayers, to avoid getting cut off from freshwater.
"It is still progressing westward," Hector Castro, Hallandale Beach public works and utilities director, said. "Eventually all coastal communities will deal with this in some way, shape or form."
Hallandale Beach, Pompano Beach, Dania Beach, Lantana and Lake Worth are among local cities that in recent years have been most at risk from saltwater intrusion.
But the line of saltwater spreading inland comes close to or reaches cities from Jupiter to Florida City, including West Palm Beach, Delray Beach, Boca Raton, Fort Lauderdale, Hollywood and Miami, according to theU.S. Geological Survey.
Reducing well-field pumping, moving well fields farther inland and requiring utilities to pursue alternative water supplies have helped hold the line of saltwater intrusion in some areas and even push it back east.
"It's a serious threat," said Pete Kwiatkowski, South Florida Water Management District water-shortage incident commander. "That saltwater front is very dynamic (and) it does shift."
Six of the eight wells that Hallandale Beach relies on have been closed through the years due to saltwater intrusion.
That's because 85 percent of the city is within the area where saltwater has seeped in, Castro said. As a result, the city pays to get half of its water from Broward County's western well fields and is working on a deal for new western wells of its own.
Hallandale Beach proposes building six new wells and new water lines in West Park for about $10 million. Operating them over 40 years would cost about $36 million, Castro said.
"Any given day, if we were to pull too much water … we could lose another well," Castro said.
Instead of building well fields farther inland, some utilities build new water plants capable of tapping into and treating deeper, saltier underground water supplies.
Lake Worth recently completed a $24 million reverse osmosis water plant to keep 5 million to 7 million gallons of water a day flowing, without threats from saltwater.
Lake Worth also has stricter once-a-week landscape-watering limits intended to cut water use and help avoid saltwater intrusion.
Rising sea levels are expected to add to the spread of saltwater intrusion, said Jennifer Jurado, Broward County director of natural resources planning and management.
Man-made pollution produces more carbon dioxide and other heat-trapping greenhouse gases that capture the sun's heat, leading to climate change. Increased temperatures mean melting ice sheets and swelling oceans, projected to bring rising sea levels.
South Florida sea levels rose about 8 inches during the past 100, but are projected to increase between 9 and 27 inches over the next 60 years, according to Jurado. That would lead to more saltwater forcing its way into freshwater supplies, she said.
"Potable water supply is obviously a major concern long-term," said Jurado.
Building water plants capable of converting ocean water into drinking water is one alternative that so far South Florida utilities have deemed too expensive.
Making better use of regional water supplies could help beat back saltwater intrusion, said Ron Nunes, chairman of the Southeast Florida Utility Council, which represents water providers serving nearly 5 million residents.
Flood control for cities and farms built on what used to be the Everglades leads to draining nearly two billions of gallons of storm water out to sea each day after a typical South Florida summer rainstorm.
More of that storm water should be redirected to beef up groundwater levels depleted by decades of draining and paving land that once held water and naturally replenished the aquifer, Nunes said.
"The biggest issue is the water is there and it is all going out to sea," Nunes said. "Why can't it be re-engineered to help keep the saltwater back?"
Wednesday, September 7, 2011
WTS Commissions .5 MGD RO For Golf Course Irrigation
Burlington, Iowa July 30 Water Treatment Systems, Inc, Boca Raton FL has commissioned a new reverse osmosis water treatment system at Spirit Hollow Golf Club in Burlington IA. The 500,000 GPD RO, manufactured by Water Management Group, Inc. will provide a consistent supply of irrigation quality water for the golf course. The design-build project was a result of successful teamwork performed by the owner, Spirit Hollow Golf Club, Water Treatment Systems, Inc and Water Management Group, Inc.
At times of low rainfall, which is an annual occurrence during the golf season in Iowa, the facilities back up source of water has been a brackish water well. At 2600 ppm TDS this water was harmful to the fairways greens and tees.
The new RO system provides a product water of approximately 100 ppm TDS which will then be stored in a natural pond. The blended pond water should reach approximately 400 ppm TDS before being pumped onto the golf course. “This water quality is considered to be optimal for the health and appearance of fairways, greens and additional landscaping” said Jeff Dunn, WTS, Inc. applications engineer.
A new building was constructed over the winter to house the equipment which consists of the .5 MGD membrane train and pre-filtration system.
Reverse Osmosis systems are increasingly chosen by Golf Course properties to reduce water costs while maintaining consistent irrigation quality water from sources otherwise unsuitable for irrigation or potable water use. The cost of operating an RO water treatment plant is often much less than the cost of municipal water or reclaimed waste-water, and better for the turf.
Water Treatment Systems, Inc. designs reverse osmosis systems for industrial and commercial applications and specializes in brackish and sea water desalination.
At times of low rainfall, which is an annual occurrence during the golf season in Iowa, the facilities back up source of water has been a brackish water well. At 2600 ppm TDS this water was harmful to the fairways greens and tees.
The new RO system provides a product water of approximately 100 ppm TDS which will then be stored in a natural pond. The blended pond water should reach approximately 400 ppm TDS before being pumped onto the golf course. “This water quality is considered to be optimal for the health and appearance of fairways, greens and additional landscaping” said Jeff Dunn, WTS, Inc. applications engineer.
A new building was constructed over the winter to house the equipment which consists of the .5 MGD membrane train and pre-filtration system.
Reverse Osmosis systems are increasingly chosen by Golf Course properties to reduce water costs while maintaining consistent irrigation quality water from sources otherwise unsuitable for irrigation or potable water use. The cost of operating an RO water treatment plant is often much less than the cost of municipal water or reclaimed waste-water, and better for the turf.
Water Treatment Systems, Inc. designs reverse osmosis systems for industrial and commercial applications and specializes in brackish and sea water desalination.
Tuesday, July 26, 2011
Reverse Osmosis Systems Provide Quality, Reduce Water Usage for Golf Course Irrigation
In recent years golf course managers have begun installing Reverse Osmosis water treatment systems to provide good quality water for irrigation and at a much lower cost than that of municipally supplied water. The use of RO for treating water for irrigation is not new. Seaside hotels in areas such as the Caribbean, Mexico, South America and the Mediterranean regions have been using RO for many years to desalinate seawater for potable water and irrigation needs.
But In many parts of the country, and worldwide, golf course managers struggle with the problems of availability, cost or quality of water for irrigation of their golf course. Reverse Osmosis has solved the problem of utilizing brackish ground water and many Golf Clubs have planned to purchase and install their own RO water treatment plants only to run directly into a difficult problem: where to discharge the RO concentrate. This is the water that contains the concentrated minerals removed by the reverse osmosis process. The problem is finding a suitable location to send the RO concentrate water and obtaining the necessary permits. RO concentrate water is considered “industrial waste” by the DER and EPA. Examples of approved discharge resources may be an infiltration trench, deep well, a lined surface water body on the property and discharge to a municipal sewage system of low flow concentrate. If none of these exist then building them may be cost prohibitive or not permitted in the location of the property.
But what if there was no water to dispose of or a very minimal amount that could get permitted? Enter “Zero Liquid Discharge” RO system design. This is a very recent advance in reverse osmosis technology which can be provided in various ways based on site specific conditions.
By utilizing stages membrane trains and, in some cases, evaporators as the final stage in the process, an irrigation water treatment plants can reduce 250,000 gallons per day concentrate discharge from a one million gallon per day systems, to less than 27,000 gallons per day. This is a more manageable quantity and one which has a better chance for approved permitting. This is a very important development for the RO and Golf Course industries.
But In many parts of the country, and worldwide, golf course managers struggle with the problems of availability, cost or quality of water for irrigation of their golf course. Reverse Osmosis has solved the problem of utilizing brackish ground water and many Golf Clubs have planned to purchase and install their own RO water treatment plants only to run directly into a difficult problem: where to discharge the RO concentrate. This is the water that contains the concentrated minerals removed by the reverse osmosis process. The problem is finding a suitable location to send the RO concentrate water and obtaining the necessary permits. RO concentrate water is considered “industrial waste” by the DER and EPA. Examples of approved discharge resources may be an infiltration trench, deep well, a lined surface water body on the property and discharge to a municipal sewage system of low flow concentrate. If none of these exist then building them may be cost prohibitive or not permitted in the location of the property.
But what if there was no water to dispose of or a very minimal amount that could get permitted? Enter “Zero Liquid Discharge” RO system design. This is a very recent advance in reverse osmosis technology which can be provided in various ways based on site specific conditions.
By utilizing stages membrane trains and, in some cases, evaporators as the final stage in the process, an irrigation water treatment plants can reduce 250,000 gallons per day concentrate discharge from a one million gallon per day systems, to less than 27,000 gallons per day. This is a more manageable quantity and one which has a better chance for approved permitting. This is a very important development for the RO and Golf Course industries.
Labels:
brackish water,
irrigation water,
reverse osmosis,
RO
Tuesday, May 10, 2011
Newest Golf Course Irrigation RO Near Completion
Water Treatment Systems,Inc, Boca Raton FL has delivered it's newest reverse osmosis water treatment system to Spirit Hollow GC in Burlington IA. The 500,000 GPD RO will provide a consistent supply of irrigation quality water for the golf course.
At times of low rainfall, which is an annual occurrence during the golf season in Iowa, the facilities back up source of water has been a brackish water well. At 2000 ppm TDS this water was detrimental to the fairways greens and tees.
The new RO system will provide a product water of approximately 100 ppm TDS which will then be stored in a natural pond. The blended pond water should reach approximately 400 ppm TDS before being pumped onto the golf course.
A new building was constructed over the winter to house the equipment. The Water Treatment Plant is expected to start-up around May 18th.
At times of low rainfall, which is an annual occurrence during the golf season in Iowa, the facilities back up source of water has been a brackish water well. At 2000 ppm TDS this water was detrimental to the fairways greens and tees.
The new RO system will provide a product water of approximately 100 ppm TDS which will then be stored in a natural pond. The blended pond water should reach approximately 400 ppm TDS before being pumped onto the golf course.
A new building was constructed over the winter to house the equipment. The Water Treatment Plant is expected to start-up around May 18th.
Wednesday, July 21, 2010
The Home Water Treatment Question
As an Applications Engineer for industrial and commercial industry for over 20 years I have often been asked the question: What do you use in your home for good tasting safe water? Most of the inquirers assume that my answer will be Reverse Osmosis because that is what I specialize in. But my answer is often not what they expect.
There are only two different sources for all of our drinking water. But water quality can vary tremendously from one water source to another depending on the location. Water comes from surface or underground sources. But how this water gets to our homes also makes a big difference in quality. If you live in a city or county your water will be treated by a public water treatment facility. The Public water company’s job is to treat the water supply to be sure it does not exceed established levels for contaminants, bacteria, and viruses. If you live in a small community your water may come from your small community water treatment system, or simply from a community well and pumping system. These facilities also follow guidelines for safe drinking water. And if you live somewhere that is not served by a public water system it is likely that obtain you water from your own well.
I live in a locality served by a very large public water treatment facility. Raw water is obtained from a very deep well and then treated for the removal or reduction of unsafe levels of contaminates bacteria, and viruses. Most of urban and sub-urban dwellers obtain potable water that way. Most public water treatment plants do a very good job and provide us with good drinking water. The biggest complaint from consumers seems to be taste and order. “How can you drink the water from your tap” is frequently heard in South Florida where I reside. The truth is the water from my tap is quite good. Why? This is what I do. I have installed, under my kitchen sink, twin filter housings each containing a carbon filter cartridge. Carbon cartridges remove the chlorine that the water treatment plant adds to the finished water to prevent bacteria growth in the water as it travels through miles of underground pipe to get to your house. Once chlorine is removed the water it becomes clear and taste great. The housings and filters might initially cost less than $100. The cartridges should be replaced about every 6 months. They cost about $5.00 each. You can get them in your local hardware store.
I don’t believe anything more elaborate is necessary. However homeowners relying on well water for their potable water needs should have their well tested for conformity to safe drinking water regulations. If known contaminates are present in high levels or if there is any doubt at all then a reverse osmosis system and/or other technologies may be needed.
There are only two different sources for all of our drinking water. But water quality can vary tremendously from one water source to another depending on the location. Water comes from surface or underground sources. But how this water gets to our homes also makes a big difference in quality. If you live in a city or county your water will be treated by a public water treatment facility. The Public water company’s job is to treat the water supply to be sure it does not exceed established levels for contaminants, bacteria, and viruses. If you live in a small community your water may come from your small community water treatment system, or simply from a community well and pumping system. These facilities also follow guidelines for safe drinking water. And if you live somewhere that is not served by a public water system it is likely that obtain you water from your own well.
I live in a locality served by a very large public water treatment facility. Raw water is obtained from a very deep well and then treated for the removal or reduction of unsafe levels of contaminates bacteria, and viruses. Most of urban and sub-urban dwellers obtain potable water that way. Most public water treatment plants do a very good job and provide us with good drinking water. The biggest complaint from consumers seems to be taste and order. “How can you drink the water from your tap” is frequently heard in South Florida where I reside. The truth is the water from my tap is quite good. Why? This is what I do. I have installed, under my kitchen sink, twin filter housings each containing a carbon filter cartridge. Carbon cartridges remove the chlorine that the water treatment plant adds to the finished water to prevent bacteria growth in the water as it travels through miles of underground pipe to get to your house. Once chlorine is removed the water it becomes clear and taste great. The housings and filters might initially cost less than $100. The cartridges should be replaced about every 6 months. They cost about $5.00 each. You can get them in your local hardware store.
I don’t believe anything more elaborate is necessary. However homeowners relying on well water for their potable water needs should have their well tested for conformity to safe drinking water regulations. If known contaminates are present in high levels or if there is any doubt at all then a reverse osmosis system and/or other technologies may be needed.
Monday, June 14, 2010
Reverse Osmosis Membrane Market To Increase Nearly 50% by 2020
The total market for membrane-based water treatment will grow from US$ 1.5 billion in 2009 to US$ 2.8 billion in 2020, according to a new report from Lux Research.
Reverse osmosis (RO) membranes are the largest technology, but ultra-filtration (UF) is set for fast growth. Reaching US$ 1.3 billion in 2020, RO membranes will continue to be the biggest segment of the market. However, fueled in part by their promise in treating municipal waste water, industrial process water and other types of water, UF membranes should see a healthy 6.5% compound annual growth rate, expanding from US$ 0.4 billion in 2009 to nearly US$ 0.7 billion in 2020.
Recycled municipal water will boom. In regions of extreme water stress, such as India and China, the idea of municipal water recycling is catching on.
The Indian government alone plans to spend several billion dollars over the next 5-10 years treating the Ganges River. This expansion in municipal water filtration will drive growth in membranes for ultra-filtration, micro-filtration and low-pressure RO.

Reverse osmosis (RO) membranes are the largest technology, but ultra-filtration (UF) is set for fast growth. Reaching US$ 1.3 billion in 2020, RO membranes will continue to be the biggest segment of the market. However, fueled in part by their promise in treating municipal waste water, industrial process water and other types of water, UF membranes should see a healthy 6.5% compound annual growth rate, expanding from US$ 0.4 billion in 2009 to nearly US$ 0.7 billion in 2020.
Recycled municipal water will boom. In regions of extreme water stress, such as India and China, the idea of municipal water recycling is catching on.
The Indian government alone plans to spend several billion dollars over the next 5-10 years treating the Ganges River. This expansion in municipal water filtration will drive growth in membranes for ultra-filtration, micro-filtration and low-pressure RO.
Labels:
membranes,
microfiltration,
reverse osmosis,
ro systems,
ultrafiltration
Tuesday, April 13, 2010
Zero Liquid Discharge System For Golf Course Irrigation WTP
Phase II has begun for the WTS 1.2 MGD reverse osmosis based water treatment plant that will feature (nearly) "Zero Liquid Discharge" of the RO water concentrate. Water Treatment Systems, Inc and Water Management Group, Inc. have shipped all of the process equipment which is now in the installation phase of the project. When completed the 1.2 MGD reverse osmosis based water treatment plant will feature (nearly) "Zero Liquid Discharge" of the RO concentrate from the systems. RO concentrate water that is to be discharged to a sewer system has been reduced to only approximately 25,000 GPD. That is a design recovery of greater than 98%.
This is a very important development for the RO and also for the Golf industries. In many parts of the country, and indeed worldwide, golf course managers struggle with the problems of availability, cost or quality of water for irrigation of their golf course. Reverse Osmosis has solved the problem of utilizing brackish ground water and many Golf Clubs have planned to purchase and install their own RO water treatment plants only to run directly into a very major obstacle. The problem is finding a suitable location to send the RO concentrate water and obtaining the necessary permits. RO concentrate water is considered 'industrial waste' by the DER and EPA." The lower the amount of RO concentrate, the smaller the problem is.
Reverse Osmosis systems are currently desalinating brackish or sea water at dozens of gold course facilities in the USA and world-wide. The product water from RO systems is very good "irrigation" quality. These facilities discharge their concentrate water, usually about 25% of the feed water, to an appropriate and permittable location. For a one million gallon per day RO system, this can be 250,000 gallons per day. A great many golf club facilities that need to treat their available water do not have an approved location to discharge it to.
The original design for the Texas Golf Club called for total liquid discharge with the use of evaporators as the final treatment phase. Evaporators are expensive both in capital and operating cost. But our client was fortunate to obtain permitting for approximately 5% of the concentrate thus eliminating the evaporation phase which saved about a million dollars". The zero liquid discharge design by Water Treatment Systems, Inc., using membrane systems are a low cost opportunity for golf clubs everywhere.
This is a very important development for the RO and also for the Golf industries. In many parts of the country, and indeed worldwide, golf course managers struggle with the problems of availability, cost or quality of water for irrigation of their golf course. Reverse Osmosis has solved the problem of utilizing brackish ground water and many Golf Clubs have planned to purchase and install their own RO water treatment plants only to run directly into a very major obstacle. The problem is finding a suitable location to send the RO concentrate water and obtaining the necessary permits. RO concentrate water is considered 'industrial waste' by the DER and EPA." The lower the amount of RO concentrate, the smaller the problem is.
Reverse Osmosis systems are currently desalinating brackish or sea water at dozens of gold course facilities in the USA and world-wide. The product water from RO systems is very good "irrigation" quality. These facilities discharge their concentrate water, usually about 25% of the feed water, to an appropriate and permittable location. For a one million gallon per day RO system, this can be 250,000 gallons per day. A great many golf club facilities that need to treat their available water do not have an approved location to discharge it to.
The original design for the Texas Golf Club called for total liquid discharge with the use of evaporators as the final treatment phase. Evaporators are expensive both in capital and operating cost. But our client was fortunate to obtain permitting for approximately 5% of the concentrate thus eliminating the evaporation phase which saved about a million dollars". The zero liquid discharge design by Water Treatment Systems, Inc., using membrane systems are a low cost opportunity for golf clubs everywhere.
Thursday, January 21, 2010
The Future of Reverse Osmosis Systems
The future is now! Indeed RO systems are being utilized right now all over the world.
As water supplies continue to degrade or in many countries, simply not available, RO systems will be in greater demand. Desalination of sea water in arid climates is absolutely essential. In many industrial countries, good quality water sources for potable and for irrigation use are becoming hard to find. What little there is becomes very expensive.
Reverse Osmosis is a process that treats water that would otherwise be unsuitable for use and turns into potable water quality. It makes it possible to utilize water sources that are highly saline or brackish, thus freeing up the available "clean" water sources and keeping prices within reason.
Please check back with me often. I will be writing all about RO and RO applications on this first blog about the subject.
As water supplies continue to degrade or in many countries, simply not available, RO systems will be in greater demand. Desalination of sea water in arid climates is absolutely essential. In many industrial countries, good quality water sources for potable and for irrigation use are becoming hard to find. What little there is becomes very expensive.
Reverse Osmosis is a process that treats water that would otherwise be unsuitable for use and turns into potable water quality. It makes it possible to utilize water sources that are highly saline or brackish, thus freeing up the available "clean" water sources and keeping prices within reason.
Please check back with me often. I will be writing all about RO and RO applications on this first blog about the subject.
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