Water Cisterns – Once you have done the little stuff there is so much you can do

LowFlow Showerheads are mandatory but once you start there is serious stuff you can do to save water. Cisterns. It used to be that everyone had them. Some were as simple as a hole in the ground covered with screening. Sometimes they were even built as part of the house. Sort of your own personal water tower. But with the advent of modern drinking water systems they fell by the wayside.

http://www.harvesth2o.com/plumbing_codes.shtml

History

Cisterns are an ancient technology. In the Middle East in 2000 B.C., typical middle-class dwellings stored rainwater in cisterns for use as a domestic supply as well as private- bathing facilities for the wealthy.

The world’s largest cistern may be the Yerebatan Sarayi. On the European side of Istanbul in Turkey, it was constructed under Caesar Justinian (A.D. 527-565) and measures 140 by 70 meters. It can store 80,000 m³ water. The underground structure is based on intersecting vaults. Today, it is a tourist attraction which is visited by boat, drifting through a forest of columns. Another cistern in Istanbul is called Binbirdik, believed by some sources to have been constructed under Caesar Constantine (A.D. 329-337), with a capacity of 50,000 m³. Each cistern served as centralized storage for water collected from roofs and paved streets and featured a sophisticated system of filters that assured clean water.

These municipal underground cisterns may be the only examples of urban centralized rainwater harvesting of their kind. This technique was likely abandoned for two primary reasons: 1) the construction of underground cisterns is considerably more expensive than the construction of dams; 2) there is a danger of accidental pollution through human excrement in dense urban areas and a corresponding risk of epidemics.

Water Classifications

Harvested rainwater is shrouded in confusion. Some jurisdictions consider it reclaimed water and others refer to it as gray water. Actually, it is neither. To clarify, UPC offers the following definitions.

• Black water is toilet waste.

• Gray water is untreated wastewater that has had no contact with toilet waste such as used water from bathtubs, showers, lavatories and water from washing machines. It does not include wastewater from kitchen sinks or dishwashers.

• Reclaimed water is water which, as a result of tertiary treatment of domestic wastewater by a public agency, is suitable for controlled use. The controlled use can be the supply of reclaimed water-to-water closets, urinals and trap seal primers for floor drains and floor sinks. In areas under the jurisdiction of the UPC this system is usually called a “purple pipe” system because the reclaimed water is conveyed in pipe that is purple.

• Harvested rainwater is storm water that is conveyed from a building roof, stored in a cistern and disinfected and filtered before being used for toilet flushing. It can also be used for landscape irrigation.

As noted, Appendix J of the UPC describes reclaimed water, but according to the above definition, rainwater harvesting is not reclaimed water. Plumbing officials who do not know how to classify rainwater-harvesting systems consider them reclaimed water systems and therefore require plumbing engineers to design systems that conform to Appendix J of the UPC. This is because of the lack of guidance in the code. Since these systems are becoming more prevalent in the U.S., both the UPC and the IPC must include a section dedicated to rainwater harvesting.

Rainwater Harvesting Basics

The components of the rainwater-harvesting system include:

Roof. Rainwater should only be collected from a roof and stored in a cistern. Rainwater runoff from parking areas and other outdoor surfaces typically contain harsh chemicals and other contaminants that are undesirable in a rainwater catchment system.

Rainwater conductors. Leaders and gutters or an internally piped roof drainage system that conveys the storm water from the roof to the cistern.

Cistern. A storage tank that allows large particulate matter to settle out of the water.

Overflow from cistern. A pipe that takes overflow from the cistern to the storm drainage system.

Pumping system. Provides the pressure required at the fixture most distant from the tank.

Disinfection system. Various filtration and disinfection systems can be used.

Potable water makeup. Makeup water provided to the tank during dry seasons. Appropriate backflow prevention is required.

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But this is to CODE which may or may not apply…First you have to figure out where you are going to put the water.

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 http://www.braewater.com/index.php?/solutions/

Rainwater Harvesting

As much as 60,000 gallons of precipitation falls on a 2,000 square foot roof in Mid-Atlantic States each year. BRAE distributes Complete rainwater harvesting system solutions to put this water to beneficial use. Rainwater harvesting systems offset demands on municipal and private water supplies for outdoor watering while conserving valuable drinking water resources.

The concept of collecting and using rainwater is not new.

In addition to the advantages that rainwater is free of charge, it doesn’t have to be treated nor transported over long distances, the two most important arguments supporting the utilization of rainwater are:

1. Supplement drinking water resources
-with the benefit of saving precious potable water
2. protecting water quality by reducing impacts of stormwater runoff
-with the benefit of limiting flooding and degradation of streams and lakes

Thanks to its characteristics the use of rainwater also has positive advantages:
-Ideal for plant growth
-Better washing efficiency -up to 50% less detergent required when compared with hard water
-No calcification of fixtures and washing machines

All projects are not created equal and thus rainwater systems do not conform to a “one size fits all” sales format. There are different systems for two primary types of rainwater systems residential and commercial. Use the following resources to design and select the right system for your project.

Residential systems generally supply rainwater to toilets, washing machines, garden irrigation and hosebibs (ie car washing)

http://www.braewater.com/index.php?/products/tanks_cisterns/

Tanks/Cisterns

Water storage is the most critical component of a rainwater system. In selecting a water storage tank or cistern, there are several important questions you should ask before selecting the right tank for your project.Ask yourself…

Will I store the water above ground or below ground?
How much storage do I need?
Are there space limitations that restrict the size of water tank I may chose?
What appearance do I want for my tank?
Will the neighbors care?
Are there restrictions regarding water storage tanks?
Is my site accessible or hard to reach with a delivery truck?

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Energy Consumption And Water Consumption Go Hand In Hand – Throw it away throw it awa….

Only contrary to the new environmental mantra there really is an “away” to water. Once its befouled (I love that word), then un-befouling it is difficult. Take for instaces what is happening to the bulk of the fresh water in the world, the Artic and the Antartic ice sheets. If we are going to melt them off we would be better off trying to transport that water to some storage location like a dried up lake bed(s), than let it melt into the sea. Because then it is really hard to get it to be fresh water again. Same with pollution, once you dump contaminates into water then it is very hard to clean up. We have been doing that in a big way for 300 years.

http://www.timesonline.co.uk/tol/news/environment/article5562906.ece

January 22, 2009

Ecologists warn the planet

is running short of water

A swelling global population, changing diets and mankind’s expanding “water footprint” could be bringing an end to the era of cheap water.

The warnings, in an annual report by the Pacific Institute in California, come as ecologists have begun adopting the term “peak ecological water” — the point where, like the concept of “peak oil”, the world has to confront a natural limit on something once considered virtually infinite.

The world is in danger of running out of “sustainably managed water”, according to Peter Gleick, the president of the Pacific Institute and a leading authority on global freshwater resources.

Humans — via agriculture, industry and other demands – use about half of the world’s renewable and accessible fresh water. But even at those levels, billions of people live without the most basic water services, Dr Gleick said……..

A glass of orange juice, for example, needs 850 litres of fresh water to produce, according to the Pacific Institute and the Water Footprint Network, while the manufacture of a kilogram of microchips — requiring constant cleaning to remove chemicals — needs about 16,000 litres. A hamburger comes in at 2,400 litres of fresh water, depending on the origin and type of meat used:}

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Will Barack Obama Make A Great President? If he stands as tall on the environment and energy as he talks

He has said some very good things on the “Green Economy” or Sustainability. If he does what he says he will be a great President. If he doesn’t, he won’t be a great President. Simple as that.

http://www.ontheissues.org/2008/Barack_Obama_Environment.htm

Barack Obama on Environment

Democratic nomine for President; Junior Senator (IL)

Government should invest in clean energy & green jobs

Q: What would you do for the environment?OBAMA: It is critical that we understand this is not just a challenge, it?s an opportunity, because if we create a new energy economy, we can create five million new jobs, easily. It can be an engine that drives us into the future the same way the computer was the engine for economic growth over the last couple of decades. We can do it, but we?re going to have to make an investment. The same way the computer was originally invented by a bunch of government scientists who were trying to figure out, for defense purposes, how to communicate, we?ve got to understand that this is a national security issue, as well.

McCAIN: We can move forward, and clean up our climate, and develop green technologies, and alternative energies for battery-powered cars, so that we can clean up our environment and at the same time get our economy going by creating millions of jobs.

Source: 2008 second presidential debate against John McCain Oct 7, 2008

Willing to suspend ethanol subsidy to keep food prices down

Q: Ethanol usage in gas is criticized for raising food prices. Would you be willing to change ethanol subsidies so that people are not using corn for ethanol, & lowering food prices?A: We?ve got rising food prices here in the US. In other countries we?re seeing riots because of the lack of food supplies. So this is something that we?re going to have to deal with. There are a number of factors that go into this. Changes in climate are contributing. There?s no doubt that biofuels may be contributing to it. My top priority is making sure that people are able to get enough to eat. And if it turns out that we?ve got to make changes in our ethanol policy to help people get something to eat, then that?s got to be the step we take. But I also believe that ethanol has been a important transitional tool for us to start dealing with our long-term energy crisis ultimately. Over time we?re going to shift to cellulosic ethanol, where we?re not using food stocks but we?re using wood chips & prairie grass.

Source: Meet the Press: 2008 ?Meet the Candidates? series May 4, 2008

Genesis teaches stewardship of earth: sacrifice for future

Q: Could you give an example of how you relate your faith to science policy?A: One of the things I draw from the Genesis story is the importance of us being good stewards of the land, of this incredible gift. And I think there have been times where we haven?t been [good stewards], and this is one of those times where we?ve got to take the warning seriously [about climate change]. And part of what my religious faith teaches me is to take an intergenerational view, to recognize that we are borrowing thi planet from our children and our grandchildren. And this is where religious faith and the science of global warming converge: We have to find resources in ourselves to make sacrifices so we don?t leave it to the next generation. We?ve got to be less wasteful, both as a society and in our own individual lives. I think religion can actually bolster our desire to make those sacrifices now. As president, I hope to rally the entire world around the importance of us being good stewards of the land.

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And he has been saying these things all campaign long:

http://www.grist.org/feature/2007/07/30/obama_factsheet/

Obama on the Issues

A look at Barack Obama’s environmental platform and record

In the early months of Barack Obama’s presidential campaign, enviros were skeptical of his (now heavily qualified) support for coal-to-liquids technology and unvarnished enthusiasm for ethanol, but he earned their respect with his aggressive climate and energy plan. The plan centers on a cap-and-trade system that aims for 80 percent emission reductions from 1990 levels by 2050 and calls for auctioning 100 percent of the pollution permits. It also includes a $150 billion investment to boost clean energy and create green jobs, along with fine-grained proposals to boost efficiency, build a smart electricity grid, and encourage public transportation. Enviros have also applauded Obama’s refusal to endorse a gas-tax holiday and his now somewhat qualified opposition to offshore oil drilling. Obama earned an 86 percent rating from the League of Conservation Voters for his first three years representing Illinois in the U.S. Senate (a lower score than might have been because he missed some votes while campaigning for president).

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These folks are a good start:

http://enviros.barackobama.com/page/content/enviroshome

enviros.jpg

Welcome to our new website, Environmentalists for Obama!

Now, more than ever, our nation and world needs a strong environmental leader as President. The challenges posed by global warming and energy needs can only be solved by someone with a proven commitment and ability to engage all people in the critical effort to provide a safe, clean future for America. Barack Obama’s dedication to the environment has been well-established during his years as a state legislator and U.S. Senator. Environmentalists for Obama know that he is the answer to the tough challenges facing us today.


We represent people from all walks of life who are eager for a leader who will promote innovative solutions and reach across partisan and societal divides in our race to save the planet. Join us now to support Barack Obama’s vision for a cleaner, more secure future.

And please join the discussion on our blog. We only ask that participants show consideration and respect for each other. The Environmentalists for Obama blog is not an expression of the positions of Barack Obama or the campaign.

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There Is More Happening in Louisiana Than Brad Pitt – Go BeauSoleil

No offense meant because Pitt, Branford Marsealus and Harry Connick Jr. are doing great things in New Orleans but this is amazing…

http://www.youtube.com/watch?v=bsuziBrNeO4&feature=rec-HM-fresh+div

http://www.beausoleilhome.org/

solar-home.jpg

Welcome home

BeauSoleil, meaning “Beautiful Sun” in French or simply “Sunshine” in Cajun French has provided the inspiration and name for the University of Louisiana at Lafayette‘s Solar Decathlon Team. The BeauSoleil Louisiana Solar Home will serve as a culturally resonant, uniquely regional work of architecture and eventually a marketable prototype for the 2009 U.S. Department of Energy Solar Decathlon competition held on the Mall in Washington, DC. The competition will showcase the BeauSoleil Louisiana Solar home’s role as not only a cultural expression but a technological hybrid that advances the traditional homebuilding in our region.

The BeauSoleil Louisiana Solar Home team mission is to design and build a Solar Decathlon house that uses renewable energy sources in a culturally resonant form that also serve as a building model for other locations throughout the world facing similar climactic and natural challenges to those we face in Louisiana. Join us and our sponsors as we bring together the Cajun culture with the future of homebuilding, energy consumption and design. The Solar Decathlon is a worldwide competition between 20 colleges and universities to design, build, and operate the most attractive and energy-efficient solar-powered home.

Ed Begley, Jr. And His Bicycle Powered Toaster – Is this really good for the environment?

Is Ed Begley, Jr.  Silly? The answer is not so easy to discern.

http://www.youtube.com/watch?v=mkFr9XWaKuU

http://www.youtube.com/watch?v=28_3Rzw-VCA

http://www.youtube.com/watch?v=UPECtUoeqP8

September 17, 2007 5:01 AM PDT

Human energy harvesting–

a very silly idea

Posted by Peter Glaskowsky

http://news.cnet.com/8301-10784_3-9779334-7.html

Power to the people” was a popular rallying cry among anti-establishment activists in the 1960s.

“Power from the people” appears to be the latter-day equivalent.

The theory behind the slogan is that humans move around a lot, and the only result of all this motion is that the humans end up in a different place.

According to some, this isn’t good enough.

The MIT News reports that two MIT graduate students in architecture have proposed to extract energy from the motion of humans through public spaces such as train stations:

A responsive sub-flooring system made up of blocks that depress slightly under the force of human steps would be installed beneath the station’s main lobby. The slippage of the blocks against one another as people walked would generate power through the principle of the dynamo, a device that converts the energy of motion into that of an electric current.

But if there’s enough motion to provide harvestable energy, there’s enough motion for the humans to notice. Ever walked along a pedestrian suspension bridge that bounced under your feet? It takes more energy to walk on such a surface than it does on a rigid surface.

Where does that energy come from? From you, of course. It’s like carrying a parasite that takes a little bit of your energy. In fact, this approach is also called parasitic power generation. By keeping the parasite fed, you get a little more tired and you eat a little more food. In effect, you become a highly inefficient motor that runs on food.

Food calories are inefficient to produce. A wheat field is a giant biochemical solar panel that turns a small part of the sun’s energy into chemical compounds that you can eat.

And then those compounds have to be kept cool and transported large distances, then cooked and eaten. By comparison, traditional electric power generation is hugely more efficient.

So when you see celebrity Ed Begley Jr. using a stationary bicycle to turn a generator to power his toaster, remember that this is a crime against the environment–not environmentalism.

The same goes for parasitic energy generation–it creates exceptionally expensive energy. Nevertheless, there are places where this approach is entirely appropriate.

http://en.wikipedia.org/wiki/Energy_harvesting

Piezoelectric energy harvesting

The piezoelectric effect converts mechanical strain into electrical current or voltage. This strain can come from many different sources. Human motion, low-frequency seismic vibrations, and acoustic noise are everyday examples. Except in rare instances the piezoelectric effect operates in AC requiring time-varying inputs at mechanical resonance to be efficient.

Most piezoelectric electricity sources produce power on the order of milliwatts, too small for system application, but enough for hand-held devices such as some commercially-available self-winding wristwatches. One proposal is that they are used for micro-scale devices, such as in a device harvesting micro-hydraulic energy. In this device, the flow of pressurized hydraulic fluid drives a reciprocating piston supported by three piezoelectric elements which convert the pressure fluctuations into an alternating current.

Piezoelectric systems can convert motion from the human body into electrical power. DARPA has funded efforts to harness energy from leg and arm motion, shoe impacts, and blood pressure for low level power to implantable or wearable sensors. Careful design is needed to minimise user discomfort. These energy harvesting sources by association have an impact on the body. An international Workshop is organized by Virginia Tech on Piezoelectric Energy Harvesting [2] every year which reviews the past developments and current state of the technology .

The use of piezoelectric materials to harvest power has already become popular. Piezoelectric materials have the ability to transform mechanical strain energy into electrical charge. Piezo elements are being embedded in walkways [3] [4] to recover the “people energy” of footsteps. They can also be embedded in shoes [5] to recover “walking energy”.

Pyroelectric energy harvesting

The pyroelectric effect converts a temperature change into electrical current or voltage. It is analogous to the piezoelectric effect, which is another type of ferroelectric behavior. Like piezoelectricity, pyroelectricity requires time-varying inputs and suffers from small power outputs in energy harvesting applications. One key advantage of pyroelectrics over thermoelectrics is that many pyroelectric materials are stable up to 1200 C or more, enabling energy harvesting from high temperature sources and thus increasing thermodynamic efficiency. There is a pyroelectric scavenging device that was recently introduced, however, that doesn’t require time-varying inputs. The energy-harvesting device uses the edge-depolarizing electric field of a heated pyroelectric to convert heat energy into mechanical energy instead of drawing electric current off two plates attached to the crystal-faces. Moreover, stages of the novel pyroelectric heat engine can be cascaded in order to improve the Carnot efficiency.

 http://humanbatteries.com/

(:=}) The Human Batterry site is a movie site using a flash player technique. It argues that many houses use 3,000 watts a day that can be offset by energy harvest. There is also a game where you can generate electricity from typing on the key board of your computer. (:=})

 http://www2.computer.org/portal/web/csdl/doi/10.1109/MPRV.2005.8

This month’s Works in Progress column has four contributions. The first examines how harvesting environmental energy in sensor networks changes the way an application developer views energy management, and discusses prototype devices. The second proposes devices that combine energy harvesting and data acquisition. The third explores novel approaches for optimizing the power extracted using piezoelectric materials. The final one explores kinetic and thermal energy harvesting from human users’ activities.

http://portal.acm.org/citation.cfm?id=857199.858024

As the power requirements for microelectronics continue decreasing, environmental energy sources can begin to replace batteries in certain wearable subsystems. In this spirit, this paper examines three different devices that can be built into a shoe, (where excess energy is readily harvested) and used for generating electrical power “parasitically” while walking. Two of these are piezoelectric in nature: a unimorph strip made from piezoceramic composite material and a stave made from a multilayer laminate of PVDF foil. The third is a shoe-mounted rotary magnetic generator. Test results are given for these systems, their relative merits and compromises are discussed, and suggestions are proposed for improvements and potential applications in wearable systems. As a self-powered application example, a system had been built around the piezoelectric shoes that periodically broadcasts a digital RFID as the bearer wal

http://www.citeulike.org/user/ingedwar/article/2940413 

Over the past few decades, the use of portable and wearable electronics has grown steadily. These devices are becoming increasingly more powerful, however, the gains that have been made in the device performance has resulted in the need for significantly higher power to operate the electronics. This issue has been further complicated due to the stagnate growth of battery technology over the past decade. In order to increase the life of these electronics, researchers have begun investigating methods of generating energy from ambient sources such that the life of the electronics can be prolonged. Recent developments in the field have led to the design of a number of mechanisms that can be used to generate electrical energy, from a variety of sources including thermal, solar, strain, inertia, etc. Many of these energy sources are available for use with humans, but their use must be carefully considered such that parasitic effects that could disrupt the user’s gait or endurance are avoided. This study develops a novel energy harvesting backpack that can generate electrical energy from the differential forces between the wearer and the pack. The goal of this system is to make the energy harvesting device transparent to the wearer such that his or her endurance and dexterity is not compromised. This will be accomplished by replacing the strap buckle with a mechanically amplified piezoelectric stack actuator. Piezoelectric stack actuators have found little use in energy harvesting applications due to their high stiffness which makes straining the material difficult. This issue will be alleviated using a mechanically amplified stack which allows the relatively low forces generated by the pack to be transformed to high forces on the piezoelectric stack. This paper will develop a theoretical model of the piezoelectric buckle and perform experimental testing to validate the model accuracy and energy harvesting performance.

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Hunter Lake Meeting December 3rd at UIS – CWLP and the City of Springfield wastes more of your money

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Who knows how much the video will cost, but the permit will cost $10,000. The City is never going to be able to raise the money in the current credit crunch to finance Hunter Lake. So why do they keep throwing good money after bad? Want a hint, BTRSSABTECWI.

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http://sustainablespringfield.org/ssblog/

An Appeal from Don Hanrahan About Hunter Lake & Dam

October 17th, 2008

Just when you think this dinosaur might actually go extinct, it rears its ugly head.  I am writing to ask for your support and for that of the members of your groups/organizations.  Specifically, I seek notification of your members of this pressing environmental concern, and everyone’s input regarding planning for a large and critically important public hearing which has now been scheduled.

CWLP has decided once again to press ahead with the permit process for Hunter Dam.  CWLP needs two permits:  one from Illinois EPA (effect of dam on water quality) and one from the U.S. Army Corps of Engineers (to impound waters by building a dam). 

The last public hearing – a joint hearing sponsored by IEPA and the U.S. ACE – will be held on December 3, 2008 at UIS Brookens Auditorium, beginning at 3 p.m., running until 5:00 p.m., then a break for supper, and resuming again (I believe) at 7:00 p.m.  I will pass on the details as they become available.

Both the IEPA and ACE will also allow, and concentrate heavily on, WRITTEN COMMENTS submitted within a specified deadline ( I do not know what that is at present – usually within 30 days of the end of the hearing).  The public hearing itself presents a superb opportunity for the environmental community to make its voice heard on this issue.

I am writing to you all with the hope that we can hold a meeting within the next 2-3 weeks of any and all interested folks, with notice to the environmental community at large and to your mailing lists, to prepare for this opportunity.  I can reserve the library or some similar convenient location.

Citizens for Sensible Water Use has lots of  factual information we have gathered and distilled over the years.  We are working hard right now on a  document that addresses every position taken in FAVOR of building the dam with factual information that rebuts each and every point.  At a public hearing, it is essential that the opposition comes armed to the teeth.  Each speaker will get five minutes, no more.  Every speaker and every group should send written comments.

PLEASE LET ME KNOW IF YOU THINK MY MEETING IDEA IS A GOOD ONE.  It’s been a long time since I’ve done any actual organizing; my rabble rousing on the issue is fine, but this requires some help and expertise from respected folks such as yourselves, and the dedicated members of the organizations.  We am open to anything you folks suggest!

Donald J. Hanrahan
Citizens For Sensible Water Use
1119 S. Sixth
Springfield, IL 62703
217-789-1200

DonaldHanrahan@aol.com

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For the meeting notice:

http://www.epa.state.il.us/public-notices/2008/cwlp-hunter-lake/index.pdf

City of Springfield – City Water, Light and Power (Hunter Lake)

  • Public Hearing Date: December 3, 2008
  • Public Comment Period Ends: January 5, 2009
  • Available Documents:

More of the 40 years of Drivel:

http://www.sj-r.com/news/x466653166/CWLP-to-film-Hunter-Lake-informational-video

CWLP to film Hunter Lake info video


THE STATE JOURNAL-REGISTER

Posted Nov 12, 2008 @ 11:52 PM

Last update Nov 13, 2008 @ 06:31 AM


As the city of Springfield pursues a permit to build a second lake, City Water, Light and Power officials this week will film an informational video that will cram Hunter Lake’s 40-plus years of history into 30 minutes.It’ll probably never make the Big Screen, but it will be aired on Municipal Channel 18 and available on CD in a few weeks.The video will explain the history of providing water in Springfield, the present sources, needs in a drought and alternatives to Hunter Lake, said Tom Skelly, CWLP water division manager. It’s an attempt to educate the public, he said.

“There’s a lot of misinformation flying around,” Skelly said.

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By the way, Skelly wouldn’t know misinformation if it bit him anywhere.