Archive for September, 2009
Water Damage Restoration Recommendations Spring Hill
Water Damage Restoration Recommendations
IICRC Storm Damage Restoration Recommendations
The following information is submitted by the Institute of Inspection, Cleaning and Restoration Certification (IICRC) as a public service to those who have suffered water-related losses due to storm damage (e.g., hurricane, tornado).
Since there are many variables involved in deciding about appropriate restoration steps, users of this information assume any and all liability for implementing the procedures covered herein.
The following recommendations assume water-related storm damage to residential or light commercial structures. For recommendations regarding restoration of major commercial properties and building assemblies, it is important to consult with professionals who have specific training and experience in this area.
Whether insured or not, it is important for property owners to document damage with photographs or video, and immediately, to begin loss mitigation procedures themselves; or hire a qualified contractor to do this on their behalf.
It is totally inappropriate to put off mitigation while waiting for an insurance claims representative to arrive on the scene to evaluate the loss. By that time, in all probability sufficient time will have passed to grow and amplify microorganisms, which may not be covered by insurance. Loss mitigation is defined by insurance policies as “reasonable and prudent measures designed to preserve, protect and secure property from further damage,” including microbial growth and amplification.
According to the IICRC Standard and Reference Guide for Professional Water Damage Restoration (IICRC S500), there are three categories of water that cause damage in buildings. They are summarized as follows:
Category 1 Water – That which is clean at the releasing source and does not pose a hazard if consumed by humans. Category 1 water may become progressively contaminated as it mixes with soils on or within floor coverings or building assemblies (walls, decking, subflooring).
Time and temperature, which promote the growth and amplification of microorganisms in water can cause Category 1 water to degrade. Examples: burst water pipes, failed supply lines on appliances, vertically falling rainwater.
Category 2 Water – That which begins with some degree of contamination and could cause sickness or discomfort if consumed by humans. As with Category 1 water, time and temperature can cause Category 2 water to become progressively more contaminated.
Category 3 Water – That which is highly contaminated and could cause death or serious illness if consumed by humans. Examples: sewage, rising flood water from rivers and streams, ground surface water flowing horizontally into homes. There are two ways in which water enters a building as a result of wind storm damage:
The first involves falling or windblown rainwater that enters as a result of damage to roof components or wall assemblies. The second involves horizontally traveling ground surface water (Category 3) containing silt and soil contaminants that infiltrate into structures, generally through doors or around foundation walls.
This ground surface water (storm surge) may accumulate to a depth of several inches or several feet. When structures are partially submerged or remain substantially flooded for weeks, far more elaborate procedures usually are required.
Most household microorganisms (fungi, bacteria) typically require five conditions for germination, growth, amplification and dissemination. Generally, they include:
• organic food source, especially cellulose (e.g., paper, wood), which are found in abundance in construction materials
• moisture, even high humidity (67% RH plus)
• moderate temperature – 68-86°F/20-30°C
• stagnant air
• time – several hours to several days
Anything that can be done to control or minimize these optimum conditions will prolong the time required for microbial growth.
With the above background information in mind, loss mitigation procedures may include but are not necessarily limited to:
A. Foremost, consider safety:
1. Structural Integrity – Before entering a storm or flood-damaged structure, consider structural integrity, which may be impacted by the force of the wind on, or the force of the water entering the structure. When in doubt, obtain an evaluation by a licensed and qualified builder or structural engineer before entering.
2. Ventilation – Fresh moving air discourages the growth and amplification of microorganisms. Open windows and doors and air the structure out thoroughly. It is highly recommended that ventilation be maintained during and following the restoration effort, or until damp areas can be contained and subjected to mechanical dehumidification (HVAC or specialized equipment). This reduces, but does not eliminate, inhalation of microorganisms.
3. Shock Hazards – Ensure that electrical shock hazards have been eliminated by turning off the supply of electricity (circuit breakers) to damaged areas. Anticipate that electricity may be restored suddenly without notice.
4. Personal Protective Equipment – Wear protective clothing, boots with steel or fiberglass shanks, and a hard hat. Protect yourself from injury or exposure to microorganisms. Wear protective gloves before handling contaminated materials. Splash goggles are highly recommended to protect and prevent microorganism entry through the eyes. An organic vapor respirator (paint respirator) is highly recommended to prevent inhalation of most microorganisms or spores.
B. Remove quantities of debris (silt, vegetation, floating objects brought in by storm surge), if present, with shovels, rakes, etc.
Carefully clean all tools with appropriate detergents after use.
C. Identify the source of water and extent of wetting:
1. When wind-blown rain water enters a building, it is important to identify the route of entry and to trace its path, as possible, to identify all wet components (ceilings, walls, insulation, framing). Professional water restoration contractors, when available, have specialized water-detection equipment and may be available to assist in this determination.
2. In rising water situations, typically there will be a visible water line on drywall or paneling. However, water may migrate or wick upward within the wall material itself or within insulation behind the wall.
D. Remove unsalvable or wet materials:
1. When wetting is caused by storm damage and comes from overhead or around openings in the building envelope, and especially when power has been interrupted in hot climates, it is important to remove wet components, as possible, to expose pockets of saturation to air circulation before microbial growth can occur.
o Begin at the point of water entry and trace the path of wetting, removing ceiling and wall components and insulation as you go.
o Although it may be possible for professionals with specialized equipment to dry carpet, pad and subflooring materials, when damage is wholesale in an area, seldom will qualified contractors be available to respond for this work. Therefore, it is normally prudent to remove saturated carpet and pad.
o It is highly recommended that solid or laminated wood flooring, or sheet vinyl be removed to expose pockets of saturation.
2. In rising water situations (storm surge with contaminated ground water):
o Remove and dispose of drywall (Sheetrock®), paneling or other wall materials up to a point 15-24″ inches above the water line visible on the wall. If possible, stay within four feet of the floor to salvage as much wall material as possible, since drywall is usually installed horizontally in 4’x8’ or 4’x12’ panels.
o Remove and dispose of wet insulation materials exposed during wall removal. Look for evidence of moisture wicking up insulation materials. Leave only wall framing components that are durable and minimally porous, and which can be cleaned and decontaminated with relative ease.
o Remove and dispose of floor coverings; carpet, cushion, pad, felt and sheet vinyl, laminate, or tile flooring materials. Porous materials may absorb considerable quantities of water and contaminant, and non-porous materials may trap moisture to prolong drying. The inevitable result will be rapid microorganism growth, along with associated odor and health hazards. Hardwood flooring should be removed since contaminants and moisture will collect underneath in the flutes or hollow areas between the hardwood and the subfloor.
E. With Category 1 (clean source) water (e.g., rainwater), drying is the next course of action required to prevent on-going damage due to microbial development.
The following procedures may require the assistance of a professional water damage restoration company, if available, which has trained technicians, specialized cleaners, biocides, extraction, drying and dehumidifying equipment, and moisture measuring and monitoring instruments.
F. With ground surface water (Category 3), steps for cleaning soil residues brought in by heavy rainfall or storm surge may include, but are not limited to the following:
1. Since many biocides are inactivated by quantities of organic contaminants, cleaning always should precede biocide application.
2. When fresh water is restored within the structure, mix an appropriate general-purpose household cleaner according to label directions and liberally spray it onto salvable components.
3. Brush agitation may be required to evenly distribute cleaning solutions, followed by at least ten minutes of “dwell time” for soil suspension.
4. Where appropriate, flush contaminants from salvageable surfaces with a water hose or pressure washer. Work from top-to-bottom and from walls-to-flooring.
5. Wet vacuum or mop up excess rinse water from flooring materials immediately. Be sure to thoroughly flush all contamination from wall frame (sill plate) areas. Pressure washing, if available, is specifically recommended to flush contaminants from hard-to-access areas, followed by removal of contaminated water with industrial wet vacuuming equipment.
6. Repeat steps 6-9 as necessary, until all surfaces are clean and contamination is physically removed.
G. Disinfecting:
1. Applying disinfectants or biocides usually is unnecessary with Category 1 (clean source) water, since this may only serve to introduce additional moisture into the building, which may prolong drying.
2. With Category 2 or 3 water contamination, while maintaining ventilation and skin and respiratory protection, liberally spray cleaned salvageable materials (studs, decking, joists, etc.) with an appropriate biocide. A 6% solution of household chlorine bleach (e.g., Clorox®) mixed 1 part bleach to 11 parts water (½%) may be used on durable, colorfast surfaces. Never mix chlorine bleach with ammonia or strong acids! An appropriate alternative to chlorine bleach may be a 3% solution of hydrogen peroxide.
3. In rising water situations, following application of properly diluted biocides, brush agitate all areas to encourage biocide distribution and penetration into cracks and crevices.
H. Dry structural components with plenty of air circulation, while maintaining constant ventilation (weather conditions permitting). If possible, take advantage of low outside humidity (check local weather reports). Use oscillating or box fans, repositioning them within the structure every few hours. Avoid temperature extremes that might slow drying, or promote microorganism growth (around 72-75oF/22-24oC is ideal). Rent high-volume professional drying equipment (airmovers and dehumidifiers) if available, especially in areas where ventilation is not possible (sealed buildings, security problems). It is highly recommended that electrical components that were wet be checked for operational safety by a qualified contractor.
I. Leave cleaned structural surfaces exposed to fresh air movement for several days or even weeks, or until you are sure that they have returned to within four percentage points of normal moisture content (MC) levels (generally the normal MC of structural wood is around 10%). Otherwise, subsequent structural damage and/or health effects may result after wall and flooring materials have been replaced or painted. Professional water restoration contractors with specialized, high-capacity drying equipment can shorten drying times considerably.
J. Reconstruct or replace components as required.
Where financial resources permit, it is highly recommended that comprehensive restoration be accomplished. Consider hiring a professional restorer to evaluate moisture levels in structural materials before reconstruction.
Back in Spring Hill Working on Mold Remediation/Removal at a Business 1-877-DRY-ME-OUT 1-877-379-6368 www.DryMeOut.com
Advanced Restoration Inc.
Back in Spring Hill today working on a small business with a large mold problem. People, please keep your a/c on at all times while the humidity is so high. High humidity causes mold just as fast as a water damage. Remember if you ever have a concern… or just curious, we offer FREE inspections always. Advanced Restoration to the rescue….
“Restoring Lives Everyday”
1-877-DRY-ME-OUT
1-877-379-6368
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Spring Hill Home Flooded….Extensive Water Damage 1-877-DRY-ME-OUT 1-877-379-6368 www.DryMeOut.com
Yesterday Advanced Restoration was working on restoring a home in Spring Hill that flooded due to a rotted water line. We are working side by side with the homeowner’s insurance company to remediate the problem and restore the home “Better Than it was Before”.
1-877-DRY-ME-OUT
1-877-379-6368
www.DryMeOut.com
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Relative Humidity, Water Damage & Mold Damage
This time of year when the rains season is at its peak and temperatures are topping the charts let’s not forget the silent thickness of Relative Humidity. (RH) Have you ever wondered why you instantly sweat on a cloudy day with no sun in sight? How about opening the windows to cool down but it just doesn’t seem to help. The best thing you can do is to keep your AC running at a consistent temperature to help regulate the RH in your home.
In the past month we have had several calls from tenants or realtors who thought they were saving electricity by turning off the AC to an unoccupied building or home. But in reality they were causing more damage than they realized. Water and Mold Damage. During the rainy season here in Florida the RH can soar to the high 80s on a daily basis and if you are not cooling your home or business whether occupied or not you are creating a moisture problem. Moisture problem is a common production area for mold to grow and colonize. Mold typically needs a food source, moisture and stagnant air. So an unoccupied building with no AC and the RH in the high 80s is perfect.
Prevention is the best thing you can do as a home or property owner. Have your AC unit checked before un-occuping your home or business. Keep the temperature regulated and check your property on a regular basis. If you detect a musty smell or notice mold growth call the experts at Advanced Restoration Inc. We are the experts in Water, Mold and Sewer Damage in the Tampa, New Port Richey, Spring Hill, Clearwater and St Pete areas. It does not cost you a thing to give us a call and come inspect your home or business for free. Call 1-877-Dry-Me-Out or check us out on the web at www.DryMeOut.com
Water Damage in New Port Richey www.drymeout.com 1-877-Dry-Me-Out
We have just started a full house flood in the New Port Richey area. Advanced Restoration Inc was on site in under an hour and started fixing the issue. Stay tuned for more details and photos.
What you should do and who you should call if you have a water damage or mold problem. 1-877-DRY-ME-OUT 1-877-DRY-ME-OUT www.DryMeOut.com “Dry Me Out”
When it comes to water, damage might be the last place you would expect to encounter major problems, but don’t allow the dry and dusty landscape to deceive you; water damage take can take place anywhere and at any time. Broken pipes, flash flooding or even septic problems can result in extensive water related damage throughout your home or office.
Time is of the essence when water damage strikes. Rather than spending precious time searching for all the different types of companies that work with water damage repair residents should use a single point of contact able to meet all their needs at once. The most urgent requirements include:
•Water extraction services; mold and mildew can begin growing in as little as 24 to 48 hours. Search for a company that provides 24/7 assistance and a one year guarantee – preferably with the ability to store your furniture and belonging in the meantime.
•Water damage repair; carpeting, wood floors, drywall and furniture may all be impacted by water damage. Use a company that is fully licensed, bonded and insured as well as certified in water damage repair in order to avoid extensive insurance rate hikes and payment delays.
•Removal of contaminated materials. Depending upon the source of the water your home and belongings may be contaminated with anything from raw sewage to petroleum based products. Due to the health risk, contaminated products must be properly disposed of and the remaining area treated. Find a qualified water damage expert able to remove and properly dispose of contaminated materials then provide proper treatment including sanitizing and disinfecting impacted areas.
Although it might seem tempting to grab a wet/dry vac and try to do it yourself that is usually a big mistake and very costly in the long run. Insurance companies, mortgage underwriters and home buyers are increasingly turning to C.L.U.E. reports before purchasing a home. Failure to professionally clean, treat and mitigate water related damages may result in a reduction of selling price and increased insurance premiums for years to come. Since C.L.U.E. reports remain with the home, not the homeowner, there is no reliable method to “un-do” the damage once it has been done. Plan to demonstrate that all repairs were performed by professionals in accordance to recognized standards in the industry by selecting a reputable water damage repair and mitigation company like Advanced Restoration Inc. Their nationwide reputation and certification by the Institute of Inspection, Cleaning and Restoration assures the work was performed to the highest standards.



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