Showing posts with label Mold. Show all posts
Showing posts with label Mold. Show all posts
Thursday, 7 March 2019
Monday, 6 November 2017
Many organic compounds are known to cause cancer in animals; some are suspected of causing, or are known to cause, cancer in humans.
Harmful VOCs typically are not acutely toxic, but have compounding long-term health effects.
Because the concentrations are usually low and the symptoms slow to develop, research into VOCs and their effects is difficult.
VOCs in the air, water, and land.
Biologically generated VOCs[edit]
Not counting methane, biological sources emit an estimated 1150 teragrams of carbon per year in the form of VOCs.[15] The majority of VOCs are produced by plants, the main compound being isoprene. The remainder are produced by animals, microbes, and fungi, such as molds.
The strong odor emitted by many plants consists of green leaf volatiles, a subset of VOCs. Emissions are affected by a variety of factors, such as temperature, which determines rates of volatilization and growth, and sunlight, which determines rates of biosynthesis. Emission occurs almost exclusively from the leaves, the stomata in particular. A major class of VOCs is terpenes, such as myrcene. Providing a sense of scale, a forest 62,000 km2 in area (the US state of Pennsylvania) is estimated to emit 3,400,000 kilograms of terpenes on a typical August day during the growing season. VOCs should be a factor in choosing which trees to plant in urban areas.
Anthropogenic sources
Anthropogenic sources emit about 142 teragrams of carbon per year in the form of VOCs.
Specific components
Paints and coatings
A major source of man-made VOCs are coatings, especially paints and protective coatings. Solvents are required to spread a protective or decorative film. Approximately 12 billion litres of paints are produced annually. Typical solvents are aliphatic hydrocarbons, ethyl acetate, glycol ethers, and acetone. Motivated by cost, environmental concerns, and regulation, the paint and coating industries are increasingly shifting toward aqueous solvents.[20]
Chlorofluorocarbons and chlorocarbons
Chlorofluorocarbons, which are banned or highly regulated, were widely used cleaning products and refrigerants. Tetrachloroethene is used widely in dry cleaning and by industry.
Fossil fuels
The use of fossil fuels produces VOC's either directly as products (e.g., gasoline) or indirectly as byproducts (e.g., automobile exhaust gas).[citation needed]
Benzene
Main article: Benzene
One VOC that is a known human carcinogen is benzene, which is a chemical found in environmental tobacco smoke, stored fuels, and exhaust from cars. Benzene also has natural sources such as volcanoes and forest fires. It is frequently used to make other chemicals in the production of plastics, resins, and synthetic fibers. Benzene evaporates into the air quickly and the vapor of benzene is heavier than air allowing the compound to sink into low-lying areas. Benzene has also been known to contaminate food and water and if digested can lead to vomiting, dizziness, sleepiness, rapid heartbeat, and at high levels, even death may occur.[citation needed]
Methylene chloride
Methylene chloride can be found in adhesive removers and aerosol spray paints. In the human body, methylene chloride is metabolized to carbon monoxide. If a product that contains methylene chloride needs to be used the best way to protect human health is to use the product outdoors. If it must be used indoors, proper ventilation will help to keep exposure levels down.[citation needed] In the United States, methylene chloride is listed as exempt from VOC status.
Perchloroethylene
Perchloroethylene is a volatile organic compound that has been linked to causing cancer in animals. It is also suspected to cause many of the breathing related symptoms of exposure to VOCs.[citation needed] Perchloroethylene is used mostly in dry cleaning. While dry cleaners recapture perchloroethylene in the dry cleaning process to reuse it, some environmental release is unavoidable.
MTBE
MTBE was banned in certain states within the US around 2004 in order to limit further contamination of drinking water aquifers (groundwater) primarily from leaking underground gasoline storage tanks where MTBE was used as an octane booster and oxygenated-additive.[citation needed]
Formaldehyde
Many building materials such as paints, adhesives, wall boards, and ceiling tiles slowly emit formaldehyde, which irritates the mucous membranes and can make a person irritated and uncomfortable. Formaldehyde emissions from wood are in the range of 0.02–0.04 ppm. Relative humidity within an indoor environment can also affect the emissions of formaldehyde. High relative humidity and high temperatures allow more vaporization of formaldehyde from wood-materials.
Indoor air
Main article: Indoor air quality
Since many people spend much of their time indoors, long-term exposure to VOCs in the indoor environment can contribute to sick building syndrome. In offices, VOC results from new furnishings, wall coverings, and office equipment such as photocopy machines, which can off-gas VOCs into the air. Good ventilation and air-conditioning systems are helpful at reducing VOCs in the indoor environment. Studies also show that relative leukemia and lymphoma can increase through prolonged exposure of VOCs in the indoor environment.
In the United States, there are two standardized methods for measuring VOCs, one by the National Institute for Occupational Safety and Health (NIOSH) and another by OSHA. Each method uses a single component solvent; butanol and hexane cannot be sampled, however, on the same sample matrix using the NIOSH or OSHA method.
The aromatic VOC compound benzene, emitted from exhaled cigarette smoke, is labeled as carcinogenic and is ten times higher in smokers than in nonsmokers.
EPA has found concentrations of VOCs in indoor air to be 2 to 5 times greater than in outdoor air and sometimes far greater.[14] During certain activities indoor levels of VOCs may reach 1,000 times that of the outside air. Studies have shown that individual VOC emissions by themselves are not that high in an indoor environment, but the indoor total VOC (TVOC) concentrations can be up to five times higher than the VOC outdoor levels.[29] New buildings especially, contribute to the highest level of VOC off-gassing in an indoor environment because of the abundant new materials generating VOC particles at the same time in such a short time period. In addition to new buildings, we also use many consumer products that emit VOC compounds, therefore the total concentration of VOC levels is much greater within the indoor environment.
VOC concentration in an indoor environment during winter is three to four times higher than the VOC concentrations during the summer. High indoor VOC levels are attributed to the low rates of air exchange between the indoor and outdoor environment as a result of tight-shut windows and the increasing use of humidifiers.
Indoor air quality measurements
Measurement of VOCs from the indoor air is done with sorption tubes e. g. Tenax® (for VOCs and SVOCs) or DNPH-cartridges (for carbonyl-compounds). The VOCs adsorb on these materials and are afterwards desorbed either thermally (Tenax®) or by elution (DNPH) and then analyzed by GC-MS/FID or HPLC. Reference gas mixtures are required for quality control of these VOC-measurements.[32] Furthermore, VOC emitting products used indoors, e. g. building products and furniture, are investigated in emission test chambers under controlled climatic conditions.[33] For quality control of these measurements round robin tests are carried out, therefore reproducibly emitting reference materials are ideally required.
Regulation of indoor VOC emissions
In most countries, a separate definition of VOCs is used with regard to indoor air quality that comprises each organic chemical compound that can be measured as follows: Adsorption from air on Tenax TA, thermal desorption, gas chromatographic separation over a 100% nonpolar column (dimethylpolysiloxane). VOC (volatile organic compounds) are all compounds that appear in the gas chromatogram between and including n-hexane and n-hexadecane. Compounds appearing earlier are called VVOC (very volatile organic compounds); compounds appearing later are called SVOC (semi-volatile organic compounds). See also these standards: ISO 16000-6, ISO 13999-2, VDI 4300-6, German AgBB evaluating scheme, German DIBt approval scheme, GEV testing method for the EMICODE. Some overviews over VOC emissions rating schemes[34] have been collected and compared.
France, Germany and Belgium have enacted regulations to limit VOC emissions from commercial products, and industry has developed numerous voluntary ecolabels and rating systems, such as EMICODE, M1, Blue Angel and Indoor Air Comfort[38] In the United States, several standards exist; California Standard CDPH Section 01350[39] is the most popular one. Over the last few decades, these regulations and standards changed the marketplace, leading to an increasing number of low-emitting products: The leading voluntary labels report that licenses to several hundreds of low-emitting products have been issued (see the respective webpages such as MAS Certified Green.- Certified Products).
Health risks
Respiratory, allergic, or immune effects in infants or children are associated with man-made VOCs and other indoor or outdoor air pollutants.
Some VOCs, such as styrene and limonene, can react with nitrogen oxides or with ozone to produce new oxidation products and secondary aerosols, which can cause sensory irritation symptoms. Unspecified VOCs are important in the creation of smog.
Health effects include eye, nose, and throat irritation; headaches, loss of coordination, nausea; and damage to the liver, kidney, and central nervous system. Some organics can cause cancer in animals; some are suspected or known to cause cancer in humans. Key signs or symptoms associated with exposure to VOCs include conjunctival irritation, nose and throat discomfort, headache, allergic skin reaction, dyspnea, declines in serum cholinesterase levels, nausea, vomiting, nose bleeding, fatigue, dizziness.[citation needed]
The ability of organic chemicals to cause health effects varies greatly from those that are highly toxic, to those with no known health effects. As with other pollutants, the extent and nature of the health effect will depend on many factors including level of exposure and length of time exposed. Eye and respiratory tract irritation, headaches, dizziness, visual disorders, and memory impairment are among the immediate symptoms that some people have experienced soon after exposure to some organics. At present, not much is known about what health effects occur from the levels of organics usually found in homes. Many organic compounds are known to cause cancer in animals; some are suspected of causing, or are known to cause, cancer in humans.
https://en.wikipedia.org/wiki/Volatile_organic_compound
Because the concentrations are usually low and the symptoms slow to develop, research into VOCs and their effects is difficult.
VOCs in the air, water, and land.
Biologically generated VOCs[edit]
Not counting methane, biological sources emit an estimated 1150 teragrams of carbon per year in the form of VOCs.[15] The majority of VOCs are produced by plants, the main compound being isoprene. The remainder are produced by animals, microbes, and fungi, such as molds.
The strong odor emitted by many plants consists of green leaf volatiles, a subset of VOCs. Emissions are affected by a variety of factors, such as temperature, which determines rates of volatilization and growth, and sunlight, which determines rates of biosynthesis. Emission occurs almost exclusively from the leaves, the stomata in particular. A major class of VOCs is terpenes, such as myrcene. Providing a sense of scale, a forest 62,000 km2 in area (the US state of Pennsylvania) is estimated to emit 3,400,000 kilograms of terpenes on a typical August day during the growing season. VOCs should be a factor in choosing which trees to plant in urban areas.
Anthropogenic sources
Anthropogenic sources emit about 142 teragrams of carbon per year in the form of VOCs.
Specific components
Paints and coatings
A major source of man-made VOCs are coatings, especially paints and protective coatings. Solvents are required to spread a protective or decorative film. Approximately 12 billion litres of paints are produced annually. Typical solvents are aliphatic hydrocarbons, ethyl acetate, glycol ethers, and acetone. Motivated by cost, environmental concerns, and regulation, the paint and coating industries are increasingly shifting toward aqueous solvents.[20]
Chlorofluorocarbons and chlorocarbons
Chlorofluorocarbons, which are banned or highly regulated, were widely used cleaning products and refrigerants. Tetrachloroethene is used widely in dry cleaning and by industry.
Fossil fuels
The use of fossil fuels produces VOC's either directly as products (e.g., gasoline) or indirectly as byproducts (e.g., automobile exhaust gas).[citation needed]
Benzene
Main article: Benzene
One VOC that is a known human carcinogen is benzene, which is a chemical found in environmental tobacco smoke, stored fuels, and exhaust from cars. Benzene also has natural sources such as volcanoes and forest fires. It is frequently used to make other chemicals in the production of plastics, resins, and synthetic fibers. Benzene evaporates into the air quickly and the vapor of benzene is heavier than air allowing the compound to sink into low-lying areas. Benzene has also been known to contaminate food and water and if digested can lead to vomiting, dizziness, sleepiness, rapid heartbeat, and at high levels, even death may occur.[citation needed]
Methylene chloride
Methylene chloride can be found in adhesive removers and aerosol spray paints. In the human body, methylene chloride is metabolized to carbon monoxide. If a product that contains methylene chloride needs to be used the best way to protect human health is to use the product outdoors. If it must be used indoors, proper ventilation will help to keep exposure levels down.[citation needed] In the United States, methylene chloride is listed as exempt from VOC status.
Perchloroethylene
Perchloroethylene is a volatile organic compound that has been linked to causing cancer in animals. It is also suspected to cause many of the breathing related symptoms of exposure to VOCs.[citation needed] Perchloroethylene is used mostly in dry cleaning. While dry cleaners recapture perchloroethylene in the dry cleaning process to reuse it, some environmental release is unavoidable.
MTBE
MTBE was banned in certain states within the US around 2004 in order to limit further contamination of drinking water aquifers (groundwater) primarily from leaking underground gasoline storage tanks where MTBE was used as an octane booster and oxygenated-additive.[citation needed]
Formaldehyde
Many building materials such as paints, adhesives, wall boards, and ceiling tiles slowly emit formaldehyde, which irritates the mucous membranes and can make a person irritated and uncomfortable. Formaldehyde emissions from wood are in the range of 0.02–0.04 ppm. Relative humidity within an indoor environment can also affect the emissions of formaldehyde. High relative humidity and high temperatures allow more vaporization of formaldehyde from wood-materials.
Indoor air
Main article: Indoor air quality
Since many people spend much of their time indoors, long-term exposure to VOCs in the indoor environment can contribute to sick building syndrome. In offices, VOC results from new furnishings, wall coverings, and office equipment such as photocopy machines, which can off-gas VOCs into the air. Good ventilation and air-conditioning systems are helpful at reducing VOCs in the indoor environment. Studies also show that relative leukemia and lymphoma can increase through prolonged exposure of VOCs in the indoor environment.
In the United States, there are two standardized methods for measuring VOCs, one by the National Institute for Occupational Safety and Health (NIOSH) and another by OSHA. Each method uses a single component solvent; butanol and hexane cannot be sampled, however, on the same sample matrix using the NIOSH or OSHA method.
The aromatic VOC compound benzene, emitted from exhaled cigarette smoke, is labeled as carcinogenic and is ten times higher in smokers than in nonsmokers.
EPA has found concentrations of VOCs in indoor air to be 2 to 5 times greater than in outdoor air and sometimes far greater.[14] During certain activities indoor levels of VOCs may reach 1,000 times that of the outside air. Studies have shown that individual VOC emissions by themselves are not that high in an indoor environment, but the indoor total VOC (TVOC) concentrations can be up to five times higher than the VOC outdoor levels.[29] New buildings especially, contribute to the highest level of VOC off-gassing in an indoor environment because of the abundant new materials generating VOC particles at the same time in such a short time period. In addition to new buildings, we also use many consumer products that emit VOC compounds, therefore the total concentration of VOC levels is much greater within the indoor environment.
VOC concentration in an indoor environment during winter is three to four times higher than the VOC concentrations during the summer. High indoor VOC levels are attributed to the low rates of air exchange between the indoor and outdoor environment as a result of tight-shut windows and the increasing use of humidifiers.
Indoor air quality measurements
Measurement of VOCs from the indoor air is done with sorption tubes e. g. Tenax® (for VOCs and SVOCs) or DNPH-cartridges (for carbonyl-compounds). The VOCs adsorb on these materials and are afterwards desorbed either thermally (Tenax®) or by elution (DNPH) and then analyzed by GC-MS/FID or HPLC. Reference gas mixtures are required for quality control of these VOC-measurements.[32] Furthermore, VOC emitting products used indoors, e. g. building products and furniture, are investigated in emission test chambers under controlled climatic conditions.[33] For quality control of these measurements round robin tests are carried out, therefore reproducibly emitting reference materials are ideally required.
Regulation of indoor VOC emissions
In most countries, a separate definition of VOCs is used with regard to indoor air quality that comprises each organic chemical compound that can be measured as follows: Adsorption from air on Tenax TA, thermal desorption, gas chromatographic separation over a 100% nonpolar column (dimethylpolysiloxane). VOC (volatile organic compounds) are all compounds that appear in the gas chromatogram between and including n-hexane and n-hexadecane. Compounds appearing earlier are called VVOC (very volatile organic compounds); compounds appearing later are called SVOC (semi-volatile organic compounds). See also these standards: ISO 16000-6, ISO 13999-2, VDI 4300-6, German AgBB evaluating scheme, German DIBt approval scheme, GEV testing method for the EMICODE. Some overviews over VOC emissions rating schemes[34] have been collected and compared.
France, Germany and Belgium have enacted regulations to limit VOC emissions from commercial products, and industry has developed numerous voluntary ecolabels and rating systems, such as EMICODE, M1, Blue Angel and Indoor Air Comfort[38] In the United States, several standards exist; California Standard CDPH Section 01350[39] is the most popular one. Over the last few decades, these regulations and standards changed the marketplace, leading to an increasing number of low-emitting products: The leading voluntary labels report that licenses to several hundreds of low-emitting products have been issued (see the respective webpages such as MAS Certified Green.- Certified Products).
Health risks
Respiratory, allergic, or immune effects in infants or children are associated with man-made VOCs and other indoor or outdoor air pollutants.
Some VOCs, such as styrene and limonene, can react with nitrogen oxides or with ozone to produce new oxidation products and secondary aerosols, which can cause sensory irritation symptoms. Unspecified VOCs are important in the creation of smog.
Health effects include eye, nose, and throat irritation; headaches, loss of coordination, nausea; and damage to the liver, kidney, and central nervous system. Some organics can cause cancer in animals; some are suspected or known to cause cancer in humans. Key signs or symptoms associated with exposure to VOCs include conjunctival irritation, nose and throat discomfort, headache, allergic skin reaction, dyspnea, declines in serum cholinesterase levels, nausea, vomiting, nose bleeding, fatigue, dizziness.[citation needed]
The ability of organic chemicals to cause health effects varies greatly from those that are highly toxic, to those with no known health effects. As with other pollutants, the extent and nature of the health effect will depend on many factors including level of exposure and length of time exposed. Eye and respiratory tract irritation, headaches, dizziness, visual disorders, and memory impairment are among the immediate symptoms that some people have experienced soon after exposure to some organics. At present, not much is known about what health effects occur from the levels of organics usually found in homes. Many organic compounds are known to cause cancer in animals; some are suspected of causing, or are known to cause, cancer in humans.
https://en.wikipedia.org/wiki/Volatile_organic_compound
Monday, 6 March 2017
Damp areas and little sunlight cause mold
It is common fungus found in:
Damp areas: musty damp areas like attics, basements and bathrooms.
Dark areas: These areas are mostly dark and moist
Little sunlight: with very little if any sunlight
Stagnate air: with typically very stagnate air movement.
Trees & plants: Trees and plants, and
yes even fibers and foams like those found in mattresses can be common places that support mold growth.
Mold spores can become airborne and move through the air seeking out wet areas to multiply in not only your home but the bed you sleep in.
http://www.chem-tox.com/guest/guestbook.html
Damp areas: musty damp areas like attics, basements and bathrooms.
Dark areas: These areas are mostly dark and moist
Little sunlight: with very little if any sunlight
Stagnate air: with typically very stagnate air movement.
Trees & plants: Trees and plants, and
yes even fibers and foams like those found in mattresses can be common places that support mold growth.
Mold spores can become airborne and move through the air seeking out wet areas to multiply in not only your home but the bed you sleep in.
http://www.chem-tox.com/guest/guestbook.html
How To Prevent Mold In A Mattress
we need to start by keeping the mattress dry, it is the major key to preventing mold proliferation in your bed.
We believe it all starts with good breathable bedding and good mattress protection.
Good waterproof mattress pads not only keep mattresses dry but keep moisture away from these giant sponges we call mattresses.
Other ways to avoid mold in mattresses include not laying wet towels on the bed after showering. Don’t go to bed with a wet head, thoroughly dry your body and hair after a bath .
If you have a bathroom off your bedroom make sure your bathroom door is kept closed and that it has a strong ventilation fan that can effectively pull moisture out of the bathroom keeping moisture and high humidity out of the bedroom.
We all lose a lot of liquid when we sleep through the body’s natural cooling process called perspiration while we might not be able to control sweating,
we can occasionally introduce our mattresses to protection such as the sun, a natural killer of mold spores and a great way to freshen up a mattress.
Friday, 24 February 2017
Natural ways to remove mold from car (and even from homes)
1. Clove oil
2. White vinegar
3. Salt
4. Open the car doors and windows - let lot of sunshine come in
Read the article below and comments, very helpful. Mold is leading to health issues for lot of people. However, doctors are not taking the issue seriously.
http://wheelsguide.net/remove-mold-car-seats-interior/
Sunday, 1 January 2017
Adverse affects of Mold
Why Almost All Sinus Infections Are Misdiagnosed and Mistreated
September 10, 2011 | 1,200,250 views
By Dr. Mercola
Mold pollution is a key element of indoor air pollution that few people understand. Mold has been making the headlines more frequently over the last several years, largely as a result of Hurricane Katrina. And this year has brought enormous record-breaking floods in the U.S. not seen in more than a century, including the massive overflow of the Mississippi River, certain to activate serious mold infestations in certain areas of the country.
If you live in one of those water-stricken areas, you could already be "sleeping with the enemy."
Along with obvious places such as shower stalls and damp basements, there can be many hidden sources of mold in your home. Particularly, if you've had plumbing problems or leaks in your roof, mold may grow and release spores from places such as behind drywall, under carpet or carpet padding, or in wood.
But mold can find its way into some rather surprising places. One study found that even Christmas trees can breed mold, quietly releasing millions of spores into the room and causing winter allergies and asthma attacks. The study found that indoor air quality dropped six-fold over the 14 days a Christmas tree typically decorates a room. Millions of mold spores may even be hiding in your pillows.
And, surprisingly, if you live in a dry climate you may be even MORE at risk—mold grows routinely in desert regions, and the desert naturally selects the most tenacious forms.
Mold Can Be Deadly
What many people don't realize is that mold can make you extremely sick, or even kill you. According to the Environmental Protection Agency (EPA),1 all molds have the potential to cause ill health. The type and severity of your symptoms depend, in part, on the types of mold present, the extent of your exposure, your age and general health, and your existing sensitivities or allergies.
At a 2003 environmental medicine symposium in Dallas, studies of more than 1,600 patients suffering health issues related to fungal exposure were presented. These patients experienced major medical problems, including the following:
- Muscle and joint pain
- Headache, anxiety, depression, memory loss, and visual disturbances
- Immune system disturbances and fatigue
- GI problems
- Shortness of breath
Yet, medical professionals are sometimes not up to speed on how extensive and devastating mold can be to human health, often missing important biological clues that you're being affected by mold. It is important to be aware of these potential problems because your physician may NOT be, and you need to take the wheel as your own health advocate.
Mold's Favorite Places in Your Home
Fungi grow by releasing reproductive cells (spores) into the air, just as plants reproduce by spreading seeds. The airborne spores are invisible to the naked eye, which is a major reason mold is such a problem. It is not uncommon to find hundreds or even thousands of mold spores per cubic foot of indoor air. Spores are extremely small (1-100 microns)—20 million spores would fit on a postage stamp.
Spores can survive harsh environmental conditions, such as dryness, that do not support normal mold growth. In fact, many spores can lie dormant for decades until favorable conditions allow them to spring back to life.
Molds can be found almost anywhere; they can grow on virtually any substance, provided moisture and oxygen are present. There are molds that can grow on wood, paper, carpet, tile, sheetrock, insulation, leather, fabrics, and foods. Molds survive by digesting whatever substrate they are growing on, which is a real problem when it happens to be your floorboards. There is no way to eliminate all mold and mold spores from your indoor environment; the only way to control indoor mold growth is to control moisture. The most common indoor places for mold to take hold are damp areas, such as:
- Bathrooms and kitchens, especially under sinks—particularly leaky ones
- Behind or under appliances that hide slow plumbing leaks (refrigerators, dishwashers, washing machines, etc.)
- Roof leaks
- Around windows where condensation collects
- High humidity areas of your home, such as basements
Often, the first sign of a mold problem is a "musty" odor. You are probably familiar with the smell of mildew—mildew is simply a variety of mold. You could also notice bowed or buckled floorboards, discolored carpet, a new water stain on your wall, or black or white specks—all signs you could be developing a mold problem. But what type of life form is mold?
Types of Fungus Among Us
Mold is a type of fungus, as are mushrooms and yeast. There are between 100,000 and 400,000 types of fungi (estimates vary), and of these, scientists have identified more than 1,000 types of mold growing inside houses across America.2 Molds are classified into three groups according to human responses:
- Allergenic Molds: These don't usually produce life-threatening effects and are most problematic if you are allergic or asthmatic. The challenge is in figuring out what you are sensitive to. Children are particularly susceptible to mold allergies.
- Pathogenic Molds: These produce some sort of infection, which is of particular concern if your immune system is suppressed. They can cause hypersensitivity pneumonitis, an acute response resembling bacterial pneumonia. An example is Aspergillus fumigatus, which can grow in the lungs of immune-compromised individuals.
- Toxigenic Molds (aka "toxic molds"): These dangerous molds produce mycotoxins, which can have serious health effects on almost anyone. Possible reactions include immunosuppression and cancer. Mycotoxins are chemical toxins present within or on the surface of the mold spore, which you then unwittingly inhale, ingest, or touch. An example of this is aflatoxin, one of the most potent carcinogens known to mankind. Aflatoxin grows on peanuts and grains, and on some other foods.
The five most common indoor mold varieties are:3
- Alternaria: Commonly found in your nose, mouth, and upper respiratory tract; can cause allergic responses
- Aspergillus:4 Usually found in warm, extremely damp climates, and a common occupant of house dust; produces mycotoxins; can cause lung infections (aspergillosis5)
- Cladosporium: This very common outdoor fungus can find its way indoors to grow on textiles, wood and other damp, porous materials; triggers hay fever and asthma symptoms
- Penicillium: Very common species found on wallpaper, decaying fabrics, carpet, and fiberglass duct insulation; known for causing allergies and asthma; some species produce mycotoxins, one being the common antibiotic penicillin
- Stachybotrys:6 Extremely toxic "black mold" that produces mycotoxins that can cause serious breathing difficulties and bleeding of the lungs, among other health problems; thankfully, less common in homes than the other four, but not rare; found on wood or paper (cellulose products), but NOT on concrete, linoleum or tile
Mycotoxins: From Antibiotics to Biological Warfare Agents
Molds produce a number of powerful substances that can affect your health in beneficial or detrimental ways. It should come as no surprise that fungi produce potent biologically active compounds—after all, lysergic acid (the parent compound of LSD) is produced by a mushroom! And penicillin is a mycotoxin produced by the mold Penicillium, better known as an antibiotic.
Some mold compounds are volatile and released directly into the air, known as microbial volatile organic compounds (mVOCs).7Fragments of the cell walls of molds (glucans) can also be inhaled and cause inflammatory respiratory reactions, including a flu-like illness called Organic Dust Toxic Syndrome (ODTS).
But the most serious danger comes from highly poisonous agents called mycotoxins.
More than 200 mycotoxins have been identified from common molds. Mycotoxins interfere with RNA synthesis and may cause DNA damage.8 The mycotoxins that have probably received the most attention by researchers are the trichothecenes, produced by Stachybotyrs chartarum and Aspergillus versicolor. Mycotoxins, even in minute quantities, are lipid-soluble and readily absorbed by your intestinal lining, airways, and skin. Some are so poisonous that they have been studied and developed as biological warfare agents9 as far back as the 1940s. Aflatoxin and trichothecenes10 are prime examples.
Even spores that are no longer able to reproduce can still harm your health due to these mycotoxins—in other words, "dead" mold spores are every bit as dangerous as "live" ones. The spores do not produce the toxins—rather, it is thought that the toxins are produced when the spores are produced, by the mold colony. Scientists believe that mycotoxins are the organism's way of holding a competitive edge by defeating other organisms that are trying to thrive in the same environment—like humans, for example.
Adverse Health Effects from Mold
A lot of people end up treating the symptoms of mold exposure and never get to the root of the problem. Oftentimes, they don't even make the connection that mold is the cause of their problems… and neither does their physician. According to mycotoxin expert Dr. Harriet Ammann,11 exposure to indoor molds can damage the systems of your body in the following ways:
| Vascular: blood vessel fragility, hemorrhage from tissues or lungs | Digestive: diarrhea, vomiting, hemorrhage, liver damage, fibrosis, and necrosis |
| Respiratory: trouble breathing, bleeding from lungs | Neurological: tremors, loss of coordination, headaches, depression,12 multiple sclerosis |
| Skin: rashes, burning, sloughing, photosensitivity | Urinary: kidney toxicity |
| Reproductive: infertility, changes in reproductive cycles | Immune: Immunosuppression |
One of the challenges of diagnosing a mold allergy is that reactions are so variable from one person to another. Some people start having memory problems, while others may experience sudden changes in disposition, such as agitation, anger, panic, or depression. Headaches are common but don't affect everyone exposed to mold.
Common symptoms are:
- Coughing and wheezing
- Sinus problems and post-nasal drip
- Itchy rashes
- Joint pain
If you would like more information about how to recognize a mold reaction and how to read your own body's "silent alarm system," I highly recommend listening to my interview with Dr. Doris Rapp. Dr. Rapp is a mold expert and author of several books, including Our Toxic World: A Wake Up Call.13
What You Don't Know CAN Hurt You: The Billings Story
Kurt and Lee Ann Billings learned the hard way about the damaging health effects of mold—and the level of ignorance about mold's effects by medical professionals. Living in a home in the outer impact zone of Hurricane Katrina, they suffered a progressive array of symptoms for which their physicians had no solution. They later discovered that their illness was due to mold infestation in their home.
What started as tightness and burning in their chests and itchy eyes soon progressed into severely diminished lung capacity that did not resolve, despite moving out of their home. After extensive research and eventually recovering their health, they wrote the book Mold: The War Within14 in hopes of educating a poorly informed and disadvantaged public.
On page 11, they write:
"It appears, based on our experiences and research, that much of the medical community is stuck in a time warp when it comes to fungal illnesses—even in regard to the notably researched and highly publicized condition of fungal-induced sinusitis."
What they are referring to is research done by the Mayo Clinic in the 1990s that strongly suggests NEARLY ALL chronic sinusitis (inflammation of the membranes of your nose and sinus cavities) is caused by fungi, but blamed on bacteria—then mistreated using antibiotics. The findings were published in 1999 in two peer-reviewed journals, Journal of Allergy and Clinical Immunology and Mayo Clinic Proceedings.15 Yet, the Billings report that most physicians are unaware of this study, or at least of its significance.
A 1999 Mayo Clinic press release stated:16
"Mayo Clinic researchers say they have found the cause of most chronic sinus infections—an immune system response to fungus.
The Mayo Clinic study suggests that 96 percent of the people who suffer from chronic sinusitis are "fungal sensitized," meaning they have immune responses triggered by inhaled fungal organisms.
According to Billings, 37 million people in the U.S. suffer from chronic sinusitis, and its incidence has been increasing over the past decade. Yet, most physicians continue to believe that fungi are an uncommon cause of respiratory infections, accounting for less than 10 percent. Furthermore, in most cases, antibiotics are not effective for chronic sinusitis because they target bacteria, NOT fungi.
Antibiotics and steroids can actually worsen fungal-related infections by destroying your body's natural biological terrain, creating an internal incubation ground for fungi.
This points to an enormous number of chronic sinus infections that are being misdiagnosed and mistreated!
The bottom line in all of this is, if you have chronic sinusitis, you MUST approach it from the perspective of a fungal infection, not a bacterial infection, even if it means having to educate your healthcare provider. A good place to start is by sharing the Mayo Clinic study referenced above. Mold: The War Within17 is also a useful resource for you and your physician (you can read a review by NORMI here,18 the National Organization of Remediators and Mold Inspectors).
What to Do Once You've Established That Mold Is a Problem
Mold spores are very difficult to destroy, even with cleaning agents, such as hot water or bleach (which is itself toxic). The best way to reduce the problem is through smart preventive measures.
According to Dr. Rapp, first and foremost you want to get away from the problematic area—which means move if you have to.
She warns:
"I've seen people try to stay in a moldy house when their child is very sick or they are very sick. They try to clean the place up. They take out the moldy carpet and decide to paint the moldy walls. But they can become so desperately ill that it is very hard to treat them in the future."
If you can't move, there are other remedial steps you need to take to address the problem:
- Get a high-quality air purifier to control mold toxins. In addition to the mold itself, you need to make sure you get rid of any mold toxins. When a mold breaks down, it disintegrates, and every little particle may contain mycotoxins that have the capability of making you very sick.
One option is a photocatalytic oxidation (PCO) unit. I personally like these because they cover the whole house (up to 3000 square feet), require little maintenance, and are relatively inexpensive.
***Please understand that no air filter in the world will take care of mold issues until you have the humidity under control and the mold properly cleaned from your house.
- Professional remediation. If your mold problem is sizeable, or if you have black mold, you may want to consider hiring a professional remediator. Unless proper precautions are taken, undertaking black mold removal on your own can be almost as hazardous as doing nothing at all,19 because spores will be stirred up and sent airborne during the cleaning process.
This may not be cheap, but it's better than the alternative. If you catch the problem early, you can save yourself tens of thousands of dollars in extra cleanup costs. (Trust me, as I made this mistake myself and wouldn't want to see anyone else go through it.) Make sure a remediator doesn't use chemicals you're sensitive to—a chemical allergy is the LAST thing you need while you are recovering from a mold poisoning!
Warning! Be Careful How You Chose Your Remediator
There is no question that a high-quality active air purifier can help control mold issues but it will NOT remediate against them. You can use the best air filters and purifiers and they will never solve the problem if you continue to have water intrusion into you home that increases the humidity and feeds the growth of the mold.
You will need to stop the water at its source and carefully remove and clean the mold infested materials. While this may superficially seem an easy task, let me assure you that it isn't.
I recently had a leak in my basement that was improperly remediated for $10K and the cause was not addressed so the problem worsened, which more than tripled the price to properly clean it up. That is part of the reason that prompted me to contact some of the leading experts in this area and learn how to do this properly.
So let me tell you from personal experience, you need to fine a qualified expert and professional that is certified by one of the agencies below. I would also suggest getting several bids for the work.
You can find a contractor or professional listings on the following sites. Both the IICRC and NORMI are certifying organizations for mold remediation, but the IICRC certification is perhaps the most widely used:
- IICRC (Institute of Inspection, Cleaning and Restoration Certification)
- ACAC (American Council for Accredited Certification)—a certifying body that is third-party accredited.
- The IAQA (Indoor Air Quality Association)—a membership organization with no certification program (the ACAC handles this by agreement)
- RIA (Restoration Industry Association)
- NORMI (National Organization of Remediators and Mold Inspectors)
Keep in mind that a mere certification or listing may not be enough. Also evaluate the remediator's qualifications and insurance (liability as well as workman's comp). With the ACAC, there are a few different levels.
A Great Natural Treatment for Mold Allergy
If you have a mold allergy, there is a little-known treatment strategy that Dr. Rapp describes as "one of the best hidden secrets." It's called provocation neutralization.20
Provocation neutralization (PN) offers allergy sufferers permanent relief with virtually no side effects, whether the allergy is to mold or something else. The success rate for this approach is very high, and you can receive the treatment at home.
Provocation refers to "provoking a change" and neutralization refers to "neutralizing the reaction caused by provocation." During provocation neutralization, a small amount of allergen is injected under your skin to produce a small bump called a "wheal" and then you are monitored for a reaction. If you have a positive reaction, such as fatigue or headache, or a growth in the size of the wheal, then the allergen is neutralized with diluted injections of the same allergen. If you are interested in pursuing PN, the American Academy of Environmental Medicine (AAEM)21 has a list of physicians who are trained in this technique.
There is also research suggesting vitamin D could prevent mold allergies, so make sure your vitamin D levels are optimal.
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