Document kmV7gOkMbaeYrpbRj5vg9GV2O
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August 9, 1991
Mr. Roy T. Gottesman Executive Director The Vinyl Institute Wayne Interchange Plaza II 155 Route 46 West Wayne, NJ 07470
Chem Systems Inc 303 South Broadway Tarrytown NY 10591-5487
Telephone: (914) 631-2828 Telex: 221844 Facsimile: (914) 631-8851
Dear Roy:
Enclosed is a copy of the analysis of global PVC environmental/health/safety challenges that I discussed with you. Thanks for your help in preparing this. If you have any comments, I would of course appreciate hearing them.
/ Ronald F. Cascone Senior Consultant
RFCiglr Enclosure
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IV. ENVIRONMENTAL ASSESSMENT A. Summary B. Issues and Background C. The United States D. Western Europe E. Japan
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IV.A. SUMMARY
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IV. Environmental Assessment
Summary
Resin sales for packaging is at risk from environmental, health, and safety challenges PVC will be more vulnerable than polyolefins to deselection caused by plastics recycling issues
especially in automotive industries Architectural, plumbing, electrical, and other durable applications are not expected to be reduced Levels of threats are somewhat different among the United States, Western Europe and Japan; the
issues are essentially related to political and social differences Each individual issue appears to be largely under control through strenuous industry efforts in both
the United States, Western Europe and Japan Most responses to threats are cooperative, not competitive, through industry associations
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IV.B. ISSUES AND BACKGROUND
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IV. Environmental Assessment
Generic issues raised about PVC
Manufacture Use Waste " Recycling
Issues Involve health and safety as well as environmental concerns
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IV. Environmental Assessment
Manufacturing issues
Raw material depletion
Petroleum Natural gas
Fossil energy use, resulting in C02 and other pollutant release
Emissions
Petroleum production, refining, transportation Petrochemicals - ethylene, VCM, plasticizers Chlor-alkali - mercury, chlorinated by-products Affect of toxics in communities, global warming, ozone depletion
Worker safety - exposure to petrochemicals, VCM
These Issues are not unique to PVC; judgements are largely false, but difficult to change
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IV. Environmental Assessment
In-use issues
Additives Plasticizers - migration into foods and other products Stabilizers - contamination from cadmium, lead, and other heavy metals Dyes and pigments - contamination from heavy metals, and other toxic materials
Residual VCM in products - migration to food, water, etc. Performance in fire
Flame retardance Smoke toxicity (HCI, dioxins)
Most of these Issues have motivated technical developments and standards
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IV. Environmental Assessment
Waste issues: concerns/misconceptions
Quantities Plastics, especially PVC packaging, perceived to take up large volumes in collection and landfills
PVC seen as non-recyclable
Landfill disposition
Non-degradability Leaching of additives (heavy metals, etc.)
Incineration HCI contribution to acid rain Dioxin - issue over uniqueness of generation versus other chlorine sources in waste incineration, fossil fuel combustion
HCI attack of incinerator elements
Most of these concerns are invalid or arguable, but sensitive to the public
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IV. Environmental Assessment
Recycling issues
Feasibility of collection, separation Uses of recycled PVC
Additives required Degradation during processing is greater than with polyolefins, etc. Incompatibility of PVC in mixed resin uses
Much progress made In recycling, but possible self-imposed Industry or legislated goals may exclude PVC from some packaging applications
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IV. Environmental Assessment
Background on heavy metals issues
Heavy metals have been a concern for decades
Not acutely toxic, but bioaccumulative
Linked to liver, kidney damage; some cancers
Cadmium is much more toxic than lead
Barium is similar to lead, but less common; tin even less
Concern relatively light in Western Europe because
Not acutely toxic; less newsworthy than deadlier toxins
Emissions are complex and obscure, not easily understood by laymen
Other concerns are more related to common activities such as eating and solid waste generation, thus of greater public interest
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IV. Environmental Assessment
Background on heavy metals issues (continued)
Types of exposure: Inhalation during processing - solved by precompounding and low-dust material Leaching from incinerator flash - avoided by special landfills and pre-extraction Incinerator flue gas emissions - controlled with precipitator and scrubbers Leaching into groundwater from landfills - solved by collecting and treatment of leachate Leaching lead from PVC pipe to water - limits met by manufacturers - less than from soldered copper pipe (lead stabilizers are not used in the U.S. for pipe applications, but are used in Western Europe and Japan)
Applications of heavy metals will nonetheless be banned - technical solutions are required
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IV. Environmental Assessment
Background on plasticizers issues
Plasticizers are used in all flexible PVC
Dioctyl phthalate (DOP) - 50 percent of all in Western Europe, dioctyl adipate (DOA) - 40 percent Regulations focus on these two
Based on National Cancer Research Institute (USA) findings in 1980, the International Agency for Research into Cancer (I ARC) classified DOP "probable human carcinogen"; DOA was only "suspect"
They are not considered acute toxins in any case
These plasticizers have been studied further by the European Pharmacopoeia, Germany, UK, Switzerland, and the United States - today DOP is absolved as a carcinogen
Much misinformation has recently surfaced in the UK over hazards of plasticizers used in cling film
Concerns are for:
Ingestion of migrated plasticizer from packaging of fatty foods Evaporation of plasticizer from floor tiles, wall coverings, and auto interiors Migration of plasticizer to blood or medicines from medical devices
Political bans on plasticizers unlikely, but exposure minimization initiatives are likely
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IV. Environmental Assessment
Background on issues over VCM ingestion
VCM has been a concern for 20 years
Recognized carcinogen with no toxicological threshold
Typical ambient exposures not acutely toxic
Much media attention has been given to worker exposure
Ingestion concerns are: a. Ingestion of residual VCM which has migrated to food from packaging b. Ingestion of residual VCM which has migrated into drinking water from PVC pipe c. Groundwater contamination by leaching from discards in municipal landfills
a and b are regulated in United States and Europe; limits are 10 times lower in United States; it is not expected that the European Community will reconcile with United States because different detection methods are used
Groundwater contamination issue has been raised in United States, but not in Europe and Japan; no regulations yet
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Groundwater contamination concern will spread to Europe, but no regulations are expected in either region
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IV. Environmental Assessment
Background on hazardous combustion emissions issues
Accidental fires or waste incinerations can generate hydrochloric acid (HCI) and "dioxins" (sometimes characterized as 2,3,7,8-trichlorobenzodioxin - TCDD)
Incineration
HCI and dioxins
"Dioxins" are actually a group comprising about 200 compounds in categories of:
Polychlorodibenzo-para-dioxins Polychlorinated dibenzofurans
HCI can potentially contribute to "acid rain" - most acute in Northeastern United States, Scandinavia, and Germany; sulfur dioxide and nitrogen oxides are regulated
European Community regulations now cover HCI from waste incinerations; PVC accounts for less than half of the emission; no direct regulation expected
Dioxin release incidents in Seveso, Italy and "Agent Orange" controversy in the United States have captured press attention - very sensitive issue
WHO considers TCDD occupational-exposure hazardous; risks in ambient exposures are being widely debated
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Background on hazardous combustion emissions issues (continued)
There are two types of dioxin exposure concerns: Inhalation of airborne dioxins Ingestion in food (fish and milk)
Dioxins in incinerator flue gas and flash could be from: Combustion of PVC, other chlorinated hydrocarbons and inorganic chlorides (such as salt with food) Dioxins are present in waste feeds that pass through incineration Production from precursors such as PCBs, pentachlorophenols, and chlorinated aromatics
Two solutions have been proposed: Reduce chlorine in feed, including from PVC Run incinerators so that dioxins are not formed or are destroyed
Dioxins will be controlled in Europe by a combination of better incineration designs and some attempts to reduce chlorine In feed by reducing disposable PVC products
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Background on hazardous combustion emissions issues (continued)
Smoke Toxicity
Environmental and safety have been concerns since the 1970s with U.S. building codes adopting combustion-toxicity provisions
The principle is that PVC should be no more toxic when burned than wood
Two methods have been used to determine this:
University of Pittsburgh Test - shows PVC more toxic U.S. Bureau of Standards Test - shows PVC less toxic (also differ on ranking fabrics, paints, and other plastics)
Most authorities see statistical error at fault and accept PVC as a standard material (exceptions NYC subway system due to lobbying by metal conduit interests)
Some German municipalities also banned PVC wire and cable (and some floor tiles) during the late 1980s, but some have rescinded
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IV. Environmental Assessment
Background on issues over limited waste disposal capacity
Complex local issues of national proportions involving land use, litter, sustainable development, and trade-offs of landfill with incineration and source reduction efforts
Affects PVC on:
Content laws - requiring new products to contain certain levels of recycled materials Mandatory use of biodegradable materials or components Ability to separate PVC wastes from other plastics Ability to reuse PVC recycled resin
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IV.C. THE UNITED STATES
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IV. Environmental Assessment
The United States - overview
Political structure and environmental initiatives are key
Some differences exist state to state
Lobbying by competing trade associations and labor unions have created strong challenges Plumbers, electrical, other construction American Institute of Architects Aluminum, steel, glass and paper interests PET (and some polyolefins) marketers
There have been few specific bans, but much delay and conflict
Most responses have been coopera ;ve and non-competitive through: Vinyl Institute (sponsoring Vinyl Package Lifecycle Assessment by Chem Systems) Society of Plastics Industry Chlorine Institute
Some individual companies are leacers in technical support and education OxyChem, BFGoodrich, Geon ia Gulf, Vista, Klockner-Pentaplast, etc.
Packaging and VCM/PVC manufacturing are most challenged today, but durable ' may be more at risk in future
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IV. Environmental Assessment
The United States - Primary industry responses to issues
Education
Technical research and lobbying Health and safety effects of vinyl chloride monomer FDA activity related to use of PVC packaging and other regulated materials: Liquor and other bottles Meat wrap and other food-related films Water pipe Film coatings, gaskets, medical applications, etc.
Fire performance and combustion toxicity of PVC
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Alleged problems caused by heavy metal permeation and leaching through and from PVC pipe
PVC solid waste management Recycling Alleged problems of landfill leachate contamination
Lead has been taken by the Vinyl Institute with strong support by BFGoodrich and OxyChem; others are cooperative
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IV. Environmental Assessment
The United States - environmental, health, and safety effects of VCM: responses and results
Plant and equipment modifications installed VCM monitoring and alarms Stripping columns Incinerators for vents and other normal discharges
EPA estimated $766 million (1977 dollars) spent between 1977-1986 on such modifications
EPA later estimated total air pollution control for VCM/PVC plants was $1.2 billion between 19811990
Costs increased an average of 1.35 cents per pound (1972 to 1987) solely for environmental compliance
This led to increase in the average reactor size, and a drop in the number of producers of VCM from 23 in 1976 to 12 in 1987
EPA's VCM Emission Standard requires reports for relief valve discharges, manual venting and
reactor dumping within 10 days - this has led to 17 settlements of fines for $4.3 million total since
1982
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IV. Environmental Assessment
The United States - FDA regulation of PVC in packaging: responses and results
FDA has been struggling with the EPA and environmentalists since mid-1986 on creating regulations for PVC films, rigid containers, food processing plant water pipe, and other PVC components in food contact
FDA rule on PVC in food use started in 1975
In 1986 FDA proposed: 5 ppb RVCM limit for plasticized films and coatings 10 ppb RVCM limit for rigid and semirigid food containers 50 ppb RVCM limit for water pipes in food processing plants 50 ppb RVCM for vinyl/vinylidene chloride copolymer films and coatings Recognized prior status of PVC resins in films, coatings, water pipe, flexible tubing, gaskets, bottle and jar liners and rigid sheet
Issues have been raised by the EPA and environmentalists to delay approvals due to potential environmental impacts
HCI from incineration of PVC Recycling compliance Potential solid waste impacts
Delay has allowed PET to penetrate nearly all liquor bottle markets to exclude PVC;
otherwise, there will be little effect on markets after approval
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IV. Environmental Assessment
The United States - Fine performance and combustion toxicity: U.S. responses and results
PVC comprises 40 percent of all plastics used in U.S. construction
Metal pipe and other interests have lobbied against PVC since the mid-1970s
During the late 1970s, Vinyl Institute funded research at Southwest Research Institute (San Antonio) - shows that HCI generated from fire is absorbed rapidly by other materials, and rarely exceeds 300 ppm
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No major impact on market seen or expected
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IV. Environmental Assessment
The United States - concerns over permeation or leaching from PVC pipe: responses and results
Plumbers' unions and others attack PVC pipe for possible solvent permeation from contaminated ground to water supplies, and leaching of solvents to water from pipe cements
Unions fear loss of work with easier-to-install PVC systems and competition from do-it-yourselfers
Vinyl Institute sponsored research by Battelle Columbus Labs - shows equivalent permeation for cement and iron pipe
Vinyl Institute hired CH2M Hill consultants for risk assessment on California - sponsored leaching tests - concluded PVC pipe : safe
Permeation of PVC is a "ve; long" process - as shown by studies in Holland and University of California
o Concerns have stopped the use of PVC for water distribution in many cities (Chicago, New York City) and California
o Concerns over lead solder and worker safety inhaling soldering vapors (Federal ban in 1989) will
help PVC pipe sales
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IV. Environmental Assessment
The United States - Management of PVC in solid waste responses and results
A disproportionate effort is focused on PVC
Legislative bans have been proposed in New York, Minnesota, and elsewhere
The Center for Plastics Packaging Recycling at Rutgers University (New Jersey) is financially supported by Vinyl Institute for PVC recycling research
The Vinyl Institute/NYSERDA (Albany, NY) - ran tests on dioxin generation with and without PVC present - shows PVC to be a minor or negligible factor in incinerator dioxin generation; dioxins can be controlled with incinerator scrubbing, etc.
PVC bans are not expected to have significant market impacts
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IV. Environmental Assessment
The United States - education emphasis: the "PVC Story" as told by the Vinyl Institute
Chlorine may be dangerous, but in PVC it is intrinsically bound (a safe "resting place")
Combustion does not release free chlorine, but hydrogen chloride (stomach acid)
VCM and PVC plastics are already subject to drastic emissions and safety controls
PVC products are essentially monomer free
Cadmium, lead, and other heavy metals in stabilizers are gradually being substituted - use is restricted to durables (window frames, electrical insulation, etc.)
Plasticizers are low volatility liquids - only minute migration occurs when in contact with oily or alcoholic products
PVC is approved by toxicologists, and used with pharmaceuticals and medical devices
U.S. EPA is reconsidering TCDD (dioxin) risk issues, questioning the use of animal tests to gauge human health risks
PVC recycling is feasible, economic, and desirable
A similar conclusion was drawn by a private study by Beilona, a Norwegian
radical environmental group, leaked to press
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The United States - educational literature emphasis of U.S. companies
Plastics/PVC play relatively minor role in solid waste; most landfill do not biodegrade materials
PVC components (liners, pipe, etc.) are useful and preferred in "building" proper landfills
Controls are needed on incinerators, in which case emissions from PVC are not a problem
There are benefits in using plastics/PVC - otherwise solid waste volume would increase if plastics are disallowed
Recyclability of plastics/PVC
Commingled resin durables and PVC durables (pipe) are proven uses Much experience already exists w'.th industrial/commercial/consumer recycling PVC can now be automatically (electronically) identified during the sorting process
PVC is based primarily on salt and natural gas, not petroleum, in the United States (more petroleum for ethylene is used in Europe)
PVC in food packaging has lowest contribution to taste and odor among all the plastics
uVinyl-it's recyclable, dear, proven, versatile, taste free and economical"
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IV. Environmental Assessment
The United States - salient U.S. company involvements in technical responses to challenges
BFGoodrich OxyChem Georgia Gulf Vista
Fire R&D for low-smoke additives
R&D for low-smoke additives
Food Contact
/ / /
Recycling
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IV.D WESTERN EUROPE
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IV. Environmental Assessment
Western Europe - overview
Western Europe is highly individual, by country, as to views on PVC
There are many socioeconomic, political, as well as technical differences as compared to the United States
"Green politics," rather than commercial/industrial lobbying, has more effect International competition versus an EC "restraint-of-trade" issue is a growing factor Some deselection and packaging bans are in place Greater garbage incineration is typical Ethylene is made primarily from naphtha/gas oil, not NGLs Alternate source of soda ash (as caustic substitute for some uses) is from the Solvay process (more polluting) not trona Leaded gasoline is still used in Europe
Responses to challenges has been primarily by producers Norsk Hydro Atochem EVC Hoechst Solvay
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Western Europe overview (continued)
Some cooperative responses are starting AGPR Group in Germany European Council of Vinyl Manufacturers - patterned on U.S. - Vinyl Institute Association of Plastics Manufacturers in Europe (APME) - formed Plastics Waste Management Institute for Europe (PWMI), and is sponsoring an ecobalance for Europe
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Western Europe - primary PVC environmental, health, and safety issues
Ingestion/inhalation of heavy metals Ingestion/inhalation of plasticizers Ingestion/inhalation of free VCM Emissions of hazardous products formed in combustion of PVC - HCI and dioxins Limited public waste disposal capacity Unfavorable ecobalances (total energy and emissions in manufacture, use, and disposal) versus competing materials
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IV. Environmental Assessment
Western Europe - forecast of direct regulations of PVC use, 1990-2000
Restriction
Ban on "short-life" (disposable) applications
Voluntary phase-out of PVC in grocery stores (80 percent) .
Ban on PVC in beverage bottles
Country Denmark Netherlands
Switzerland
Implementation Period
1991-1993
1991-1993
1991
Reason
Dioxin emissions from incinerators
Dioxin emissions from incinerators
Dioxin emissions from incinerators
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IV. Environmental Assessment
Western Europe - forecast of indirect regulations concerning PVC, 19902000
Restriction
Ban cadmium in PVC
Ban lead to maximum technical feasibility
Maximum 15 percent plasticizer in fattyfood packaging
Jurisdiction All Western Europe All Western Europe
Implementation Period
1991-1993
1995-on
Reason
Toxicity Long-term toxicity
All Western Europe
1997-2000
Suspected health risks
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IV. Environmental Assessment
Western Europe - highlights of the Norwegian Bellona Study
A boycott of PVC would:
Lower the price of chlorine, further encouraging manufacture of chlorinated solvents and propellants Lead to problems the disposal of excess chlorine coproduct from caustic manufacture Increase consumption of more environmentally harmful steel, cement, aluminum, and paper, or their
composites Increase the emissions of "greenhouse gases" and toxins to manufacture the substitutes Lower the quality of drinking water supplies and beverages Increase the energy required for the transportation of raw materials, finished goods, and packaging
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The study concludes that PVC Is a desirable choice
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IV. Environmental Assessment
Western Europe - heavy metals regulatory profile
Regulations focus on cadmium - banned in Sweden since 1987, with some exemptions; in Denmark since 1987 (except in profiles and panels) Draft bans on all cadmium uses in EC commission, Netherlands and Austria Lead being investigated, a ban is likely by 1997, with exemptions for wire and cable, and window profiles Barium being investigated in Sweden and Austria
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IV. Environmental Assessment
Western Europe - plasticizer regulatory profile
Present legal limits:
Country
Product
Limits
Application
Belgium Germany Italy Netherlands Switzerland
DOP DOP, DOA DOP DOP DOP, DOA
Migration - 40 mg/kg 22% content 5% content Migration - 6 mg/kg Ban
Food packaging Meat wrap Fatty-food packaging Food packaging Toys for children under 3 years old
EC studying directive for food-contact plastics
U.S, FDA following studies by independent EC advisor - Scientific Committee for Food - report expected in two to three years
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EC directive on limits, but no bans are expected
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IV. Environmental Assessment
Western Europe - free VCM (RVCM) regulatory profile
Present legal limits on RVCM:
Polymer <10 ppm
Belgium Germany UK
Packaging <1 ppm
Belgium Germany EC Austria France Italy Netherlands
Migration <0.01 ppm
Belgium Germany EC France (<0.05 ppm) Italy Netherlands UK Sweden
Migration - actually "no detection" required - limits 0.01 ppm; method in United States allows 0.001 ppm detection, which sets the limit there
No harmonization of U.S. and European standards expected In the next decade
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IV. Environmental Assessment
Western Europe - hazardous combustion regulatory profile
HCI in acid rain Two EC directives - limit HCI in new incinerators (of >3 tonnes/hr) to 50 mg/SCM Not a direct control; PVC will not be banned on this issue
Dioxin emissions regulations activities are essentially in countries that incinerate >30 percent of municipal waste:
Denmark - 50 percent reduction of PVC in short-life uses over 1991-1993
Germany - PVC bans proposed because of dioxin; rejected Netherlands - Green Party proposed ban; rejected; a major grocery chain is phasing out PVC
Sweden - Moratorium on new incinerators; lifted; O.lng/SCM TCDD limits on new/old units instead; continued push to eliminate short-life PVC uses
Switzerland - Ban on PVC bottles November 1, 1991
Austria - ban on short-term PVC uses withdrawn to allow coordination with EC
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IV. Environmental Assessment
Western Europe - solid waste regulatory profile
Denmark - Voluntary Agreement (by year 2000)
85 percent reduction of PVC in incinerated packaging 77 percent PVC recycled for durables (pipe, profile, flooring, etc.)
Switzerland - November 1991 ban on PVC beverage containers
"PVC Bottle Recycling CH" formed (Atochem, EVC, Solvay, and French Mineraliers) in response
EC - DG XI Packaging Waste Directive - December 4, 1991 (first draft)
Objectives: to stop growth in per capita packaging waste Waste management targets:
60 percent recycling 30 percent energy conversion (incineration) 10 percent landfill
The Marks & Spenser Department Store (UK) recently selected PVC over PET
and OPS as an "environmentally friendly" packaging standard
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IV. E JAPAN
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IV. Environmental Assessment
Japan - overview
There has been no radical environmentalist group nor anti-PVC industry lobbying in Japan who are sufficiently strong to influence politicians to initiate regulation on the PVC based on scientifically ambiguous information
So far PVC producers have responded to the issues effectively and succeeded in avoiding unreasonable regulations, based on cooperative work through various associations
Impact on PVC demand will come not from regulatory ban but from voluntary deselection in markets related to management of plastics solid wastes
However, since the issues are emotional and global, the impact will be inevitable if strong movement against PVC should capture the U.S. and/or Western European consumers
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IV. Environmental Assessment
Japan - primary PVC environmental, health and safety issues
The issues of environmental, health and safety for PVC began overseas and then were introduced into Japan, which include: Ingestion/inhalation of heavy metals Ingestion/inhalation of plasticizers
Ingestion/inhalation of free VCM Emission of hazardous products formed in combustion of PVC - HCI and dioxins Municipal and industrial plastic wastes recycling
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IV. Environmental Assessment
Japan - heavy metal issues
Notification No. 20 by the Ministry of Public Welfare - maximum 100 ppm of lead and cadmium in PVC packaging
Japan Hygienic PVC Association set proactive self-control (PL standard), e.gM no use of lead and cadmium for food wrapping film
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One package stabilizer system in granule from is a trend to avoid lead inhalation Lead stabilizer is used in pipe but with anti-leaching aids No major impact on market is seen or expected
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Japan - plasticizers issues
The issue of "DOP being probable human carcinogen" promoted DNP/DINP to replace DOP but caused little negative impact on PVC usage Currently no regulatory argument on plasticizer
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IV. Environmental Assessment
Japan - VCM exposure and residual VCM
The issues of VCM worker exposure has been solved based on introduction of closed system Most PVC food bottles were replaced by other plastics bottles when the residual VCM issue was raised 10-15 years ago Currently, the level of residual VCM which can be achieved is less than 1 ppm for pipe. No significant impact on the PVC market is expected even after new EPA standards take effect in 1993
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IV. Environmental Assessment
Japan - hazardous combustion emissions issues
All incinerators are equiped with exhaust gas treatments and no HCI emissions from incinerators are expected
Dioxins emissions from incinerators are being controlled according to the operating procedures directed by the Ministry of Public Welfare
Scientifically there is no need to regulate PVC due to hazardous emissions. However, since it is related to municipal solid waste management, misinformation could cause source reduction and/or deselection of PVC from packaging
The issue of HCI generated from fire will not have significant impact on PVC demand even if it is regulated, since PVC house siding is not permitted for use by the Fire Defense Board
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IV. Environmental Assessment
Japan - management of PVC in municipal solid wastes
PVC is only 1 percent of total municipal solid wastes. However, to most housewives, the name "vinyl" means all plastics - which accounts for 10 percent of the total municipal solid waste
Although over 70 percent of municipal solid waste is incinerated, recycling will be practiced in the future
In the case of plastics recycling to reclaimed pellets and .liquid fuel, PVC must be separated from the feed due to its chlorine content
PVC ban for packaging use in various Western European countries may have some influence on Japanese consumers toward reduction of PVC packaging
As a whole, PVC is vulnerable to being targeted as a "bad actor" in municipal solid wastes and reduction or deselection of PVC could be a voluntary activity in packaging markets, although no bans are expected
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IV. Environmental Assessment
Japan - management of pvc in industrial solid wastes
About 40 percent of agricultural film is being recycled to floor tiles and sandals Automotive industry is now seriously planning recycling of plastics. In such a program, PVC will
become less preferable and at risk of .eing replaced by polyolefins, which can be recycled more easily Recycling issues will not have an imp- A on PVC demand in other industrial applications
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IV. Environmental Assessment
Japan - producers response to threats
PVC producers have been very cooperative and effective in responding to threats through the Japanese PVC Association (established in 1953), Japan Hygienic PVC Association (1967) and Plastic Waste Management Institute (1967)
Japan PVC Association is responsible for public education to respond to environmental challenge through press releases and educational literature
Japan Hygienic PVC Association has been successfully managing health and safety challenge based on proactive self-control (PL standard)
Plastic Waste Management Institute comprising various plastics industries is responsible for plastic recycling and technology development
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