mercredi 10 novembre 2010

Chemicals in Fast Food Wrappers and Popcorn Bags Show Up in Human Blood

The evils of fast food are seemingly endless: they are hazards to both our health andto the environment, and who knows what the consequences of all the preservativesare. But now, turns out the packaging also leaches its own worrisome problems directly into the food wrapped inside them.

A new study has found that perfluoroalkyls, synthetic chemicals that repel oil and are used on paper packaging like food wrappers and popcorn bags to prevent grease from leaking through them, can migrate directly into food—and then into human blood, where these chemicals have already been found.

ENS reports that in addition to food packaging, perfluoroalkyls are used in "surface protection products such as carpet and clothing treatments and coating for paper and cardboard packaging," but the Agency for Toxic Substances & Disease Registry, a branch of the CDC, shows that perfluoroalkyls are also used in "fire-fighting foams."

There are different types of perfluoroalkyls and the agency does not specify which is used for this purpose, but if it's even a different acid in the same category, how comforting is that?

Perfluoroalkyls are known to stay in the body for years—according to the Agency for Toxic Substances, "It takes approximately 4 years for the level in the body to go down by half, even if no more is taken in." The effects can include changes in sex hormones and cholesterol levels.

samedi 6 novembre 2010

The Paper Packaging Market 2010-2020

Visiongain's new materials report, The Paper Packaging Market 2010-2020 examines the industry trends prevailing in the global paper packaging industry and forecasts the development in the market over the next decade. The report also surveys recent market trends among major companies and reveals where the market will experience growth, laying out the market's strengths and weaknesses with targeted forecasts. Visiongain's analysis has concluded that the global value of the paper packaging market will is $228.3bn in 2010.

In this report, You will also find  my opinion on the future market of paper packaging: trends and developments prevailing in the current paper packaging industry? What are the technological developments? What challenges and opportunities?


6. Expert Opinion

6.1 Islem Yezza, Technical Director, Paper & Forest Products, Cascades
6.1.1 Recyclable Packaging Gaining Favours
6.1.2 Advancement of Paper Packaging
6.1.3 Competition with Low-Cost Plastic Packaging
6.1.4 Although Biodegradability of Paper Seen as its Forte, Cost is Still a Concern
6.1.5 Americas and Europe to Register Growth
6.1.6 Anticipated Growth Rates
6.1.7 Future Rise in Consumption

7. Leading Companies in the Paper Packaging Market

7.1 Cascades Inc.
7.2 Daio Paper Corporation
7.3 DS Smith Plc
7.4 Graphic Packaging Holding Corporation
7.5 International Paper
7.6 Metsäliitto Corporation
7.7 Mondi Group
7.8 Nippon Paper Group
7.9 Oji Paper Group
7.10 PaperlinX
7.11 Rengo Company Ltd.
7.12 RockTenn
7.13 Smurfit Kappa Group
7.14 Smurfit-Stone Container Corporation (SSCC)
7.15 Sonoco Products Company
7.16 Stora Enso
7.17 Svenska Cellulosa Aktiebolaget (SCA)
7.18 Temple-Inland Ltd.
7.19 UPM-Kymmene
7.20 Weyerhaeuser
7.21 Other Leading Companies in the Paper Packaging Industry

mercredi 3 novembre 2010

Les nanotechnologies peuvent-elles révolutionner l’emballage alimentaire ?

La nanotechnologie figure parmi les progrès technologiques les plus prometteurs. La nanotechnologie offre de nouvelles solutions en matière d’emballage alimentaire pouvant profiter à la fois aux consommateurs et à l’industrie. L’application de nouveaux matériaux à base de nanoparticules permet l’amélioration des propriétés mécaniques et thermiques ainsi que des propriétés barrières aux gaz (O2 et CO2) et à la vapeur d’eau.

La nanotechnologie favorise le développement des emballages dits intelligents intégrant des technologies prometteuses susceptibles d’assurer une meilleure traçabilité et de garantir la sécurité alimentaire au consommateur. Elle permet aussi la conception d’emballages actifs capables d’interagir avec la denrée alimentaire en vue de préserver ses propriétés organoleptiques et nutritionnelles et de prolonger sa durée de vie.

Certes, les nanotechnologies soulèvent de grands espoirs et sont porteuses de progrès, mais elles suscitent également des interrogations et des craintes quant aux risques sanitaires et environnementaux.

Ce numéro de BioTendance® offre un panorama des plus récentes applications des « nanos » dans le secteur de l’emballage alimentaire. Les enjeux et les menaces seront aussi évoqués.

Sommaire :
  1. Introduction
  2. Les nanotechnologies : c'est quoi au juste ?
    1. Définitions et applications
    2. Marchés et applications
  3. Nanotechnologie et emballage alimentaire
  4. Applications potentielles de la nanotechnologie dans l'emballage alimentaire
    1. Emballages aux propriétés particulières : nanocomposites
    2. Emballages biodégradables : nanobiocomposites
    3. Emballages actifs : nanomatériaux antimicrobiens
    4. Emballages intelligents : nanocapteurs
  5. Enjeux et défis industriels
  6. Cadres réglementaires et étiquetage
  7. Conclusion et perspectives
  8. Références
  9. Glossaire

jeudi 28 octobre 2010

“Toxic & Not Biodegradable,” Goody Bags Parent Company Admits

Yesterday, the Federal Court of Australia ruled plastic bag company NuPak Australia has engaged in misleading and deceptive conduct related to environmental marketing claims for Goody-brand “degradable” bags.

The court heard the company had claimed its bags were biodegradable and compostable when this was not the case. The court was told its bags also contained a heavy metal in amounts that exceeded the maximum concentration under Australian standards.

NuPak has been ordered to publish corrective notices on its website, send a letter to each customer and contribute $10,000 towards the costs of the ACCC over the proceedings.

Following legal action by the Australia Competition and Consumer Commission (ACCC), Nupak Australia is Pty Ltd (‘Nupak’) has consented to a declaration being made by the Federal Court of Australia that it contravened sections 52 and 53 of the Trade Practices Act 1974 (the TPA) by making false representations and engaging in misleading or deceptive conduct.
As part of the court action, Nupak has consented to a Court declaration that ‘Goody’ brand plastic bags supplied by Nupak did not biodegrade or disintegrate and contained a toxic or hazardous substance, and therefore were not complaint with the Australian Standard.

Nupak has given an undertaking to the Court to refrain from representing that ‘Goody’ brand plastics bags are biodegradable, compostable or comply with the Australia Standard unless first receiving independent scientific testing that supports the claim.

Nupak has consented to orders that it publish corrective notices in The Advertiser (a daily newspaper from Adelaide, Australia) and also to an order to implement a Trade Practices Compliance and Education Training Program regarding its responsibilities and obligations under Australian law.

Nupak has paid a contribution towards the ACCC’s costs of instituting the proceedings.

In a written statement, the Biodegradable Products Institute commented:

“We are glad to see that manufacturer’s unsupported claims are recognized as misleading. We hope to see more of this in the future, in response to the growing number of these claims around the globe.

mercredi 27 octobre 2010

Plastic from Plants: Is It an Environmental Boon or Bane?

Plant-based plastics are beginning to replace petroleum. But as the price drops and usage rises, will the advantages outweigh the disadvantages?

More than 2.5 billion plastic bottles—partially made from plants—are already in use around the world in a bid to replace petroleum as the fundamental building block of everyday plastics. The so-called PlantBottle from the Coca-Cola Co. is made by converting sugars from sugarcane farmed in Brazil into the polyethylene terephthalate (PET) plastic commonly used in the ubiquitous clear bottles for various beverages. Fully recyclable, the bottles debuted at the 2009 U.N. Copenhagen Climate Conference and Vancouver Olympics, and are now on sale from Japan to Chile and across the U.S.

Most importantly from Coke's point of view, none of the six other major varieties of plant-based plastic can keep the carbonation from leaking out. "It's not only to hold carbonation, it's just to hold water," explains chemist Shell Huang, Coca-Cola's director of packaging research. "You can lose moisture through the bottle wall" with some of the other available plant-based polymers.

But can plants become more widely used as building blocks of ubiquitous plastics? In a sense it is back to the future with biopolymers—the very first plastics were produced by German chemists in the 19th century via a fermentation processes. Yet, earlier in October, Frito-Lay withdrew a high-profile example of plant-based plastic for the majority of its SunChips bags. Why? Not because it was unsafe or failed to compost as advertised but because the sound of the crinkling plastic was louder than customers liked.

"Only a Frito-Lay brand is big enough…so that the final product is cost-competitive," said Marc Verbruggen, president and CEO of NatureWorks, the provider of the bioplastic in the SunChips bags—as well as in products ranging from tea bags to diapers—in a 2009 interview. "Biopolymers will be the next generation of plastics."

The PlantBottle might prove that point, helped by the fact that it is a different form of plastic from that which made up the failed SunChips bag. The first step in making it is fermenting ethanol from the sugarcane in Brazil. That ethanol is then exported to India where it is processed as monoethylene glycol, or MEG—which comprises roughly 30 percent of a typical PET bottle. The rest is composed of traditional, petroleum-derived plastic. "This is the most sustainable raw material for now," Huang says. "Longer term, our goal is to make [the plastic] from plant waste," such as the lignin or cellulose in the sugarcane's leaves and stems.

Making the PlantBottle has thus far saved roughly 70,000 barrels of oil by the company's calculations—and the plastic resin, indistinguishable from its petroleum-based analog, can be exported throughout the world. "We are making PET from a renewable resource so there's a lower carbon footprint, and we can take advantage of existing infrastructure to recycle it," Huang explains. Plus, "the carbon is captured in the [plastic of the] bottle and never goes back to the air."

Of course, plant-based plastics run into the same problem as plant-based fuels—directly or indirectly they have an impact on food production. Whereas making ethanol from sugarcane in Brazil is energy efficient—more energy is embedded in the ethanol than goes into growing and harvesting the plants—replacing a significant fraction of the global demand for plastics, let alone fuels, would require converting large swaths of yet more Brazilian land into sugarcane fields. And one of the leading bioplastics—Ingeo, made by NatureWorks, owned by Cargill—relies on heavily fertilized and thus energy-intensive corn (unlike sugarcane) to make polylactic acid, or PLA, which now appears in products such as the SunChips bags or Stonyfield Farm yogurt cups.

"In the long run this could become an issue," admits Frederic Scheer, CEO of Cereplast, which plans to introduce an algae-based bioplastic product, in addition to a starch-based biopolymer it already markets, by the end of 2010. "You cannot have access to farmland without creating pressures on the food system."

Thus far, bio-based plastics have only replaced roughly 1 percent of the hundreds of billions–kilogram global plastics market, according to Lux Research, although that percentage may grow in coming years. The majority of those plastics, like PLA, are not recyclable, but rather compostable using high heat (temperatures of roughly 60 degrees Celsius).

"It takes 77 million years to make fossil fuels and 45 minutes to use as a coffee cup," says Cereplast's Scheer, noting that his industry can use the residue of government-mandated production of biofuels, such as ethanol from corn. "It makes no sense."

Regardless of the environmental logic, the plant-based plastics remain more expensive. "There is, right now, a bit of a price-up charge that we are absorbing, not passing it along to consumers," Lisa Manley, Coca-Cola's group director of sustainability communications, says of the PlantBottle. But "if you look at the volatility of pricing for petroleum—in short order and over the long term—the price comparisons will be at parity, and perhaps better."

That is why Coca-Cola, at least, is now working toward a 100 percent plant-based plastic bottle. "We don't have a definite timeline but we already did a feasibility study," Huang says. "It is technically feasible to make a 100 percent plant bottle from the material."

mardi 26 octobre 2010

EMBALLAGES ÉCORESPONSABLES: Concevoir mieux avec moins

Suite à plusieurs demandes des lecteurs de ce blogue, je publie l’intégralité de l’article: EMBALLAGES ÉCORESPONSABLES : Concevoir mieux avec moins, publié dans le dernier numéro de L’Actualité Alimentaire.

Cliquez ici pour télécharger l’intégralité de l’article

Bonne lecture

lundi 25 octobre 2010

Marvel Over-packaging: Plus c'est gros, mieux ça passe

Les jouets pour enfants, non seulement ils sont difficiles à ouvrir, mais ils sont aussi sur-emballés.

La raison de ce suremballage, tromper le consommateur. Mais ce cas Marvel dépasse l’entendement : emballage surréaliste qui mérite le prix de l’emballage-Arnaque le plus Éco-Irresponsable.


Vous pouvez consulter ici le dossier consacré au suremballage (Over-packaging)

Compostable tray heralds new era for chocolate boxes

It is perhaps the ultimate guilt-free invention for die-hard chocoholics looking to destroy the evidence of their crime.

After the chocolates have been devoured, the empty tray – scourge of recyclers – can not only be put on the compost heap, but will also disappear completely if placed under a running tap.

Marks & Spencer is using the new packaging for the first time in its entire Swiss Chocolate Collection range. The new products go on sale in store from today, in anticipation of high demand from shoppers in the runup to Christmas.

The trays will be made of plantic, a material made from starch that is 100% compostable. When plantic becomes moist it breaks down completely, making it ideal for home composting.

Helene Roberts, head of packaging at M&S, said: "This is a fantastic step forwards for food packaging – we know our customers really want to be responsible and using plantic means they can enjoy a delicious box of chocolates without the worry of what to do with the leftover tray – they can just throw it on their compost heap." Once on the compost heap, the plantic tray will take around three weeks to break down completely. If the tray is put under water it will dissolve in a matter of minutes.

In the new chocolate boxes, the outer layer is made from Forest Stewardship Council (FSC) certified cardboard, while the mat that sits on top is made from greaseproof paper and is also fully recyclable.

The only material not compostable will be the plastic film wrapped around the box. This is made from PP – recyclable but not currently collected in Britain.

M&S was the first British retailer to trial plantic in 2007, and after successful customer feedback the retailer decided to use the material for its entire range of Swiss chocolates which have just gone on sale for Christmas.

This will be the widest range of products available on the high street packed in plantic. The tray will also be rolled out for another Christmas favourite, mince pies.

The move is part of manufacturers' and retailers' drive to increase the amount of packaging they use from renewable and sustainable materials.

Roberts added: "We want to make sure the packaging we use can be easily recycled or composted – this is not only better for the environment but also for our customers who can now enjoy a box of guilt-free chocolates – they just have to resist eating them all at once."

Development of the new biodegradable packaging has been spearheaded in Australia, and packaging experts and scientists believe it has the potential to revolutionise the mainstream confectionery packaging market.


dimanche 24 octobre 2010

Bio-coatings for corrugated Boxes: Bio-Resin and Water-Based Coatings

The RISI’S 14th International Containerboard Conference is scheduled for November 3-5, 2010, at the Swissotel in Chicago, IL, USA. This event offers unparalleled networking opportunities with top decision-makers from the leading containerboard producers, converters and packaging buyers. The 2010 program will explore growth prospects, cost reduction strategies, changing quality requirements and more in containerboard and corrugated markets.

I will attend the conference and give a speech entitled: “Bio-coatings for corrugated Boxes: Bio-Resin and Water-Based Coatings
Outline:
  1. Why wax is on the wane?
  2. Market drivers: Sustainability is a Shared Responsibility
  3. Bio-coated paper and paperboard: Renewable & Compostable
  4. Water-based Barrier: Repulpability, an Important Route to Sustainability
  5. Take home…

vendredi 22 octobre 2010

Plant-Based Plastics Not Necessarily Greener Than Oil-Based Relatives

Biopolymers are the more eco-friendly material, but farming and energy-intense chemical processing means they are dirtier to produce than petroleum-derived plastics, according to study in Environmental Science & Technology.

The researchers examined 12 plastics—seven petroleum-based polymers, four biopolymers, and one hybrid. The team first performed a life-cycle assessment (LCA) on each polymer’s preproduction stage to gauge the environmental and health effects of the energy, raw materials, and chemicals used to create one ounce of plastic pellets. They then checked each plastic in its finished form against principles of green design, including biodegradability, energy efficiency, wastefulness, and toxicity.


Biopolymers were among the more prolific polluters on the path to production, the LCA revealed. The team attributed this to agricultural fertilizers and pesticides, extensive land use for farming, and the intense chemical processing needed to convert plants into plastic. All four biopolymers were the largest contributors to ozone depletion. The two tested forms of sugar-derived polymer—standard polylactic acid (PLA-G) and the type manufactured by Minnesota-based NatureWorks (PLA-NW), the most common sugar-based plastic in the United States—exhibited the maximum contribution to eutrophication, which occurs when overfertilized bodies of water can no longer support life. One type of the corn-based polyhydroyalkanoate, PHA-G, topped the acidification category. In addition, biopolymers exceeded most of the petroleum-based polymers for ecotoxicity and carcinogen emissions.

However, once in use, biopolymers beat traditional polymers for eco-friendliness, according to researchers. For example, the sugar-based plastic from NatureWorks jumped from the sixth position under the LCA to become the material most in keeping with the standards of green design.