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A recent study that recommended toxic chemicals in black plastic products be immediately thrown away included a math error that significantly overstated the risks of contamination, but its authors are standing by their conclusions and warn against using such products. Published in the peer-reviewed journal Chemosphere , experts from the nonprofit Toxic-Free Future said they detected flame retardants and other toxic chemicals in 85% of 203 items made of black plastic including kitchen utensils , take-out containers, children's toys and hair accessories. In a blog post, Joe Schwarcz, director of McGill University's Office for Science and Society in Canada, explained that the Toxin-Free Future scientists miscalculated the lower end of what the EPA considered a health risk through a multiplication error. Instead of humans being potentially exposed to a dose of toxic chemicals in black plastic utensils near the minimum level that the EPA deems a health risk, it's actually about one-tenth of that. (Dreamstime/TNS) The study initially said the potential exposure to chemicals found in one of the kitchen utensils approached the minimum levels the Environmental Protection Agency deemed a health risk. But in an update to the study, the authors say they made an error in their calculations and the real levels were "an order of magnitude lower" than the EPA's thresholds. The error was discovered by Joe Schwarcz, director of McGill University's Office for Science and Society in Canada. In a blog post, Schwarcz explained that the Toxin-Free Future scientists miscalculated the lower end of what the EPA considered a health risk through a multiplication error. Instead of humans being potentially exposed to a dose of toxic chemicals in black plastic utensils near the minimum level that the EPA deems a health risk, it's actually about one-tenth of that. Though Schwarcz said the risks outlined in the study aren't enough for him to discard his black plastic kitchen items if he had them, he agreed with the authors that flame retardants shouldn't be in these products in the first place. "The math error does not impact the study's findings, conclusions or recommendations," said Megan Liu, a co-author of the study who is the science and policy manager for Toxic-Free Future . She added that any traces of flame retardants or toxic chemicals in cooking utensils should be concerning for the public. Flame retardants are getting into commonly used items because black-colored products are being made from recycled electronic waste, such as discarded television sets and computers, that frequently contain the additives. When they're heated, the flame retardants and other toxic chemicals can migrate out. If you're wondering whether your old black plastic spoon or other utensils are a part of this group, Liu shared some more guidance. It's nearly impossible to know whether a black plastic product is contaminated. That's because these products that include recycled e-waste don't disclose a detailed list of all ingredients and contaminants in the product. Liu said it's also unclear how many types of flame retardants are in these black plastic products. Some of the products that researchers tested in this recent study "had up to nine different harmful chemicals and harmful flame retardants in them," she said. Anytime you're looking for the type of recycled plastic a product is made of you're going to look for a number within the chasing arrows (that form a triangle) logo. Recycling symbols are numbered 1 to 7 and we commonly associate the numbers with what we can toss in our blue recycling bins. The 1 through 7 numbers stand for, respectively, polyethylene terephthalate, high-density polyethylene, polyvinyl chloride (PVC), low-density polyethylene, polypropylene, polystyrene or Styrofoam, and miscellaneous plastics (including polycarbonate, polylactide, acrylic, acrylonitrile butadiene, styrene, fiberglass and nylon). The study found higher levels of toxic flame retardants in polystyrene plastic, which is labeled with the number 6, said Liu. There isn't a definitive timeline of when recycled electronic-waste started to be incorporated into black plastic products specifically, but e-waste started to get recycled in the early 2000s, Liu said. The way computers, cellphones, stereos, printers and copiers were being disposed of previously was to simply add them to a landfill without reusing salvageable parts. But as the National Conference of State Legislatures notes, electronics production required a significant amount of resources that could be recovered through recycling. Recovering resources such as metals, plastics and glass through recycling used a fraction of the energy needed to mine new materials. However, the study pointed out that flame retardants and other chemical contaminates have been detected in and near e-waste recycling facilities, in indoor air and dust at formal e-waste recycling facilities in Canada, China, Spain and the U.S. It also noted contamination in soil samples surrounding e-waste recycling sites in China and Vietnam. The safest nontoxic material options for kitchen utensil are wood and stainless steel. The 20th century brought airplanes, radio, television, the internet, and plastic. Lots of plastic. That plastic is now showing up on shorelines, forming islands in oceans, and generating mountains of translucent trash on land. Around 700 species of animals in the sea have been found to interact with plastic daily. Companies across every industry face pressure to reduce the amount of plastic they produce. Seventy-two percent of the world's largest have made voluntary commitments to reduce their plastic waste, according to a Duke University analysis. One industry, in particular, has greatly benefited from advancements in single-use plastic technology: the medical industry. Only in recent years have businesses and academics in the field begun to talk about minimizing their impact on our environment like beverage manufacturers and other consumer goods-producing businesses. Medical Technology Schools analyzed academic studies published in the National Library of Medicine , the American Medical Association , and news reports to shed light on the medical community's use of plastics through history, their environmental problems, and proposed solutions to reduce their impact. And the impact can be significant. A single hospital patient generates nearly 34 pounds of waste a day —as much as a quarter of it is plastic. The COVID-19 pandemic only worsened the problem. The pandemic pushed hospital capacity to the brink and led to a massive increase in personal protective equipment and medical supply usage. Medical-grade masks and other protective equipment like face shields, made mostly of nonrenewable plastics, were in high demand. In 2020, the World Health Organization estimated that the international need for PPE manufacturing would boost 40% to address the public health crisis. Hospitals needed an estimated 89 million masks, 76 million gloves, and 1.6 million goggles every month of the pandemic. To date, nearly 677 million COVID-19 vaccine doses have been administered, each requiring their own plastic syringe, according to data from the Centers for Disease Control and Prevention. Global consulting firm Frost & Sullivan estimated that the U.S. would produce a year's worth of medical waste in just two months due to the pandemic. The World Economic Forum warned that the COVID-19 crisis threatened to " stall and even reverse progress " to reduce large plastic waste. It's a challenge researchers acknowledge today as they search for solutions. Plastics introduced an era of ultraconvenience to the world. It makes our clothes. It's made bike helmets and airbags possible. And it's a cheap material to produce, meaning it's cheap for consumers too. Almost as importantly, it's durable and incredibly easy to make into complex shapes—a trait that helped plastics invented in the mid-20th century quickly replace more expensive metal and wooden goods. That adoption extended to the medical field, where the single-use nature of plastics represented a move toward more hygienic tools for physicians and hospitals. But it wasn't plastic's sanitary qualities that the industry first latched onto. Like so many other technical advancements, convenience and cost were the initial driving factors. That they were more conducive to creating a sterile environment for patients was a benefit that health care began to tout closer to the end of the 20th century. PVC, or polyvinyl chloride, replaced glass bottles previously used to hold IV solution and replaced rubber tubing used throughout hospital settings. Plastic has also become the go-to material for making syringes and catheters. Plastic products are generally made from chemicals derived from the oil and natural gas refining process. Chemists use those byproducts to create synthetic materials with malleable and durable chemical structures. The low cost of these materials has helped medical device-makers support better health outcomes for communities across the U.S. since the 1900s. No longer was health care priced at rates only the elite could afford—it was accessible to a much larger swath of the public. In the last decade, the U.S., in particular, has emerged as a massive market for medical plastics. The country generally accounts for nearly half of the global market for medical devices. Plastic's durability is not only a benefit but a detriment to the environment, as the material can take many years to deteriorate when it enters landfills or trashes oceans. Estimates vary widely, but scientists ballpark that depending on the kind of plastic and the environment in which it decomposes, it could take dozens to thousands of years to break down entirely. COVID-19, which remains a burden for health care systems, isn't the only force raising the stakes for a health care industry pressured to reduce reliance on plastics or find ways to reuse them. Global annual production of plastic has doubled in the last two decades , according to the Environmental Protection Agency. As the U.S. looks toward the future, its aging population is another factor that could exacerbate the rate at which medical plastics end up in landfills. People require more medical care as they age, and aging baby boomers are expected to place increased demand on the medical device industry. At the same time, governments are under pressure to lower health care costs, which have become unaffordable even for those insured . As recently as 2021, researchers lamented a lack of data on efforts to recycle medical plastics. Around 350 hospitals participate in Practice Greenhealth's Environmental Excellence Awards . Practice Greenhealth is an organization working to help hospitals increase their sustainability. It's one of the few sources of hospital sustainability data, and its roster of participating hospitals represents a small fraction of the more than 6,000 hospitals operating in the U.S. To meet the need to reduce plastic waste generation, some hospitals are moving away from using plastic in certain applications. Ronald Reagan UCLA Medical Center replaced health care workers' disposable plastic isolation gowns with reusable cloth gowns at its hospitals in the last decade, saving money and preventing literal tons of medical waste. It also implemented a process for sterilizing and incinerating the boxes that hold used needles, allowing them to be reassembled and reused in a health care setting. Recycling plastic medical waste is complicated by the potential for contamination and the need to separate contaminated and noncontaminated waste; once separated, they can be broken down with heat or treated with chemicals and reprocessed. However, using chemical methods to break down and dispose of plastics has drawbacks. Over 200 nongovernmental organizations signed a letter in 2023 urging the Biden administration to end federal support for methods like these, arguing they generate toxic pollutants. The Vinyl Council of Australia is working with hospitals to recover used materials made of PVC . The materials are broken down into tiny pieces, washed and heated at high temperatures, and remade into things used outside medical settings. In the U.S. and Europe, there's the Healthcare Plastics Recycling Council, a coalition of companies working in the health care device space that includes DuPont, Johnson & Johnson, and Medtronic. In 2021, the HPRC, advised by professionals at Kaiser Permanente and other health systems, rolled out a medical waste recycling pilot project with hopes of scaling it across more hospitals. Story editing by Ashleigh Graf. Copy editing by Paris Close. Photo selection by Clarese Moller. This story originally appeared on Medical Technology Schools and was produced and distributed in partnership with Stacker Studio. Sign up here to get the latest health & fitness updates in your inbox every week!

After Juan Soto's megadeal, could MLB see a $1 billion contract? Probably not soonCore Scientific's director Yadin Rozov sells $1.9 million in stockAlex Ovechkin has a broken left fibula and is expected to be out four to six weeks, an injury that pauses the Washington Capitals superstar captain’s pursuit of Wayne Gretzky’s NHL career goals record. The Capitals updated Ovechkin’s status Thursday after he was evaluated by team doctors upon returning from a three-game trip. The 39-year-old broke the leg in a shin-on-shin collision Monday night with Utah's Jack McBain, and some of his closest teammates knew it was not good news even before Ovechkin was listed as week to week and placed on injured reserve. Javascript is required for you to be able to read premium content. Please enable it in your browser settings.

CHESAPEAKE, Va. , Dec. 2, 2024 /PRNewswire/ -- Greenwave Technology Solutions, Inc. (Nasdaq: GWAV ) (" Greenwave " or the " Company "), a leading operator of metal recycling facilities across Virginia , North Carolina , and Ohio , has taken a transformative step by acquiring the real estate for seven of its core facilities. This strategic iniative, facilitated through a purchase from Chief Executive Officer Danny Meeks , thereby reduces the Company's annual rent expenses by approximately $1.7 million , enhancing cashflow and positioning Greenwave for future growth and potential high-value strategic transactions. Unmatched Competitive Edge in the Metal Recycling Industry Greenwave holds a portfolio of highly coveted operational licenses for its metal recycling facilities. These licenses, often protected by grandfathered municipal codes, provide significant barriers to entry for competitors in tightly regulated markets. Key highlights include: Norfolk, VA Facility : Positioned near the largest U.S. Naval Base, Greenwave's Norfolk facility benefits from a steady influx of prime scrap metal and holds one of the only Virginia Department of Motor Vehicles automotive recycler/demolisher licenses in the city. Virginia Beach, VA Facility : Greenwave operates the sole metal recycling facility in the state's largest city, Virginia Beach , strategically located near NAS Oceana and the region's thriving industrial core. Portsmouth, VA Facility : A cost-effective hub for domestic and international shipments due to its proximity to the Port of Virginia , the Company's license for its Portsmouth facility is shielded by grandfathered regulations. For more information, please see the Company's Current Report on Form 8-K filed with the U.S. Securities and Exchange Commission on December 2, 2024 . About Greenwave – One of the Mid Atlantic's Leading Metal Recyclers As an operator of 13 metal recycling facilities, Greenwave Technology Solutions, Inc. (Nasdaq: GWAV ) supplies leading steel mills and industrial conglomerates with ferrous and non-ferrous metal. Because steel is one of the most commonly recycled materials worldwide, Greenwave supplies the raw metal utilized in critical infrastructure projects and U.S. warships vital to American national security interests. Headquartered in Chesapeake, VA , the Company has 167 employees with metal recycling operations across Virginia , North Carolina , and Ohio . For detailed financials and updates, visit www.GWAV.com . Forward-looking Statements This press release contains certain forward-looking statements within the meaning of the safe harbor provisions of the Private Securities Litigation Reform Act of 1995. These include, without limitation, statements about its revenue growth, opening of additional locations, margin expansion and cashflow projections. These statements are identified by the use of the words "could," "believe," "anticipate," "intend," "estimate," "expect," "may," "continue," "predict," "potential," "project" and similar expressions that are intended to identify forward-looking statements. All forward-looking statements speak only as of the date of this press release. You should not place undue reliance on these forward-looking statements. Although the Company believes that its plans, objectives, expectations and intentions reflected in or suggested by the forward-looking statements are reasonable, the Company can give no assurance that these plans, objectives, expectations or intentions will be achieved. Forward-looking statements involve significant risks and uncertainties (some of which are beyond the Company's control), assumptions and other factors that could cause actual results to differ materially from historical experience and present expectations or projections. Actual results may differ materially from those in the forward-looking statements and the trading price for the Company's common stock may fluctuate significantly. Forward-looking statements also are affected by the risk factors described in the Company's filings with the SEC. Except as required by law, the Company undertakes no obligation to update or revise publicly any forward-looking statements, whether as a result of new information, future events or otherwise, after the date on which the statements are made or to reflect the occurrence of unanticipated events. SOURCE Greenwave Technology Solutions

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