Freiburg Materials Research Center and Institute for Macromolecular Chemistry, University of Freiburg, Stefan-Meier-Str. 31, D-79104, Freiburg, Germany.
Sustainability Center, University of Freiburg, Ecker-Str. 4, D-79104, Freiburg, Germany.
Macromol Rapid Commun. 2022 Jul;43(13):e2200247. doi: 10.1002/marc.202200247. Epub 2022 Jun 9.
Today, plastics are ubiquitous in everyday life, problem solvers of modern technologies, and crucial for sustainable development. Yet the surge in global demand for plastics of the growing world population has triggered a tidal wave of plastic debris in the environment. Moving from a linear to a zero-waste and carbon-neutral circular plastic economy is vital for the future of the planet. Taming the plastic waste flood requires closing the carbon loop through plastic reuse, mechanical and molecular recycling, carbon capture, and use of the greenhouse gas carbon dioxide. In the quest for eco-friendly products, plastics do not need to be reinvented but tuned for reuse and recycling. Their full potential must be exploited regarding energy, resource, and eco-efficiency, waste prevention, circular economy, climate change mitigation, and lowering environmental pollution. Biodegradation holds promise for composting and bio-feedstock recovery, but it is neither the Holy Grail of circular plastics economy nor a panacea for plastic littering. As an alternative to mechanical downcycling, molecular recycling enables both closed-loop recovery of virgin plastics and open-loop valorization, producing hydrogen, fuels, refinery feeds, lubricants, chemicals, and carbonaceous materials. Closing the carbon loop does not create a Perpetuum Mobile and requires renewable energy to achieve sustainability.
如今,塑料在日常生活中无处不在,是现代技术的问题解决者,也是可持续发展的关键。然而,全球对人口增长所带来的塑料需求的激增,已经在环境中引发了一波塑料碎片的浪潮。从线性经济向零浪费和碳中和的循环塑料经济转变,对于地球的未来至关重要。要想遏制塑料垃圾的泛滥,就必须通过塑料再利用、机械和分子回收、碳捕获以及温室气体二氧化碳的利用来封闭碳循环。在寻求环保产品的过程中,并不需要对塑料进行重新发明,而是需要对其进行调整,以实现再利用和回收。必须充分挖掘塑料在能源、资源和生态效率、废物预防、循环经济、减缓气候变化和降低环境污染方面的潜力。生物降解在堆肥和生物原料回收方面有很大的潜力,但它既不是循环塑料经济的圣杯,也不是解决塑料垃圾问题的万能药。作为机械降级的替代方案,分子回收既能实现原始塑料的闭环回收,也能实现开环增值,生产氢气、燃料、炼油原料、润滑剂、化学品和碳质材料。封闭碳循环并不能创造永动机,而且需要可再生能源才能实现可持续性。