Chemicals and waste

The management of chemicals and waste is a crucial aspect of achieving the Sustainable Development Goals (SDGs), a collection of 17 interlinked global goals designed to be a "blueprint to achieve a better and more sustainable future for all" by 2030. These goals were set up in 2015 by the United Nations General Assembly and are intended to be achieved by the year 2030. They address global challenges, including those related to poverty, inequality, climate change, environmental degradation, peace, and justice.

SDG 12, which focuses on Responsible Consumption and Production, is directly related to the management of chemicals and waste. This goal aims to ensure sustainable consumption and production patterns, which includes the environmentally sound management of chemicals and waste. The mismanagement of these elements can have severe environmental and health impacts, thus undermining the objectives of SDG 12.

One of the critical links between chemical and waste management and the SDGs is to human health, as outlined in SDG 3, which aims to ensure healthy lives and promote well-being for all at all ages. Improper handling and disposal of chemicals and waste can lead to pollution and contamination, which can have direct adverse effects on human health. This includes increased risks of diseases, long-term health conditions, and impacts on the well-being of communities, especially those living in close proximity to waste disposal sites or industrial areas.

The impact of waste management also extends to climate change, addressed in SDG 13. Excessive waste generation, particularly organic waste in landfills, contributes to the production of greenhouse gases like methane, a potent contributor to global warming. Additionally, the production and disposal of plastics, electronic waste, and other non-biodegradable materials contribute significantly to carbon emissions. Effective management and reduction of waste are essential to mitigate climate change impacts.

The preservation of life below water (SDG 14) and life on land (SDG 15) is also heavily influenced by how chemicals and waste are managed. Pollution from chemicals and waste can severely impact aquatic ecosystems, harming marine life and biodiversity. Similarly, terrestrial ecosystems and wildlife are at risk from land pollution and habitat destruction caused by improper waste disposal and chemical spills.

Furthermore, SDG 8, which focuses on promoting sustained, inclusive, and sustainable economic growth, full and productive employment, and decent work for all, is impacted by the management of chemicals and waste. Workers in industries dealing with chemicals and waste are often exposed to hazardous conditions. Ensuring their safety and health is a key aspect of achieving this goal. Moreover, sustainable waste management can create new job opportunities and contribute to economic growth through recycling and waste-to-energy sectors.

The effective and environmentally sound management of chemicals and waste is not only essential for achieving SDG 12 but also intersects with several other SDGs. It is a fundamental component of sustainable development, impacting human health, climate change, biodiversity, and economic growth. Addressing these challenges requires a holistic approach, encompassing strict regulatory frameworks, technological innovation, public awareness, and international cooperation to ensure a sustainable future.

Elsevier, Current Opinion in Green and Sustainable Chemistry, Volume 8, December 2017
Chemistry made once expensive leisure activities available to public by providing inexpensive materials for fishing rods, golf equipment etc. Nowadays, eco-minded costumers wish the impact of their leisure activities on environment as little as possible, and thus expect materials to be overall sustainable. Particularly, the hospitality sector has to fulfill the expectations of eco-minded tourists who prefer hotels engaged in activities for protecting natural resources and working against waste accumulation.
Elsevier, Current Opinion in Green and Sustainable Chemistry, Volume 8, December 2017
From waste to wealth using green chemistry: The way to long term stability
Waste is an extremely valuable resource that we have been accumulating over a long period. Interesting and viable organic “waste-to-resource” opportunities include plastics and food supply chain wastes. Their use as chemical feedstocks will fit well with a circular economy model. Plastics is a major waste opportunity: worldwide we only recycle a few % of the plastic we use, yet plastic manufacturing consumes some 10% of all the oil we consume, and much of it causes serious environmental damage through negligent release.
The replacement of the fossil resources historically employed for chemicals’ production is of major scientific interest the last decades, as a result of the environmental issues arisen and the price versatility of petroleum. Biotechnological routes present promising alternatives for the production of various platform chemicals such as succinic, lactic and muconic acids among others. The utilisation of agricultural and agro-industrial waste and by-product streams would not only reduce the overall production cost but also it would assist towards the direction of the bio-economy era.
Elsevier, Current Opinion in Green and Sustainable Chemistry, Volume 8, December 2017
This article describes how a chemical company identified, developed and marketed a new solvent using EPA standards.
Elsevier, Current Opinion in Green and Sustainable Chemistry, Volume 7, October 2017
The paper presents the most recent advances in applications of alternative medium to replace polar aprotic solvents such as dimethylformamide (DMF), dimethylacetamide (DMAc) or N-methyl-2-pyrrolidone (NMP). Focus is made on the use of nonionic designer surfactant (e.g. TPGS-750-M) in water instead of traditional organic solvents. Much attention is given to its applications to several commonly used transformations in active pharmaceutical ingredient (API) synthesis, such as amidation reactions, Suzuki–Miyaura cross-couplings, nitro group reductions, and aromatic nucleophilic substitutions.
John Dale left and Derek Burgoyne
Finishing 3,000 dairy-bred beef cattle on waste food while producing green energy and fertiliser as by-products is the sustainable model for one Cambridgeshire farmer and his business partner. This approach helps meet the criteria for SDG 7 of access for all to affordable, reliable, sustainable and modern energy and SDG 12 which promotes responsible consumption and production.
Marine plastic pollution has been a growing concern for decades. Single-use plastics (plastic bags and microbeads) are a significant source of this pollution. Although research outlining environmental, social, and economic impacts of marine plastic pollution is growing, few studies have examined policy and legislative tools to reduce plastic pollution, particularly single-use plastics (plastic bags and microbeads). This paper reviews current international market-based strategies and policies to reduce plastic bags and microbeads.
The winners of the 2017 Elsevier Foundation Green and Sustainable Chemistry Challenge are first-prize winner (at right) Dênis Pires de Lima, PhD, a professor at Federal University of Mato Grosso do Sul, Brazil, and runner-up Chioma Blaise Chikere, PhD, a
"The Elsevier Foundation is encouraging innovation and enhancing scientific research through its Green and Sustainable Chemistry Challenge. This open competition aims to encourage green and sustainable chemistry solutions to tackle some of the biggest sustainability challenges, whether in water, energy or sanitation and directly supports SDG 9 target 5 by encouraging innovation, in particular in developing countries. The winner of the 2017 Challenge is developing low-cost and sustainable insecticides with the aim of reducing mosquito-related diseases such as Dengue Fever."
Photos of a beach on Henderson Island in the Pacific Ocean provides yet more evidence of the detrimental impact that packaging and other plastics waste is having on the environment globally. Creating a virtuous circle out of what, until now, has largely been a chain of production from feedstock to consumer will not be easy. But it is the innovation aspect that has fired the imagination of producers, processors and corporate consumers of plastics packaging. This fits with SDG 9.4 to upgrade infrastructure and retrofit industries to make them sustainable, with increased resource-use efficiency and greater adoption of clean and environmentally sound technologies and industrial processes and SDG 7 Affordable and Clean Energy.
This article highlights the winning proposals of the second edition of the Elsevier Foundation Green & Sustainable Chemistry Challenge. The winning proposals were chosen for their innovative green chemistry aspects and their large positive impact on the environment, contributing to SDGs 3, 8, 13 and 15.

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