Remove Conversion Remove Resource Remove Waste
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DOE researchers investigate economic and environmental impacts of converting wet waste to renewable diesel

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Meanwhile, wet waste feedstocks, such as animal manure and fats, oils, and greases (FOG), represent another important category of resources that could be utilized to produce MCCI bioblendstocks due to its abundant availability. An open-access paper on their results is published in the journal ACS Sustainable Chemistry & Engineering.

Waste 434
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TU/ecomotive develops waste-free car with UBQ: Luca

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With this zero-waste car, the team wants to show that waste can be a valuable material with a multitude of applications. Luca, the world’s first Zero-Waste car. During the UBQ conversion process, the unsorted residual waste stream is reduced into its more basic natural components. Photo by Bart van Overbeeke.

Waste 418
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Blue Marble Biomaterials launches first zero-waste chemical biorefinery

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A photobioreactor and algae perform the “water recycling”; the pelletized solid waste material will be used in the gasifier. has launched the first zero-waste chemical biorefinery in the US in Missoula, Montana. If we have fixed feedstock [such as the waste spent grain], we have price stability. Source: Blue Marble.

Waste 352
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UCalgary, Rice team uses flash joule heating to manufacture graphene from petroleum waste

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Here, we report the bulk-scale conversion of asphaltenes into a stable, naturally occurring form of carbon, namely, graphene, using a single-step, low-cost, energy-efficient, recyclable, scalable, and sustainable technique called flash joule heating (FJH). —Saadi et al.

Waste 492
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Using magnesium alloy waste for hydrogen storage materials

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Researchers have shown that magnesium industrial wastes of AZ91 alloy and Mg-10 wt.% The conversion process is possible and easily achievable, they noted. Resources. Dornheim (2014) Hydrogen storage systems from waste Mg alloys, Journal of Power Sources , Volume 270 Pages 554-563 doi: 10.1016/j.jpowsour.2014.07.129.

Waste 294
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U Delaware team develops chemocatalytic process to convert waste polypropylene to lube oils

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The reaction network involves the sequential conversion of polymer into the oil with a gradual decrease of molecular weight until ?700–800 Vlachos (2021) “Polypropylene Plastic Waste Conversion to Lubricants over Ru/TiO 2 Catalysts” ACS Catalysis doi: 10.1021/acscatal.1c00874. Kots, Sibao Liu, Brandon C. 1c00874.

Delaware 334
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MIT/Stanford team develops battery technology for the conversion of low-grade waste heat to power; TREC

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Researchers at MIT and Stanford University have developed new battery technology for the conversion of low-temperature waste heat into electricity in cases where temperature differences are less than 100 degrees Celsius. These features lead to a high heat-to-electricity energy conversion efficiency of 5.7% Click to enlarge.

MIT 240