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China researchers hydrotreat waste engine oil and scrap tire oil blend to produce diesel- and jet-range fuel

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Researchers at Henan Polytechnic University in China have hydrotreated the oil derived from hydrothermal liquefaction of scrap tires (STO) with waste engine oil (WEO) using five different activated carbon-supported noble metal catalysts—Pd/C, Pt/C, Ru/C, Ir/C, and Rh/C—for the production of liquid fuels. —Liu et al.

Oil 220
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Researchers propose testing standards for particulate photocatalysts in solar fuel production

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In this regard, photocatalytic water splitting has attracted significant interest as a cost-effective means to convert sustainable solar energy into valuable chemicals. LI Rengui from the Dalian Institute of Chemical Physics (DICP) of the Chinese Academy of Sciences (CAS), in collaboration with Prof. A research team led by Prof.

Solar 418
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China researchers synthesize high-density aviation fuel with cellulose

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Scientists in China have developed a process for converting cellulose from plant waste from agriculture and timber harvesting into high-density aviation fuel: a polycycloalkane mixture. Li and his team found that cellulose can be selectively converted to. —Ning Li. 2,5-hexanedione using hydrogenolysis. 2019.02.005.

China 321
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TMO Renewables expands production of cellulosic ethanol with cassava stalk; cost projected to be less than $2/gallon

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TMO Renewables, the developer of a novel thermophilic bacterium and process for converting biomass into fuel ethanol ( earlier post ), has advanced to demonstration scale on cassava stalk feedstock with major Chinese fuel and food producers. Earlier post.).

Renewable 186
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CAS researchers propose decoupling gasification reactions for greater control and optimized outcomes

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Gasification is emerging as a core technology for the production of chemicals and cleaner power, and refers to a process for converting solid fuels, including coal, biomass, and wastes, into either fuel gas (containing CH 4 and some N 2 usually) or syngas (containing mainly H 2 and CO) for subsequent conversion into fuels and chemicals.

Coal 220
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ArcelorMittal and LanzaTech break ground on €150M project to convert blast furnace carbon emissions to ethanol

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Leading steel and mining company ArcelorMittal has begun construction of new premises at its site in Ghent, Belgium, to house a new installation which will convert carbon-containing gas from its blast furnaces into bioethanol. Earlier post.). —Jennifer Holmgren, CEO of LanzaTech.

Carbon 225
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Benchmark Mineral Intelligence: Lithium oversupply not likely

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However, Benchmark points out, known domestic Chinese spodumene and other hard rock resources are low-quality, a key reason why there has been an increasing reliance by Chinese converters on Australia for supply instead. Associated opex and ramp up times are also commonly underestimated.

Price 231