Metal Modified NaY Zeolite as Sorbent for the Ultra Deep Removal
·The ultra deep removal of thiophene is essential for the conversion of coke oven gas to methane and metal modified Y zeolite has excellent thiophene adsorption capacity
·The ultra deep removal of thiophene is essential for the conversion of coke oven gas to methane and metal modified Y zeolite has excellent thiophene adsorption capacity
·Rust has long been the nemesis of metal surfaces It is unsightly weakens structures and can be challenging to remove Over the years numerous home remedies have emerged claiming to be effective in rust removal One such remedy that has gained popularity is using Coca Cola Coca Cola is a carbonated soft drink loved by millions worldwide
·Rust can be a stubborn problem that plagues many metal surfaces leaving them with an unsightly appearance When faced with this issue people often seek unconventional solutions to remove rust One popular rumor is that Coca Cola the beloved carbonated beverage can serve as a useful rust remover But is this claim fact or fiction Let s
·World health organization WHO has set guidelines for the maximum permissible limits on these toxic heavy metals and their consequences to human health when those limits are surpassed in drinking water and industrial waste water as listed in Table 2 [10] [11] Contamination of agricultural soils and crops by heavy metals produced from industries
·High sulfur petroleum coke PC a by product of the petrochemical industry has the potential to prepare high performance mercury removal adsorbents The effects of activation parameters of pyrolysis mechanochemistry pyrolysis mechanochemistry on the mercury removal ability of activated PC were systematically studied in this work
·Oxygen conversion of the sulfided non noble transition metal catalysts CoMo/g Al 2 O 3 and NiMo/g Al 2 O 3 compared to the Pt/g Al 2 O 3 catalyst in a synthetic coke oven gas mixture with 8000
·The removal efficiency increases considerably compared to conventional stirring method The mechanism of removal impurity from petroleum coke with ultrasound assisted was analyzed through SEM
The kinetics of coke formation and its removal from nickel copper and alloys have been studied and the results correlated with the morphology of the deposits Coke deposition from hydrogen propylene steam was fast on nickel and slower on copper and the alloys The deposition on nickel was filamentary in appearance resulting from a heterogeneously catalysed process whereas
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