2019
DOI: 10.1016/j.fuel.2018.11.102
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Efficient removal of elemental mercury by magnetic chlorinated biochars derived from co-pyrolysis of Fe(NO3)3-laden wood and polyvinyl chloride waste

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Cited by 121 publications
(36 citation statements)
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“…Though biochar can be used to reduce CO 2 emissions, it has low affinity for CO 2 and thus requires modifications for effective CO 2 capture [48]. One modification method is impregnating biochar with nitrogen and this improves biochar removal of CO 2 of up to 55% [49]. For H 2 S gas, biochar has been used to achieve as high as 95% removal efficiency from a biogas production process [50].…”
Section: Role Of Biochar In Pollution Managementmentioning
confidence: 99%
“…Though biochar can be used to reduce CO 2 emissions, it has low affinity for CO 2 and thus requires modifications for effective CO 2 capture [48]. One modification method is impregnating biochar with nitrogen and this improves biochar removal of CO 2 of up to 55% [49]. For H 2 S gas, biochar has been used to achieve as high as 95% removal efficiency from a biogas production process [50].…”
Section: Role Of Biochar In Pollution Managementmentioning
confidence: 99%
“…Zhu et al (2019) concluded that the adsorption capacities of Cd by nano-zero-valent iron biochar (nZVI) and nano-αhydroxyferric oxide biochar (nHIO) were 22.37 mg g -1 and 26.43 mg g -1 , respectively, which were three times that of the original biochar (7.02 mg g -1 ). Xu et al (2019) synthesized magnetic chlorinated biochar (Fe-Cl/BC) and suggested that the Fe 3 O 4 in mixed material would provide active sites for Hg 0 . Xiao et al (2019) proved that the adsorption capacities of Cr(VI) and Cu(II) by the complex of chitosan and magnetic Luffa Biochar (CMLB) were higher than that of the original biochar.…”
Section: G R a P H I C A L Abstractmentioning
confidence: 99%
“…8,9 However, there is limited attention paid on the effect of the introduction of hydrogen-rich blends and catalyst on the preparation of carbon materials from LG. 10,11 On the other hand, environmental issues arising from heavy metal ions-containing wastewater, such as Cu(II), have attracted more and more attention in recent years due to their horrible toxicity, carcinogenicity and mutagenicity. [12][13][14][15] Various technologies, involving chemical precipitation, ion exchange, membrane separation, coagulation and adsorption, have been widely developed to deal with the heavy metal ions-related environment issues.…”
Section: Introductionmentioning
confidence: 99%
“… 8,9 However, there is limited attention paid on the effect of the introduction of hydrogen-rich blends and catalyst on the preparation of carbon materials from LG. 10,11 …”
Section: Introductionmentioning
confidence: 99%