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Comprehensive reutilization of herbal waste:Coproduction of magnolol,honokiol,and β-amyrin from Magnolia officinalis residue
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作者 Lukun Xiao Anyi Zhao +12 位作者 Jie Qiu An Liu Sha Chen Jinzhu Jiang Jun Zhang Cong Guo Jipeng Di Jintang Cheng Chang Chen Kangxin Hou Aiping Zhang Yan Liu Caixia Wang 《Green Energy & Environment》 SCIE EI CAS CSCD 2024年第2期403-412,共10页
Herbal extraction residues(HERs)cause serious environmental pollution and resource waste.In this study,a novel green route was designed for the comprehensive reutilization of all components in HERs,taking Magnolia off... Herbal extraction residues(HERs)cause serious environmental pollution and resource waste.In this study,a novel green route was designed for the comprehensive reutilization of all components in HERs,taking Magnolia officinalis residues(MOR)as an example.The reluctant structure of MOR was first destroyed by alkali pretreatment to release the functional ingredients(magnolol and honokiol)originally remaining in MOR and to make MOR more accessible for hydrolysis.A metal–organic frame material MIL-101(Cr)with a maximum absorption capacity of 255.64 mg g^(-1)was synthesized to absorb the released honokiol and magnolol from the pretreated MOR solutions,and 40 g L^(-1)reducing sugars were obtained with 81.8%enzymatic hydrolysis rate at 10%MOR solid loading.Finally,382 mg L-1β-amyrin was produced from MOR hydrolysates by an engineered yeast strain.In total,1 kg honokiol,8 kg magnolol,and 7.64 kg β-amyrin could produce from 1 ton MOR by this cleaner process with a total economic output of 170,700 RMB. 展开更多
关键词 Magnolia officinalis residues(MOR) Comprehensive utilization metal-organic frame material BIOSYNTHESIS
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MOF‑Derived CoSe2@N‑Doped Carbon Matrix Confined in Hollow Mesoporous Carbon Nanospheres as High‑Performance Anodes for Potassium‑Ion Batteries 被引量:6
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作者 Su Hyun Yang Seung‑Keun Park Yun Chan Kang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2021年第1期123-137,共15页
In this work,a novel vacuum-assisted strategy is proposed to homogenously form Metal-organic frameworks within hollow mesoporous carbon nanospheres(HMCSs)via a solid-state reaction.The method is applied to synthesize ... In this work,a novel vacuum-assisted strategy is proposed to homogenously form Metal-organic frameworks within hollow mesoporous carbon nanospheres(HMCSs)via a solid-state reaction.The method is applied to synthesize an ultrafine CoSe2 nanocrystal@N-doped carbon matrix confined within HMCSs(denoted as CoSe2@NC/HMCS)for use as advanced anodes in highperformance potassium-ion batteries(KIBs).The approach involves a solvent-free thermal treatment to form a Co-based zeolitic imidazolate framework(ZIF-67)within the HMCS templates under vacuum conditions and the subsequent selenization.Thermal treatment under vacuum facilitates the infiltration of the cobalt precursor and organic linker into the HMCS and simultaneously transforms them into stable ZIF-67 particles without any solvents.During the subsequent selenization process,the“dual confinement system”,composed of both the N-doped carbon matrix derived from the organic linker and the small-sized pores of HMCS,can effectively suppress the overgrowth of CoSe2 nanocrystals.Thus,the resulting uniquely structured composite exhibits a stable cycling performance(442 mAh g^−1 at 0.1 A g^−1 after 120 cycles)and excellent rate capability(263 mAh g^−1 at 2.0 A g^−1)as the anode material for KIBs. 展开更多
关键词 metal-organic frameworks Hollow mesoporous carbon nanospheres Potassium-ion batteries cobalt selenides Electrode materials
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腐朽柴片状钴MOFs掺杂的松香基醇酸树脂清漆的制备
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作者 黄增尉 吴海洋 +3 位作者 余会成 石展望 刘苏妮 何升阳 《热固性树脂》 CAS 2024年第4期36-40,共5页
为了提高醇酸树脂清漆的防腐蚀性能,采用六水合硝酸钴制备了腐朽柴片状Co-MOFs材料,通过扫描电镜及X射线粉末衍射(XRD)分析,证实了材料制备成功。将Co-MOFs作为功能填料掺杂于松香基醇酸树脂中,并涂覆于Q235低碳钢电极及马口铁板上。采... 为了提高醇酸树脂清漆的防腐蚀性能,采用六水合硝酸钴制备了腐朽柴片状Co-MOFs材料,通过扫描电镜及X射线粉末衍射(XRD)分析,证实了材料制备成功。将Co-MOFs作为功能填料掺杂于松香基醇酸树脂中,并涂覆于Q235低碳钢电极及马口铁板上。采用极化曲线、交流阻抗、盐水浸泡腐蚀试验等研究了Co-MOFs的添加对漆膜防腐性能的影响。结果表明:当Co-MOFs的添加质量分数为0.11%时,漆膜的耐腐蚀性显著提升,腐蚀电流密度由36.24μA/cm^(2)降低至2.52μA/cm^(2),防腐蚀保护效率由83.2%提高至98.8%,盐水浸泡腐蚀试验结果与电化学测试结果基本一致。漆膜的硬度提升至4 H。 展开更多
关键词 钴金属有机框架材料 腐朽柴片状材料 防腐 漆膜 醇酸树脂清漆
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