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朱联东、硕士生刘辰辰的论文在ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH刊出
发布时间:2021-04-15 11:18:06     发布者:易真     浏览次数:

标题: Biochar derived from chicken manure as a green adsorbent for naphthalene removal

作者: Liu, CC (Liu, Chenchen); Yin, ZH (Yin, Zhihong); Hu, D (Hu, Dan); Mo, F (Mo, Fan); Chu, RY (Chu, Ruoyu); Zhu, LD (Zhu, Liandong); Hu, CZ (Hu, Chaozhen)

来源出版物: ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH  DOI: 10.1007/s11356-021-13286-x  提前访问日期: MAR 2021  

摘要: In this study, biochar was generated from chicken manure by using a tube furnace under different temperatures (300, 500, and 700 degrees C), and the treatments were noted as J300, J500, and J700, respectively. In comparison, another type of biochar was prepared under 500 degrees C with a muffle furnace, and the treatment was noted as JM500. Biochar in treatment group J500 was subsequently modified with HNO3 and NaOH, and the treatments were noted as J500-HNO3 and J500-NaOH, respectively. The sorption efficiencies of naphthalene by the above six types of biochar were evaluated. Characteristic results showed that the surface pores of the biochar were improved with the increase of temperature, and biochar under the treatments J300, J500, J700, and JM500 experienced a high speed of adsorption within 1 h after the naphthalene adsorption started. The adsorption capacity of naphthalene increased with the increase of the initial concentration of naphthalene. Treatment J700 exhibited the largest adsorption capacity since its biochar surface pore structure was more fully developed with a crystal structure formed, and its specific surface area was increased by about 20 times compared to the original chicken manure. After biochar modification using HNO3 and NaOH, the infrared spectrum changed, and the adsorption active sites were increased. The biochar modification by HNO3 had a high naphthalene adsorption efficiency compared to NaOH. The order of adsorption capacity was as follows: J500 approximate to JM500 < J300 < J500-NaOH < J500-HNO3 < J700.

入藏号: WOS:000627706200005

PubMed ID: 33704645

语言: English

文献类型: Article; Early Access

作者关键词: Chicken manure; Biochar; Naphthalene; Removal; Adsorption

KeyWords Plus: POLYCYCLIC AROMATIC-HYDROCARBONS; SURFACTANT SOLUTIONS; ADSORPTION; SORPTION; PAHS; CONTAMINANTS; 17-BETA-ESTRADIOL; SULFAMETHOXAZOLE; ANTIBIOTICS; PYROLYSIS

地址: [Liu, Chenchen; Yin, Zhihong; Hu, Dan; Mo, Fan; Chu, Ruoyu; Zhu, Liandong; Hu, Chaozhen] Wuhan Univ, Sch Resource & Environm Sci, Hubei Key Lab Biomass Resources Chem & Environm B, Wuhan 430079, Peoples R China.

[Liu, Chenchen; Yin, Zhihong; Hu, Dan; Mo, Fan; Chu, Ruoyu; Zhu, Liandong; Hu, Chaozhen] Wuhan Univ, Hubei Int Sci & Technol Cooperat Base Sustainable, Wuhan 430079, Peoples R China.

[Zhu, Liandong] Univ Vaas, Fac Technol & Innovat, POB 700, FI-65101 Vaasa, Finland.

[Zhu, Liandong] Univ Vaas, Vaasa Energy Inst, POB 700, FI-65101 Vaasa, Finland.

通讯作者地址: Zhu, LD; Hu, CZ (通讯作者)Wuhan Univ, Sch Resource & Environm Sci, Hubei Key Lab Biomass Resources Chem & Environm B, Wuhan 430079, Peoples R China.

Zhu, LD; Hu, CZ (通讯作者)Wuhan Univ, Hubei Int Sci & Technol Cooperat Base Sustainable, Wuhan 430079, Peoples R China.

Zhu, LD (通讯作者)Univ Vaas, Fac Technol & Innovat, POB 700, FI-65101 Vaasa, Finland.

Zhu, LD (通讯作者)Univ Vaas, Vaasa Energy Inst, POB 700, FI-65101 Vaasa, Finland.

影响因子:3.056


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