数字农科院2.0

Effect Of Pyrolysis Temperature On Characteristics, Chemical Speciation And Environmental Risk Of Cr, Mn, Cu, And Zn In Biochars Derived From Pig Manure

文献类型: 外文期刊

作者: Shen, XL; Zeng, JF; Zhang, DL; Wang, F; Li, YJ; Yi, WM

作者机构:

关键词: Pig Manure; Heavy Metals; Pyrolysis Temperature; Chemical Speciation; Environmental Risk

期刊名称: SCIENCE OF THE TOTAL ENVIRONMENT

ISSN: 0048-9697

年卷期: 2020 年 704 卷

页码:

收录情况: JCR(2021版) ; EI(2021版)

摘要: The comprehensive analysis of environmental risk for heavy metals in pig manure was essential for optimization of pyrolysis conditions and scientific utilization of pig manure biochars as soil amendment. However, in previous studies, the selected pyrolysis temperature points were limited and temperature interval was large, it's was difficult to accurately verify the effect of pyrolysis temperature on chemical speciation and environmental risk of heavy metals. Therefore, in this study, pig manure was pyrolyzed at 300-700 degrees C with a small interval of 50 degrees C to study the effect of pyrolysis temperature on characteristics and environmental risk of Cr, Mn, Cu and Zn in pig manure biochar. Results indicated that the characteristics of biochars (>500 degrees C) were relatively stable. The biochar obtained at 700 degrees C exhibited the largest surface area (8.28 m(2) g(-1)) and pore volume (25.17 m(3)kg(-1)), secondly is the biochar derived at 500 degrees C. The total percentages of exchangeable and acid fraction and reducible fraction decreased from 16.98% to 9.43% for Cr, 85.60% to 65.55% for Mn, 57.26% to 10.61% for Cu, 37.90% to 13.78% for Zn, respectively, suggesting that exchangeable and acid fraction and reducible fraction of Cr, Mn, Cu and Zn in pig manure were transformed into oxidizable and residual fractions after pyrolysis. The leaching rates, risk assessment code and potential ecological risk index values significantly decreased after pyrolysis and presented lower value at 500 and 700 degrees C. Biochars derived at 300-700 degrees C conditions posed no phytotoxicity with germination index >80%. Correlation analyses revealed that larger surface area, pore volume and pH values of biochars may help to immobilize heavy metals and reduce bioavailability. These findings demonstrated that bioavailability and toxicity of Cr, Mn, Cu and Zn in pig manure biochar were greatly reduced after pyrolysis and the optimum temperature was 500 degrees C considering energy cost. (C) 2019 Elsevier B.V. All rights reserved.

分类号:

  • 相关文献

[1]Enhancing Composition And Heavy Metals Combined With Humic Substances By Adding Black Tourmaline During Composting. Ren, XN, Wang, Q, Zhang, Y, Li, RH, Pan, JT, Zhang, ZQ. 2020

[2]Enhanced adsorption of polystyrene nanoplastics (PSNPs) onto oxidized corncob biochar with high pyrolysis temperature. Abdoul Magid Abdoul Salam Issiaka,Islam Md. Shafiqul,Chen Yali,Weng Liping,Li Jinbo,Ma Jie,Li Yongtao. 2021

[3]Effects of biochar on heavy metal bioavailability and uptake by tobacco (Nicotiana tabacum) in two soils. Zhang Jiuquan,Li Caibin,Li Guitong,He Yi,Yang Jixin,Zhang Jiguang. 2021

[4]A Field Study Of The Fate Of Biosolid-Borne Silver In The Soil-Crop System. Yang, L, Li, SM, Wu, LH, Ma, YB, Christie, P, Luo, YM. 2020

[5]Photocatalytic degradation of dinotefuran by layered phosphorus-doped carbon nitride and its mechanism. Liu X.,Zhou Y.,Ma Y.,Fang S.,Kong F.,Pang X.. 2021

[6]Oxidative stress and detoxification mechanisms of earthworms (Eisenia fetida) after exposure to flupyradifurone in a soil-earthworm system. Qiao Z., Li P., Tan J., Peng C., Zhang F., Zhang W., Jiang X.. 2022

[7]CH4, NH3, N2O and NO emissions from stored biogas digester effluent of pig manure at different temperatures. Wang, Yue,Dong, Hongmin,Zhu, Zhiping,Li, Lulu,Zhou, Tanlong,Jiang, Bo,Wang, Yue,Dong, Hongmin,Zhu, Zhiping,Xin, Hongwei.

[8]Substitution Effect of Pig Manure for Nitrogen Fertilizer on Nitrogen-Use Efficiency. Li, Shutian.

[9]Accumulations of Cadmium, Zinc, and Copper by Rice Plants Grown on Soils Amended with Composted Pig Manure. Li, Shutian,Liu, Rongle,Shan, Hong,Wang, Hongting. 2009

[10]Influence of bulking agents on CH4, N2O, and NH3 emissions during rapid composting of pig manure from the Chinese Ganqinfen system. Sun, Xiang-ping,Sun, Xiang-ping,Li, Guo-xue,Lu, Peng,Jiang, Tao,Schuchardt, Frank. 2014

[11]Cadmium availability and uptake by radish (Raphanus sativus) grown in soils applied with wheat straw or composted pig manure. Shan, Hong,Su, Shiming,Liu, Rongle,Li, Shutian.

[12]Nitrogen Mineralization from Animal Manures and Its Relation to Organic N Fractions. Li Ling-ling,Li Shu-tian,Li Shu-tian. 2014

[13]Comparative Study of Iron-Oxidizing and Sulfur-Oxidizing Bioleaching Processes for Heavy Metal Removal and Nutrient Leaching from Pig Manure. 魏孝承. 2020

[14]Methane emissions and mitigation options in irrigated rice fields in southeast China. W.F.Lu , W.Chen , B.W.Duan , W.M.Guo , Y.Lu , R.S.Lantin , R.Wassmann , H.U.Neue. 2000

[15]Relationship between the effects of heat pre-treatment on anaerobic performance of pig manure and the microbial variation within reactors. Ming Wang,Jianlin Wang,Kai Liu,Qichen Li,Wenzhe Li,Jinxia Fan,Su Wang,Fengmei Shi,Xin Zuo,Pengfei Li. 2023

[16]Relationships among Physicochemical, Microbiological, and Parasitological Parameters, Ecotoxicity, and Biochemical Methane Potential of Pig Slurry. María Eugenia Beily,Brian Jonathan Young,Patricia Alina Bres,Nicolás Iván Riera,Wenguo Wang,Diana Elvira Crespo,Dimitrios Komilis. 2023

[17]Synergetic effect and mechanism of elementary sulphur, MgSO4 and KH2PO4 progressive reinforcement on pig manure composting nitrogen retention. Yang Wang,Jingwen Wang,Xuan Wu,Ran Zhao,Zengqiang Zhang,Juanjuan Zhu,Muhammad Azeem,Ran Xiao,Junting Pan,Xiu Zhang,Ronghua Li. 2023

[18]Effect Of Clay On Greenhouse Gas Emissions And Humification During Pig Manure Composting As Supported By Spectroscopic Evidence. Ren, XN, Wang, Q, Li, RH, Chang, CC, Pan, JT, Zhang, ZQ. 2020

[19]Solid digestate biochar amendment on pig manure composting: Nitrogen cycle and balance. Jingwen Wang,Junting Pan,Xuzhe Ma,Songling Li,Xing Chen,Tao Liu,Quan Wang,Jim J. Wang,Dan Wei,Zengqiang Zhang,Ronghua Li. 2022

[20]Enhancing pathogen inactivation in pig manure by introducing thermophilic and hyperthermophilic hygienization in a two-stage anaerobic digestion process. Min Lin,Lijuan Ren,Simon Mdondo Wandera,Yi Liu,Renjie Dong,Wei Qiao. 2022

作者其他论文 更多>>