[1] PERDANI M S, ARIYANTI D, FITRIANA E L, et al.Rice husk-based catalyst for sustainable biodiesel production: a meta-analysis and systematic review[J]. Bioresource Technology Reports, 2025, 31: 102264.
[2] WANG D M, ZHANG Z X, HONG X W, et al.Boosting semi-flexible asphalt pavement sustainability and performance with rice husk biochar particle[J]. Powder Technology, 2025, 465: 121371.
[3] JI R J, YU X R, CUI J Y, et al.Development and evaluation of a solid-liquid composite CO2 adsorbent using rice husk from waste distiller’s grains[J]. Geoenergy Science and Engineering, 2025, 252: 213967.
[4] MENYA E, OLUPOT P W, STORZ H, et al.Production and performance of activated carbon from rice husks for removal of natural organic matter from water: a review[J]. Chemical Engineering Research and Design, 2018, 129: 271-296.
[5] 龙念情, 邢英. 稻壳生物炭负载纳米硫化铜、氧化石墨烯对水中Hg2+的吸附性能研究[J]. 化学研究与应用, 2025, 37(5): 1108-1116.
LONG Nianqing, XING Ying.Adsorption of Hg2+ from aqueous solution by CuS-loaded, GO-loaded rice husk biochar[J]. Chemical Research and Application, 2025, 37(5): 1108-1116.
[6] HUSSAIN M I, RAHMAN N A, DUTTA H, et al.ZnO nanoparticles coated rice husk bio adsorbent for the removal of arsenic, phosphate and fluoride from contaminated water samples[J]. Next Sustainability, 2025, 5: 100129.
[7] ANGELLINNOV F, SUBHAN A, RENGGA W D P, et al. Effect of rice husk derived activated carbon surface coating on NMC 811 characteristics and performance as lithium-ion battery cathode[J]. Results in Surfaces and Interfaces, 2025, 19: 100567.
[8] VAN C D, LUONG THI T T, VAN K L, et al. Structural control of activated carbons derived from rice husks for sustainable and enhanced lithium-ion battery anodes[J]. Electrochimica Acta, 2025, 526: 146169.
[9] WANG M, WANG H, ZHANG X, et al.Co2SiO4/CoO heterostructure anchored on graphitized carbon derived from rice husks with hierarchical pore as electrode material for supercapacitor[J]. Applied Surface Science, 2023, 636: 157820.
[10] 郭建良, 韩松, 杨宏训, 等. 稻壳基硅氧碳复合负极材料的制备及储锂性能[J]. 化工新型材料, 2025, 53(8): 114-119.
GUO Jianliang, HAN Song, YANG Hongxun, et al.Preparation and lithium storage properties of rice husk-based silicon-oxygen-carbon composite anode materials[J]. New Chemical Materials, 2025, 53(8): 114-119.
[11] CHEN Y, DING J, DENG C J, et al.Improved thermal shock stability and oxidation resistance of low-carbon MgO-C refractories with introduction of SiC whiskers[J]. Ceramics International, 2023, 49(16): 26871-26878.
[12] 樊明宇, 员文杰, 李君, 等. 稻壳灰制备Si3N4/SiC复合粉体的研究[J]. 人工晶体学报, 2013, 42(7): 1445-1448.
FAN Mingyu, YUAN Wenjie, LI Jun, et al.Preparation of Si3N4/SiC composite powders using rice husk ash[J]. Journal of Synthetic Crystals, 2013, 42(7): 1445-1448.
[13] PYPE J, MICHIELSEN B, MULLENS S, et al.Impact of inorganic waste fines on structure of mullite microspheres by reaction sintering[J]. Journal of the European Ceramic Society, 2018, 38(6): 2612-2620.
[14] 刘舒婷. 新型稻壳基复合材料的制备及其吸附、催化降解与吸波性能研究[D]. 杭州: 浙江大学, 2017.
LIU Shuting.Novel rice husk composites: preparation and their applications in adsorption, catalytic degradation, and microwave absorption[D]. Hangzhou: Zhejiang University, 2017.
[15] HAMIDU I, AFOTEY B, KWAKYE-AWUAH B, et al.Synthesis of silica and silicon from rice husk feedstock: a review[J]. Heliyon, 2025, 11(4): e42491.
[16] THARAKA D N, TISSERA N D, PRIYADARSHANA G, et al.A comprehensive review of hierarchical porous carbon synthesis from rice husk[J]. Rice Science, 2025, 32(4): 499-511.
[17] NGUYEN N N, NGUYEN A V, KONAROVA M.Converting rice husk biomass into value-added materials for low-carbon economies: current progress and prospect toward more sustainable practices[J]. Journal of Environmental Chemical Engineering, 2025, 13(2): 115499.
[18] CHEN Y, DING J, YU C, et al.Application of SiC whiskers synthesized from waste rice husk in low-carbon MgO-C refractories[J]. Journal of Physics and Chemistry of Solids, 2023, 177: 111304.
[19] JITTIN V, BAHURUDEEN A, AJINKYA S D.Utilisation of rice husk ash for cleaner production of different construction products[J]. Journal of Cleaner Production, 2020, 263: 121578.
[20] 毛健, 陈招科, 徐振男, 等. 化学气相沉积SiC涂层的制备及水热腐蚀行为[J]. 粉末冶金材料科学与工程, 2024, 29(5): 373-383.
MAO Jian, CHEN Zhaoke, XU Zhennan, et al.Preparation and hydrothermal corrosion behavior of SiC coating by chemical vapor deposition[J]. Materials Science and Engineering of Powder Metallurgy, 2024, 29(5): 373-383.
[21] 罗骁, 陈晔松, 康盼, 等. TaC对SiC涂层高温耐烧蚀性能的影响[J]. 粉末冶金材料科学与工程, 2023, 28(2): 120-128.
LUO Xiao, CHEN Yesong, KANG Pan, et al.Effect of TaC on high temperature ablative resistance of SiC coatings[J]. Materials Science and Engineering of Powder Metallurgy, 2023, 28(2): 120-128.
[22] 沈艳, 赵钟倩, 杨天月, 等. 基于聚硅氧烷的SiC(O)纤维的制备与表征[J]. 粉末冶金材料科学与工程, 2025, 30(2): 139-147.
SHEN Yan, ZHAO Zhongqian, YANG Tianyue, et al.Preparation and characterization of polysiloxane-based SiC(O) fibers[J]. Materials Science and Engineering of Powder Metallurgy, 2025, 30(2): 139-147.
[23] 黄和平, 刘芳, 莫扬. 碳含量及添加剂对SiO2碳热还原-氮化产物的影响[J]. 粉末冶金材料科学与工程, 2001, 6(2): 153-157.
HUANG Heping, LIU Fang, MO Yang.Influences of carbon contents and additives on the products of carbothermal reduction-nitriding of silica[J]. Materials Science and Engineering of Powder Metallurgy, 2001, 6(2): 153-157.
[24] LEE J G, CULTER I B.Formation of SiC from rice hulls[J]. American Ceramic Society Bulletin, 1975, 54(2): 195-198.
[25] LIOU T H, CHANG F W, LO J J.Pyrolysis kinetics of acid-leached rice husk[J]. Industrial and Engineering Chemistry Research, 1997, 36(3): 568-573.
[26] SOLTANI N, BAHRAMI A, PECH-CANUL M I, et al. Review on the physicochemical treatments of rice husk for production of advanced materials[J]. Chemical Engineering Journal, 2015, 264: 899-935.
[27] CHIEW Y L, CHEONG K Y.A review on the synthesis of SiC from plant-based biomasses[J]. Materials Science and Engineering B, 2011, 176(13): 951-964.
[28] QUISPE I, NAVIA R, KAHHAT R.Energy potential from rice husk through direct combustion and fast pyrolysis: a review[J]. Waste Management, 2017, 59: 200-210.
[29] LI W F, HUANG Q F, GUO H S, et al.Green synthesis and photoluminescence property of β-SiC nanowires from rice husk silica and phenolic resin[J]. Ceramics International, 2018, 44(4): 4500-4503.
[30] LODHE M, SELVAM A, UDAYAKUMAR A, et al.Effect of polycarbosilane addition to a mixture of rice husk and coconut shell on SiC whisker growth[J]. Ceramics International, 2016, 42(2): 2393-2401.
[31] CHEN J P, SONG G, LIU Z, et al.Preparation of SiC whiskers using graphene and rice husk ash and its photocatalytic property[J]. Journal of Alloys and Compounds, 2020, 833: 155072.
[32] DO T K K, NGUYEN C T, HUYNH N M. Effect of temperature on the ability to synthesize SiC from rice husks[J]. Materials Research Express, 2024, 11: 055510.
[33] KRISHNARAO R V, MAHAJAN Y R.Effect of acid treatment on the formation of SiC whiskers from raw rice husks[J]. Journal of the European Ceramic Society, 1995, 15(12): 1229-1234.
[34] PATEL M, KARERA A.SiC whiskers from rice husk: role of catalysts[J]. Journal of Materials Science Letters, 1989, 8: 955-956.
[35] KIEN K D T, MINH H. The impact of copper additive content on the synthesis of SiC from rice husks[J]. Materials Research Express, 2025, 12(2): 25502.
[36] CONG Q M, ZHU X X, BAN Z J, et al.Silicon carbide-based materials from rice husk[J]. Current Nanoscience, 2025, 21(4): 585-595.
[37] SU J J, GAO B, CHEN Z D, et al.Large-scale synthesis and mechanism of β-SiC nanoparticles from rice husks by low-temperature magnesiothermic reduction[J]. ACS Sustainable Chemistry and Engineering, 2016, 4(12): 6600-6607.
[38] CHEN Z D, WU Z Y, SU J J, et al.Large-scale and low-cost synthesis of in situ generated SiC/C nano-composites from rice husks for advanced electromagnetic wave absorption applications[J]. Surface and Coatings Technology, 2021, 406: 126641.
[39] LI J, SHIRAI T, FUJI M.Rapid carbothermal synthesis of nanostructured silicon carbide particles and whiskers from rice husk by microwave heating method[J]. Advanced Powder Technology, 2013, 24(5): 838-843.
[40] ZHAO Z Q, XIE H W, QU J K, et al.A natural transporter of silicon and carbon: conversion of rice husks to silicon carbide or carbon-silicon hybrid for lithium-ion battery anodes via a molten salt electrolysis approach[J]. Batteries and Supercaps, 2019, 2(12): 1007-1015.
[41] JANGALE S D, KAMBLE S A, BHOPALE S R, et al.Single-step, catalyst-free conversion of rice husk into one-dimensional core-shell nanocrystalline silicon carbide-silicon oxide using thermal plasma-assisted pyrolysis method for field emission application[J]. Bioresource Technology, 2025, 427: 132441.
[42] CHEN Y, WU Z, LOU X M, et al.Controllable synthesis of chain-bead SiC whiskers from rice husk powders via molten-salt method[J]. Advanced Powder Technology, 2024, 35(6): 104508.
[43] RAHMAN I A.The formation of different Si3N4 phases in the presence of V2O5 during carbothermal reduction of untreated and acid treated rice husk[J]. Ceramics International, 1998, 24(4): 293-297.
[44] ZAWRAH M F, ZAYED M A, ALI M R K. Synthesis and characterization of SiC and SiC/Si3N4 composite nano powders from waste material[J]. Journal of Hazardous Materials, 2012, 227/228: 250-256.
[45] LI B, FENG Y Y, LI G Q, et al.Preparation of high-purity α-Si3N4 nano-powder by precursor-carbothermal reduction and nitridation[J]. Ceramics International, 2019, 45(5): 6335-6339.
[46] NETO E F, KIMINAMI R H G A. Synthesis of silicon nitride by conventional and microwave carbothermal reduction and nitridation of rice hulls[J]. Advanced Powder Technology, 2014, 25(2): 654-658.
[47] QADRI S B, RATH B B, GORZKOWSKI E P, et al.Nanostructured silicon nitride from wheat and rice husks[J]. Journal of Applied Physics, 2016, 119(13): 134902.
[48] REAL C, CÓRDOBA J M, ALCALÁ M D. Synthesis and characterization of SiC/Si3N4 composites from rice husks[J]. Ceramics International, 2018, 44(12): 14645-14651.
[49] EL-SHEIKH S M, AHMED Y M Z, EWAIS E M M, et al. Role of temperature and nitrogen flow rate during the carbothermic synthesis of SiC/Si3N4 nanocomposite powder from gel[J]. Journal of the American Ceramic Society, 2010, 93(7): 2082-2091.
[50] 王杏. 低碳铝碳耐火材料用碳源、类碳源制备及对材料性能影响机制[D]. 武汉: 武汉科技大学, 2023.
WANG Xing.Preparation of carbon source and carbon-like source for low-carbon alumina-carbon refractories and their effect on materials properties[D]. Wuhan: Wuhan University of Science and Technology, 2023.
[51] RAHMAN I A, RILEY F L.The control of morphology in silicon nitride powder prepared from rice husk[J]. Journal of the European Ceramic Society, 1989, 5(1): 11-22.
[52] BERGMAN B, HEPING H.The influence of different oxides on the formation of Si2N2O from SiO2 and Si3N4[J]. Journal of the European Ceramic Society, 1990, 6(1): 3-8.
[53] 李瑛, 刘灵清, 窦士学. 由稻壳制备氮化硅的动力学研究[J]. 无机材料学报, 1991, 6(1): 45-52.
LI Ying, LIU Lingqing, DOU Shixue.Kinetics of Si3N4 formation from rice hull[J]. Journal of Inorganic Materials, 1991, 6(1): 45-52.
[54] 王华, 戴永年, 郭森魁, 等. 用稻壳合成氮化硅超微粉的最佳条件试验研究[J]. 昆明理工大学学报, 1996, 21(6): 26-30.
WANG Hua, DAI Yongnian, GUO Senkui, et al.Experimental study on optimal reaction coadition for producing ultra fine Si3N4 powder with rice husks[J]. Journal of Kunming University of Science and Technology, 1996, 21(6): 26-30.