煤气化粗渣特性分析及利用技术研究进展Review on characteristics and resource utilization of coal gasification coarse slag
张可伟,廖昌建,王晶,金平,王坤,徐婉怡
ZHANG Kewei,LIAO Changjian,WANG Jing,JIN Ping,WANG Kun,XU Wanyi
摘要(Abstract):
煤气化是实现煤炭清洁高效利用的核心技术,我国煤气化渣产量大、利用率低,通常采用堆存与填埋方式处置,造成严重的土地资源浪费与环境污染。气化渣的资源化利用已成为煤化工行业的研究重点,尤其是占气化渣总排放量70%~80%的气化粗渣。介绍了3种主要煤气化工艺及气化粗渣的形成过程,总结了气化粗渣的理化特性与环境风险,归纳了气化粗渣在建材化利用、土壤改良及高值化利用方面的研究进展。受煤种、煤气化工艺等主要控制因素影响,不同来源气化粗渣的理化特性与环境风险不尽相同,但具有一定共同性。从理化特性看,粗渣粒径远高于细渣,约50%以上粗渣粒径超过0.5 mm,且小于0.5 mm各粒度级粗渣含量随粒径减小而降低,粗渣还具有较小的比表面积和较大的平均孔径。粗渣中残炭含量低于细渣,粗渣残炭质量分数在3%~20%且在各粒度级内分配不均,0.25 mm左右中等粒度级粗渣残炭含量较高。粗渣中无机组分均以SiO_2、Al_2O_3、CaO、Fe_2O_3为主,其中酸性氧化物占45%~75%,碱性氧化物占20%~45%。从环境风险看,气化粗渣中存在一定重金属富集现象,富集较多的重金属包括Ba、Co、Cs、Th等亲石元素与Cr、Ni等难挥发或半挥发性元素。此外,粗渣中Ni、Cd、As、Cu与Zn等重金属的酸可提取态含量较高,具有较大环境风险,需特别关注。粗渣的理化特性及其环境风险对适用的资源化利用方式影响较大:粗渣由于残炭含量较低、硅铝等无机组分含量较高,可广泛应用于矿井回填、筑路、水泥与混凝土、陶粒与墙体材料等建材化利用领域;残炭含量较高的气化粗渣具有更疏松多孔的结构特征,可用于土壤改良;粗渣的特殊结构和丰富的硅铝组分使粗渣在制备多孔吸附材料及制备陶瓷方面潜力很大;粗渣还可用于制备催化剂或提取回收氧化铝等其他高值化利用。气化粗渣中含有一定种类重金属,具有一定环境风险,制约了粗渣的综合利用。因此,粗渣资源化利用前,要全面分析粗渣中各种重金属的富集情况与赋存状态,严格把控粗渣环境风险评价,避免粗渣资源化利用带来的二次污染。
Coal gasification is the core technology to achieve clean and efficient utilization of coal. In China, the output of coal gasification slag is large while the utilization rate is low. Coal gasification slag is usually disposed by storage and landfill, resulting in serious waste of land resources and environmental pollution. The resource utilization of coal gasification slag has become the research emphasis of coal chemical industry, especially the coal gasification coarse slag, which accounts for 70%-80% of the total coal gasification slag. In this paper, three coal gasification processes and the formation of coal gasification coarse slag were introduced, and the physicochemical characteristics and environmental risks of coal gasification coarse slag were summarized, and the research progress of coal gasification coarse slag in the utilization of building materials, soil improvement and high value utilization were sum up. Affected by the main control factors such as coal type and coal gasification process, the physical and chemical characteristics and environmental risks of the gasification coarse slag from different sources are not the same, but they do have some commonalities. The particle size of coarse slag is much higher than that of fine slag, about 50% of coarse slag has a particle size of more than 0.5 mm, and the content of coarse slag of different particle sizes less than 0.5 mm decreases with the decrease of particle size, and the coarse slag also has a smaller specific surface area and a larger average pore size. The carbon residue content of coarse slag is lower than that of fine slag, and the carbon residue content of coarse slag is generally in the range of 3%-20%, which is unevenly distributed in different particle size grade. Generally, the medium particle size coarse slag of about 0.25 mm has a higher carbon residue content. The inorganic components in the slag are mainly SiO_2, Al_2O_3, CaO and Fe_2O_3, of which the acid oxides account for 45%-75%, while the basic oxides account for about 20%-45%. There is a certain enrichment of heavy metals in the coarse slag, including some lithophilic elements such as Ba, Co, Cs, Th, and some non-volatile or semi-volatile elements such as Cr and Ni. In addition, the acid extractable content of heavy metals such As Ni, Cd, As, Cu and Zn in coarse slag is high, which has great environmental risks and needs special attention. The physical and chemical characteristics of coarse slag and its environmental risks have a great impact on the applicable resource utilization. Coarse slag can be widely used in building materials such as mine backfill, road construction, cement and concrete, ceramide and wall materials due to its low carbon residue content and high inorganic component content such as silicon and aluminum. Coarse slag with higher carbon residue content has more loose and porous structure characteristics, which can be used for soil improvement. The special structure of coarse slag and its abundant silicon and aluminum components make the coarse slag have great potential in preparing porous adsorption materials and ceramics. The coarse slag can also be used to prepare catalyst or extract and recycle alumina and other high value utilization. The coarse slag contains certain kinds of heavy metals, which has certain environmental risks and restricts the comprehensive utilization of the gasification slag. Therefore, before the resource utilization of coarse slag, it is necessary to comprehensively analyze the enrichment and occurrence state of various heavy metals, and strictly control the environmental risk assessment, thus avoiding the secondary pollution caused by the resource utilization of coarse slag.
关键词(KeyWords):
煤气化粗渣;理化特性;重金属;资源化利用;建材化;土壤改良;高值化
coal gasification coarse slag;physical and chemical characteristics;heavy metals;resource utilization;building materials;soil improvement;high value utilization
基金项目(Foundation): 中国石油化工股份有限公司资助项目(CHG23085)
作者(Author):
张可伟,廖昌建,王晶,金平,王坤,徐婉怡
ZHANG Kewei,LIAO Changjian,WANG Jing,JIN Ping,WANG Kun,XU Wanyi
DOI: 10.13226/j.issn.1006-6772.CPC24040202
参考文献(References):
- [1] 中国石化集团经济技术研究院有限公司.中国能源展望2060[M].北京:中国石化出版社,2022.
- [2] 王辅臣.煤气化技术在中国:回顾与展望[J].洁净煤技术,2021,27(1):1-33.WANG Fuchen.Coal gasification technologies in China:Review and prospect[J].Clean Coal Technology,2021,27(1):1-33.
- [3] 高海洋,梁龙,靳开宇,等.煤气化渣资源化利用综述[J/OL].煤炭科学技术:1-20[2024-07-01].http://kns.cnki.net/kcms/detail/11.2402.TD.20231108.1153.001.html.GAO Haiyang,LIANG Long,JIN Kaiyu,et al.Review on resource utilization of coal gasification slag[J/OL].Coal Science and Technology:1-20[2024-07-01].http://kns.cnki.net/kcms/detail/11.2402.TD.20231108.1153.001.html.
- [4] 盛羽静.气流床气化灰渣的理化特性研究[D].上海:华东理工大学,2017.
- [5] 朱菊芬,李健,闫龙,等.煤气化渣资源化利用研究进展及应用展望[J].洁净煤技术,2021,27(6):11-21.ZHU Jufen,LI Jian,YAN Long,et al.Research progress and application prospect of coal gasification slag resource utilization[J].Clean Coal Technology,2021,27(6):11-21.
- [6] 刘斌,王庆云,柴禛,等.气流床煤气化细渣的形成机理及综合利用研究:进展与前景[J/OL].洁净煤技术:1-12[2024-07-01].http://kns.cnki.net/kcms/detail/11.3676.TD.20231205.1007.005.html.LIU Bin,WANG Qingyun,CHAI Zhen,et al.Research on the formation mechanism and comprehensive utilization of entrained-flow coal gasification fine slag:Progress and prospects[J/OL].Clean Coal Technology:1-12[2024-07-01].http://kns.cnki.net/kcms/detail/11.3676.TD.20231205.1007.005.html.
- [7] 杨进进,樊盼盼,樊晓婷,等.煤气化细渣碳灰分离技术研究进展[J].洁净煤技术,2023,29(7):51-64.YANG Jinjin,FAN Panpan,FAN Xiaoting,et al.Research progress of carbon ash separation technology on coal gasification fine slag[J].Clean Coal Technology,2023,29(7):51-64.
- [8] RENL,DING L,GUO Q H,et al.Characterization,carbon-ash separation and resource utilization of coal gasification fine slag:A comprehensive review[J].Journal of Cleaner Production,2023,398:136554.
- [9] 赵江,王云康,王建友,等.榆林市工业固体废弃物现状与应用进展[J].工业催化,2022,30(3):1-7.ZHAO Jiang,WANG Yunkang,WANG Jianyou,et al.Status and utilization of industrial solid wastes in Yulin[J].Industrial Catalysis,2022,30(3):1-7.
- [10] 郭良元.固定床固态排渣碎煤加压气化技术在国内应用现状[J].煤质技术,2023,38(4):39-45.GUO Liangyuan.Application status of fixed bed dry bottom crushed coal pressurized gasification technology in China[J].Coal Quality Technology,2023,38(4):39-45.
- [11] 王利峰.我国煤气化技术发展与展望[J].洁净煤技术,2022,28(2):115-121.WANG Lifeng.Development and prospect of coal gasification technology in China[J].Clean Coal Technology,2022,28(2):115-121.
- [12] 周丽,梁晨,齐晓宾,等.煤气化灰渣热处理利用技术研究进展[J].洁净煤技术,2023,29(7):65-77.ZHOU Li,LIANG Chen,QI Xiaobin,et al.Research progress of thermal treatment and utilization technology of coal gasification fine ash and slag[J].Clean Coal Technology,2023,29(7):65-77.
- [13] 蒋登豪.循环流化床煤气化过程强化试验研究[D].北京:中国科学院大学(中国科学院工程热物理研究所),2022.
- [14] 段超.固定床加压气化技术的发展现状[J].煤质技术,2014(1):65-68.DUAN Chao.Pressurized fixed bed coal gasification technology[J].Coal Quality Technology,2014(1):65-68.
- [15] 刘忠慧.循环流化床煤气化工艺的模拟与优化研究[D].北京:中国科学院大学(中国科学院工程热物理研究所),2018.
- [16] 张心潇.气化细渣与煤混合燃烧动力学及灰渣中重金属析出特性研究[D].徐州:中国矿业大学,2022.
- [17] WANG Ting,STIEGEL Gary.Integrated gasification combined cycle (IGCC) technologies[M].UK:Woodhead Publishing,2016.
- [18] 汪伦.不同粒径气化细渣理化性质及燃烧特性研究[D].淮南:安徽理工大学,2022.
- [19] 张玉魁.流化床煤气化细粉灰高温燃烧与熔融特性研究[D].北京:中国科学院大学(中国科学院工程热物理研究所),2018.
- [20] KRISHNAMOORTHY V,PISUPATI S.A critical review of mineral matter related issues during gasification of coal in fixed,fluidized,and entrained flow gasifiers[J].Energies,2015,8(9):10430-10463.
- [21] 程晓磊,张鑫.现代煤气化技术现状及发展趋势综述[J].煤质技术,2021,36(1):1-9.CHENG Xiaolei,ZHANG Xin.Summary of present situation and development trend of modern coal gasification technology[J].Coal Quality Technology,2021,36(1):1-9.
- [22] 仇韩峰.煤气化灰渣资源环境属性研究[D].太原:山西大学,2021.
- [23] LV B,DENG X W,JIAO F S,et al.Enrichment and utilization of residual carbon from coal gasification slag:A review[J].Process Safety and Environmental Protection,2023,171:859-873.
- [24] LIY T,WEI C,LIU X M,et al.Application of gasification slag in construction materials and high value-added materials:A review[J].Construction and Building Materials,2023,402:133013.
- [25] 李金凤.气化滤饼中碳赋存形态及循环掺烧可行性研究[J].洁净煤技术,2020,26(6):224-228.LI Jinfeng.Investigation on the occurrence of carbon in gasification filter cake and its feasibility of circulating combustion[J].Clean Coal Technology,2020,26(6):224-228.
- [26] LI S H,WHITTY K J.Physical phenomena of char-slag transi-tion in pulverized coal gasification[J].Fuel Processing Technology,2012,95:127-136.
- [27] 吴昊东.基于粒度分布特征的气流床气化细渣结构解析及反应性研究[D].银川:宁夏大学,2023.
- [28] 邬士军.携带床气化条件下灰渣熔融特性实验研究[D].哈尔滨:哈尔滨工业大学,2014.
- [29] 李俏,董阳,JOW Jinder,等.煤气化渣的基本性能及其应用途径分析[J].新型建筑材料,2023,50(3):33-36,41.LI Qiao,DONG Yang,JINDER J,et al.Fundamental characteristics and application of coal gasification slags[J].New Building Materials,2023,50(3):33-36,41.
- [30] 袁蝴蝶.煤气化炉渣本征特征及应用基础研究[D].西安:西安建筑科技大学,2022.
- [31] 范宁,张逸群,樊盼盼,等.煤气化渣特性分析及资源化利用研究进展[J].洁净煤技术,2022,28(8):145-154.FAN Ning,ZHANG Yiqun,FAN Panpan,et al.Research progress on characteristic analysis and resource utilization of coal gasification slag[J].Clean Coal Technology,2022,28(8):145-154.
- [32] ZHANGJ P,ZUO J,AI W D,et al.Preparation of a new high-efficiency resin deodorant from coal gasification fine slag and its application in the removal of volatile organic compounds in polypropylene composites[J].Journal of Hazardous Materials,2020,384:121347.
- [33] MIAOZ K,CHEN L Q,CHEN K N,et al.Physical properties and microstructures of residual carbon and slag particles present in fine slag from entrained-flow coal gasification[J].Advanced Powder Technology,2020,31(9):3781-3789.
- [34] 卢珊珊.气流床煤气化灰渣的特性研究[D].上海:华东理工大学,2011.
- [35] 宋瑞领,蓝天.气流床煤气化炉渣特性及综合利用研究进展[J].煤炭科学技术,2021,49(4):227-236.SONG Ruiling,LAN Tian.Review on characteristics and utilization of entrained-flow coal gasification residue[J].Coal Science and Technology,2021,49(4):227-236.
- [36] 吕飞勇,初茉,易浩然,等.磁性灰粒在不同粒级气化灰渣中的分布特性[J].化工进展,2022,41(5):2372-2378.LYU Feiyong,CHU Mo,YI Haoran,et al.Distribution characteristics of magnetic ash particles in gasification slag of different particle sizes[J].Chemical Industry and Engineering Progress,2022,41(5):2372-2378.
- [37] 尹洪峰,汤云,任耘,等.Texaco气化炉炉渣基本特性与应用研究[J].煤炭转化,2009,32(4):30-33.YIN Hongfeng,TANG Yun,REN Yun,et al.Study on the characteristic and application of gasification slag from texaco gasifier[J].Coal Conversion,2009,32(4):30-33.
- [38] 张婷,于露,李宇,等.水煤浆气化炉渣的特性分析及应用探讨[J].当代化工研究,2020(19):88-90.ZHANG Ting,YU Lu,LI Yu,et al.Characteristic analysis and application discussion of coal water slurry gasifier slag[J].Modern Chemical Research,2020(19):88-90.
- [39] WUT,GONG M,LESTER E,et al.Characterisation of residual carbon from entrained-bed coal water slurry gasifiers[J].Fuel,2007,86(7/8):972-982.
- [40] 杨宏泉,孙志刚,曲江山,等.中石化典型地区气化炉渣基础物性分析研究[J].洁净煤技术,2021,27(3):101-108.YANG Hongquan,SUN Zhigang,QU Jiangshan,et al.Analysis and research on basic physical properties of gasification slag in representative areas of Sinopec[J].Clean Coal Technology,2021,27(3):101-108.
- [41] 赵永彬,吴辉,蔡晓亮,等.煤气化残渣的基本特性研究[J].洁净煤技术,2015,21(3):110-113,74.ZHAO Yongbin,WU Hui,CAI Xiaoliang,et al.Basic characteristics of coal gasification residual[J].Clean Coal Technology,2015,21(3):110-113,74.
- [42] 贺根良,郑亚兰,门长贵.湿法气流床煤气化过程中N、S、As元素的迁移分析[J].煤化工,2009,37(6):10-14.HE Genliang,ZHENG Yalan,MEN Changgui.Analysis on the transfer of nitrogen,sulfur and arsenic in the process of wet-feed entrained flow pressure coal gasification[J].Coal Chemical Industry,2009,37(6):10-14.
- [43] 马超,王兵,樊盼盼,等.煤气化渣基氨氮吸附剂的制备及吸附性能研究[J].洁净煤技术,2021,27(3):109-115.MA Chao,WANG Bing,FAN Panpan,et al.Research on preparation and adsorption properties of ammonia nitrogen sorbent based on coal gasification slag[J].Clean Coal Technology,2021,27(3):109-115.
- [44] 吴阳,赵世永,李博.宁东煤气流床气化残渣特性研究[J].煤炭工程,49(3):115-118.WU Yang,ZHAO Shiyong,LI Bo.Study on the residue features of Ningdong coal in entrained flow gasifiers[J].Coal Engineering,49(3):115-118.
- [45] 郭丹,李华,汪飞.壳牌煤气化粉煤灰的特性研究[J].粉煤灰,2012,24(5):5-7,10.GUO Dan,LI Hua,WANG Fei.Research on characteristics of fly ash by shell coal gasification process[J].Coal Ash,2012,24(5):5-7,10.
- [46] PAN C C,LIANG Q F,GUO X L,et al.Characteristics of different sized slag particles from entrained-flow coal gasification[J].Energy & Fuels,2016,30(2):1487-1495.
- [47] 王亚丰.煤气化产物的矿物学和环境地球化学研究[D].北京:中国矿业大学(北京),2023.
- [48] SHEN Z J,NIKOLIC H,CAUDILL L S,et al.A deep insight on the coal ash-to-slag transformation behavior during the entrained flow gasification process[J].Fuel,2021,289:119953.
- [49] WU S Y,HUANG S,JI L Y,et al.Structure characteristics and gasification activity of residual carbon from entrained-flow coal gasification slag[J].Fuel,2014,122:67-75.
- [50] 景娟,李兆锋.航天炉粉煤加压技术气化粗渣的研究[J].硅酸盐通报,2018,37(8):2601-2605.JING Juan,LI Zhaofeng.Study on the coarse slag from Hangtian pulverized coal pressure gasification technology(HT-L)[J].Bulletin of the Chinese Ceramic Society,2018,37(8):2601-2605.
- [51] 汤云,袁蝴蝶,尹洪峰,等.几种典型煤气化炉渣的碳热还原氮化过程[J].煤炭学报,2016,41(12):3136-3141.TANG Yun,YUAN Hudie,YIN Hongfeng,et al.Carbothermal reduction nitridation process of several typical coal gasification slag[J].Journal of China Coal Society,2016,41(12):3136-3141.
- [52] 宋瑞领,李静,付亮亮,等.多喷嘴对置式水煤浆气化炉炉渣特性研究[J].洁净煤技术,2018,24(5):43-49.SONG Ruiling,LI Jing,FU Liangliang,et al.Characteristics of slags generated from multi-nozzle opposed coal-water slurry gasifier[J].Clean Coal Technology,2018,24(5):43-49.
- [53] XU S Q,ZHOU Z J,GAO X X,et al.The gasification reactivity of unburned carbon present in gasification slag from entrained-flow gasifier[J].Fuel Processing Technology,2009,90(9):1062-1070.
- [54] 王晓帅,唐跃刚,桓斌斌,等.宁东气化厂煤气化过程中几种微量元素的富集特性[J].中国煤炭地质,2016,28(4):14-18.WANG Xiaoshuai,TANG Yuegang,HUAN Binbin,et al.Some trace elements enrichment features during coal gasification process in ningdong coal gasification plant[J].Coal Geology of China,2016,28(4):14-18.
- [55] WANG Y F,TANG Y G,LIU S Q,et al.Behavior of trace elements and mineral transformations in the super-high organic sulfur Ganhe coal during gasification[J].Fuel Processing Technology,2018,177:140-151.
- [56] NIUM F,FU Y G,LIU S Q.Distribution and leachability of hazardous trace elements in Lurgi gasification ash from a Coal-to-SNG plant[J].Journal of the Energy Institute,2021,98:223-233.
- [57] SENIORC L,BOOL L E,MORENCY J R.Laboratory study of trace element vaporization from combustion of pulverized coal[J].Fuel Processing Technology,2000,63(2/3):109-124.
- [58] BUNT J R,WAANDERS F B.Trace element behaviour in the Sasol-Lurgi fixed-bed dry-bottom gasifier.Part 3:The non-volatile elements:Ba,Co,Cr,Mn,and V[J].Fuel,2010,89(3):537-548.
- [59] 马晶,马玉龙,朱莉,等.煤气化渣结构组成及其主要金属元素赋存形态[J/OL].化工进展:1-12[2024-07-01].https://doi.org/10.16085/j.issn.1000-6613.2023-1496.MA Jing,MA Yulong,ZHU Li,et al.Structure composition of coal gasification slag and speciation of main metals in coal gasification slag[J/OL].Chemical Industry and Engineering Progress:1-12[2024-07-01].https://doi.org/10.16085/j.issn.1000-6613.2023-1496.
- [60] 相微微,李夏隆,严加坤,等.榆林煤气化渣重金属生物有效性评价[J].农业环境科学学报,2021,40(5):1097-1105.XIANG Weiwei,LI Xialong,YAN Jiakun,et al.Bioavailability evaluation of heavy metals in Yulin coal gasification slag[J].Journal of Agro-Environment Science,2021,40(5):1097-1105.
- [61] 曹天伟.随采随垮型顶板多源煤基固废膏体充填配比和工艺优化研究[D].淮南:安徽理工大学,2022.
- [62] 陈瑞毅.煤基固废膏体充填材料力学特性实验研究[D].淮南:安徽理工大学,2022.
- [63] 常贯峰.多源煤基固废材料充填特性及其与矸石组合承载性能实验研究[D].淮南:安徽理工大学,2022.
- [64] 屈慧升,索永录,刘浪,等.改性煤气化渣基矿用充填材料制备与性能[J].煤炭学报,2022,47(5):1958-1973.QU Huisheng,SUO Yonglu,LIU Lang,et al.Preparation and properties of modified coal gasification slag-based filling materials for mines[J].Journal of China Coal Society,2022,47(5):1958-1973.
- [65] 雷彤.掺煤气化粗渣水泥稳定基层材料组成及路用性能研究[D].西安:长安大学,2018.
- [66] 曹金生.季冻区煤气化渣改良黄土路基填土的力学特性与冻融特性研究[D].银川:宁夏大学,2024.
- [67] 高鹏.水泥稳定煤气化多孔炉渣路面基层材料的研究与应用[D].武汉:武汉理工大学,2021.
- [68] 许云龙.煤气化渣混凝土抗冻性研究[D].大连:大连理工大学,2023.
- [69] 郭磊,李祖仲,魏召召,等.一种掺煤气化渣高模量沥青混凝土材料及其制备方法:CN105417987A[P].2016-03-23.
- [70] 马世申.粉煤灰-赤泥-气化渣复合胶凝体系力学性能研究[D].太原:山西大学,2021.
- [71] 盛燕萍,冀欣,徐刚,等.煤气化渣水泥稳定碎石基层材料性能研究[J].应用化工,2020,49(6):1407-1412,1417.SHENG Yanping,JI Xin,XU Gang,et al.Study on the performance of coal gasification slag cement stabilized macadam base[J].Applied Chemical Industry,2020,49(6):1407-1412,1417.
- [72] FU B,CHENG Z Y,WANG D Z,et al.Investigation on the utilization of coal gasification slag in Portland cement:Reaction kinetics and microstructure[J].Construction and Building Materials,2022,323:126587.
- [73] ISHIKAWA Yoshitaka.Utilization of coal gasification slag coll-ected from IGCC as fine aggregate for concrete[R].Greece:Proceedings of the Eurocoalash 2012 Conference,2012.
- [74] 向舒畅,叶博,马豪,等.粉煤灰和气化渣对混凝土力学性能的影响[J].四川水泥,2022(10):33-35.XIANG Shuchang,YE Bo,MA Hao,et al.Influence of fly ash and gasification slag on mechanical properties of concrete[J].Sichuan Cement,2022(10):33-35.
- [75] 傅博,马梦凡,申旺,等.气化渣对硅酸盐水泥强度和微观结构的影响研究[J].硅酸盐通报,2020,39(8):2523-2527.FU Bo,MA Mengfan,SHEN Wang,et al.Influence of coal gasification slag on strength and microstructure of portland cement[J].Bulletin of the Chinese Ceramic Society,2020,39(8):2523-2527.
- [76] 党理文,贾文彬.气化渣在水泥生料配料中的应用[J].水泥,2017(7):26-27.DANG Liwen,JIA Wenbin.Application of gasification slag in cement raw material blending[J].Cement,2017(7):26-27.
- [77] 杭美艳,吕学涛,郭艳梅,等.煤气化渣微粉活性激发效果的试验研究[J].硅酸盐通报,2019,38(3):878-883,888.HANG Meiyan,LYU Xuetao,GUO Yanmei,et al.Experimental study on activation effect of micropowder of coal gasification slag[J].Bulletin of the Chinese Ceramic Society,2019,38(3):878-883,888.
- [78] 刘开平,赵红艳,李祖仲,等.煤气化渣对水泥混凝土性能的影响[J].建筑科学与工程学报,2017,34(5):190-195.LIU Kaiping,ZHAO Hongyan,LI Zuzhong,et al.Influence of coal gasification slag on cement concrete performance[J].Journal of Architecture and Civil Engineering,2017,34(5):190-195.
- [79] 郭照恒,杨文,祝小靓,等.不同比表面积煤气化渣掺合料活性及力学性能研究[J].硅酸盐通报,2020,39(11):3567-3573,3588.GUO Zhaoheng,YANG Wen,ZHU Xiaoliang,et al.Activity and mechanical properties of coal gasification slag admixture with different specific surface area[J].Bulletin of the Chinese Ceramic Society,2020,39(11):3567-3573,3588.
- [80] ZHANG X D,LIANG Y,YUE Y.Experimental study of fly ash activator in the application of aeolian soil[J].Advanced Materials Research,2011,255/260:3361-3365.
- [81] 方军良,陆文雄,徐彩宣.粉煤灰的活性激发技术及机理研究进展[J].上海大学学报(自然科学版),2002,8(3):255-260.FANG Junliang,LU Wenxiong,XU Caixuan.Progress in activiting techniques and mechanism studies of fly ash[J].Journal of Shanghai University (Natural Science Edition),2002,8(3):255-260.
- [82] 王奕仁,王栋民,翟梦怡,等.聚合铝对锂渣-水泥复合胶凝材料水化硬化特性的影响[J].矿业科学学报,2019,4(1):86-94.WANG Yiren,WANG Dongmin,ZHAI Mengyi,et al.Effect of polymeric aluminum on hydration hardening characteristics of lithium slag-cement composite cementitious materials[J].Journal of Mining Science and Technology,2019,4(1):86-94.
- [83] 刘娟红,许鹏玉,周昱程,等.改性煤气化渣用于矿山充填的试验研究[J].硅酸盐通报,2020,39(8):2528-2535.LIU Juanhong,XU Pengyu,ZHOU Yucheng,et al.Experimental study on modified coal gasification slag used for mine filling[J].Bulletin of the Chinese Ceramic Society,2020,39(8):2528-2535.
- [84] LI Z Z,ZHANG Y Y,ZHAO H Y,et al.Structure characteris-tics and composition of hydration products of coal gasification slag mixed cement and lime[J].Construction and Building Materials,2019,213:265-274.
- [85] LUO Feng,JIANG Yinshan,WEI Cundi.Potential of decarbonized coal gasification residues as the mineral admixture of cement-based material[J].Construction and Building Materials,2021,269:121259.
- [85] LUO F,JIANG Y S,WEI C D.Potential of decarbonized coalgasification residues as the mineral admixture of cement-based material[J].Construction and Building Materials,2021,269:121259.
- [86] 李彦君,阎蕊珍,王建成,等.利用脱碳气化渣制备水泥基复合材料[J].洁净煤技术,2022,28(2):160-168.LI Yanjun,YAN Ruizhen,WANG Jiancheng,et al.Preparation of cement-based composite materials by using decarbonized coalgasification slag[J].Clean Coal Technology,2022,28(2):160-168.
- [87] LI K J.Effect of municipal sludge on the performance of coal gasification slag-based ceramsite[J].Ceramics-Silikaty,2021:176-186.
- [88] 刘琪.利用煤气化炉渣制备中空陶粒的研究[D].西安:西安建筑科技大学,2021.
- [89] 刘琪,尹洪峰,汤云,等.利用煤气化炉渣制备中空陶粒及其发泡机理研究[J].煤炭转化,2020,43(4):89-96.LIU Qi,YIN Hongfeng,TANG Yun,et al.Preparation of ceramsite using coal gasification slag and its foaming mechanism[J].Coal Conversion,2020,43(4):89-96.
- [90] 张凯,刘舒豪,张日新,等.免烧法煤气化粗渣制备陶粒工艺及其性能研究[J].煤炭科学技术,2018,46(10):222-227.ZHANG Kai,LIU Shuhao,ZHANG Rixin,et al.Research on preparation of non-sintered ceramsite from gasification cinder and its performance[J].Coal Science and Technology,2018,46(10):222-227.
- [91] JIA J L,HU L,ZHENG J X,et al.Environmental toxicity analysis and reduction of ceramsite synthesis from industrial coal gasification coarse cinder waste[J].Polish Journal of Environmental Studies,2017,26(1):147-153.
- [92] CHEN Luming,CHOU Meiin M,CHOU Shengfu J,et al.Producing fired bricks using coal slag from a gasification plant in Indiana[R].USA:World of Coal Ash (WOCA) Conference,2009.
- [93] 章丽萍,温晓东,史云天,等.煤间接液化灰渣制备免烧砖研究[J].中国矿业大学学报,2015,44(2):354-358.ZHANG Liping,WEN Xiaodong,SHI Yuntian,et al.Research on making non-burnt brick from indirect coal liquefaction residues[J].Journal of China University of Mining & Technology,2015,44(2):354-358.
- [94] 云正.利用铁矿尾矿制备轻质保温墙体材料的研究[D].西安:西安建筑科技大学,2015.
- [95] 冯银平.利用气化炉渣制备轻质隔热墙体材料的研究[D].西安:西安建筑科技大学,2015.
- [96] 赵炜,赵举,魏占民,等.气化渣改良风沙土对土壤水分物理性质的影响[J].水土保持研究,2022,29(2):64-69.ZHAO Wei,ZHAO Ju,WEI Zhanmin,et al.Effect of aeolian sandy soil improved by gasification slag on soil water physical properties[J].Research of Soil and Water Conservation,2022,29(2):64-69.
- [97] ZHANG Kai,LI Xiaonan,CHANG Bo,et al.Use of coal gasification coarse slag to amend the soil water,nutrient and salt of waste dump in the northwest arid region:Feasibility and potential[J].Environment,Development and Sustainability,2024.https://doi.org/10.1007/s10668-023-04321-7.
- [98] 尹春艳,赵举,刘虎,等.水煤浆气化渣对毛乌素沙地土壤改良与菊芋生长的促进效应研究[J].土壤通报,2021,52(6):1411-1417.YIN Chunyan,ZHAO Ju,LIU Hu,et al.Effects of coal water slurry gasification slag on soil improvement and Jerusalem artichoke growth in Mu Us sandy land[J].Chinese Journal of Soil Science,2021,52(6):1411-1417.
- [99] ZHANG R M,LI Y Z,ZHANG K,et al.Improvement and remediation of degraded soil based on solid waste[M]//Advances in transdisciplinary engineering.Holland:IOS Press,2023.
- [100] ZHANG R M,LI X N,ZHANG K,et al.Research on the application of coal gasification slag in soil improvement[J].Processes,2022,10(12):2690.
- [101] 李强,孙利鹏,亢福仁,等.煤气化渣-沙土复配对毛乌素沙地苜蓿生长及重金属迁移的影响[C]//中国环境科学学会2019年科学技术年会:环境工程技术创新与应用分论坛论文集(四).西安:[s.n.],2019:590-595.
- [102] 赵炜.水煤浆气化渣对风沙土改良效果与作物生长响应研究[D].呼和浩特:内蒙古农业大学,2022.
- [103] YIN C Y,ZHAO J,LIU X Y,et al.Effect of coal water slurry gasification slag on soil water physical characteristics and properties in saline-alkali soil improvement[J].Journal of Sensors,2022,2022:1114343.
- [104] ZHANG K,SONG S,ZHAO J G,et al.Land reclamation using typical coal gasification slag in Xinjiang:A full-cycle environmental risk study[J].Minerals,2023,13(10):1263.
- [105] 相玉琳,焦玉荣,王立鹏.可溶性有机质改性气化渣对黑沙蒿生长及重金属迁移转化的影响[J].榆林学院学报,2019,29(6):1-3.XIANG Yulin,JIAO Yurong,WANG Lipeng.Effects of coal gasification slag modified by dissolved organic matter on the growth of artemisia ordosica and transfer of heavy metals[J].Journal of Yulin University,2019,29(6):1-3.
- [106] 李宇,王建敏,张弦,等.高附加值煤气化渣基材料开发研究进展[J].材料导报,2023,37(23):94-105.LI Yu,WANG Jianmin,ZHANG Xian,et al.Research progress on the development of High-value-added materials by using coal gasification slag[J].Materials Reports,2023,37(23):94-105.
- [107] 杨保国.气化粗渣改性及净化水中磷酸盐的机理研究[D].武汉:中国地质大学,2024.
- [108] ZHANG J Y,ZUO J,JIANG Y S,et al.Kinetic analysis on the mesoporous formation of coal gasification slag by acid leaching and its thermal stability[J].Solid State Sciences,2020,100:106084.
- [109] 刘转年,全海山,舒瑞,等.煤气发生炉炉渣改性和吸附性能[J].环境工程学报,2013,7(3):1139-1144.LIU Zhuannian,QUAN Haishan,SHU Rui,et al.Modification and adsorption property of gas furnace slag[J].Chinese Journal of Environmental Engineering,2013,7(3):1139-1144.
- [110] LIU L J,JI W X,LI K N,et al.Solid phase ZSM-5 synthesis from coal gasification coarse slag[J].Silicon,2022,14(14):8855-8868.
- [111] 刘莉娟.以煤气化废渣为原料资源化制备多级孔ZSM-5分子筛的研究[D].银川:宁夏大学,2023.
- [112] JI W X,ZHANG S Y,ZHAO P D,et al.Green synthesis method and application of NaP zeolite prepared by coal gasification coarse slag from ningdong,China[J].Applied Sciences,2020,10(8):2694.
- [113] 王正.煤气化