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安徽理工大学地球与环境学院导师教师师资介绍简介-崔红标-地球与环境学院

本站小编 Free考研考试/2021-04-25

姓名
崔红标
性别



籍贯
安徽凤台
出生年月
1985

最高学历
博士
职称
副教授

所在部门
地球与环境学院环境与给排水科学与工程系

电子邮箱
cuihongbiao0554@163.com

通讯地址
安徽省淮南市泰丰大街168号安徽理工大学 邮编:232001

简 介

目前承担多项研究课题,主要从事重金属污染土壤稳定化修复持久性、环境因子对含磷材料、生物炭稳定化重金属活性影响的研究。

校外兼职

1、在江西洁地环境治理生态科技有限公司负责技术咨询和部分产学研合作;
2、安徽省生态环境厅,安徽省生态环境专家库专家,2019.11
3、《chemosphere》、《Journal of Hazardous Materials》、《农业环境科学学报》、《水利水电技术》、等审稿专家

研究方向

重金属污染土壤的稳定化和植物修复及其环境效应

教育经历

2011年9月至2014年7月,中国科学院南京土壤研究所,获土壤学专业博士学位

工作经历

2014年7月-2017年11月,安徽理工大学,讲师
2017年12-至今 安徽理工大学,副教授

主讲课程

讲授本科生课程:《土壤污染与防治》、《环境监测》、《环境工程微生物学》、《土壤地理学》、《环境科学概论》、《环境工程专业英语》等

获得荣誉

? 2014-2015年安徽理工大学优秀班主任。

主要项目

1、国家自然科学基金青年基金,红壤中铁氧化物对羟基磷灰石固定镉的影响及其作用机制,**,2017-2019,主持
2、鹰潭市贵溪生态环境局,贵溪市典型镉污染耕地土壤安全利用修复技术示范项目实施方案,2019-2020,主持
3、中国科学院南京土壤研究所,重金属污染土壤安全利用关键技术研发,2019-2022,40万,主持
4、安徽省高校自然科学研究项目,铁氧化物与羟基磷灰石的界面作用及其对土壤镉固定的影响,KJ2016A191,2016-2017,主持
5、中国科学院土壤环境与污染修复重点实验室开放基金,改良剂钝化重金属污染土壤持久性研究, SEPR2014-02,2014-2016,主持
6、安徽理工大学博士、硕士基金,模拟酸雨对改良剂钝化重金属持久性的影响,11276, 2014-2018,主持
7、江西洁地环境治理生态科技有限公司,重金属污染底泥固化剂的研发,2015-2017,主持
8、江西洁地环境治理生态科技有限公司,重金属污染土壤钝化剂的研发,2016-2019,主持
9、淮北矿业股份有限公司,淮北矿区采煤沉陷区生态修复布局与关键技术研发,2020-2021,参与

发表论文

[1] Cui Hongbiao, Zhang Xue, Wu Qiugang, Zhang Shiwen, Xu Lei, Zhou Jing, Zheng Xuebo, Zhou Jun. Hematite enhances the immobilization of copper, cadmium and phosphorus in soil amended with hydroxyapatite under flooded conditions, Science of the Total Environment, 2020, 708: 134590
[2] Cui Hongbiao, Li Huiting, Zhang Shiwen, Yi Qitao, Zhou Jing, Fang Guodong, Zhou Jun. Bioavailability and mobility of copper and cadmium in polluted soil after phytostabilization using different plants aided by limestone, Chemosphere, 2020, 242: 125252
[3] Cui Hongbiao, Shi Yu, Zhou Jing, Chu Haiyan,Cang Long, Zhou Dongmei, Effect of different grain sizes of hydroxyapatite on soil heavy metal bioavailability and microbial community composition. Agriculture, Ecosystems & Environment, 2018, 267(15): 165-173
[4] Cui Hongbiao, Zhang Wei, Zhou Jun, Xu Lei, Zhang Xue, Zhang Shiwen, Zhou Jing, Availability and vertical distribution of Cu, Cd, Ca, and P in soil as influenced by lime and apatite with different dosages: a 7-year field study. Environmental Science & Pollution Research, 2018, 25:35143-35153.
[5] Cui Hongbiao, Yang Xiong, Xu Lei, Fan Yuchao, Yi Qitao, Li Ruyan, ZhouJing, Effects of goethite on the fractions of Cu, Cd, Pb, P and soil enzyme activity with hydroxyapatite in heavy metal-contaminated soil. Rsc Advances, 2017, 7(72):45869-45877.
[6] Cui Hongbiao, Zhang Shiwen, Li Ruyan, Yi Qitao, Zheng Xuebo, Hu Youbiao, Zhou Jing, Leaching of Cu, Cd, Pb, and phosphorus and their availability in the phosphate-amended contaminated soils under simulated acid rain. Environmental Science & Pollution Research, 2017, 24(26):21128-21137.
[7] Cui Hongbiao, Yi Qitao, Yang Xiong, Wang Xingming, Wu Huijun, Zhou Jing, Effects of hydroxyapatite on leaching of cadmium and phosphorus and their availability under simulated acid rain. Journal of Environmental Chemical Engineering, 2017, 5:3773–3779.
[8] Cui Hongbiao, Fan Yuchao, Yang John, Xu Lei, Zhou Jing, Zhu Zhenqiu, In situ phytoextraction of copper and cadmium and its biological impacts in acidic soil. Chemosphere, 2016, 161:233-241.
[9] Cui Hongbiao, Fan Yuchao, Fang Guodong, Zhang Houxi, Su Binbin, Zhou Jing, Leachability, availability and bioaccessibility of Cu and Cd in a contaminated soil treated with apatite, lime and charcoal: a five-year field experiment. Ecotoxicology and Environmental Safety, 2016, 134:148-155
[10] Cui Hongbiao, Ma Kaiqiang, Fan Yuchao, Peng Xinhua, Mao Jingdong, Zhou Dongmei, Zhang Zhongbin, Zhou Jing, Stability and heavy metal distribution of soil aggregates affected by application of apatite, lime, and charcoal. Environmental Science and Pollution Research, 2016, 23(11):10808-10817.
[11] Cui Hongbiao, Fan Yuchao, Xu Lei, Zhou Jing, Zhou Dongmei, Mao Jingdong, Fan Guodong, Cang Long, Zhu Zhenqiu, Sustainability of in situ remediation of Cu- and Cd-contaminated soils with one-time application of amendments in Guixi, China. Journal of Soils and Sediments, 2016, 16(5): 1498-1508.
[12] Cui Hongbiao, Zhou Jing, Zhao QG, Si Youbin, Mao Jingdong, Fang Guodong, Liang Jiani. Fractions of Cu, Cd, and enzyme activities in a contaminated soil as affected by applications of micro- and nano-hydroxyapatite. Journal of Soils and Sediments, 2013, 13(4): 742-752.
[13] Cui Hongbiao, Yi Qitao, Yang Xiong., Wang Xingming, Wu Huijun, Zhou Jing. Effects of hydroxyapatite on leaching of cadmium and phosphorus and their availability under simulated acid rain. Journal of environmental chemical engineering, 2017, 5(4), 3773-3779.
[14] 崔红标, 范玉超, 周静*, 时玉, 徐磊, 郭学涛, 胡友彪, 高良敏. 改良剂对土壤铜镉有效性和微生物群落结构的影响. 中国环境科学, 2016, 36(1):197-205
[15] 崔红标, 梁家妮, 周静*, 陶美娟, 谷键云, 徐磊. 磷灰石和石灰联合巨菌草对重金属污染土壤的改良修复. 农业环境科学学报, 2013, 32(7): 1334-1340.
[16] 崔红标, 周静*, 范玉超, 杜志敏, 司友斌. 磷灰石等改良剂对Cu污染土壤的修复效果研究—对Cu形态分布、土壤酶活性和微生物数量的影响. 土壤,2011, 43 (2): 247-252.
[17] 崔红标, 周静*, 杜志敏, 范玉超, 司友斌. 磷灰石等改良剂对重金属铜镉污染土壤的田间修复研究. 土壤, 2010, 42(4): 611-617.
[18] 周静*, 崔红标. 规模化治理耕地土壤重金属污染技术工程与展望—以江铜贵冶周边区域九牛岗土壤修复示范工程为例.中国科学院院刊, 2014, 29(3): 336-343

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