博士 副教授 硕士生导师
教育及工作经历
2019年11月至今,西南大学资源环境学院,教师
2018年01月至2019年10月,西北农林科技大学农业资源与环境博士后流动站,博士后
2015年09月至2017年08月,美国路易斯安娜州立大学农业中心,联合培养博士
2012年09月至2017年12月,西北农林科技大学环境工程,博士(提前攻博)
2008年09月至2012年07月,西北农林科技大学环境科学,本科
学术兼职
Engineering Agriculture 青年编委
重庆市畜牧协会 绿色发展分会 理事
重庆市环境科学学会 土壤环境分会 委员
获奖荣誉
农业农村部2022-2024农牧渔业丰收奖二等奖,排名第5
主持科研项目
1、国家自然科学基金面上项目:水热炭多组分耦合驱动紫色土团聚和增碳固碳的机制(42577371),2026.01-2029.12,主持
2、国家重点研发计划课题:长效高效土壤增碳与瘠薄坡耕地靶向消障的新型碳基材料研发(2022YFD1901402),2022.11-2025.12,主持
3、西藏自治区科技局重点项目:西藏粮食主产区耕地地力定向培育技术研究与应用示范(XZ202501ZY0056),2025.03-2027.02,课题负责人
4、国家自然科学基金青年科学基金项目:硫铁改性生物炭(S-Fe@Biochar)对中碱性土壤镉(Cd)稳定化过程界面行为的调控机制研究(41907120),2020.01-2022.12,主持
5、国家自然基金区域创新发展联合基金项目:三峡库区多尺度多介质污染物与水体环境互馈机制及防控机理研究(U20A2047),2021.01-2024.12,子课题负责人
6、西藏科技重大专项项目“西藏草业时空扩展技术模式创新与示范——科技支撑草业发展专项”课题“半农半牧区双季饲草适应性生产技术研究与示范”子课题“双季饲草和典型饲草地力提升技术转化与示范”(XZ202101ZD0003N),2021.01-2023.01,子课题负责人
7、博士后基金面上项目二等资助:基于富营养水体净化的Cu2O-MgO/AlOOH@碳复合材料研发(2018M643746),2019.01-2019.10,主持
代表性学术成果
(1)农业有机废弃物资源化:
1、Xiao, R., Li, L., Zhang, Y.Y., Fang, L.F., Li, R.H., Song, D., Liang T., Su, X.X., Reducing carbon and nitrogen loss by shortening the composting duration based on seed germination index (SCD@GI): Feasibilities and challenges[J]. Science of the Total Environment, 2024, 933, 172883. (第一作者)
2、Ye, P.P., Fang, L.F., Song, D., Zhang, M.Y., Li, R.H., Awasthi, M.K., Zhang, Z.Q., Xiao, R., Chen, X.P., Insights into carbon loss reduction during aerobic composting of organic solid waste: A meta-analysis and comprehensive literature review[J]. Science of the Total Environment, 2023, 862, 160787. (通讯作者)
3、Shangguan W.G., Zhang, M.Y., Cheng, S., Song, D., Wei, Y.Y., Wang, M.J., Su, X.X., Zhang, Y.T., Xiao, R., Enhanced lignocellulose degradation and humification during the co-composting of cattle manure and tree branches: Synergism of microbial inoculation, biochar, and MnO2[J]. Process Safety and Environmental Protection, 2025, 107573. (共同通讯作者)
4、Fan, X.X., Wei, Y.Y., Song, D., Zhou, T., Li, R.H., Su, X.X., Zhang, T., Cheng, S., Xiao, R., Biochar enhanced co-composting for peat-free seedling substrate: A win-win solution for sustainable development of modern vegetable industry[J]. Process Safety and Environmental Protection, 2025, 194, 1504-1514. (通讯作者)
5、Xiong, W.J., Luo, Y.P., Shangguan, W.G., Deng, Y., Li, R.H., Song, D., Zhang, M.Y., Li, Z.Y., Xiao, R., Co-hydrothermal carbonization of lignocellulosic biomass and swine manure: Optimal parameters for enhanced nutrient reclamation, carbon sequestration, and heavy metals passivation[J]. Waste Management, 2024, 190, 174-185. (通讯作者)
6、Jiao, M.N., Yue, F.X., Ren, X.N., Zhan, X.Y., Xu, W.Y., Tang, D.K.H., Xiao, R., Li, R.H., Enhanced humification attributed by the integration of Fenton reagent and oxalic acid during a co-composting of swine manure and corn straw: Impacts and the possible mechanisms[J]. Chemical Engineering Journal, 2024, 498, 155579 (共同通讯作者)
7、Wang, M.Q., Zhang, M.Y., Chen, X.H., Chen, A.L., Xiao, R., Chen, X.P., Hydrothermal conversion of Chinese cabbage residue for sustainable agriculture: Influence of process parameters on hydrochar and hydrolysate[J]. Science of the Total Environment, 2022, 812, 152478. (通讯作者)
8、Zhang, M.Y., Liang, W., Tu, Z.N., Li, R.H., Zhang, Z.Q., Ali, A., Xiao, R., Succession of bacterial community during composting: dissimilarity between compost mixture and biochar additive [J]. Biochar, 2021, 3, 229-237. (通讯作者)
(2)耕地地力提升与农业系统设计
1、Tang, B.H., Ye, P.P., Luo, X., Yang, X.Y., Liang, T., Chen, A.L., Yu, D., Wang, X.Z., Xiao R., Optimizing fertilization enhances sustainable vegetable production: combining on-farm composting and biochar application to improve vegetable yield, soil health, and socio-economic benefits[J]. Journal of Cleaner Production, 2025, 525, 146630. (通讯作者)
2、Sun, L.Y., Wang, J.J., Wei, S., Ye, P.P., Deng, Y., Meng, X.T., Li, R.H., Zhang, Z.S., Su, X.X., Xiao, R., Hydrochar as an effective amendment for enhancing soil aggregation and carbon sequestration: evidence from comparative microcosm experiments[J]. Biochar, 2026, 8, 69. (共同通讯作者)
3、Luo, Y.P., Du, P.F., Ran, W.X., Wei, Y.Y., Wang, H., Chen, S., Song, D., Liang, T., Co-composting and organic amendments as tools to accelerate soil maturation in purple soils: Insights into soil properties and agricultural potential[J]. Journal of Environmental Management, 2026, 413, 130373. (通讯作者)
(3)修复材料开发、污染物的界面化学反应与污染土壤修复
1、Fang, L.F., Chengyu, C., Zhang, F., Ali, F.E., Sarkar, B., Rinklebe J., Shaheen, S.M., Chen, X.P., Xiao, R., Occurrence profiling and environmental risk assessment of veterinary antibiotics in vegetable soils at Chongqing region, China[J]. Environmental Research, 2023, 227, 115799. (共同通讯作者)
2、Fang, L.F., Chengyu, C., Li, S.Y., Ye, P.P., Shi, Y.J., Sharma, G., Sarkar, B., Shaheeen, S.M., Lee, S.S., Xiao, R., Chen X.P., A comprehensive and global evaluation of residual antibiotics in agricultural soils: Accumulation, potential ecological risks, and attenuation strategies[J]. Ecotoxicology and Environmental Safety, 2023, 262, 115175. (共同通讯作者)
3、Xiao, R., Ali, Amjad, Xu, Y.Q., Abdelrahman, H., Li, R.H., Lin, Y.B., Bolan, N., Shaheen, S.M., Rinklebe, J., Zhang, Z.Q., Earthworms as candidates for remediation of potentially toxic elements contaminated soils and mitigating the environmental and human health risks: a review [J].. Environment International, 2022, 158, 106924.(第一作者)
4、Xiao, R., Liu X.Y., Ali, A., Chen, A.L., Zhang, M.Y., Li, R.H., Chang, H., Zhang, Z.Q., Bioremediation of Cd-spiked soil using earthworms (Eisenia fetida): Enhancement with biochar and Bacillus megatherium application[J]. Chemosphere, 2021, 264(2), 128517. (共同一作)
5、Liu, X.Y., Xiao, R., Li, R.H., Amjad, A., Zhang, Z.Q., Bioremediation of Cd-contaminated soil by earthworms (Eisenia fetida): Enhancement with EDTA and bean dregs[J]. Environmental Pollution, 2020, 266(2), 115191.(共同一作)
6、Xiao R, Wang S, Li R, et al. Soil heavy metal contamination and health risks associated with artisanal gold mining in Tongguan, Shaanxi, China[J]. Ecotoxicology and environmental safety, 2017, 141: 17-24. (高被引论文)