◆发表论文
[1]Yang, Z., Lu, L., Cheng, Z., Xian, J., Yang, Y., Liu, L., Xu, X., 2022. Dissimilatory nitrate reduction in urban lake ecosystems: a comparison study between closed and open lakes in Chengdu, China. Water Res. 214, 118218.
[2]Yang, Z., Guo, W., Cheng, Z., Wang, G., Xian, J., Yang, Y., Liu, L., Xu, X., 2022. Possibility of using combined compost–attapulgite for remediation of Cd contaminated soil. J. Clean. Prod. 368, 133216.
[3]Yang, Z., Wang, D., Wang, G., Zhang, S., Cheng, Z., Xian, J., Pu, Y., Li, T., Jia, Y., Li, Y., Zhou, W., Xu, X., 2021. Removal of Pb, Zn, Ni and Cr from industrial sludge by biodegradable washing agents: Caboxyethylthiosuccinic acid and itaconic-acrylic acid. J. Environ. Chem. Eng. 9, 105846.
[4]Yang, Z., Liu, X., Zhang, M., Xu, X., Xian, J., Cheng, Z., Liu, L., 2020. Effect of temperature and duration of pyrolysis on spent tea leaves biochar: Physiochemical properties and Cd(II) adsorption capacity. Water Sci. Technol. 81, 2533–2544.
[5]Yang, Z., Yu, Y., Hu, R., Xu, X., Xian, J., Yang, Y., Liu, L., Cheng, Z., 2020. Effect of rice straw and swine manure biochar on N2O emission from paddy soil. Sci. Rep. 10, 10843.
[6]Yang, Z., Liu, L., Lv, Y., Cheng, Z., Xu, X., Xian, J., Zhu, X., Yang, Y., 2018. Metal availability, soil nutrient, and enzyme activity in response to application of organic amendments in Cd-contaminated soil. Environ. Sci. Pollut. Res. 25, 2425–2435.
[7]Zhang, M., Liu, X., Yu, Y., Jiang, R., Deng, S., Yang, Z.*. Adsorption of Cd (II) From Aqueous Solutions by Raw and Modified Tea Residue Biochars. 2nd International Symposium on Resource Exploration and Environm, 2018, 6(170):1-6.
[8]Huang, J., Yang, Z., Li, J., Liao, M., Lin, L., Wang, J., Yang, Y., Liang, D., Xia, H., Wang, X., Ren, W., 2017. Cadmium accumulation characteristics of floricultural plant Cosmos bipinnata. Chem. Ecol. 33, 807–816.
[9]Yang, Z., Jin, H.; Zhu, X.; Wang, G., Long-Term Effect of Thinning and Creating Gaps on Tree Regeneration and Understory Vegetation in Larch Plantation MASS2011 Wuhan, P.R. 2011.8.15 2011.8.20
[10]Yang, Z., Jin, H., Wang, G., 2010. An assessment of restoration success to forests planted for ecosystem restoration in loess plateau, Northwestern China. Environ. Monit. Assess. 164, 357–368.
[11]吕严凤, 蒋容, 鲜骏仁, 杨占彪. 川中丘陵区柏木边坡防护林对相邻农田大型土壤动物群落的影响[J]. 长江流域资源与环境, 2016, 25(8):1299-1307.
[12]李亚琴, 李梁, 黄蓉, 杨占彪. 川中丘陵区边坡防护林对农田土壤有机碳的影响——以盐亭县为例[J]. 生态与农村环境学报, 2012, 28(3):255-259.
[13]李长欣, 吕严凤, 张梦迪, 杨占彪. 热解条件对茶叶渣生物炭特性及镉污染土壤钝化效果的影响[J]. 环境工程学报, 2017, 11(12): 6504-6510.
[14]蒋容, 余一, 唐玉蓉, 华治钧, 鲜骏仁, 杨占彪. 增温和生物炭添加对农田土壤酶活性的影响[J]. 四川农业大学学报, 2018, 36(1): 72-85.
[15]何芸雨, 蒋蓉, 罗颖, 张梦迪, 吕严凤, 薛俊武, 杨占彪. 镉胁迫对线麻(Cannabis Sativa L.)富集及光合特性的影响[J]. 环境化学, 2017(11): 2341-2348.