[1] |
任露陆, 蔡宗平, 王固宁, 等. 不同钝化机制矿物对土壤重金属的钝化效果及微生物响应[J]. 农业环境科学学报, 2021, 40(7): 1470 − 1480.
REN Lulu, CAI Zongping, WANG Guning, et al. Effects of minerals with different immobilization mechanisms on heavy metal availability and soil microbial responses [J]. J Agro-Environ Sci, 2021, 40(7): 1470 − 1480. |
[2] |
胡雪芳, 田志清, 梁亮, 等. 不同改良剂对铅镉污染农田水稻重金属积累和产量影响的比较分析[J]. 环境科学, 2018, 39(7): 3409 − 3417.
HU Xuefang, TIAN Zhiqing, LIANG Liang, et al. Comparative analysis of different soil amendment treatments on rice heavy metal accumulation and yield effect in Pb and Cd contaminated farmland [J]. Environ Sci, 2018, 39(7): 3409 − 3417. |
[3] |
马佳燕, 马嘉伟, 柳丹, 等. 杭嘉湖平原水稻主产区土壤重金属状况调查及风险评价[J]. 浙江农林大学学报, 2021, 38(2): 336 − 345.
MA Jiayan, MA Jiawei, LIU Dan, et al. Survey and risk assessment of soil heavy metals in the main rice producing areas in Hangjiahu Plain [J]. J Zhejiang A&F Univ, 2021, 38(2): 336 − 345. |
[4] |
YE Xinxin, MA Yibing, SUN Bo. Influence of soil type and genotype on Cd bioavailability and uptake by rice and implications for food safety [J]. J Environ Sci, 2012, 24(9): 1647 − 1654. |
[5] |
郝社锋, 任静华, 范健, 等. 江苏某市水稻籽粒重金属富集特征及健康风险评价[J]. 环境污染与防治, 2021, 43(2): 217 − 222.
HAO Shefeng, REN Jinghua, FAN Jian, et al. Heavy metals accumulation characteristics and health risk assessment of rice grain produced in Jiangsu area [J]. Environ Pollut Prev, 2021, 43(2): 217 − 222. |
[6] |
LIU J G, LIANG J S, LI K Q, et al. Correlations between cadmium and mineral nutrients in absorption and accumulation in various genotypes of rice under cadmium stress [J]. Chemosphere, 2003, 52(9): 1467 − 1473. |
[7] |
李忠煜, 李艳广, 黎卫亮, 等. 衍生化气相色谱-质谱法测定复垦土地样品中19种酚类污染物[J]. 岩矿测试, 2021, 40(2): 239 − 249.
LI Zhongyu, LI Yanguang, LI Weiliang, et al. Determination of 19 phenolic pollutants in reclaimed land samples by derivation gas chromatography-mass spectrometry [J]. Rock Mineral Anal, 2021, 40(2): 239 − 249. |
[8] |
郭英英. 平朔矿区复垦地不同植被下苔藓植物群落数量生态研究[D]. 太原: 山西大学, 2020.
GUO Yingying. Quantitative Ecology of Bryophyte Community under Different Revegetation Patterns on the Reclaimed Dumps in Pingshuo Mining Area[D]. Taiyuan: Shanxi University, 2020. |
[9] |
WANG Feifei, GUAN Qingyu, TIAN Jing, et al. Contamination characteristics, source apportionment, and health risk assessment of heavy metals in agricultural soil in the Hexi Corridor [J/OL]. Catena, 2020, 191(3). doi: 10.1016/j.catena.2020.104573. |
[10] |
李春芳, 曹见飞, 吕建树, 等. 不同土地利用类型土壤重金属生态风险与人体健康风险[J]. 环境科学, 2018, 39(12): 342 − 352.
LI Chunfang, CAO Jianfei, LÜ Jianshu, et al. Ecological risk assessment of soil heavy metals for different types of land use and evaluation of human health [J]. Environ Sci, 2018, 39(12): 342 − 352. |
[11] |
CHEN Xiuxiu, LIU Yumin, ZHAO Qingyue, et al. Health risk assessment associated with heavy metal accumulation in wheat after long-term phosphorus fertilizer application[J/OL]. Environ Pollut, 2020, 262: 114348 [2021-03-30]. doi: 10.1016/j.envpol.2020.114348. |
[12] |
田美玲, 钟雪梅, 张云霞, 等. 矿业活动影响区稻田土壤和稻米中重金属含量及健康风险[J]. 环境科学, 2018, 39(6): 2919 − 2926.
TIAN Meiling, ZHONG Xuemei, ZHANG Yunxia, et al. Concentrations and health risk assessments of heavy metal contents in soil and rice of mine contaminated areas [J]. Enviorn Sci, 2018, 39(6): 2919 − 2926. |
[13] |
李卫平, 王非, 杨文焕, 等. 包头市南海湿地土壤重金属污染评价及来源解析[J]. 生态环境学报, 2017, 26(11): 1977 − 1984.
LI Weiping, WANG Fei, YANG Wenhuan, et al. Pollution assessment and source apportionment of heavy metals in Nanhai wetland soil of Baotou City [J]. Ecol Environ Sci, 2017, 26(11): 1977 − 1984. |
[14] |
李伟, 布多, 孙晶, 等. 拉萨巴嘎雪湿地土壤重金属分布及生态风险评价[J]. 环境化学, 2021, 40(1): 195 − 203.
LI Wei, BU Duo, SUN Jing, et al. Distribution and ecological risk assessment of heavy metal elements in the surface sediments of Bagaxue wetlands in Lhasa [J]. Environl Chem, 2021, 40(1): 195 − 203. |
[15] |
杜昊霖, 王莺, 王劲松, 等. 青藏高原典型流域土壤重金属分布特征及其生态风险评价[J]. 环境科学, 2021, 42(9): 4422 − 4431.
DU Haolin, WANG Ying, WANG Jinsong, et al. Distribution characteristics and ecological risk assessment of soil heavy metals in typical watersheds of Qinghai-Tibet Plateau [J]. Enviorn Sci, 2021, 42(9): 4422 − 4431. |
[16] |
HAKANSON L. An ecological risk index for aquatic pollution control: a sedimentological approach [J]. Water Res, 1980, 14(8): 975 − 1001. |
[17] |
SAEEDDI M, ZANJANI A J. Development of a new aggregative index to assess potential effect of metals pollution in aquatic sediments [J]. Ecol Indic, 2015, 58: 235 − 243. |
[18] |
ZHANG Zhaoyong, LI Juying, MAMAT Z, et al. Sources identification and pollution evaluation of heavy metals in the surface sediments of Bortala River, Northwest China [J]. Ecotoxicol Environ Saf, 2016, 126: 94 − 101. |
[19] |
GUO Weihua, LIU Xianbin, LIU Zhanguang, et al. Pollution and potential ecological risk evaluation of heavy metals in the sediments around dongjiang harbor, Tianjin [J]. Procedia Environ Sci, 2010, 2(1): 729 − 736. |
[20] |
张云芸, 马瑾, 魏海英, 等. 浙江省典型农田土壤重金属污染及生态风险评价[J]. 生态环境学报, 2019, 28(6): 1233 − 1241.
ZHANG Yunyun, MA Jin, WEI Haiying, et al. Heavy metals in typical farmland soils of Zhejiang Province: levels, sources and ecological risks [J]. Ecol Environ Sci, 2019, 28(6): 1233 − 1241. |
[21] |
李思民, 王豪吉, 朱曦, 等. 土壤pH和有机质含量对重金属可利用性的影响[J]. 云南师范大学学报(自然科学版), 2021, 41(1): 49 − 55.
LI Simin, WANG Haoji, ZHU Xi, et al. Effects of soil pH and organic matter on the content of bioavailable heavy metals [J]. J Yunnan Norm Univ Nat Sci Ed, 2021, 41(1): 49 − 55. |
[22] |
郭红伟, 郭世荣, 黄保健. 大棚辣椒不同连作年限土壤理化性质研究[J]. 江苏农业科学, 2011, 39(5): 452 − 455.
GUO Hongwei, GUO Shirong, HUANG Baojian. Study on soil physical and chemical properties of different continuous cropping years of hot pepper in greenhouse [J]. Jiangsu Agric Sci, 2011, 39(5): 452 − 455. |
[23] |
孙小花, 胡新元, 陆立银, 等. 黄土高原马铃薯不同连作年限土壤理化性质及微生物特性[J]. 干旱地区农业研究, 2019, 37(4): 184 − 192.
SUN Xiaohua, HU Xinyuan, LU Liyin, et al. Soil physical and chemical properties and microbial characteristics of potato in different continuous cropping years on the Loess Plateau [J]. Agric Res Arid Areas, 2019, 37(4): 184 − 192. |
[24] |
邢金峰, 仓龙, 任静华. 重金属污染农田土壤化学钝化修复的稳定性研究进展[J]. 土壤, 2019, 51(2): 224 − 234.
XING Jinfeng, CANG Long, REN Jinghua. Remediation stability of in situ chemical immobilization of heavy metals contaminated soil: a review [J]. Soil, 2019, 51(2): 224 − 234. |