Adriano DC (2001) Trace elements in terrestrial environments, 2 edn. Springer, New York
Ahmad M, Lee SS, Lim JE, Lee S, Cho JS, Deok HM, Hashimoto Y, Ok YS (2014) Speciation and phytoavailability of lead and antimony in a small arms range soil amended with mussel shell, cow bone and biochar: EXAFS spectroscopy and chemical extractions. Chemosphere 95:433–441
Bashir S, Hussain Q, Akmal M, Riaz M, Hu H, Ijaz SS, Iqbal M, Abro S, Mehmood S, Ahmad M (2017) Sugarcane bagasse-derived biochar reduces the cadmium and chromium bioavailability to mash bean and enhances the microbial activity in contaminated soil. J Soils Sediments. https://doi.org/10.1007/s11368-017-1796-z
Bashir S, Zhu J, Fu Q, Hu H (2018a) Cadmium mobility, uptake and anti-oxidative response of water spinach (Ipomoea aquatic) under rice straw biochar, zeolite and rock phosphate as amendments. Chemosphere 194:579–587
Bashir S, Rizwan MS, Salam M, Fu Q, Zhu J, Shaaban M, Hu H (2018b) Cadmium immobilization potential of rice straw-derived biochar, zeolite and rock phosphate: extraction techniques and adsorption mechanism. Bull Environ Contam Toxicol. https://doi.org/10.1007/s00128-018-2310-z
Bashir S, Zhu J, Fu Q, Hu H (2018c) Comparing the adsorption mechanism of Cd by rice straw pristine and KOH modified biochar. Environ Sci Pollut Res. https://doi.org/10.1007/s11356-018-1292-z
China Ministry of Environmental Protection (CMEP) (1995) China Environmental Quality Standard for Soil (GB15618-1995). China National Standardization Management Committee, China, Beijing
Houben D, Evrard L, Sonnet P (2013) Mobility, bioavailability and pH dependent leaching of cadmium, zinc and lead in a contaminated soil amended with biochar. Chemosphere 92:1450–1457
Jones DL, Willett VB (2006) Experimental evaluation of methods to quantify dissolved organic nitrogen (DON) and dissolved organic carbon (DOC) in soil. Soil Biol Biochem 38:991–999
Khan KY, Ali B, Cui X, Feng Y, Stoffela PJ, Pan F, Tang L, Xiaoe Y (2016) Effect of biochar amendment on bioavailability and accumulation of cadmium and trace elements in Brassica chinensis L. (Chinese cabbage). J Agric Sci 8:23–36
Lehmann J, Rillig MC, Thies J, Masiello CA, Hockaday WC (2011) Biochar effects on soil biota: a review. Soil Bio Biochem 43:1812–1836
Liu W, Zhou Q, An J, Sun Y, Liu R (2010) Variations in cadmium accumulation among Chinese cabbage cultivars and screening for Cd-safe cultivars. J Hazard Mater 173:737–743
Lu RK (1999) Analytical methods for soil agrochemistry. Chinese Agricultural Science and Technology Publishing House, Beijing (Chinese)
Lu K, Yang X, Shen J, Robinson B, Huang H, Liu D, Bolan N, Pei J, Wang H (2014) Effect of bamboo and rice straw biochars on the bioavailability of Cd, Cu, Pb and Zn to Sedum plumbizincicola. Agric Ecosyst Environ 191:124–132
Mohamed I, Zhang G, Li Z, Liu Y, Chen F, Dai K (2015) Ecological restoration of an acidic Cd contaminated soil using bamboo biochar application. Ecol Eng 84:67–76
Park JH, Choppala GK, Bolan NS, Chung JW, Chuasavathi T (2011) Biochar reduces the bioavailability and phytotoxicity of heavy metals. Plant Soil 348:439–451
Rauret G, Lopez-Sanchez JF, Sahuquillo A, Rubio R, Davidson C, Ure A, Quevauviller P (1999) Improvement of the BCR three step sequential extraction procedure prior to the certification of new sediment and soil reference materials. J Environ Monitor 1:57–61
Schlichting E, Blume HP, Stahr K (1995) Bodenkundliches parktikum. Blackwell, Berlin
Zheng J, Chen J, Pan G, Liu X, Zhang X, Li L, Bian R, Cheng K, Jinwei Z (2016) Biochar decreased microbial metabolic quotient and shifted community composition four years after a single incorporation in a slightly acid rice paddy from southwest China. Sci Total Environ 571:206–217