Microelement Research Center, College of Resources and Environment, Huazhong Agricultural University, Wuhan, Hubei 430070, PR China.
Microelement Research Center, College of Resources and Environment, Huazhong Agricultural University, Wuhan, Hubei 430070, PR China; Zhejiang Agricultural Technology Extension Center, Hangzhou 310020, PR China.
Ecotoxicol Environ Saf. 2018 Oct;161:290-295. doi: 10.1016/j.ecoenv.2018.06.010. Epub 2018 Jun 8.
Biochar has a significant effect on alleviating acid soil aluminum (Al) toxicity and promoting plant growth. The potential effects of aged biochar (long-term applied biochar in soil) on soil amendment have attracted increasing attention. Here, the effects of biochar and aged biochar were evaluated through a pot experiment. The seedlings of cabbage were grown in red soil for 45 days with the following four biochar treatments: CK (0% biochar), PB (2% primary biochar), WB (2% water washed biochar) and AB (2% acidulated biochar) to investigate the potential effect of biochar and aged biochar on mitigating red soil aluminum toxicity and improving cabbage growth. Results indicated that biochar increased the content of available potassium, available phosphorus, and organic carbon in red soil and improved cabbage growth. Biochar not only increased the pH of red soil by 0.42 units, but also reduced exchangeable acid and exchangeable hydrogen (H) content by 52.74% and 2.86% respectively compared with CK. Additionally, the amount of the total active aluminum and exchangeable Al were reduced by 26.74% and 66.09%, respectively. However, water washed biochar and acidulated biochar decreased the effect of relieving the acidity substantially as compared to the primary biochar. Moreover, acidulated biochar treatment increased the Al content by 8.07% and trend of increasing soil available nutrients was declined with aged biochar. Taken together, it is concluded that biochar can reduce aluminum toxicity by increasing pH of acid soil and available nutrients, thus improves cabbage growth. However, aged biochar had a negative effect on aluminum toxicity reduction and acidic soil improvement, thus inhibited plant growth.
生物炭对缓解酸性土壤铝(Al)毒性和促进植物生长具有显著作用。老化生物炭(长期施用于土壤中的生物炭)对土壤改良的潜在影响引起了越来越多的关注。在这里,通过盆栽试验评价了生物炭和老化生物炭的作用。白菜幼苗在红壤中生长 45 天,采用以下四种生物炭处理:CK(无生物炭)、PB(2%原始生物炭)、WB(2%水洗生物炭)和 AB(2%酸化生物炭),以研究生物炭和老化生物炭对缓解红土铝毒性和促进白菜生长的潜在作用。结果表明,生物炭增加了红壤中有效钾、有效磷和有机碳的含量,并改善了白菜的生长。与 CK 相比,生物炭不仅将红壤的 pH 值提高了 0.42 个单位,而且还分别降低了交换性酸和交换性氢(H)的含量 52.74%和 2.86%。此外,总活性铝和交换性 Al 的含量分别减少了 26.74%和 66.09%。然而,与原始生物炭相比,水洗生物炭和酸化生物炭大大降低了缓解酸度的效果。此外,酸化生物炭处理增加了 8.07%的 Al 含量,并且随着老化生物炭的增加,土壤有效养分的增加趋势下降。综上所述,生物炭可以通过提高酸性土壤的 pH 值和有效养分来降低铝毒性,从而改善白菜的生长。然而,老化生物炭对降低铝毒性和改善酸性土壤有负面影响,从而抑制了植物的生长。