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矿物-生物炭对沙壤土改良及玉米生产效益的影响
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作者 任成梁 刘福忠 +3 位作者 张国龙 赵军 陈婷 院海英 《农业科技与信息》 2024年第6期31-35,共5页
本试验通过探究矿物-生物炭对沙壤土的改良效果及玉米生产效益的影响,为矿物-生物炭在土壤改良中的推广和应用提供参考依据。通过测定不同用量矿物-生物炭处理下玉米生长指标和产量及土壤p H值、阳离子交换量、水溶性盐等离子含量等数据... 本试验通过探究矿物-生物炭对沙壤土的改良效果及玉米生产效益的影响,为矿物-生物炭在土壤改良中的推广和应用提供参考依据。通过测定不同用量矿物-生物炭处理下玉米生长指标和产量及土壤p H值、阳离子交换量、水溶性盐等离子含量等数据,分析矿物-生物炭对沙壤土的改良效果及玉米生产效益的影响,并确定最佳的增施量。结果表明:增施矿物-生物炭可以增加土壤阳离子交换量,降低水溶性盐、Na^(+)和HCO_(3)^(-)含量,对提高沙壤土保水保肥能力具有显著的作用;同时,增施矿物-生物炭可以提高玉米出苗率、增加植株茎粗。当矿物-生物炭用量达375 kg/hm^(2)时,玉米最高产量可达13 384.1 kg/hm^(2),与CK相比,玉米产量显著提高,增产率为33.85%;通过综合分析投入产出比,可增加利润8 204.4元/hm^(2);过量增施矿物-生物炭,玉米增产能力减弱,生产效益反而降低,因此不建议过量施用矿物-生物炭。 展开更多
关键词 矿物-生物炭 玉米 土壤离子 产量 经济效益
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Influences of Biochar and Biochar-Mineral Complex on Mycorrhizal Colonisation and Nutrition of Wheat and Sorghum 被引量:4
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作者 Paul BLACKWELL Stephen JOSEPH +4 位作者 Paul MUNROE Hossain M.ANAWAR Paul STORER Robert J.GILKES Zakaria M.SOLAIMAN 《Pedosphere》 SCIE CAS CSCD 2015年第5期686-695,共10页
The high price of synthetic fertilisers and the price barrier for biochar as a soil amendment have encouraged the exploration of using biochar in fertiliser replacement formulations. Biochars coupled with fertilisers ... The high price of synthetic fertilisers and the price barrier for biochar as a soil amendment have encouraged the exploration of using biochar in fertiliser replacement formulations. Biochars coupled with fertilisers can be applied at lower application rates to achieve benefits in plant growth and nutrition, as well as soil biological fertility. It is necessary to evaluate the use of biochar as a fertiliser substitute. Therefore, this study investigated the comparative influences of biochars, including Acacia saligna (AS), Simcoa jarrah (S J) and Wundowie jarrah (W J), mineral fertiliser with microbes (MF + M), biochar-mineral complex (BMC) and their combination on mycorrhizal colonisation, growth and nutrition of wheat in a glasshouse experiment and sorghum in field conditions. BMC + MF + M treatment produced higher mycorrhizal colonisation than MF + M alone, indicating that BMC had a significant role in increasing mycorrhizal colonisation. SJ (treated with acetic acid) and MF + M treatments, as well as AS + MF + M application, showed similar effects on mycorrhizal colonisation, but lower colonisation than the BMC + MF + M treatment. Ovcrall~ the BMC + MF + M treatment supported the maximum shoot, root and total plant dry weight followed by AS + MF + M and WJ + MF + M. The MF + M treatment had the maximum shoot N and K concentrations, while BMC + MF + M application had the maximum shoot P concentration. AS + MF -4- M and WJ + MF + M treatments supported the maximum N uptake by wheat shoots, while BMC + MF + M supported the maximum P uptake. The results showed that biochars and BMCs could increase mycorrhizal colonisation, plant growth and nutrient uptake of wheat, particularly N, P, K, S and Zn. The field experiment confirmed that BMC application at a rate of 300 kg ha-1 could increase the yield of irrigated sorghum on a loam soil and provide better applied P use efficiency compared to a water-soluble fertiliser alone. These results indicated that biochar-based fertilisers might increase the resilience and sustainability of dryland cropping in environments such as in Western Australia and warrant further field evaluation. 展开更多
关键词 carbon sequestration nutrient uptake P use efficiency soil biological fertility wheat production
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