生物炭基钼肥对土壤无机氮形态转化的影响

被引:11
作者
黄永东 [1 ]
杜应琼 [1 ]
陈永坚 [1 ]
管颐雯 [1 ]
邓腾灏博 [1 ]
李蕾 [1 ]
吴志超 [1 ]
柳勇 [2 ]
机构
[1] 广东省农业科学院农产品公共监测中心//农业部农产品质量安全检测与评价重点实验室
[2] 广东省生态环境技术研究所//广东省农业环境综合治理重点实验室
基金
广东省科技计划; 广州市科技计划项目; 广东省自然科学基金;
关键词
生物炭; 硝态氮; 铵态氮; 硝化作用;
D O I
10.16258/j.cnki.1674-5906.2018.01.006
中图分类号
S153.6 [土壤成分];
学科分类号
090301 [土壤学];
摘要
土壤铵态氮和硝态氮是影响作物生长的重要因素。为了探明生物炭与钼配合施用后,土壤中铵态氮和硝态氮的动态变化规律,选取8种广东省具有代表性的农业废弃物制备生物炭基钼肥,采用土培实验,研究在分别施用硝态氮、铵态氮情况下,生物炭基钼肥对土壤中硝态氮及铵态氮含量变化的影响。结果表明,与对照相比,8种生物炭基钼肥均可显著提高土壤pH值,其中,甘蔗渣炭基钼肥、花生壳炭基钼肥和谷壳炭基钼肥可使土壤pH提高0.5~1.0个单位,丝瓜藤炭基钼肥、水葫芦炭基钼肥、玉米秸秆炭基钼肥、水稻秸秆炭基钼肥、花生秸秆炭基钼肥则可使之提高2.8~3.8单位。8种生物炭基钼肥均可显著促进土壤对铵态氮的起始固持量(10%38%),甘蔗渣炭基钼肥、花生壳炭基钼肥和谷壳炭基钼肥对土壤铵态氮的硝化作用影响不显著,而其他5种生物炭则可显著增强土壤的硝化作用,其中水稻秸秆炭基钼肥处理硝化率近50%,丝瓜藤炭基钼肥、水葫芦炭基钼肥、玉米秸秆炭基钼肥、花生秸秆炭基钼肥处理的硝化率近100%。生物炭基钼肥对土壤中的硝态氮主要表现为固持作用,可显著增加土壤对硝态氮的起始固持量(12%30%)。该研究结果可为作物施用生物炭基钼肥和氮肥提供参考,也可为进一步研究生物炭基钼肥对土壤有效钼含量、作物钼吸收及对植物体内氮代谢的影响提供基础资料。
引用
收藏
页码:40 / 46
页数:7
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