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改性稻壳炭和改性沸石对红壤磷有效性的影响 被引量:6
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作者 白玉超 邓宝元 +4 位作者 史海莉 王宗抗 黄培钊 王德汉 段继贤 《中国土壤与肥料》 CAS CSCD 北大核心 2020年第2期31-39,共9页
为探究改性稻壳炭、改性沸石对红壤磷素有效性的影响,以稻壳炭(R)、HCl改性稻壳炭(HR)、沸石(Z)、铵化沸石(NZ)、低温活化沸石(RZ)和铵化低温活化沸石(NRZ)为试验材料,以1%、3%、5%和8%的剂量添加到混合肥料中并与供试红壤充分混合,经过... 为探究改性稻壳炭、改性沸石对红壤磷素有效性的影响,以稻壳炭(R)、HCl改性稻壳炭(HR)、沸石(Z)、铵化沸石(NZ)、低温活化沸石(RZ)和铵化低温活化沸石(NRZ)为试验材料,以1%、3%、5%和8%的剂量添加到混合肥料中并与供试红壤充分混合,经过7、14、28和56 d的室内培养后测定土壤有效磷含量,并通过土壤盆栽试验研究添加5%改性稻壳炭、改性沸石对玉米磷肥利用率的影响。研究结果表明,在土壤培养的第7、14和28 d,沸石、稻壳炭改性方式和添加量对土壤有效磷含量影响显著(P<0.01),且其交互作用对土壤有效磷含量影响显著(P<0.01),添加量是影响土壤有效磷含量有关参数的主要决定因子。在不同稻壳炭、沸石改性方式和添加剂量处理下,土壤有效磷含量增加,磷肥固定率降低。沸石经铵化和低温活化处理后,吸附能力和吸附容量增加,提高了土壤中磷素有效性。稻壳炭经HCl氧化改性处理后,对土壤中磷素的吸附能力增强,降低了土壤对磷的固定作用。混合肥料中添加5%改性稻壳炭、改性沸石后,玉米磷素利用率比对照提高了34.45%~45.53%,但各添加材料处理间差异不显著。 展开更多
关键词 改性稻壳炭 改性沸石 有效磷 磷肥利用率
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Characteristics and Performance of Novel Water-Absorbent Slow Release Nitrogen Fertilizers 被引量:24
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作者 HE Xu-sheng LIAO Zong-wen +4 位作者 huang pei-zhao DUAN Ji-xian GE Ren-shan LI Hong-bo GENG Zeng-chao 《Agricultural Sciences in China》 CAS CSCD 2007年第3期338-346,共9页
In this article, a research on the characteristics and performance of water-absorbent slow release nitrogen fertilizer (WASRNF) using infrared spectroscopy (IR), scanning electronic microscopy (SEM), differentia... In this article, a research on the characteristics and performance of water-absorbent slow release nitrogen fertilizer (WASRNF) using infrared spectroscopy (IR), scanning electronic microscopy (SEM), differential scanning calorimetry (DSC), and thermogravimetry analysis (TGA), was present. The results indicate that the water absorbency and nitrogen analysis of WASRNF is 103 g g^-1 and 30%, respectively, and WASRNF exhibits approximately neutral pH and very low salt index. WASRNF is a copolymer of nitrogen fertilizer and super absorbent polymer (SAP) monomers which is formed through hydrogen bond interaction, and the molecule contains hydrophilic groups, which is responsible for the absorption and water retention capacity of the molecule. WASRNF is a gel that exhibits the ability to swell, but does not dissolve in water. WASRNF shows non-homogenous nature as a whole, but in local zone it is homogenous, the copolymer molecule shows chain network that is the physical structure responsible for absorption and retention of water in WASRNF. The water retained in WASRNF exists as free and nonfreezing bound and freezing bound water states, with the free and the nonfreezing water accounting for more than 95% of water retained in WASRNF, and the nonfreezing bound water for less than 5%. WASRNF functions in delaying the release of nitrogen from it, thereby serving a novel slow release nitrogenous fertilizer. 展开更多
关键词 water-absorbent slow release nitrogen fertilizer CHARACTERISTICS PERFORMANCE
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