花生渣堆肥和稻草堆肥对土壤氮形态和高地水稻产量的影响

A. Sholihah, Agus Sugianto, Mahayu Woro Lestari
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摘要

本研究创新性地将稻草(低质量)与花生渣(高质量)混合制成堆肥,以提高稻草堆肥的质量。这项研究的目的是发现花生渣和稻草混合物在矿化、吸收和氮利用效率(NUE)方面的最佳成分及其对陆地水稻植物的影响。研究分三个阶段进行。第一阶段确定了五种堆肥混合物的质量:C1、C2、C3、C4 和 C5。第二阶段是在培养 1 周、2 周、4 周和 8 周后对累积氮矿物质进行检测。第三阶段检验堆肥混合物对高地水稻生长和产量的影响,并与两种处理方法(即对照和氮磷钾肥)进行比较。结果显示,矿化形式相似,在堆肥混合物中添加花生渣后,累积的氮矿化度增加。花生渣和稻草堆肥混合物的使用使净矿化度提高了 37.27%(C5)至 59.48%(C1),氮吸收率提高了 49.19%(C5)至 62.95%(C3),氮利用效率提高了 15.04%(C4)至 51.48%(C3)。堆肥质量与土壤中的氮形式,特别是硝酸盐含量、总氮矿物质和氮微生物生物量之间存在密切关系,相关系数分别为 0.92、0.88 和 0.94。氮形态与氮吸收量(r = 0.84)、株高(r = 0.79)、分蘖数(r = 0.78)、水稻植株产量(r = 0.93(植株总干重)和 r = 0.76(粒重)之间存在很强到非常强的关系。C3 处理的陆稻最佳氮吸收量、氮利用率和产量分别为 405.28 毫克/盆-1、42.21% 和 6.19 吨/公顷。
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Compost of peanuts residue and rice straw compost on soil Nitrogen forms and upland rice yield
This study provides an innovation in making compost from rice straw (low quality) mixed with peanut residue (high quality) to improve the quality of rice straw compost. The purpose of this research was to discover the optimum composition of a mixture of peanut residue and straw for mineralization, absorption, and Nitrogen Use Efficiency (NUE) and its effect on upland rice plants. The study was conducted in three stages. The first stage determined the quality of five compost mixtures: C1, C2, C3, C4, and C5. The second phase of testing for cumulative N minerals was performed after 1, 2, 4, and 8 weeks of incubation. The third stage examined the impact of the compost mixture on the growth and yield of upland rice in comparison with two treatments, namely the control and NPK fertilizer. The results showed a similarity in the forms of mineralization, where the cumulative N mineral increased with the addition of peanut residue to the compost mixture. The use of a mixture of peanut residue and rice straw compost increased net mineralization by 37.27% (C5) to 59.48% (C1), N uptake by 49.19% (C5) to 62.95% (C3), and NUE by 15.04% (C4) to 51.48% (C3). A strong relationship was detected between the quality of the compost and the forms of N in the soil, particularly the nitrate content, total N minerals, and N microbial biomass, with correlation coefficients of 0.92, 0.88, and 0.94, respectively. A strong to very strong relationship was detected between N form and N uptake (r = 0.84), plant height (r = 0.79), number of tillers (r = 0.78), yield of rice plants (r = 0.93 (plant total dry weight), and r = 0.76 (grain weight). The optimum N uptake, NUE, and yield of upland rice were shown by C3 treatment of 405.28 mg pot-1, 42.21%, and 6.19 tons ha-1, respectively.
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