施用含箔堆肥后土壤中的硫含量

M. Mierzwa-Hersztek, K. Gondek, M. Kopeć
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引用次数: 1

摘要

本研究的目的是评估在施用添加聚乙烯和玉米淀粉箔的堆肥材料后土壤中总硫和可同化硫的含量。试验设计包括7个处理,在2种土壤上进行3个重复:0 -未施肥土壤,NPK -矿物肥料施肥土壤,K1 -未添加箔的堆肥土壤施肥,K2 -添加箔A的堆肥土壤施肥(含47.5%聚乙烯C + 45%玉米淀粉+ 7.5%增容剂),K3 -添加箔B的堆肥土壤施肥(含65%聚乙烯C + 30%玉米淀粉+ 5%增容剂),K4—堆肥中添加了箔C(含65%聚乙烯C + 30%玉米淀粉+ 5%增容剂和共聚物),K5—堆肥中添加了箔C和微生物接种物。试验在颗粒组成为轻壤土和中壤土的土壤中进行。鸡脚是试验植物。轻壤土颗粒组成土壤处理的平均产量在1.4 ~ 2.4 Mg d.m. ha之间,中壤土颗粒组成土壤处理的平均产量在1.8 ~ 3.6 Mg d.m. ha之间。样品在450C室内炉中矿化8 h,预先结合硫酸Mg(NO3)2后,测定总S含量。用0.03 mol dm CH3COOH溶液提取S的可同化形式。用ICP-OES法测定所得溶液和提取物中S的含量。土壤中全形态硫的含量以中壤土的颗粒组成为最高,其中添加堆肥材料K3和K4 (220 mg kg d.m.)。轻质壤土处理土壤中可同化形式硫的含量为8.3 ~ 12.9 mg kg d.m.,中壤土处理土壤中可同化形式硫的含量为13.1 ~ 17.4 mg kg d.m.。
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The sulfur content in soil after application of composted materials containing foils
The aim of the research was to assess the content of total and assimilable forms of sulphur in soil after application of composted materials with the addition of polyethylene and corn starch foils. The experimental design consisted of 7 treatments carried out in 3 replications on two soils: 0 – non-fertilized soil, NPK – soil fertilized with mineral fertilizers, K1 – soil fertilized with composted material without the addition of foil, K2 – soil fertilized with composted material with the addition of foil A (which included 47.5% polyethylene C + 45% corn starch + 7.5% compatibilizer), K3 – soil fertilized with composted material with the addition of foil B (which included 65% polyethylene C + 30% corn starch + 5% compatibilizer), K4 – soil fertilized with composted material with the addition of foil C (which included 65% polyethylene C + 30% corn starch + 5% compatibilizer and copolymer), and K5 – soil fertilized with composted material with the addition of foil C and microbiological inoculum. The experiments were conducted in soils with the granulometric composition of light loam and medium loam. Cock’s-foot was the test plant. The mean yield of Dactylis glomerata L., collected from the treatments located in soil with the granulometric composition of light loam, was between 1.4 and 2.4 Mg d.m. ha and between 1.8 and 3.6 Mg d.m. ha for treatments conducted in soil with the granulometric composition of medium loam. Total S content was determined after sample mineralization in a chamber furnace at 450C for 8 h, after prior binding of sulphur sulfate Mg(NO3)2. Assimilable forms of S were extracted with solution of 0.03 mol dm CH3COOH. The S content in the obtained solutions and extracts was determined using the ICP-OES method. The highest content of total forms of sulphur was determined in soil with the granulometric composition of medium loam, to which composted materials K3 and K4 (220 mgS kg d.m. of soil) were introduced. The content of assimilable forms of sulphur ranged from 8.3 to 12.9 mgS kg d.m. of soil in the case of treatments located in soil with the granulometric composition of light loam, and from 13.1 to 17.4 mgS kg d.m. of soil for medium loam treatments.
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