中爪哇不同母质中磷烷与硫酸盐、腐植酸和黄腐酸的竞争吸附

Lilia Fauziah, E. Hanudin, S. Utami
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引用次数: 0

摘要

Andisol是一种具有andic性质的土壤,由火山母物质,尤其是火山灰形成。Andic土壤性质是由于火山灰岩或其他含有大量火山玻璃的母体材料的风化而形成的。形成Andisol的土壤的主要成分是无定形(短程有序)矿物,如脲基甲酸酯、伊莫戈利特、水铁矿和Al/Fe腐殖质复合体。短程有序矿物的存在使Andisol具有高的磷提取能力,但降低有机和无机离子注入磷量的努力尚未得到广泛研究。本研究旨在比较腐殖酸、黄腐酸和硫酸盐对Dieng山、Merbabu和Sumbing的Andisol无定形矿物吸附磷的抑制能力。在Merbabu山的位置发现了%水铁矿的最高计算值,其值为3.05%,而%脲基甲酸酯+伊莫戈石则由地面中的Sio含量确定。计算结果表明,Sumbing山的位置最高,其值为7.17%。根据TEM分析,Sumbining山的脲基甲酸酯直径为2.24–5.93 nm,伊莫戈利特长度为24–187 nm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Competitive adsorption of phosphate with sulfate, humic acid, and fulvic acid by allophane in different parent materials in Central Java
Andisol is a soil that has andic properties and develops from volcanic parent materials, especially ash. Andic soil properties are formed due to weathering of tephra or other parent materials that contain volcanic glass in large quantities. The main components of soil-forming Andisol are amorphous (short-range-order) minerals, such as allophane, imogolite, ferrihydrite, and Al/Fe-humus complexes. The existence of short-range-order minerals causes Andisol to have high P-tapping ability, but efforts to lower the amount of P plunged with organic and inorganic an-ons have not been widely studied. This study aimed to compare the ability of humic acid, fulvic acid, and sulfate in suppressing P adsorption by amorphous minerals from the Andisol of Mount Dieng, Merbabu, and Sumbing. The highest calculation of % ferrihydrite was found at the location of Mount Merbabu with a value of 3.05%, while the % allophane + imogolite was determined by the content of Sio in the ground. The calculation results showed that the highest was found at the location of Mount Sumbing with a value of 7.17%. Based on TEM analysis, Mount Sumbing has allophane diameter of 2.24 – 5.93 nm and the imogolite length of 24 – 187 nm. 
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