基于 AHP-TOPSIS 方法,研究考虑煤的可湿性,优化酸性修改方案的研究
Jimin He1, Mei Yuan1,2, Bobo Li1,2
1Mining of College, Guizhou University, Guiyang 550025, Guizhou, China.
ACS omega
|September 18, 2023
概括
改进的AHP-TOPSIS方法优化了煤层酸性化,以提高煤床甲的提取. 最好的方案使用4%的HF6小时,减少水吸附并增加气体输出.
科学领域:
- 地质化学 地质化学
- 石油工程是石油工程中的一个.
- 材料科学 材料科学 材料科学
背景情况:
- 酸化对于从低透性煤层中提取煤床甲 (CBM) 来说至关重要.
- 酸化的有效性取决于选择最佳的处理方案.
研究的目的:
- 提出一个改进的分析层次过程技术,以类似于理想解决方案的顺序偏好 (AHP-TOPSIS) 方法来优化煤炭可湿性修改.
- 确定最佳的酸化条件,以提高CBM提取的效果.
主要方法:
- 开发了一个评价指数系统,以煤炭湿度为目标和功能群体为指标.
- 用功能组的吸附能量用于水分子分配索引重量.
- 根据测试结果,应用了改进的AHP-TOPSIS方法来评估九种酸化方案.
主要成果:
- 评价指数的意义被排名为:芳香结构 > 基组 > 基功能组 > 含氧功能组.
- 确定的最佳酸化方案是4%的酸度和6小时的反应时间.
- AHP-TOPSIS方法的方案排名显示与水吸附测试结果的高度一致.
结论:
- 改进的AHP-TOPSIS方法有效地评估和选择最佳的酸化方案,以改变煤的湿度.
- 最佳方案显著降低了煤炭的吸水能力.
- 这种方法有可能通过改善煤层特性来增加CBM生产.
更多相关视频
08:17Coupling Carbon Capture from a Power Plant with Semi-automated Open Raceway Ponds for Microalgae Cultivation
Published on: August 14, 2020
5.2K
10:27A Uniaxial Compression Experiment with CO2-Bearing Coal Using a Visualized and Constant-Volume Gas-Solid Coupling Test System
Published on: June 12, 2019
8.7K
相关概念视频
Composition of Polyprotic Acid Solutions as a Function of pH
544
Polyprotic acids of the type H2M constitute two ionizable protons. As a result, on titration with a base, they exhibit two equivalence points in the titration curve. During titration, the species H2M, HM−, and M2− will be present in the solution at different points. The fractions of H2M, HM−, and M2− present at the various instances of the titration are denoted by α0, α1, and α2, respectively.
A graph with the alpha values is plotted against the volume of...
A graph with the alpha values is plotted against the volume of...
544
Extraction: Effects of pH
531
Consider a neutral form of an amine, B, with a partition coefficient, K, in a liquid mixture containing organic and aqueous phases. The pH of the aqueous phase affects the charge on acidic and basic solutes, and the charged form is usually more soluble in the aqueous phase. Suppose the conjugate acid form of the amine is soluble only in the aqueous phase while the base form is soluble in both phases. Then the distribution coefficient, D, can be given as the ratio of amine concentration in the...
531
Titration of Polyprotic Base with a Strong Acid
828
The titration of a polyprotic base such as sodium carbonate with a strong acid such as hydrochloric acid results in two equivalence points on the titration curve. At the first equivalence point, the carbonate ions in the base are completely converted to bicarbonate ions. The second equivalence point corresponds to the complete conversion of bicarbonate ions to carbonic acid, which dissociates into carbon dioxide and water. The region before the first equivalence point corresponds to the...
828
pH Scale
69.1K
Hydronium and hydroxide ions are present both in pure water and in all aqueous solutions, and their concentrations are inversely proportional as determined by the ion product of water (Kw). The concentrations of these ions in a solution are often critical determinants of the solution’s properties and the chemical behaviors of its other solutes. Two different solutions can differ in their hydronium or hydroxide ion concentrations by a million, billion, or even trillion times. A common means of...
69.1K
Leveling Effect
831
In acid-base chemistry, the leveling effect refers to the limitation imposed by the solvent on the strength of acids and bases in solution. When a base stronger than the solvent's conjugate base is used, it deprotonates the solvent until the base is entirely consumed, making it ineffective against weaker acids. Conversely, an acid stronger than the solvent's conjugate acid protonates the solvent until the acid is depleted, rendering it ineffective against weaker bases. Essentially, the...
831
Leveling Effect and Non-Aqueous Acid-Base Solutions
8.2K
This lesson defines the leveling effect in acidic and basic solutions and its role in aqueous and non-aqueous solutions. It is essential to understand the competing nature of various species in a chemical system.
The Leveling Effect of a Solvent
A generic acid (HA) reacts with the generic base (B-) to yield the corresponding conjugate base (A-) and conjugate acid (HB):
The Leveling Effect of a Solvent
A generic acid (HA) reacts with the generic base (B-) to yield the corresponding conjugate base (A-) and conjugate acid (HB):
8.2K
