pH: Introduction, Basic concepts and Applications

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**课程名称:pH:入门、基本概念与应用** **课程概述:** 本课程将深入介绍pH,这是一个用于量化衡量水溶液或其它液体溶液酸碱度的指标。pH值被广泛应用于化学、生物学和农学等领域,它将氢离子浓度(通常介于1至10⁻¹⁴克当量/升之间)转换成0至14之间的数值。纯净水呈中性(既不显酸性也不显碱性),其氢离子浓度为10⁻⁷克当量/升,对应的pH值为7。pH值小于7的溶液被视为酸性,而pH值大于7的溶液则被视为碱性。 课程将追溯pH概念的起源,介绍丹麦生物化学家S.P.L. Sørensen提出的pH定义:pH = -log[H⁺]。我们将探讨pH的实际测量方法,重点介绍pH计的工作原理,包括其由pH敏感电极和参比电极组成的电化学测量系统。课程还会提及使用pH试纸和指示剂进行pH测量的精度差异。 在全球农业领域,土壤pH被视为最重要的单一特性,它直接影响作物生长适宜性以及土壤改良的必要性。课程将详细阐述酸性土壤的成因(如有机物分解、肥料应用、硫化物氧化等),土壤酸性增加对铝和锰溶解度的影响,以及这些金属对大多数植物的毒性。同时,课程也将介绍如何通过施用石灰来中和酸性土壤,并讨论碱性土壤对特定植物(如蓝莓)的生长限制。 **课程内容重点:** * pH的定义与计算公式 * 酸性、中性和碱性溶液的pH范围 * pH计的工作原理与组成 * pH测量的常用技术(pH计、试纸、指示剂) * 土壤pH对作物生长的影响 * 土壤酸化的原因及改良方法 * 重金属在土壤中的溶解度与植物毒性 本课程旨在为学习者提供pH理论知识和实际应用能力的全面认识。

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pH, quantitative measure of the acidity or basicity of aqueous or other liquid solutions. The term, widely used in chemistry, biology, and agronomy, translates the values of the concentration of the hydrogen ion-which ordinarily ranges between about 1 and 10−14 gram-equivalents per litre-into numbers between 0 and 14. In pure water, which is neutral (neither acidic nor alkaline), the concentration of the hydrogen ion is 10−7 gram-equivalents per litre, which corresponds to a pH of 7. A solution with a pH less than 7 is considered acidic; a solution with a pH greater than 7 is considered basic, or alkaline.The measurement was originally used by the Danish biochemist S.P.L. Sørensen to represent the hydrogen ion concentration, expressed in equivalents per litre, of an aqueous solution: pH = −log[H+] (in expressions of this kind, enclosure of a chemical symbol within square brackets denotes that the concentration of the symbolized species is the quantity being considered).Because of uncertainty about the physical significance of the hydrogen ion concentration, the definition of the pH is an operational one; i.e., it is based on a method of measurement. The U.S. National Institute of Standards and Technology has defined pH values in terms of the electromotive force existing between certain standard electrodes in specified solutions.pH meterpH meterThe pH is usually measured with a pH meter, which translates into pH readings the difference in electromotive force (electrical potential or voltage) between suitable electrodes placed in the solution to be tested. Fundamentally, a pH meter consists of a voltmeter attached to a pH-responsive electrode and a reference (unvarying) electrode. The pH-responsive electrode is usually glass, and the reference is usually a mercury-mercurous chloride (calomel) electrode, although a silver-silver chloride electrode is sometimes used. When the two electrodes are immersed in a solution, they act as a battery. The glass electrode develops an electric potential (charge) that is directly related to the hydrogen-ion activity in the solution, and the voltmeter measures the potential difference between the glass and reference electrodes. The meter may have either a digital or an analog (scale and deflected needle) readout. Digital readouts have the advantage of exactness, while analog readouts give better indications of rates of change. Battery-powered portable pH meters are widely used for field tests of the pH of soils. Tests of pH may also be performed, less accurately, with litmus paper or by mixing indicator dyes in liquid suspensions and matching the resulting colours against a colour chart calibrated in pH.In agriculture, the pH is probably the most important single property of the moisture associated with a soil, since that indication reveals what crops will grow readily in the soil and what adjustments must be made to adapt it for growing any other crops. Acidic soils are often considered infertile, and so they are for most conventional agricultural crops, although conifers and many members of the family Ericaceae, such as blueberries, will not thrive in alkaline soil. Acidic soil can be "sweetened," or neutralized, by treating it with lime. As soil acidity increases so does the solubility of aluminum and manganese in the soil, and many plants (including agricultural crops) will tolerate only slight quantities of those metals. Acid content of soil is heightened by the decomposition of organic material by microbial action, by fertilizer salts that hydrolyze or nitrify, by oxidation of sulfur compounds when salt marshes are drained for use as farmland, and by other causes.

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