Nature's Evil [calibre 5.27.0]
- Автор: Эткинд Александр Маркович
- Год: 2022
- Язык: английский
- Год: Wiley
- Переводчик: Sara Jolly
- Жанр: История
Электронная книга - «Nature's Evil [calibre 5.27.0]». Краткое содержание книги:
Iron
People found nuggets of pure iron in meteorites; they were rarer and more precious than gold. In the mountains accessible to the people of the ancient world – in Anatolia, the Appenines, later in the Balkans and the Carpathians – there were outcrops of iron ore. These were extracted from quarries, but iron ore appears on the earth’s surface as rarely as a meteorite. Most ancient iron was found in bogs and lakes. This type of ore is now called limonite, mudstones or simply bog iron. Historians tend to underestimate its significance.
Bog iron comes in the form of unprepossessing, rough stone nuggets of a distinctive colour, ranging from brown to yellow. They consist of ferric oxide and various admixtures; for modern metallurgy they are worthless, but they have some special qualities. Progress in the art of smelting was dictated by the use of ever higher temperatures. Different metals have different smelting temperatures; the smelting temperature of iron (for modern processes, it is higher than 1,500º Celsius) is much higher than for copper (1,000º Celsius). But iron from bog ore smelts at an unusually low temperature, starting at 400º Celsius. This temperature could be reached even by burning peat from that same bog; using good wood or, better still, charcoal, an experienced blacksmith could produce high-quality iron from bog ore. Repeated forging in a furnace removed oxygen and chemical impurities. Moreover, bog ore contained a lot of silicon. This made the iron stainless, a result that the blacksmiths of the mountains were unable to achieve for centuries.
The Iron Age staggered into being after a series of false starts. The switch of the resource platform happened about 1200 bce , when the ‘people from the sea’ arrived from beyond the Balkans to destroy and plunder the ancient centres of civilisation. The invaders were armed with iron weapons, and this metal enabled their feats as seafarers. In Anatolia, the previously unknown Hittites founded a powerful state, which was based on iron; it competed with Egypt, the leading power of the Bronze Age. The Hittites forged swords and axes from iron and made iron parts for their chariots too. They ousted the Egyptians from the Levant and Canaan, but then the Hittite state also collapsed, unable to withstand the onslaught of the Phrygian cavalry who had attacked from the North. This was the era when massed infantry, armed with iron sabres and helmets, gained victory over chariots from which high-born warriors fired arrows and wielded lances – a period of global destruction of the old priestly elites. The barbarian peoples – the Etruscans, the Phoenicians and the Celts – were great masters of iron and used it for making ploughs, horseshoes, nails and cheap weapons for the infantry. For the Romans, iron was a despised metal, but they learnt from their enemies.
In ancient Israel, the tribe of Yahweh cleared the land with iron axes, mattocks and ploughs. In the first temple of King Solomon, started in 950 bce , both copper and iron were used. The invention of the iron plough was a major factor in the productivity of agriculture. The wheels for war chariots, carriages and wheelbarrows needed iron parts. Then ploughs were also put on wheels; combining wood and iron, these implements enabled the mass use of draught animals. Only Eurasia used the plough; before the arrival of settlers the plough was unknown in America, Africa or Oceania. Experiments by anthropologists have shown that you can chop down a tree with a bronze axe three times faster than with a stone axe and eight times faster with an iron axe. Increasing the area of arable land and making the competition for land more intense, iron tools strengthened social stratification and the role of the state. From now on, property rights would define life and wealth, and only the state could protect these rights.
But the archaeologist V. Gordon Childe characterised the Iron Age as a time of democracy and monotheism. The use of iron weapons enabled the overthrow of the priestly elites; exchanging iron tools for farm products improved the life of the peasants. As it happened, the change of the resource platform was defined by the technical progress that had created a cheaper and abundant alternative. Throughout the civilised world, from India to Spain, the transition from bronze to iron was accompanied by the destruction of towns, the growth of violence and the decline of written culture. The magnificent palaces and trading towns of the Middle East disappeared. Archaeologists detect signs of the catastrophe in the deterioration of pottery and in the mass migration from coastal areas to the hilltops where cattle herders could protect themselves from pirates. It was a Time of Troubles; centuries passed before the peoples of Greece and Palestine could find new paths of cultural development. Then the Axial Age began, with its mass religion, written law and metal coins. 4
The success of the Hittites and the ‘people from the sea’ demonstrated that their iron weapons were at least as good as bronze ones, and probably cheaper. But the early methods of processing iron are still a mystery. The temperature at which mined iron melts has not changed to this day; it is impossible to achieve it in a furnace fuelled by wood. According to one theory, the ‘people from the sea’ used bog iron, which they brought from the Scythian steppes further to the north; using charcoal to heat the furnace, they were able to forge blades from this ore. Another theory claims that the Hittites forged weapons using ore with a high nickel content, which produced something like a steel alloy; in Anatolia there are deposits of this ore. According to a third hypothesis, the Hittites combined the carburisation of metal with its ‘tempering’. 5 Burning crushed iron ore with a large quantity of charcoal, they rapidly quenched the alloy in cold water. The alloy crystallises into a sturdy, malleable material, discovered anew by the German engineer Adolph Martens in 1902; this material was named Martensite.
The mysterious Hittites did not pass on their secret to descendants. The later armourers alternated folded layers of forged iron and tempered steel – the resulting sandwiches were lighter and sharper. Metallurgy is an art. The physical changes that occur in fibres are simpler and more predictable than the chemical reactions produced when various substances are heated and combined, such as oxidation, carburation or cupellation. Acquired through millennia of trial and error, empirical knowledge was secret. Every generation of miners and smiths had to learn their trade: starting his apprenticeship as a child, the pupil found himself completely under the power of his master. A rare and profitable profession passed down from father to son; childless blacksmiths (and there were many) easily found apprentices.
In peacetime, Rome depended more on brick and wood than on metal. But every Roman legion used hundreds of tons of iron for defensive and attack weapons. The further the borders of this empire stretched in the search for metal, the more arms, forts and metal it needed. The Roman mines were worked by slaves; many of them, however, were paid for their work and some became masters or managers. The smelting and forging depended on firewood, and the advantage of the north was evident. Mines in the Alps produced iron with a high manganese content; something akin to steel was forged from this ore, although the temperature wasn’t high enough for casting. In their battles with the Roman legions, the barbarians used long, masterfully forged iron swords. Visigoths and Vikings made excellent weapons, strengthening bog iron with magical practices harking back to the cult of the dead. Throughout Scandinavia, archaeologists have dug up forges in which they find the bones of humans and large animals such as elk and bear. With faith in their magic powers, blacksmiths forged bog iron with powdered bones to make sturdy swords. Experiments have shown that, with a limited supply of oxygen, bone meal carburises iron, creating a coating of sturdy, stainless steel.