Mining minerals from seawater Damian Palin

i collaborate with bacteria and i’m

about to show you some stop-motion

footage that i made recently where

you’ll see bacteria accumulating

minerals from their environment

over a period of an hour

so what you’re seeing here is the

bacteria metabolizing and as they do so

they create electrical charge

and this attracts metals from their

local environment and these metals

accumulate as minerals on the surface of

the bacteria

one of the most pervasive problems in

the world today for people is inadequate

access to clean drinking water

and the desalination process is one

where we take out salts we can use it

for drinking and agriculture

but removing the salts from water in

particularly sea water through reverse

osmosis is a critical technique for

countries who do not have access to

clean drinking water around the globe

so seawater reverse osmosis is a

membrane filtration technology

we take the water from the sea and we

apply a pressure

and this pressure forces the sea water

through a membrane this takes energy

producing clean water but we’re also

left with a concentrated salt solution

or brine but the process is very

expensive and it’s cost prohibitive for

many countries around the globe and also

the brine that’s produced

is oftentimes just pumped back out into

the sea and this is detrimental to the

local ecology of the sea area that it’s

pumped back out into so i work in

singapore at the moment and this is a

place that’s really a leading place for

desalination technology and singapore

proposes by 2060 to produce 9 million

liters per day of desalinated water

but this will produce an equally

massive amount of desalination brine and

this is where my collaboration with

bacteria comes into play so what we’re

doing at the moment is we’re

accumulating metals like calcium

potassium and magnesium from out of

desalination brine

and this in terms of magnesium and the

amount of water that i just mentioned

equates to a 4.5 us billion dollar

mining industry for singapore a place

that doesn’t have any natural resources

so i’d like you to imagine a mining

industry in a way that one hasn’t

existed before

imagine a mining industry that doesn’t

mean defiling the earth

and imagine bacteria helping us do this

by

accumulating

and precipitating

and sedimenting minerals out of

desalination brine

and what you can see here is the

beginning of our industry in a test tube

a mining industry that is in harmony

with nature thank you

我与细菌合作,

我将向你展示

我最近制作的一些定格动画镜头,

你会看到细菌在一个小时内

从环境中积累矿物质,

所以你在这里看到的是

细菌代谢和 当它们这样做时,

它们会产生电荷

,这会从

当地环境中吸引金属,这些金属

会以矿物质的形式积聚在细菌表面。

当今世界上人们面临的最普遍的问题之一是

无法获得清洁的饮用水

和海水淡化 过程

是我们取出盐的过程,我们可以将其

用于饮用和农业,

通过反渗透从水中特别是海水中去除盐分

对于全球无法获得清洁饮用水的国家来说是一项关键技术,

因此海水会逆转 渗透是一种

膜过滤技术,

我们从海水中提取水并

施加压力

,这种压力迫使 海水

通过膜这需要能量

产生清洁水,但我们也

留下浓盐溶液

或盐水,但这个过程非常

昂贵,而且对全球许多国家来说成本过高,

而且产生的盐水

通常只是泵送

回到海里,这对被抽回的海域的当地生态有害,

所以我

目前在新加坡工作,这里是海水淡化技术

真正领先的地方

,新加坡

建议到 2060 年 每天生产 900 万

升淡化水,

但这将产生同样

大量的淡化盐水,

这就是我与

细菌的合作发挥作用的地方,所以我们目前正在

做的是我们正在

积累像钙

钾这样的金属和 来自

海水淡化盐水

的镁,就镁和

我刚才提到的水量而言,

相当于 4.5 美元的账单

新加坡的离子美元采矿业 一个

没有任何自然资源的地方,

所以我希望你以一种

前所未有的方式

想象一个采矿业,想象一个并不意味着污染地球的采矿业

和 想象一下细菌

通过从海水淡化盐水中

积累

、沉淀

和沉淀矿物质来帮助我们做到这一点

,你可以在这里看到

我们的工业在试管中的开始

一个与自然和谐相处的采矿业

谢谢