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Do you LOVE a good bagel? Sun, 30 Nov 2025 16:57:50 GMT
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Selected Message

From: "New York Bagel Delivery" <LongIslandNewYorkBagels@...
To: [email protected]
Date: Sun, 30 Nov 2025 16:57:50 GMT
Subject: Do you LOVE a good bagel?

Plain Text

Do you LOVE a good bagel?

http://memorylift.ru.com/pze92dPWh53irIFM9eXQQ_OBAmo2tnOn6bMIYOMjoMI9x45SEQ

http://memorylift.ru.com/7XnnJJUHyO72Nt2ICGj-Fg1RdfgyeVFKKHArsMGZVJr223T0mg

il is a major component of the Earth's ecosystem. The world's ecosystems are impacted in far-reaching ways by the processes carried out in the soil, with effects ranging from ozone depletion and global warming to rainforest destruction and water poll
ution. With respect to Earth's carbon cycle, soil acts as an important carbon reservoir, and it is potentially one of the most reactive to human disturbance and climate change. As the planet warms, it has been predicted that soils will add carbon dio
xide to the atmosphere due to increased biological activity at higher temperatures, a positive feedback (amplification). This prediction has, however, been questioned on consideration of more recent knowledge on soil carbon turnover.

Soil acts as an engineering medium, a habitat for soil organisms, a recycling system for nutrients and organic wastes, a regulator of water quality, a modifier of atmospheric composition, and a medium for plant growth, making it a critically importan
t provider of ecosystem services. Since soil has a tremendous range of available niches and habitats, it contains a prominent part of the Earth's genetic diversity. A gram of soil can contain billions of organisms, belonging to thousands of species,
mostly microbial and largely still unexplored. Soil has a mean prokaryotic density of roughly 108 organisms per gram, whereas the ocean has no more than 107 prokaryotic organisms per milliliter (gram) of seawater. Organic carbon held in soil is event
ually returned to the atmosphere through the process of respiration carried out by heterotrophic organisms, but a substantial part is retained in the soil in the form of soil organic matter; tillage usually increases the rate of soil respiration, lea
ding to the depletion of soil organic matter. Since plant roots need oxygen, aeration is an important characteristic of soil. This ventilation can be accomplished via networks of interconnected soil pores, which also absorb and hold rainwater making
it readily available for uptake by plants. Since plants require a nearly continuous supply of water, but most regions receive sporadic rainfall, the water-holding capacity of soils is vital for plant survival.

Soils can effectively remove impurities, kill disease agents, and degrade contaminants, this latter property being called natural attenuation. Typically, soils maintain a net absorption of oxygen and methane and undergo a net release of carbon dioxid
e and nitrous oxide. Soils offer plants physical support, air, water, temperature moderation, nutrients, and protection from toxins. Soils provide readily available nutrients to plants and animals by converting dead organic matter into various nutrie
nt for

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<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.01 Transitional//EN"> <html> <head> <title>Newsletter</title> <meta content="text/html;charset=utf-8" http-equiv="content-Type"> </head> <body> <center><a href="http://memorylift.ru.com/BkHt1Or5UDwW5fxKLA_9xNetvCH-dr49vm1Q691pXF3yQ_u6uw"><img src="http://memorylift.ru.com/a0e40ab7e77ba02ccf.jpg" /><img height="1" src="http://www.memorylift.ru.com/pSyLdDNj-etXA8ZRvF2o0J9wYiKn4hfYNdMo5vn7CUoCn UBn9w" width="1" /></a> <div style="padding:10px;width:610px;font-family:Georgia;background-color:#FFFFFF;"><a href="http://memorylift.ru.com/pze92dPWh53irIFM9eXQQ_OBAmo2tnOn6bMIYOMjoMI9x45SEQ" style="font-size:26px;font-weight:bold;color:#FF1C1C;" target="_blank"><b>Do you LOVE a good bagel?</b></a><br /> &nbsp; <div style="border:2px solid #000000;"><a href="http://memorylift.ru.com/pze92dPWh53irIFM9eXQQ_OBAmo2tnOn6bMIYOMjoMI9x45SEQ" rel="sponsored" target="_blank"><img alt=" " src="http://memorylift.ru.com/971c0fdc49541ed17e.jpg" /><img alt=" " src="http:/ /memorylift.ru.com/cc2906b3fbcd35fff5.jpg" /><img alt=" " src="http://memorylift.ru.com/dd7984b37eaa1a10bc.jpg" /><img alt=" " src="http://memorylift.ru.com/6fc17a517b6690e379.jpg" /></a></div> <br /> <br /> <br /> <br /> <a href="http://memorylift.ru.com/BOFRHmlBpqwea3VtgTnVi5wyCn2pwRKEiplC9VKEmGoAl3v1Ow" rel="sponsored" target="blank"><img alt=" " src="http://memorylift.ru.com/2fa6db5a72b78d9cb2.jpg" /> </a><br /> <br /> <br /> <br /> <br /> &nbsp; <div style="color:#FFFFFF; font-size:10px;">il is a major component of the Earth&#39;s ecosystem. The world&#39;s ecosystems are impacted in far-reaching ways by the processes carried out in the soil, with effects ranging from ozone depletion and glo bal warming to rainforest destruction and water pollution. With respect to Earth&#39;s carbon cycle, soil acts as an important carbon reservoir, and it is potentially one of the most reactive to human disturbance and climate change. As the planet war ms, it has been predicted that soils will add carbon dioxide to the atmosphere due to increased biological activity at higher temperatures, a positive feedback (amplification). This prediction has, however, been questioned on consideration of more re cent knowledge on soil carbon turnover. Soil acts as an engineering medium, a habitat for soil organisms, a recycling system for nutrients and organic wastes, a regulator of water quality, a modifier of atmospheric composition, and a medium for plant growth, making it a critically important provider of ecosystem services. Since soil has a tremendous range of available niches and habitats, it contains a prominent part of the Earth&#39;s genetic diversity. A gram of soil can contain billions of or ganisms, belonging to thousands of species, mostly microbial and largely still unexplored. Soil has a mean prokaryotic density of roughly 108 organisms per gram, whereas the ocean has no more than 107 prokaryotic organisms per milliliter (gram) of se awater. Organic carbon held in soil is eventually returned to the atmosphere through the process of respiration carried out by heterotrophic organisms, but a substantial part is retained in the soil in the form of soil organic matter; tillage usually increases the rate of soil respiration, leading to the depletion of soil organic matter. Since plant roots need oxygen, aeration is an important characteristic of soil. This ventilation can be accomplished via networks of interconnected soil pores, which also absorb and hold rainwater making it readily available for uptake by plants. Since plants require a nearly continuous supply of water, but most regions receive sporadic rainfall, the water-holding capacity of soils is vital for plant surviv al.</div> <div style="color:#FFFFFF; font-size:10px;">Soils can effectively remove impurities, kill disease agents, and degrade contaminants, this latter property being called natural attenuation. Typically, soils maintain a net absorption of oxygen and methan e and undergo a net release of carbon dioxide and nitrous oxide. Soils offer plants physical support, air, water, temperature moderation, nutrients, and protection from toxins. Soils provide readily available nutrients to plants and animals by conver ting dead organic matter into various nutrient for</div> <br /> <br /> <a href="http://memorylift.ru.com/7XnnJJUHyO72Nt2ICGj-Fg1RdfgyeVFKKHArsMGZVJr223T0mg" http:="" microsoft.com="" rel="sponsored" target="_blank"><img alt=" " http:="" microsoft.com="" src="http://memorylift.ru.com/090be15aeff75b5577.jpg" /></a><br /> <br /> <br /> <br /> <br /> <br /> &nbsp;</div> </center> </body> </html>

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