Colin N Waters
Dados Biográficos
| ID | 2625672 |
|---|---|
| NOME | Colin N Waters |
| PRENOMES | Colin N |
| SOBRENOME | Waters |
| ASSINATURA | WATERS C N |
| AFILIAÇÕES | British Geological Survey |
| ORCID | 0000-0001-6113-8730 |
| VERIFICADO | Sim |
| TOTAL DE OBRAS | 22 |
| TOTAL DE CITAÇÕES | 586 |
| TOTAL COMO AUTOR | 22 |
| TOTAL COMO EDITOR | 0 |
| PRIMEIRO ANO DE PUBLICAÇÃO | 2008 |
| ANO MAIS RECENTE DE PUBLICAÇÃO | 2026 |
| ÍNDICE H | 10 |
The Anthropocene as a conceptual tool for education
In a world where facts are contested, the conceptual tool of the Anthropocene epoch – that is, the dramatic and clearly demonstrable ways humans have changed the Earth system trajectory since the mid-20th century – provides real value for society in general and for education in particular. As a unifying concept, it helps us (a) understand the transformed bioclimatic conditions in which we live, (b) appreciate how fragile they are, how rapidly the…
Response to Damianos—Anthropocene angst
Damianos provides his views on the significance of the March 2024 decision by the International Commission on Stratigraphy (ICS) to reject the proposal of the Anthropocene Working Group (AWG), the body we represent, to formalize the Anthropocene as a series/epoch of the Geological Time Scale. He draws upon ‘four years of ethnographic observation’ of the AWG, over which time this body provided him with access to its meetings and discussions. Given…
Politiser l’impassible géologie
Candidate sites and other reference sections for the Global boundary Stratotype Section and Point of the Anthropocene series
We review and compare proposals for 12 reference sections submitted to the Anthropocene Working Group of the International Subcommission on Quaternary Stratigraphy, of which one will be recommended as the Global boundary Stratotype Section and Point (GSSP) to define the base of the Anthropocene as a series within the Geological Time Scale. The sites span five continents and are located in diverse environments, with all but one sampled by coring. …
Evidence and experiment
Together with research teams from around the world, the Anthropocene Working Group (AWG) has been meticulously quantifying and scrutinizing the global stratigraphic imprint of human activities, the results of which are gathered in this thematic collection of papers in The Anthropocene Review. How can such empirical research, which so impressively articulates the end of a relatively stable Earth System in the mid-20th century, inform our ways of u…
The San Francisco Estuary, USA as a reference section for the Anthropocene series
A San Francisco Estuary core was analysed at high resolution to assess its component stratigraphic signatures of the Anthropocene in the form of non-native species, Hg, spheroidal carbonaceous particles, δ13Corg, δ15N, radiogenic materials, and heavy metals. Time series analysis of the core using Ti data provides a chronology to depth 167 cm into the 1960s. Below this, to depth 230 cm, the lowermost part of the core may extend to the 1950s or pot…
Geological evolution of the Mississippi River into the Anthropocene
The Mississippi River maintains commercial and societal networks of the USA along its >3700 km length. It has accumulated a fluvial sedimentary succession over 80 million years. Through the last 11,700 years of the Holocene Epoch, the wild river shaped the landscape, models of which have become classic in geological studies of ancient river strata. Studies of the river were led by the need to develop infrastructure and to search for hydrocarbons,…
Humans are the most significant global geomorphological driving force of the 21st century
The transformation of the Earth's land surface by mineral extraction and construction is on a scale greater than natural erosive terrestrial geological processes. Mineral extraction statistics can be used as a proxy to measure the size of the total anthropogenic global sediment flux related to mineral extraction and construction. It is demonstrated that the annual direct anthropogenic contribution to the global production of sediment in 2015 was …
The Working Group on the Anthropocene
Scale and diversity of the physical technosphere
We assess the scale and extent of the physical technosphere, defined here as the summed material output of the contemporary human enterprise. It includes active urban, agricultural and marine components, used to sustain energy and material flow for current human life, and a growing residue layer, currently only in small part recycled back into the active component. Preliminary estimates suggest a technosphere mass of approximately 30 trillion ton…
Petrifying Earth Process
The Anthropocene concept arose within the Earth System science (ESS) community, albeit explicitly as a geological (stratigraphical) time term. Its current analysis by the stratigraphical community, as a potential formal addition to the Geological Time Scale, necessitates comparison of the methodologies and patterns of enquiry of these two communities. One means of comparison is to consider some of the most widely used results of the ESS, the 'pla…
Les strates de la ville de l'Anthropocène
Le tissu d'une ville correspond à une transformation de matériaux géologiques bruts en un assemblage complexe de nouveaux minéraux, fabriqués par des humains, et de roches, telles que l'acier, le verre, le plastique, le béton, la brique et la céramique. Cette activité est considérée en termes de ' métabolisme urbain ', avec des afflux et des flux quotidiens de personnes, de nourriture, d'eau et de déchets. Empruntée aux temps géologiques, une éch…
The Anthropocene is functionally and stratigraphically distinct from the Holocene
Evidence of an Anthropocene epoch Humans are undoubtedly altering many geological processes on Earth—and have been for some time. But what is the stratigraphic evidence for officially distinguishing this new human-dominated time period, termed the “Anthropocene,” from the preceding Holocene epoch? Waters et al. review climatic, biological, and geochemical signatures of human activity in sediments and ice cores. Combined with deposits of new mater…
The geological cycle of plastics and their use as a stratigraphic indicator of the Anthropocene
Geology and the Anthropocene
It is useful to have Todd Braje's perspective on the Anthropocene. As he states, it is a concept that has spread widely and that has had various interpretations (within not just the sciences, but the arts and humanities too) in the 15 years since Paul Crutzen and Eugene Stoermer proposed the term (Crutzen & Stoermer 2000). Various suggestions are made in Braje's paper: perhaps foremost is that the Anthropocene should be retained as a loosely defi…
When did the Anthropocene begin? A mid-twentieth century boundary level is stratigraphically optimal
Colonization of the Americas, 'Little Ice Age' climate, and bomb-produced carbon
A recently published analysis by Lewis and Maslin (Lewis SL and Maslin MA (2015) Defining the Anthropocene. Nature 519: 171-180) has identified two new potential horizons for the Holocene−Anthropocene boundary: 1610 (associated with European colonization of the Americas), or 1964 (the peak of the excess radiocarbon signal arising from atom bomb tests). We discuss both of these novel suggestions, and consider that there is insufficient stratigraph…
Diachronous beginnings of the Anthropocene
Across a large proportion of Earth's ice-free land surfaces, a solid-phase stratigraphic boundary marks the division between humanly modified ground and natural geological deposits. At its clearest, the division takes the form of an abrupt surface at the base of deposits variously called 'artificial ground', 'anthropogenic ground' or 'archaeological stratigraphy' - which together comprise a distinctive part of the geosphere called the 'archaeosph…
Human bioturbation, and the subterranean landscape of the Anthropocene
The technofossil record of humans
As humans have colonised and modified the Earth's surface, they have developed progressively more sophisticated tools and technologies. These underpin a new kind of stratigraphy, that we term technostratigraphy, marked by the geologically accelerated evolution and diversification of technofossils - the preservable material remains of the technosphere (Haff, 2013), driven by human purpose and transmitted cultural memory, and with the dynamics of a…
Stratigraphy of the Anthropocene
The Anthropocene, an informal term used to signal the impact of collective human activity on biological, physical and chemical processes on the Earth system, is assessed using stratigraphic criteria. It is complex in time, space and process, and may be considered in terms of the scale, relative timing, duration and novelty of its various phenomena. The lithostratigraphic signal includes both direct components, such as urban constructions and man-…
Are we now living in the Anthropocene
The term Anthropocene, proposed and increasingly employed to denote the current interval of anthropogenic global environmental change, may be discussed on stratigraphic grounds. A case can be made for its consideration as a formal epoch in that, since the start of the Industrial Revolution, Earth has endured changes sufficient to leave a global stratigraphic signature distinct from that of the Holocene or of previous Pleistocene interglacial phas…
When did the Anthropocene begin? A mid-twentieth century boundary level is stratigraphically optimal
The Working Group on the Anthropocene
The geological cycle of plastics and their use as a stratigraphic indicator of the Anthropocene
The technofossil record of humans
As humans have colonised and modified the Earth's surface, they have developed progressively more sophisticated tools and technologies. These underpin a new kind of stratigraphy, that we term technostratigraphy, marked by the geologically accelerated evolution and diversification of technofossils - the preservable material remains of the technosphere (Haff, 2013), driven by human purpose and transmitted cultural memory, and with the dynamics of a…
Scale and diversity of the physical technosphere
We assess the scale and extent of the physical technosphere, defined here as the summed material output of the contemporary human enterprise. It includes active urban, agricultural and marine components, used to sustain energy and material flow for current human life, and a growing residue layer, currently only in small part recycled back into the active component. Preliminary estimates suggest a technosphere mass of approximately 30 trillion ton…
Human bioturbation, and the subterranean landscape of the Anthropocene
Colonization of the Americas, 'Little Ice Age' climate, and bomb-produced carbon
A recently published analysis by Lewis and Maslin (Lewis SL and Maslin MA (2015) Defining the Anthropocene. Nature 519: 171-180) has identified two new potential horizons for the Holocene−Anthropocene boundary: 1610 (associated with European colonization of the Americas), or 1964 (the peak of the excess radiocarbon signal arising from atom bomb tests). We discuss both of these novel suggestions, and consider that there is insufficient stratigraph…
Candidate sites and other reference sections for the Global boundary Stratotype Section and Point of the Anthropocene series
We review and compare proposals for 12 reference sections submitted to the Anthropocene Working Group of the International Subcommission on Quaternary Stratigraphy, of which one will be recommended as the Global boundary Stratotype Section and Point (GSSP) to define the base of the Anthropocene as a series within the Geological Time Scale. The sites span five continents and are located in diverse environments, with all but one sampled by coring. …
Diachronous beginnings of the Anthropocene
Across a large proportion of Earth's ice-free land surfaces, a solid-phase stratigraphic boundary marks the division between humanly modified ground and natural geological deposits. At its clearest, the division takes the form of an abrupt surface at the base of deposits variously called 'artificial ground', 'anthropogenic ground' or 'archaeological stratigraphy' - which together comprise a distinctive part of the geosphere called the 'archaeosph…
Petrifying Earth Process
The Anthropocene concept arose within the Earth System science (ESS) community, albeit explicitly as a geological (stratigraphical) time term. Its current analysis by the stratigraphical community, as a potential formal addition to the Geological Time Scale, necessitates comparison of the methodologies and patterns of enquiry of these two communities. One means of comparison is to consider some of the most widely used results of the ESS, the 'pla…
Evidence and experiment
Together with research teams from around the world, the Anthropocene Working Group (AWG) has been meticulously quantifying and scrutinizing the global stratigraphic imprint of human activities, the results of which are gathered in this thematic collection of papers in The Anthropocene Review. How can such empirical research, which so impressively articulates the end of a relatively stable Earth System in the mid-20th century, inform our ways of u…
Humans are the most significant global geomorphological driving force of the 21st century
The transformation of the Earth's land surface by mineral extraction and construction is on a scale greater than natural erosive terrestrial geological processes. Mineral extraction statistics can be used as a proxy to measure the size of the total anthropogenic global sediment flux related to mineral extraction and construction. It is demonstrated that the annual direct anthropogenic contribution to the global production of sediment in 2015 was …
Geological evolution of the Mississippi River into the Anthropocene
The Mississippi River maintains commercial and societal networks of the USA along its >3700 km length. It has accumulated a fluvial sedimentary succession over 80 million years. Through the last 11,700 years of the Holocene Epoch, the wild river shaped the landscape, models of which have become classic in geological studies of ancient river strata. Studies of the river were led by the need to develop infrastructure and to search for hydrocarbons,…
Geology and the Anthropocene
It is useful to have Todd Braje's perspective on the Anthropocene. As he states, it is a concept that has spread widely and that has had various interpretations (within not just the sciences, but the arts and humanities too) in the 15 years since Paul Crutzen and Eugene Stoermer proposed the term (Crutzen & Stoermer 2000). Various suggestions are made in Braje's paper: perhaps foremost is that the Anthropocene should be retained as a loosely defi…
The San Francisco Estuary, USA as a reference section for the Anthropocene series
A San Francisco Estuary core was analysed at high resolution to assess its component stratigraphic signatures of the Anthropocene in the form of non-native species, Hg, spheroidal carbonaceous particles, δ13Corg, δ15N, radiogenic materials, and heavy metals. Time series analysis of the core using Ti data provides a chronology to depth 167 cm into the 1960s. Below this, to depth 230 cm, the lowermost part of the core may extend to the 1950s or pot…
Les strates de la ville de l'Anthropocène
Le tissu d'une ville correspond à une transformation de matériaux géologiques bruts en un assemblage complexe de nouveaux minéraux, fabriqués par des humains, et de roches, telles que l'acier, le verre, le plastique, le béton, la brique et la céramique. Cette activité est considérée en termes de ' métabolisme urbain ', avec des afflux et des flux quotidiens de personnes, de nourriture, d'eau et de déchets. Empruntée aux temps géologiques, une éch…
Are we now living in the Anthropocene
The term Anthropocene, proposed and increasingly employed to denote the current interval of anthropogenic global environmental change, may be discussed on stratigraphic grounds. A case can be made for its consideration as a formal epoch in that, since the start of the Industrial Revolution, Earth has endured changes sufficient to leave a global stratigraphic signature distinct from that of the Holocene or of previous Pleistocene interglacial phas…
Stratigraphy of the Anthropocene
The Anthropocene, an informal term used to signal the impact of collective human activity on biological, physical and chemical processes on the Earth system, is assessed using stratigraphic criteria. It is complex in time, space and process, and may be considered in terms of the scale, relative timing, duration and novelty of its various phenomena. The lithostratigraphic signal includes both direct components, such as urban constructions and man-…
Human bioturbation, and the subterranean landscape of the Anthropocene
The technofossil record of humans
As humans have colonised and modified the Earth's surface, they have developed progressively more sophisticated tools and technologies. These underpin a new kind of stratigraphy, that we term technostratigraphy, marked by the geologically accelerated evolution and diversification of technofossils - the preservable material remains of the technosphere (Haff, 2013), driven by human purpose and transmitted cultural memory, and with the dynamics of a…
When did the Anthropocene begin? A mid-twentieth century boundary level is stratigraphically optimal
Colonization of the Americas, 'Little Ice Age' climate, and bomb-produced carbon
A recently published analysis by Lewis and Maslin (Lewis SL and Maslin MA (2015) Defining the Anthropocene. Nature 519: 171-180) has identified two new potential horizons for the Holocene−Anthropocene boundary: 1610 (associated with European colonization of the Americas), or 1964 (the peak of the excess radiocarbon signal arising from atom bomb tests). We discuss both of these novel suggestions, and consider that there is insufficient stratigraph…
Diachronous beginnings of the Anthropocene
Across a large proportion of Earth's ice-free land surfaces, a solid-phase stratigraphic boundary marks the division between humanly modified ground and natural geological deposits. At its clearest, the division takes the form of an abrupt surface at the base of deposits variously called 'artificial ground', 'anthropogenic ground' or 'archaeological stratigraphy' - which together comprise a distinctive part of the geosphere called the 'archaeosph…
The Anthropocene is functionally and stratigraphically distinct from the Holocene
Evidence of an Anthropocene epoch Humans are undoubtedly altering many geological processes on Earth—and have been for some time. But what is the stratigraphic evidence for officially distinguishing this new human-dominated time period, termed the “Anthropocene,” from the preceding Holocene epoch? Waters et al. review climatic, biological, and geochemical signatures of human activity in sediments and ice cores. Combined with deposits of new mater…
The geological cycle of plastics and their use as a stratigraphic indicator of the Anthropocene
Geology and the Anthropocene
It is useful to have Todd Braje's perspective on the Anthropocene. As he states, it is a concept that has spread widely and that has had various interpretations (within not just the sciences, but the arts and humanities too) in the 15 years since Paul Crutzen and Eugene Stoermer proposed the term (Crutzen & Stoermer 2000). Various suggestions are made in Braje's paper: perhaps foremost is that the Anthropocene should be retained as a loosely defi…
The Working Group on the Anthropocene
Scale and diversity of the physical technosphere
We assess the scale and extent of the physical technosphere, defined here as the summed material output of the contemporary human enterprise. It includes active urban, agricultural and marine components, used to sustain energy and material flow for current human life, and a growing residue layer, currently only in small part recycled back into the active component. Preliminary estimates suggest a technosphere mass of approximately 30 trillion ton…
Petrifying Earth Process
The Anthropocene concept arose within the Earth System science (ESS) community, albeit explicitly as a geological (stratigraphical) time term. Its current analysis by the stratigraphical community, as a potential formal addition to the Geological Time Scale, necessitates comparison of the methodologies and patterns of enquiry of these two communities. One means of comparison is to consider some of the most widely used results of the ESS, the 'pla…
Les strates de la ville de l'Anthropocène
Le tissu d'une ville correspond à une transformation de matériaux géologiques bruts en un assemblage complexe de nouveaux minéraux, fabriqués par des humains, et de roches, telles que l'acier, le verre, le plastique, le béton, la brique et la céramique. Cette activité est considérée en termes de ' métabolisme urbain ', avec des afflux et des flux quotidiens de personnes, de nourriture, d'eau et de déchets. Empruntée aux temps géologiques, une éch…
Humans are the most significant global geomorphological driving force of the 21st century
The transformation of the Earth's land surface by mineral extraction and construction is on a scale greater than natural erosive terrestrial geological processes. Mineral extraction statistics can be used as a proxy to measure the size of the total anthropogenic global sediment flux related to mineral extraction and construction. It is demonstrated that the annual direct anthropogenic contribution to the global production of sediment in 2015 was …
Geological evolution of the Mississippi River into the Anthropocene
The Mississippi River maintains commercial and societal networks of the USA along its >3700 km length. It has accumulated a fluvial sedimentary succession over 80 million years. Through the last 11,700 years of the Holocene Epoch, the wild river shaped the landscape, models of which have become classic in geological studies of ancient river strata. Studies of the river were led by the need to develop infrastructure and to search for hydrocarbons,…
Candidate sites and other reference sections for the Global boundary Stratotype Section and Point of the Anthropocene series
We review and compare proposals for 12 reference sections submitted to the Anthropocene Working Group of the International Subcommission on Quaternary Stratigraphy, of which one will be recommended as the Global boundary Stratotype Section and Point (GSSP) to define the base of the Anthropocene as a series within the Geological Time Scale. The sites span five continents and are located in diverse environments, with all but one sampled by coring. …
Evidence and experiment
Together with research teams from around the world, the Anthropocene Working Group (AWG) has been meticulously quantifying and scrutinizing the global stratigraphic imprint of human activities, the results of which are gathered in this thematic collection of papers in The Anthropocene Review. How can such empirical research, which so impressively articulates the end of a relatively stable Earth System in the mid-20th century, inform our ways of u…
The San Francisco Estuary, USA as a reference section for the Anthropocene series
A San Francisco Estuary core was analysed at high resolution to assess its component stratigraphic signatures of the Anthropocene in the form of non-native species, Hg, spheroidal carbonaceous particles, δ13Corg, δ15N, radiogenic materials, and heavy metals. Time series analysis of the core using Ti data provides a chronology to depth 167 cm into the 1960s. Below this, to depth 230 cm, the lowermost part of the core may extend to the 1950s or pot…
Response to Damianos—Anthropocene angst
Damianos provides his views on the significance of the March 2024 decision by the International Commission on Stratigraphy (ICS) to reject the proposal of the Anthropocene Working Group (AWG), the body we represent, to formalize the Anthropocene as a series/epoch of the Geological Time Scale. He draws upon ‘four years of ethnographic observation’ of the AWG, over which time this body provided him with access to its meetings and discussions. Given…
Politiser l’impassible géologie
The Anthropocene as a conceptual tool for education
In a world where facts are contested, the conceptual tool of the Anthropocene epoch – that is, the dramatic and clearly demonstrable ways humans have changed the Earth system trajectory since the mid-20th century – provides real value for society in general and for education in particular. As a unifying concept, it helps us (a) understand the transformed bioclimatic conditions in which we live, (b) appreciate how fragile they are, how rapidly the…
Anthropocene (19 obras) · Geology (14 obras) · Paleontology (13 obras) · Earth science (12 obras) · Geology and Paleoclimatology Research (10 obras) · Archaeology (7 obras) · Geography (7 obras) · Marine and environmental studies (7 obras) · Isotope Analysis in Ecology (6 obras) · Holocene (5 obras)